The Biosensis Mature BDNF Rapid TM enzyme-linked immunosorbent assay (ELISA) Kit is a sandwich ELISA that allows the quantification of mature BDNF in less than 3 hours in cell culture supernatants, serum, plasma (citrate and EDTA), pig serum, cell lysates, brain extracts, human milk and Sheep CSF only if used as directed, with a simplified protocol and no loss of sensitivity or specificity. Please refer to the kit protocol for specific use instructions for each substrate application, in particular blood samples, human milk and CSF. Note that accurate quantification of BDNF in human milk requires a secretory IgA (sIgA) blocker which can be purchased separately ( BL-001-1250 ). For measurement of mature BDNF in CSF samples, please contact us at sales@biosensis.com . This ELISA kit has been tested in independent research laboratories and found to achieve highest reproducibility with intra- and inter-assay CVs as low as 1% and 5%, respectively (Polacchini et al., 2015). This ELISA kit consists of a pre-coated mouse monoclonal anti-mature BDNF capture antibody, a biotinylated anti-mature BDNF detection antibody and horseradish peroxidase (HRP)-conjugated streptavidin. The addition of a substrate (3,3',5,5'-tetramethylbenzidine, TMB) yields a coloured reaction product which is directly proportional to the concentration of mature BDNF present in samples and protein standards. A BDNF positive control (QC sample) is provided to assure consistent assay performance. This Mature BDNF ELISA kit employs a recombinant human mature BDNF standard approved by the World Health Organization (WHO, www.nibsc.org ). The amino acid sequence of mature BDNF is identical for human, mouse, rat and a number of other species. This kit therefore is suitable to measure mature BDNF in all these species and uses the same antibodies and antigen. Extensive validation has demonstrated that the Mature BDNF Rapid TM ELISA shows only minimal cross-reactivity with proBDNF. Please refer to our Technical Note #5 for further details on ELISA assay validation for BDNF isoform detection and quanification. This ELISA kit has not been tested for other applications. It has been configured for research use only and is not to be used for diagnostic or clinical procedures. For in-vitro diagnostic (IVD) applications in the European Economic Area (EEA), we refer to the CE Marked BDNF ELISA kit (BEK-2211-CE) .
Background Info:
BDNF belongs to the neurotrophin family and regulates the survival and differentiation of neurons during development. The alterations in BDNF expression induced by various kinds of brain insult including stress, ischemia, seizure activity and hypoglycemia, may contribute to some pathologies such as depression, epilepsy, Alzheimer's, and Parkinson's disease. FUNCTION: Promotes the survival of neuronal populations that are all located either in the central nervous system or directly connected to it. Major regulator of synaptic transmission and plasticity at adult synapses in many regions of the CNS. The versatility of BDNF is emphasized by its contribution to a range of adaptive neuronal responses including long-term potentiation (LTP), long-term depression (LTD), certain forms of short-term synaptic plasticity, as well as homeostatic regulation of intrinsic neuronal excitability. SUBUNIT: Monomers and homodimers. Binds to NTRK2/TRKB. SUBCELLULAR LOCATION: Secreted protein. Post Translation Modification (PTM): The propeptide is N-glycosylated and glycosulfated. PTM: Converted into mature BDNF by plasmin (PLG) (By similarity). DISEASE: Defects in BDNF are a cause of congenital central hypoventilation syndrome (CCHS); also known as congenital failure of autonomic control or Ondine curse. CCHS is a rare disorder characterized by abnormal control of respiration in the absence of neuromuscular or lung disease, or an identifiable brain stem lesion. A deficiency in autonomic control of respiration results in inadequate or negligible ventilatory and arousal responses to hypercapnia and hypoxemia. CCHS is frequently complicated with neurocristopathies such as Hirschsprung disease that occurs in about 16% of CCHS cases. SIMILARITY: Belongs to the NGF-beta family.
Product Type:
ELISA Assay
Species Reactivity:
Human,Mouse,Rat
Immunogen:
Recombinant human BDNF with an N-terminal methionine residue, made in E. coli (WHO reference reagent)
Applications:
ELISA
Application Details:
ELISA. For the quantification of Brain-derived neurotrophic factor, mature (BDNF, mature) in Culture Supernatant, Serum, Plasma (Citrate), Plasma (EDTA), Cell Lysates, Tissue Homogenates, Human Milk, CSF. Please download the detailed product insert for complete instructions for the successful use of this ELISA. Use only as directed.
The ELISA kit box contains 96-well pre-coated strip plate(s), protein standards, QC sample, detection reagents, wash and sample buffers, substrate buffer and detailed protocols.
Product references:
Total Number of References: 99 Latest Publications (2019-2022):
Meshkat S et al. (2022) Brain-Derived Neurotrophic Factor (BDNF) as a biomarker of treatment response in patients with Treatment Resistant Depression (TRD): A systematic review & meta-analysis Psychiatry Res. 317:114857 Application: Human, serum. Cook A et al. (2022) Activation of TrkB-Akt signaling rescues deficits in a mouse model of SCA6 Sci Adv. [Epub ahead of print] Application: Mouse, brain extracts. Tsotsoros CE et al. (2022) Pilot Associations between Adverse Childhood Experiences, Executive Function, and Brain-Derived Neurotrophic Factor (BDNF) among Adults with Excess Adiposity Obesities. 2, 276-284. Application: Human, serum. Salem HA et al. (2022) Neuroprotective Effect of Morin Hydrate against Attention-Deficit/Hyperactivity Disorder (ADHD) Induced by MSG and/or Protein Malnutrition in Rat Pups: Effect on Oxidative/Monoamines/Inflammatory Balance and Apoptosis Pharmaceuticals. 15, 1012. Application: Rat, brain supernatant. Aldhshan MS & Mizuno TM. (2022) Effect of environmental enrichment on aggression and the expression of brain-derived neurotrophic factor transcript variants in group-housed male mice Behav Brain Res. [Epub ahead of print]. Application: Mouse, brain tissue homogenate. Fujino M et al. (2022) Orally Administered Plasmalogens Alleviate Negative Mood States and Enhance Mental Concentration: A Randomized, Double-Blind, Placebo-Controlled Trial Front Cell Dev Biol. 10:894734 Application: Human, plasma. Abrial E et al. (2022) Investigating Predictive Factors of Suicidal Re-attempts in Adolescents and Young Adults After a First Suicide Attempt, a Prospective Cohort Study. Study Protocol of the SURAYA Project Front. Psychiatry. [Epub ahead of print] Application: Human, plasma. Tanaka-Kanegae R et al. (2022) Sufficiently Elevated Core Body Temperature May Be Necessary to Maintain Cerebral Blood Flow Response throughout the Morning Neurosci Med. 13, 70-90 Application: Human, serum. Merlo S et al. (2022) Microglial polarization differentially affects neuronal vulnerability to the ?-amyloid protein: Modulation by melatonin Biochem Pharmacol. 202:115151 Application: Human, cell culture supernatant. Dalile B et al. (2022) Extruded Wheat Bran Consumption Increases Serum Short-Chain Fatty Acids but Does Not Modulate Psychobiological Functions in Healthy Men: A Randomized, Placebo-Controlled Trial Front Nutr. 9:896154 Application: Human, serum. Agapouda A et al. (2022) Rhodiola Rosea Extract Counteracts Stress in an Adaptogenic Response Curve Manner via Elimination of ROS and Induction of Neurite Outgrowth Oxid. Med. Cell. Longev. [Epub ahead of print] Application: Human, cell lysates. Breazeale S et al. (2022) Symptom cluster profiles following traumatic orthopaedic injuries Injury. [Epub ahead of print] Application: Human, serum. Jaehne EJ et al. (2022) Behavioral phenotyping of a rat model of the BDNF Val66Met polymorphism reveals selective impairment of fear memory Transl Psychiatry. 12(1):93 Application: Rat, acid extracted tissue lysates. Wang RY et al. (2022) The SDF1-CXCR4 Axis Is Involved in the Hyperbaric Oxygen Therapy-Mediated Neuronal Cells Migration in Transient Brain Ischemic Rats. Int J Mol Sci. 23, 1780 Application: Rat, brain tissue homogenate and serum. Hugues N et al. (2022) Time-Dependent Cortical Plasticity during Moderate-Intensity Continuous Training Versus High-Intensity Interval Training in Rats. Cereb Cortex. [Epub ahead of print] Application: Rat, cortical tissue homogenate. Cefis M et al. (2021) Endothelial cells are an important source of BDNF in rat skeletal muscle. Sci Rep. 12(1):311 Application: Rat, skeletal muscle tissue homogenate. Becker AM et al. (2021) Acute Effects of Psilocybin After Escitalopram or Placebo Pretreatment in a Randomized, Double-Blind, Placebo-Controlled, Crossover Study in Healthy Subjects. Clin Pharmacol Ther. [Epub ahead of print] Application: Human, plasma. Berbenetz N et al. (2021) The Relationship Between Brain Derived Neurotrophic Factor (BDNF) and Symptoms Following Catheter Ablation for Paroxysmal Atrial Fibrillation (AF)- NEURO-AF Study. Circulation. [Epub ahead of print] Application: Human, serum. Walsh JJ et al. (2021) Short-term ketone monoester supplementation improves cerebral blood flow and cognition in obesity: A randomized cross-over trial. J Physiol. [Epub ahead of print] Application: Human, serum, platelet-poor plasma. Boukhatem I et al. (2021) The brain-derived neurotrophic factor prompts platelet aggregation and secretion. Blood Adv. 5(18):3568-3580 Application: Human, plasma. Yi X et al. (2021) Serum mBDNF and ProBDNF Expression Levels as Diagnosis Clue for Early Stage Parkinson's Disease. Front Neurol. 12:680765 Application: Human, serum. Inoue T et al. (2021) Ipsilateral BDNF mRNA expression in the motor cortex positively correlates with motor function of the affected forelimb after intracerebral hemorrhage. Brain Res. [Epub ahead of print] Application: Rat, brain homogenate. Shoshina II et al. (2021) Visual processing and BDNF levels in first-episode schizophrenia. Psychiatry Res. [Epub ahead of print] Application: Human, serum. Cappoli N et al. (2021) Effects of remifentanil on human C20 microglial pro-inflammatory activation. Eur Rev Med Pharmacol Sci. 25(16):5268-5274 Application: Human, cell culture. March B et al. (2021) ELISA-based quantification of neurotrophic growth factors in urine from prostate cancer patients. FASEB Bioadv. [Epub ahead of print] Application: Human, urine. Mori Y et al. (2021) Serum BDNF as a Potential Biomarker of Alzheimer's Disease: Verification Through Assessment of Serum, Cerebrospinal Fluid, and Medial Temporal Lobe Atrophy. Front Neurol. 12:653267 Application: Human, serum. Seno S et al. (2021) Effects of Selective Serotonin Reuptake Inhibitors on Depression-Like Behavior in a Laser-Induced Shock Wave Model. Front Neurol. 12:602038 Application: Mouse, hippocampal homogenates. Medeiros GC et al. (2021) Treatment of depression with ketamine does not change plasma levels of brain-derived neurotrophic factor or vascular endothelial growth factor. J Affect Disord. 280(Pt A):136-139 Application: Human, plasma. Dorandish S et al. (2021) Differences in the Relative Abundance of ProBDNF and Mature BDNF in A549 and H1299 Human Lung Cancer Cell Media. Int J Mol Sci. 22(13):7059 Application: Human, culture supernatant. Yap NY et al. (2021) Relationship between cytokines and brain-derived neurotrophic factor (BDNF) in trajectories of cancer-related cognitive impairment. Cytokine. [Epub ahead of print] Application: Human, plasma. Wang L et al. (2021) The mediating effect of brain-derived neurotrophic factor levels on childhood trauma and psychiatric symptoms in patients with first-episode schizophrenia. Aust N Z J Psychiatry. [Epub ahead of print] Application: Human. Mallik SB et al. (2021) Remedial effects of caffeine against depressive-like behaviour in mice by modulation of neuroinflammation and BDNF. Nutr Neurosci. [Epub ahead of print] Application: Mouse. Nomura S et al. (2021) Effects of a Tea Cultivar "MK5601" on Behaviors and Hippocampal Neurotrophin-3 Levels in Middle-Aged Mice. J Nutr Sci Vitaminol (Tokyo). 67(3):170-179 Application: Mouse, hippocampal RIPA homogenates. Caruso GI et al. (2021) SIRT1-Dependent Upregulation of BDNF in Human Microglia Challenged with A?: An Early but Transient Response Rescued by Melatonin. Biomedicines. 9(5):466 Application: Human, cell culture supernatant. Miller KM et al. (2021) Striatal Afferent BDNF Is Disrupted by Synucleinopathy and Partially Restored by STN DBS. J Neurosci. 41(9):2039-52 Application: Rat, tissue homogenates (RIPA). Vickneson K et al. (2021) Cold-induced dishabituation in rodents exposed to recurrent hypoglycaemia. Diabetologia. 64(6):1436-41 Application: Rat, blood. Li P et al. (2021) Intermediation of perceived stress between early trauma and plasma M/P ratio levels in obsessive-compulsive disorder patients. J Affect Disord. 285:105-111 Application: Human, plasma. Lai NS et al. (2021) Increased Serum Levels of Brain-Derived Neurotrophic Factor Contribute to Inflammatory Responses in Patients with Rheumatoid Arthritis. Int. J. Mol. Sci. 22(4):1841 Application: Human, serum and culture supernatants. Pan S et al. (2021) The microRNA-195 - BDNF pathway and cognitive deficits in schizophrenia patients with minimal antipsychotic medication exposure. Transl Psychiatry. 11(1):117 Application: Human, plasma. Miyamoto T et al. (2021) Effect of pedaling cadence on serum levels of brain-derived neurotrophic factor during ergometric exercise in healthy adults. Sport Sci Health. Application: Human, serum. Normann AJ (2020) The Effect of Light Therapy and Acute Aerobic Exercise on Serum Brain Derived Neurotrophic Factor in Older Adults. MSc Thesis. Application: Human, serum. Holze F et al. (2020) Acute dose-dependent effects of lysergic acid diethylamide in a double-blind placebo-controlled study in healthy subjects. Neuropsychopharmacology. [Epub ahead of print]. Application: Human, plasma. Hasler G et al. (2020) The Association Between Adolescent Residential Mobility and Adult Social Anxiety, BDNF and Amygdala-Orbitofrontal Functional Connectivity in Young Adults With Higher Education. Front. Psychiatry. Application: Human, serum. Wallace AW (2020) The Impact of Six Weeks of Intermittent Fasting, With and Without Aerobic Exercise, on Serum BDNF in Young Adult Males. MSc Thesis. Application: Human, serum. Walsh JJ et al. (2020) The Effect of Exogenous Ketone Monoester Ingestion on Plasma BDNF During an Oral Glucose Tolerance Test. Front Physiol. 11:1094. Application: Human, plasma. Meade GM et al. (2020) A Model of Negative Emotional Contagion Between Male-Female Rat Dyads: Effects of Voluntary Exercise on Stress-Induced Behavior and BDNF-TrkB Signaling. Physiol Behav. 113286 Application: Rat, serum. Hutten NRPW et al. (2020) Low Doses of LSD Acutely Increase BDNF Blood Plasma Levels in Healthy Volunteers. ACS Pharmacol. Transl. Sci. Application: Human, plasma. Barbosa AC et al. (2020) Assessment of BDNF serum levels as a diagnostic marker in children with autism spectrum disorder. Sci Rep. 10(1):17348. Application: Human, serum. Okamura M et al. (2020) Low-Level Inhibition of GABAergic Synapses Enhances Gene Expressions Crucial for Neuronal Plasticity in the Hippocampus After Ischemic Stroke. J Stroke Cerebrovasc Dis. 29(12):105316. Application: Rat, hippocampus homogenate. Payne AJ et al. (2020) The Effects of Alcohol on BDNF and CD5 Dependent Pathways. PhD Thesis. Application: Mouse, RIPA tissue homogenate. Nishiyama M et al. (2020) Homostachydrine is a Xenobiotic Substrate of OCTN1/SLC22A4 and Potentially Sensitizes Pentylenetetrazole-Induced Seizures in Mice. Neurochem Res. [Epub ahead of print]. Application: Mouse, acid-extracted hippocampal homogenate. Lorinczova HT et al. (2020) Co-Administration of Iron and a Bioavailable Curcumin Supplement Increases Serum BDNF Levels in Healthy Adults. Antioxidants (Basel). 9(8):E645. Application: Human serum. Yap NY F et al. (2020) Associations of plasma brain-derived neurotrophic factor (BDNF) and Val66Met polymorphism (rs6265) with long-term cancer-related cognitive impairment in survivors of breast cancer. Breast Cancer Res Treat. [Epub ahead of print]. Application: Human plasma. Vasilopoulou F et al. (2020) Amelioration of BPSD-Like Phenotype and Cognitive Decline in SAMP8 Mice Model Accompanied by Molecular Changes After Treatment With I 2-Imidazoline Receptor Ligand MCR5. Pharmaceutics. 12(5):E475. Application: Mouse hippocampus RIPA-homogenates. Mueller ST et al. (2020) Negative Association Between Left Prefrontal GABA Concentration and BDNF Serum Concentration in Young Adults. Heliyon. 6(5):e04025. Application: Human serum. Chen LF et al. (2020) The NMDA receptor subunit GluN3A regulates synaptic activity-induced and myocyte enhancer factor 2C (MEF2C)-dependent transcription. J Biol Chem. [Epub ahead of print]. Application: Rat neuronal cell lysate, acid-extracted. Companys-Alemany J et al. (2020) A Novel NMDA Receptor Antagonist Protects against Cognitive Decline Presented by Senescent Mice. Pharmaceutics. 12(3), 284. Application: Mouse hippocampal homogenates. Furukawa Y et al. (2020) Citrus Auraptene Induces Expression of Brain-Derived Neurotrophic Factor in Neuro2a Cells. Molecules. 25(5). Application: Mouse Neuro2a culture supernatant. Holze F et al. (2019) Distinct acute effects of LSD, MDMA, and D-amphetamine in healthy subjects. Neuropsychopharmacology. [Epub ahead of print]. Application: Human plasma. Sumiyoshi E et al. (2019) Sub-Chronic Consumption of Dark Chocolate Enhances Cognitive Function and Releases Nerve Growth Factors: A Parallel-Group Randomized Trial. Nutrients. 11(11). Application: Human plasma. Sartori A et al. (2019) Interferon-beta, but not Glatiramer Acetate treatment induces gender-specific increase in BDNF serum levels in relapsing-remitting multiple sclerosis female patients. Res J Neuro N Disord. 1:5-18. Application: Human serum. Please refer to our Technical Note #5 for validation experiments disproving the author's claim that the Biosensis Mature BDNF Rapid TM ELISA quantifies total BDNF! Vanicek T et al. (2019) Repetitive Enhancement of Serum BDNF Subsequent to Continuation ECT. Acta Psychiatr Scand. [Epub ahead of print]. Application: Human serum. Gejl AK et al. (2019) Associations between serum and plasma brain-derived neurotrophic factor and influence of storage time and centrifugation strategy. Sci Rep. 9(1):9655. Application: Human serum and EDTA-plasma. Li X et al. (2019) Exercise enhances the expression of brain-derived neurotrophic factor in the hippocampus accompanied by epigenetic alterations in senescence-accelerated mice prone 8. Neurosci Lett. [Epub ahead of print]. Application: Mouse brain homogenates. Yang CY et al. (2019) Panax notoginsenoside Rb1 Restores the Neurotrophic Imbalance Following Photothrombotic Stroke in Rats. Neurotox Res. [Epub ahead of print]. Application: Rat brain homogenates. Du Y et al. (2019) Genome-Wide, Integrative Analysis Implicates Exosome-Derived MicroRNA Dysregulation in Schizophrenia. Schizophr Bull. [Epub ahead of print]. Application: Human serum. Vanicek T et al. (2019) Acute and Subsequent Continuation Electroconvulsive Therapy Elevates Serum BDNF Levels in Patients with Major Depression. Brain Stimul. [In press]. Application: Human serum, plasma. Duart-Castells L et al. (2019) 7,8-dihydroxyflavone blocks the development of behavioral sensitization to MDPV, but not to cocaine: differential role of the BDNF-TrkB pathway. Biochem Pharmacol. [Epub ahead of print]. Application: Mouse RIPA tissue homogenates.
Typical limit of detection (LOD) for BDNF is less than 2 pg/mL, determined as 150% of the blank value.
Cross Reactivity:
No cross-reactivity is observed for nerve growth factor (NGF), neurotrophin-3 (NT-3), NT-4/5, glial cell line-derived neurotrophic factor (GDNF) and vascular endothelial growth factor (VEGF165) tested at 25 ng/mL in assay buffer. The reactivity of full-length proBDNF (0.125 ng/mL - 5 ng/mL) was determined in six independent assays using proBDNF proteins from four different sources (mammalian and bacterial, wild-type and mutated). The average cross-reactivity of proBDNF was found to be 5.3% +/- 0.5% in weight (w/v) concentration, or 12.1% +/- 1.2% in molar concentration (mean +/- SEM). Additional proBDNF cross-reactivity experiments were conducted as summarized in our <a class="newA" target="_blank" href="https://www.biosensis.com/documents/enhancedinfo/Technical-Note-5-Mature-BDNF-Isoform-Detection-and-Quantification-by-ELISA.pdf">Technical Note #5</a>.
The Biosensis Mature BDNF Rapid TM enzyme-linked immunosorbent assay (ELISA) Kit is a sandwich ELISA that allows the quantification of mature BDNF in less than 3 hours in cell culture supernatants, serum, plasma (citrate and EDTA), pig serum, cell lysates, brain extracts, human milk and Sheep CSF only if used as directed, with a simplified protocol and no loss of sensitivity or specificity. Please refer to the kit protocol for specific use instructions for each substrate application, in particular blood samples, human milk and CSF. Note that accurate quantification of BDNF in human milk requires a secretory IgA (sIgA) blocker which can be purchased separately ( BL-001-1250 ). For measurement of mature BDNF in CSF samples, please contact us at sales@biosensis.com . This ELISA kit has been tested in independent research laboratories and found to achieve highest reproducibility with intra- and inter-assay CVs as low as 1% and 5%, respectively (Polacchini et al., 2015). This ELISA kit consists of a pre-coated mouse monoclonal anti-mature BDNF capture antibody, a biotinylated anti-mature BDNF detection antibody and horseradish peroxidase (HRP)-conjugated streptavidin. The addition of a substrate (3,3',5,5'-tetramethylbenzidine, TMB) yields a coloured reaction product which is directly proportional to the concentration of mature BDNF present in samples and protein standards. A BDNF positive control (QC sample) is provided to assure consistent assay performance. This Mature BDNF ELISA kit employs a recombinant human mature BDNF standard approved by the World Health Organization (WHO, www.nibsc.org ). The amino acid sequence of mature BDNF is identical for human, mouse, rat and a number of other species. This kit therefore is suitable to measure mature BDNF in all these species and uses the same antibodies and antigen. Extensive validation has demonstrated that the Mature BDNF Rapid TM ELISA shows only minimal cross-reactivity with proBDNF. Please refer to our Technical Note #5 for further details on ELISA assay validation for BDNF isoform detection and quanification. This ELISA kit has not been tested for other applications. It has been configured for research use only and is not to be used for diagnostic or clinical procedures. For in-vitro diagnostic (IVD) applications in the European Economic Area (EEA), we refer to the CE Marked BDNF ELISA kit (BEK-2211-CE) .
Background Info:
BDNF belongs to the neurotrophin family and regulates the survival and differentiation of neurons during development. The alterations in BDNF expression induced by various kinds of brain insult including stress, ischemia, seizure activity and hypoglycemia, may contribute to some pathologies such as depression, epilepsy, Alzheimer's, and Parkinson's disease. FUNCTION: Promotes the survival of neuronal populations that are all located either in the central nervous system or directly connected to it. Major regulator of synaptic transmission and plasticity at adult synapses in many regions of the CNS. The versatility of BDNF is emphasized by its contribution to a range of adaptive neuronal responses including long-term potentiation (LTP), long-term depression (LTD), certain forms of short-term synaptic plasticity, as well as homeostatic regulation of intrinsic neuronal excitability. SUBUNIT: Monomers and homodimers. Binds to NTRK2/TRKB. SUBCELLULAR LOCATION: Secreted protein. Post Translation Modification (PTM): The propeptide is N-glycosylated and glycosulfated. PTM: Converted into mature BDNF by plasmin (PLG) (By similarity). DISEASE: Defects in BDNF are a cause of congenital central hypoventilation syndrome (CCHS); also known as congenital failure of autonomic control or Ondine curse. CCHS is a rare disorder characterized by abnormal control of respiration in the absence of neuromuscular or lung disease, or an identifiable brain stem lesion. A deficiency in autonomic control of respiration results in inadequate or negligible ventilatory and arousal responses to hypercapnia and hypoxemia. CCHS is frequently complicated with neurocristopathies such as Hirschsprung disease that occurs in about 16% of CCHS cases. SIMILARITY: Belongs to the NGF-beta family.
Product Type:
ELISA Assay
Species Reactivity:
Human,Mouse,Rat
Immunogen:
Recombinant human BDNF with an N-terminal methionine residue, made in E. coli (WHO reference reagent)
Applications:
ELISA
Application Details:
ELISA. For the quantification of Brain-derived neurotrophic factor, mature (BDNF, mature) in Culture Supernatant, Serum, Plasma (Citrate), Plasma (EDTA), Cell Lysates, Tissue Homogenates, Human Milk, CSF. Please download the detailed product insert for complete instructions for the successful use of this ELISA. Use only as directed.
The ELISA kit box contains 96-well pre-coated strip plate(s), protein standards, QC sample, detection reagents, wash and sample buffers, substrate buffer and detailed protocols.
Product references:
Total Number of References: 99 Latest Publications (2019-2022):
Meshkat S et al. (2022) Brain-Derived Neurotrophic Factor (BDNF) as a biomarker of treatment response in patients with Treatment Resistant Depression (TRD): A systematic review & meta-analysis Psychiatry Res. 317:114857 Application: Human, serum. Cook A et al. (2022) Activation of TrkB-Akt signaling rescues deficits in a mouse model of SCA6 Sci Adv. [Epub ahead of print] Application: Mouse, brain extracts. Tsotsoros CE et al. (2022) Pilot Associations between Adverse Childhood Experiences, Executive Function, and Brain-Derived Neurotrophic Factor (BDNF) among Adults with Excess Adiposity Obesities. 2, 276-284. Application: Human, serum. Salem HA et al. (2022) Neuroprotective Effect of Morin Hydrate against Attention-Deficit/Hyperactivity Disorder (ADHD) Induced by MSG and/or Protein Malnutrition in Rat Pups: Effect on Oxidative/Monoamines/Inflammatory Balance and Apoptosis Pharmaceuticals. 15, 1012. Application: Rat, brain supernatant. Aldhshan MS & Mizuno TM. (2022) Effect of environmental enrichment on aggression and the expression of brain-derived neurotrophic factor transcript variants in group-housed male mice Behav Brain Res. [Epub ahead of print]. Application: Mouse, brain tissue homogenate. Fujino M et al. (2022) Orally Administered Plasmalogens Alleviate Negative Mood States and Enhance Mental Concentration: A Randomized, Double-Blind, Placebo-Controlled Trial Front Cell Dev Biol. 10:894734 Application: Human, plasma. Abrial E et al. (2022) Investigating Predictive Factors of Suicidal Re-attempts in Adolescents and Young Adults After a First Suicide Attempt, a Prospective Cohort Study. Study Protocol of the SURAYA Project Front. Psychiatry. [Epub ahead of print] Application: Human, plasma. Tanaka-Kanegae R et al. (2022) Sufficiently Elevated Core Body Temperature May Be Necessary to Maintain Cerebral Blood Flow Response throughout the Morning Neurosci Med. 13, 70-90 Application: Human, serum. Merlo S et al. (2022) Microglial polarization differentially affects neuronal vulnerability to the ?-amyloid protein: Modulation by melatonin Biochem Pharmacol. 202:115151 Application: Human, cell culture supernatant. Dalile B et al. (2022) Extruded Wheat Bran Consumption Increases Serum Short-Chain Fatty Acids but Does Not Modulate Psychobiological Functions in Healthy Men: A Randomized, Placebo-Controlled Trial Front Nutr. 9:896154 Application: Human, serum. Agapouda A et al. (2022) Rhodiola Rosea Extract Counteracts Stress in an Adaptogenic Response Curve Manner via Elimination of ROS and Induction of Neurite Outgrowth Oxid. Med. Cell. Longev. [Epub ahead of print] Application: Human, cell lysates. Breazeale S et al. (2022) Symptom cluster profiles following traumatic orthopaedic injuries Injury. [Epub ahead of print] Application: Human, serum. Jaehne EJ et al. (2022) Behavioral phenotyping of a rat model of the BDNF Val66Met polymorphism reveals selective impairment of fear memory Transl Psychiatry. 12(1):93 Application: Rat, acid extracted tissue lysates. Wang RY et al. (2022) The SDF1-CXCR4 Axis Is Involved in the Hyperbaric Oxygen Therapy-Mediated Neuronal Cells Migration in Transient Brain Ischemic Rats. Int J Mol Sci. 23, 1780 Application: Rat, brain tissue homogenate and serum. Hugues N et al. (2022) Time-Dependent Cortical Plasticity during Moderate-Intensity Continuous Training Versus High-Intensity Interval Training in Rats. Cereb Cortex. [Epub ahead of print] Application: Rat, cortical tissue homogenate. Cefis M et al. (2021) Endothelial cells are an important source of BDNF in rat skeletal muscle. Sci Rep. 12(1):311 Application: Rat, skeletal muscle tissue homogenate. Becker AM et al. (2021) Acute Effects of Psilocybin After Escitalopram or Placebo Pretreatment in a Randomized, Double-Blind, Placebo-Controlled, Crossover Study in Healthy Subjects. Clin Pharmacol Ther. [Epub ahead of print] Application: Human, plasma. Berbenetz N et al. (2021) The Relationship Between Brain Derived Neurotrophic Factor (BDNF) and Symptoms Following Catheter Ablation for Paroxysmal Atrial Fibrillation (AF)- NEURO-AF Study. Circulation. [Epub ahead of print] Application: Human, serum. Walsh JJ et al. (2021) Short-term ketone monoester supplementation improves cerebral blood flow and cognition in obesity: A randomized cross-over trial. J Physiol. [Epub ahead of print] Application: Human, serum, platelet-poor plasma. Boukhatem I et al. (2021) The brain-derived neurotrophic factor prompts platelet aggregation and secretion. Blood Adv. 5(18):3568-3580 Application: Human, plasma. Yi X et al. (2021) Serum mBDNF and ProBDNF Expression Levels as Diagnosis Clue for Early Stage Parkinson's Disease. Front Neurol. 12:680765 Application: Human, serum. Inoue T et al. (2021) Ipsilateral BDNF mRNA expression in the motor cortex positively correlates with motor function of the affected forelimb after intracerebral hemorrhage. Brain Res. [Epub ahead of print] Application: Rat, brain homogenate. Shoshina II et al. (2021) Visual processing and BDNF levels in first-episode schizophrenia. Psychiatry Res. [Epub ahead of print] Application: Human, serum. Cappoli N et al. (2021) Effects of remifentanil on human C20 microglial pro-inflammatory activation. Eur Rev Med Pharmacol Sci. 25(16):5268-5274 Application: Human, cell culture. March B et al. (2021) ELISA-based quantification of neurotrophic growth factors in urine from prostate cancer patients. FASEB Bioadv. [Epub ahead of print] Application: Human, urine. Mori Y et al. (2021) Serum BDNF as a Potential Biomarker of Alzheimer's Disease: Verification Through Assessment of Serum, Cerebrospinal Fluid, and Medial Temporal Lobe Atrophy. Front Neurol. 12:653267 Application: Human, serum. Seno S et al. (2021) Effects of Selective Serotonin Reuptake Inhibitors on Depression-Like Behavior in a Laser-Induced Shock Wave Model. Front Neurol. 12:602038 Application: Mouse, hippocampal homogenates. Medeiros GC et al. (2021) Treatment of depression with ketamine does not change plasma levels of brain-derived neurotrophic factor or vascular endothelial growth factor. J Affect Disord. 280(Pt A):136-139 Application: Human, plasma. Dorandish S et al. (2021) Differences in the Relative Abundance of ProBDNF and Mature BDNF in A549 and H1299 Human Lung Cancer Cell Media. Int J Mol Sci. 22(13):7059 Application: Human, culture supernatant. Yap NY et al. (2021) Relationship between cytokines and brain-derived neurotrophic factor (BDNF) in trajectories of cancer-related cognitive impairment. Cytokine. [Epub ahead of print] Application: Human, plasma. Wang L et al. (2021) The mediating effect of brain-derived neurotrophic factor levels on childhood trauma and psychiatric symptoms in patients with first-episode schizophrenia. Aust N Z J Psychiatry. [Epub ahead of print] Application: Human. Mallik SB et al. (2021) Remedial effects of caffeine against depressive-like behaviour in mice by modulation of neuroinflammation and BDNF. Nutr Neurosci. [Epub ahead of print] Application: Mouse. Nomura S et al. (2021) Effects of a Tea Cultivar "MK5601" on Behaviors and Hippocampal Neurotrophin-3 Levels in Middle-Aged Mice. J Nutr Sci Vitaminol (Tokyo). 67(3):170-179 Application: Mouse, hippocampal RIPA homogenates. Caruso GI et al. (2021) SIRT1-Dependent Upregulation of BDNF in Human Microglia Challenged with A?: An Early but Transient Response Rescued by Melatonin. Biomedicines. 9(5):466 Application: Human, cell culture supernatant. Miller KM et al. (2021) Striatal Afferent BDNF Is Disrupted by Synucleinopathy and Partially Restored by STN DBS. J Neurosci. 41(9):2039-52 Application: Rat, tissue homogenates (RIPA). Vickneson K et al. (2021) Cold-induced dishabituation in rodents exposed to recurrent hypoglycaemia. Diabetologia. 64(6):1436-41 Application: Rat, blood. Li P et al. (2021) Intermediation of perceived stress between early trauma and plasma M/P ratio levels in obsessive-compulsive disorder patients. J Affect Disord. 285:105-111 Application: Human, plasma. Lai NS et al. (2021) Increased Serum Levels of Brain-Derived Neurotrophic Factor Contribute to Inflammatory Responses in Patients with Rheumatoid Arthritis. Int. J. Mol. Sci. 22(4):1841 Application: Human, serum and culture supernatants. Pan S et al. (2021) The microRNA-195 - BDNF pathway and cognitive deficits in schizophrenia patients with minimal antipsychotic medication exposure. Transl Psychiatry. 11(1):117 Application: Human, plasma. Miyamoto T et al. (2021) Effect of pedaling cadence on serum levels of brain-derived neurotrophic factor during ergometric exercise in healthy adults. Sport Sci Health. Application: Human, serum. Normann AJ (2020) The Effect of Light Therapy and Acute Aerobic Exercise on Serum Brain Derived Neurotrophic Factor in Older Adults. MSc Thesis. Application: Human, serum. Holze F et al. (2020) Acute dose-dependent effects of lysergic acid diethylamide in a double-blind placebo-controlled study in healthy subjects. Neuropsychopharmacology. [Epub ahead of print]. Application: Human, plasma. Hasler G et al. (2020) The Association Between Adolescent Residential Mobility and Adult Social Anxiety, BDNF and Amygdala-Orbitofrontal Functional Connectivity in Young Adults With Higher Education. Front. Psychiatry. Application: Human, serum. Wallace AW (2020) The Impact of Six Weeks of Intermittent Fasting, With and Without Aerobic Exercise, on Serum BDNF in Young Adult Males. MSc Thesis. Application: Human, serum. Walsh JJ et al. (2020) The Effect of Exogenous Ketone Monoester Ingestion on Plasma BDNF During an Oral Glucose Tolerance Test. Front Physiol. 11:1094. Application: Human, plasma. Meade GM et al. (2020) A Model of Negative Emotional Contagion Between Male-Female Rat Dyads: Effects of Voluntary Exercise on Stress-Induced Behavior and BDNF-TrkB Signaling. Physiol Behav. 113286 Application: Rat, serum. Hutten NRPW et al. (2020) Low Doses of LSD Acutely Increase BDNF Blood Plasma Levels in Healthy Volunteers. ACS Pharmacol. Transl. Sci. Application: Human, plasma. Barbosa AC et al. (2020) Assessment of BDNF serum levels as a diagnostic marker in children with autism spectrum disorder. Sci Rep. 10(1):17348. Application: Human, serum. Okamura M et al. (2020) Low-Level Inhibition of GABAergic Synapses Enhances Gene Expressions Crucial for Neuronal Plasticity in the Hippocampus After Ischemic Stroke. J Stroke Cerebrovasc Dis. 29(12):105316. Application: Rat, hippocampus homogenate. Payne AJ et al. (2020) The Effects of Alcohol on BDNF and CD5 Dependent Pathways. PhD Thesis. Application: Mouse, RIPA tissue homogenate. Nishiyama M et al. (2020) Homostachydrine is a Xenobiotic Substrate of OCTN1/SLC22A4 and Potentially Sensitizes Pentylenetetrazole-Induced Seizures in Mice. Neurochem Res. [Epub ahead of print]. Application: Mouse, acid-extracted hippocampal homogenate. Lorinczova HT et al. (2020) Co-Administration of Iron and a Bioavailable Curcumin Supplement Increases Serum BDNF Levels in Healthy Adults. Antioxidants (Basel). 9(8):E645. Application: Human serum. Yap NY F et al. (2020) Associations of plasma brain-derived neurotrophic factor (BDNF) and Val66Met polymorphism (rs6265) with long-term cancer-related cognitive impairment in survivors of breast cancer. Breast Cancer Res Treat. [Epub ahead of print]. Application: Human plasma. Vasilopoulou F et al. (2020) Amelioration of BPSD-Like Phenotype and Cognitive Decline in SAMP8 Mice Model Accompanied by Molecular Changes After Treatment With I 2-Imidazoline Receptor Ligand MCR5. Pharmaceutics. 12(5):E475. Application: Mouse hippocampus RIPA-homogenates. Mueller ST et al. (2020) Negative Association Between Left Prefrontal GABA Concentration and BDNF Serum Concentration in Young Adults. Heliyon. 6(5):e04025. Application: Human serum. Chen LF et al. (2020) The NMDA receptor subunit GluN3A regulates synaptic activity-induced and myocyte enhancer factor 2C (MEF2C)-dependent transcription. J Biol Chem. [Epub ahead of print]. Application: Rat neuronal cell lysate, acid-extracted. Companys-Alemany J et al. (2020) A Novel NMDA Receptor Antagonist Protects against Cognitive Decline Presented by Senescent Mice. Pharmaceutics. 12(3), 284. Application: Mouse hippocampal homogenates. Furukawa Y et al. (2020) Citrus Auraptene Induces Expression of Brain-Derived Neurotrophic Factor in Neuro2a Cells. Molecules. 25(5). Application: Mouse Neuro2a culture supernatant. Holze F et al. (2019) Distinct acute effects of LSD, MDMA, and D-amphetamine in healthy subjects. Neuropsychopharmacology. [Epub ahead of print]. Application: Human plasma. Sumiyoshi E et al. (2019) Sub-Chronic Consumption of Dark Chocolate Enhances Cognitive Function and Releases Nerve Growth Factors: A Parallel-Group Randomized Trial. Nutrients. 11(11). Application: Human plasma. Sartori A et al. (2019) Interferon-beta, but not Glatiramer Acetate treatment induces gender-specific increase in BDNF serum levels in relapsing-remitting multiple sclerosis female patients. Res J Neuro N Disord. 1:5-18. Application: Human serum. Please refer to our Technical Note #5 for validation experiments disproving the author's claim that the Biosensis Mature BDNF Rapid TM ELISA quantifies total BDNF! Vanicek T et al. (2019) Repetitive Enhancement of Serum BDNF Subsequent to Continuation ECT. Acta Psychiatr Scand. [Epub ahead of print]. Application: Human serum. Gejl AK et al. (2019) Associations between serum and plasma brain-derived neurotrophic factor and influence of storage time and centrifugation strategy. Sci Rep. 9(1):9655. Application: Human serum and EDTA-plasma. Li X et al. (2019) Exercise enhances the expression of brain-derived neurotrophic factor in the hippocampus accompanied by epigenetic alterations in senescence-accelerated mice prone 8. Neurosci Lett. [Epub ahead of print]. Application: Mouse brain homogenates. Yang CY et al. (2019) Panax notoginsenoside Rb1 Restores the Neurotrophic Imbalance Following Photothrombotic Stroke in Rats. Neurotox Res. [Epub ahead of print]. Application: Rat brain homogenates. Du Y et al. (2019) Genome-Wide, Integrative Analysis Implicates Exosome-Derived MicroRNA Dysregulation in Schizophrenia. Schizophr Bull. [Epub ahead of print]. Application: Human serum. Vanicek T et al. (2019) Acute and Subsequent Continuation Electroconvulsive Therapy Elevates Serum BDNF Levels in Patients with Major Depression. Brain Stimul. [In press]. Application: Human serum, plasma. Duart-Castells L et al. (2019) 7,8-dihydroxyflavone blocks the development of behavioral sensitization to MDPV, but not to cocaine: differential role of the BDNF-TrkB pathway. Biochem Pharmacol. [Epub ahead of print]. Application: Mouse RIPA tissue homogenates.
Typical limit of detection (LOD) for BDNF is less than 2 pg/mL, determined as 150% of the blank value.
Cross Reactivity:
No cross-reactivity is observed for nerve growth factor (NGF), neurotrophin-3 (NT-3), NT-4/5, glial cell line-derived neurotrophic factor (GDNF) and vascular endothelial growth factor (VEGF165) tested at 25 ng/mL in assay buffer. The reactivity of full-length proBDNF (0.125 ng/mL - 5 ng/mL) was determined in six independent assays using proBDNF proteins from four different sources (mammalian and bacterial, wild-type and mutated). The average cross-reactivity of proBDNF was found to be 5.3% +/- 0.5% in weight (w/v) concentration, or 12.1% +/- 1.2% in molar concentration (mean +/- SEM). Additional proBDNF cross-reactivity experiments were conducted as summarized in our <a class="newA" target="_blank" href="https://www.biosensis.com/documents/enhancedinfo/Technical-Note-5-Mature-BDNF-Isoform-Detection-and-Quantification-by-ELISA.pdf">Technical Note #5</a>.
BDNF belongs to the neurotrophin family and regulates the survival and differentiation of neurons during development. The alterations in BDNF expression induced by various kinds of brain insult including stress, ischemia, seizure activity and hypoglycemia, may contribute to some pathologies such as depression, epilepsy, Alzheimer's, and Parkinson's disease. Microglia release BDNF that may contribute to neuroinflammation and neuropathic pain. FUNCTION: Promotes the survival of neuronal populations that are all located either in the central nervous system or directly connected to it. Major regulator of synaptic transmission and plasticity at adult synapses in many regions of the CNS. The versatility of BDNF is emphasized by its contribution to a range of adaptive neuronal responses including long-term potentiation (LTP), long-term depression (LTD), certain forms of short-term synaptic plasticity, as well as homeostatic regulation of intrinsic neuronal excitability. SUBUNIT: Monomers and homodimers. Binds to NTRK2/TRKB. SUBCELLULAR LOCATION: Secreted protein. Post Translation Modification (PTM): The propeptide is N-glycosylated and glycosulfated. PTM: Converted into mature BDNF by plasmin (PLG) (By similarity). DISEASE: Defects in BDNF are a cause of congenital central hypoventilation syndrome (CCHS); also known as congenital failure of autonomic control or Ondine curse. CCHS is a rare disorder characterized by abnormal control of respiration in the absence of neuromuscular or lung disease, or an identifiable brain stem lesion. A deficiency in autonomic control of respiration results in inadequate or negligible ventilatory and arousal responses to hypercapnia and hypoxemia. CCHS is frequently complicated with neurocristopathies such as Hirschsprung disease that occurs in about 16% of CCHS cases. SIMILARITY: Belongs to the NGF-beta family.
Product Type:
Antibody
Antibody Type:
Polyclonal
Format:
Lyophilized
Host Animal:
Rabbit
Species Reactivity:
Human,Mouse,Other Mammals (Predicted),Rat
Immunogen:
Recombinant human BDNF
Applications:
IHC-Frozen,Neutralize,WB
Antibody Isotype:
Mixed
Application Details:
IHC, ELISA (1 site), Western Blot, inhibition of biological activity in vitro/in vivo. Recommended to be used at a dilution of 1:1000 for immunohistochemistry, ELISA and Western blot. 1:10 to 1:50 for inhibition of biological activity in vitro. Use neat for in vivo studies at 5-10 uL/g body weight. This antiserum stains cell bodies and some nerve terminals in the dorsal horn of the rat spinal cord, however, does not stain finest nerve terminals. <br><br>Western Blotting: Antibody does detect BDNF forms in tissue lysates but there are multiple bands present, many of which are uncharacterized. The antibody detects 14 kDa (mature BDNF), 32 kDa (proBDNF) and a 18 kDa BDNF isoform (see blot examples). In cell lysates, only 18 kDa and 32 kDa BDNF are detected. The reason for these differences has not been characterized. Alternative antibodies for Western Blotting are: R-017-500 (IgG-purified form of R-088-100 for tissue homogenate analysis); R-1707-100 (cell lysates and tissue homogenates), R-083-100/R-066-500 (cell lysates, tissue homogenates and human serum); M-1744-50/100 (human serum and tissue homogenates).<br><br>Biosensis recommends optimal dilutions/concentrations should be determined by the end user.
L.Y. Chen et al (2010) Learning induces neurotrophin signaling at hippocampal synapses Proc Natl Acad Sci USA. Apr 13;107(15):7030-5 Soderquist R.G. et al (2009) PEGylation of brain-derived neurotrophic factor for preserved biological activity and enhanced spinal cord distribution J Biomed Mater Res A. 2009 Dec;91(3):719-29. Tang S. et al (2010) Immunolocalization of pro- and mature-brain derived neurotrophic factor (BDNF) and receptor TrkB in the human brainstem and hippocampus. Brain Res. Oct 1;1354:1-14. Sadri-Vakili G. et al (2010) Cocaine-induced chromatin remodeling increases brain-derived neurotrophic factor transcription in the rat medial prefrontal cortex, which alters the reinforcing efficacy of cocaine. J Neurosci. 2010 Sep 1;30(35):11735-44. Maldonado M.A. et al (2008) Motor skill training, but not voluntary exercise, improves skilled reaching after unilateral ischemic lesions of the sensorimotor cortex in rats. Neurorehabil Neural Repair. 2008 May-Jun;22(3):250-61. Nakajima H. et al (2007) Rescue of rat anterior horn neurons after spinal cord injury by retrograde transfection of adenovirus vector carrying brain-derived neurotrophic factor gene. J Neurotrauma. 2007 Apr;24(4):703-12. Zhang H.T. et al (2007) Immunohistochemical distribution of NGF, BDNF, NT-3, and NT-4 in adult rhesus monkey brains. J Histochem Cytochem. 2007 Jan;55(1):1-19. Carrasco M.A. et al (2007) Regulation of glycinergic and GABAergic synaptogenesis by brain-derived neurotrophic factor in developing spinal neurons. Neuroscience. 2007 Mar 16;145(2):484-94. Zhang H.T. et al (2008) Temporal changes in the level of neurotrophins in the spinal cord and associated precentral gyrus following spinal hemisection in adult Rhesus monkeys J Chem Neuroanat. 2008 Dec;36(3-4):138-43.
Specificity:
Less than 0.1% cross-reactivity against NGF, NT3 and NT4/5 by dot blot. Known to react with BDNF from rat, mouse and human. Expected to react with BDNF from other species due to amino acid sequence homology.
Storage:
After reconstitution keep aliquots at -20°C for a higher stability, and at 2-8°C with an appropriate antibacterial agent. Avoid repetitive freeze/thaw cycles. Glycerol (1:1) may be added for an additional stability.
ClpB1 Chaperone protein ClpB1 is involved in acquired thermotolerance in cyanobacteria and belongs to molecular chaperones. Contributes to cold acclimation process in cyanobacteria.
Product Type:
Antibody
Antibody Type:
Polyclonal
Format:
Lyophilized
Storage Temp:
Store lyophilized/reconstituted at -20 °C; once reconstituted make aliquots to avoid repeated freeze-thaw cycles. Please remember to spin the tubes briefly prior to opening them to avoid any losses that might occur from material adhering to the cap or sides of the tube.
Host Animal:
Rabbit
Species Reactivity:
Synechococcus sp. strain PCC 7942
Expected Species:
Cyanobacteria Species of your interest not listed? Contact us
Immunogen:
C-terminal 163 amino acid sequence of the Synechococcus sp. strain PCC 7942 ClpB1 protein, fused to the MBP (maltose binding protein). UniProt: P53533
For western blot detection image refer to the article below
Application Details:
1 : 1000 (WB)
Purity:
Serum
Reconstitution:
For reconstitution add 50 l of sterile water
Molecular Weight:
79 | 93 kDa
Not reactive in:
No confirmed exceptions from predicted reactivity are currently known
Selected references:
Porankiewicz and Clarke (1997). Induction of the heat shock protein ClpB affects cold acclimation in the cyanobacterium Synechococcus sp. strain PCC 7942. J Bacteriol. 1997 Aug;179(16):5111-7.
DNA methylation is a type of chemical modification of DNA that can be inherited and subsequently removed without changing the original DNA sequence. Therefore it is part of the epigenetic code and is also the most well characterized epigenetic mechanism. DNA methylation results in addition of a methyl group to DNA — for example, to the number 5 carbon of the cytosine pyrimidine ring — which involves reduction in gene expression. In adult somatic tissues, DNA methylation typically occurs in a CpG dinucleotide context; non-CpG methylation is prevalent in embryonic stem cells.
Product Type:
Antibody
Antibody Type:
Monoclonal
Format:
Liquid
Storage Temp:
Store at -20 °C; make aliquots to avoid repeated freeze-thaw cycles. Please remember to spin the tubes briefly prior to opening them to avoid any losses that might occur from material adhering to the cap or sides of the tube.
Purified IgM in PBS. Contains 50 % glycerol, filter sterilized.
Selected references:
Sharif et al. (2007) The SRA protein Np95 mediates epigenetic inheritance by recruiting Dnmt1 to methylated DNA. Nature. 2007 Dec 6;450(7171):908-12. doi: 10.1038/nature06397. Epub 2007 Nov 11. PMID: 17994007.Nishiyama et al. (2002) A chloroplast-resident DNA methyltransferase is responsible for hypermethylation of chloroplast genes in Chlamydomonas maternal gametes. Proc Natl Acad Sci U S A. 2002 Apr 30;99(9):5925-30. doi: 10.1073/pnas.082120199. PMID: 11983892; PMCID: PMC122878.Sano, Imokawa & Sager (1988) Detection of heavy methylation in human repetitive DNA subsets by a monoclonal antibody against 5-methylcytosine. Biochim Biophys Acta. 1988 Nov 10;951(1):157-65. doi: 10.1016/0167-4781(88)90036-x. PMID: 2847796.Sano, Royer & Sager (1980) Identification of 5-methylcytosine in DNA fragments immobilized on nitrocellulose paper. Proc Natl Acad Sci U S A. 1980 Jun;77(6):3581-5. doi: 10.1073/pnas.77.6.3581. PMID: 6251470; PMCID: PMC349661.
RAF2 (Rubisco accumulation factor 2) is a member if PCD family and a chloroplastsic protein which cotains pterin carbinolamine dehydratase domain. Protein is involved in tetrahydrobiopterin biosynthetic process. Alternative names: AT5g51110/MWD22_5, PCD/DCoH-like protein 1, Transcriptional coactivator/pterin dehydrataseImported.
Product Type:
Antibody
Antibody Type:
Polyclonal
Format:
Lyophilized
Storage Temp:
Store lyophilized/reconstituted at -20 °C; once reconstituted make aliquots to avoid repeated freeze-thaw cycles. Please remember to spin the tubes briefly prior to opening them to avoid any losses that might occur from material adhering to the cap or sides of the tube.
Host Animal:
Rabbit
Species Reactivity:
Arabidopsis thaliana
Expected Species:
Arabidopsis alpina, Brassica napus, Capsella rubella, Glycine soja, Gpssypium aroboretum, Medicago trunculata, Morus notabilis, Ricinus communis, Theobroma cacao, Vitis vinifera Species of your interest not listed? Contact us
Immunogen:
Recombinant, RAF2 protein choisen from Arabidopsis thaliana protein sequence, UniProt:Q9LU63, TAIR: AT5G51110
No confirmed exceptions from predicted reactivity are currently known
Selected references:
Fristedt et al. (2018). RAF2 is a RuBisCO assembly factor in Arabidopsis thaliana. Plant J. 2018 Apr;94(1):146-156. doi: 10.1111/tpj.13849.Aigner et al. (2017). Plant RuBisCo assembly in E. coli with five chloroplast chaperones including BSD2. Science. 2017 Dec 8;358(6368):1272-1278. doi: 10.1126/science.aap9221.
SAE1a (SUMO-activating enzyme subunit 1A) is the dimeric enzyme acts as an E1 ligase for SUMO1 and SUMO2. It mediates ATP-dependent activation of SUMO proteins and formation of a thioester with a conserved cysteine residue on SAE2. Functionally redundant with its paralog SAE1B. Alternative names: SUMO-activating enzyme subunit 1-1, Ubiquitin-like 1-activating enzyme E1A.
Product Type:
Antibody
Antibody Type:
Polyclonal
Format:
Lyophilized
Storage Temp:
Store lyophilized/reconstituted at -20 °C (short tem, months) or at -80°C(long term, years) ; once reconstituted make aliquots to avoid repeated freeze-thaw cycles. Please remember to spin the tubes briefly prior to opening them to avoid any losses that might occur from material adhering to the cap or sides of the tube.
Host Animal:
Rabbit
Species Reactivity:
Arabidopsis thaliana, Zea mays
Expected Species:
Cajanus cajan, Cicer arietinum, Noccaea caerulescens, Parasponia andersonii, Trema orientale Species of your interest not listed? Contact us
Immunogen:
Recombinant, full length SAE1a of Arabidopsis thaliana, UniProt:Q8VY78-1, TAIR: At4g24940, overexpressed in E.coli
No confirmed exceptions from predicted reactivity are currently known
Selected references:
Saracco et al. (2007). Genetic analysis of SUMOylation in Arabidopsis: conjugation of SUMO1 and SUMO2 to nuclear proteins is essential. Plant Physiol. 2007 Sep;145(1):119-34.
SCE1 (SUMO-conjugating enzyme SCE1) is a SUMO-conjugating enzyme which acts by accepting the SUMO proteins from the E1 SUMO-activating heterodimer SAE1/SAE2 and catalyzes its covalent attachment to other proteins with the E3 SUMO ligases SIZ1 and MMS21. Alternative names: Protein EMBRYO DEFECTIVE 1637, Protein hus5 homolog SUMO-conjugating enzyme 1, AtSCE1.
Product Type:
Antibody
Antibody Type:
Polyclonal
Format:
Lyophilized
Storage Temp:
Store lyophilized/reconstituted at -20 °C (short tem, months) or at -80°C(long term, years) ; once reconstituted make aliquots to avoid repeated freeze-thaw cycles. Please remember to spin the tubes briefly prior to opening them to avoid any losses that might occur from material adhering to the cap or sides of the tube.
Host Animal:
Rabbit
Species Reactivity:
Arabidopsis thaliana, Zea mays
Expected Species:
Cajanus cajan, Cicer arietinum , Corchorus capsularis, Gossypium hirsutum, Litchi chinensis, Medicago truncatula, Morus notabilis, Nelumbo nucifera, Nicotiana benthamiana, Nicotiana tabacum, Nicotiana sylvestris, Noccaea caerulescens, Phoenix dactylifera, Populus canadensis, Prunus yedoensis , Theobroma cacao, Triticum urartu , Zea mays, Zostera marina, Vigna radiataSpecies of your interest not listed? Contact us
Immunogen:
Full length, recombinant SCE1 of Arabidopsis thaliana, UniProt: Q42551-1, TAIR: At3g57870 overexpressed in E.coli
No confirmed exceptions from predicted reactivity are currently known
Selected references:
Saracco et al. (2007). Genetic analysis of SUMOylation in Arabidopsis: conjugation of SUMO1 and SUMO2 to nuclear proteins is essential. Plant Physiol. 2007 Sep;145(1):119-34.
UniProt number:
Q42551-1
TAIR number:
At3g57870
Research area:
Arabidopsis thaliana antibodies
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