γ-氨基丁酸(gABA)檢測試劑盒DIY材料(酶聯免疫吸附試驗法)
ELISA Kit DIY Materials for Gamma-Aminobutyric Acid (gABA)
4-Aminobutyric Acid
- 編號KSA900Ge11
- 物種Pan-species (General,通用) 相同的名稱,不同的物種。
- 試劑內容 包被抗體、生物素標記的競爭物、標準品、HRP標記的鏈霉親和素、TMB底物、96孔板
- 可檢測樣本serum, plasma, tissue homogenates, cell lysates, cell culture supernates and other biological fluids
- 可適用原理競爭抑制酶聯免疫吸附試驗法測抗原
- 可檢測范圍24.69-2000pg/mL
- 可適靈敏度9.27pg/mL
- 應用Main materials for "Do It (ELISA Kit) Yourself".
- 下載 英文說明書 中文說明書
- 規格 96T*596T*10 96T*20 96T*50 96T*100
- 價格 ¥ 7268 ¥ 12114 ¥ 21805 ¥ 42399 ¥ 72684
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特異性
試劑盒中的抗體對γ-氨基丁酸(gABA)具有高靈敏度和高特異性,經檢測與其它相似物質無明顯交叉反應。
用法
1.用100μL每孔的工作濃度的包被抗體包被96孔板,4度孵育過夜或者37度孵育2小時;
2.洗板1次;
3.用200μL每孔的工作濃度的封閉液,37度孵育1.5小時;
4.洗板1次。酶標板即可用于ELISA實驗,后續使用方法與ELISA同。
儲存
抗體,標準品和HRP標記的鏈霉親和素在-20度保存,TMB需在4度保存,96孔板在室溫保存。所有組分保質期為1年,試劑一旦開封,在4度保存時間為1個月。
配套試劑
增值服務
相關產品
編號 | 適用物種:Pan-species (General,通用) | 應用(僅供研究使用,不用于臨床診斷!) |
CPA900Ge11 | γ-氨基丁酸(gABA)牛血清白蛋白偶聯物 | Immunogen; SDS-PAGE; WB. |
CPA900Ge21 | γ-氨基丁酸(gABA)卵白蛋白偶聯物 | Immunogen; SDS-PAGE; WB. |
CPA900Ge41 | γ-氨基丁酸(gABA)人血清白蛋白偶聯物 | Immunogen; SDS-PAGE; WB. |
PAA900Ge01 | γ-氨基丁酸(gABA)多克隆抗體 | ELISA, CLIA. / IHC-Fr, ICC, IP (predicted). |
PAA900Ge02 | γ-氨基丁酸(gABA)多克隆抗體 | ELISA, CLIA. / IHC-Fr, ICC, IP (predicted). |
LAA900Ge71 | γ-氨基丁酸(gABA)多克隆抗體(生物素標記) | WB; IHC; ICC. |
LAA900Ge81 | γ-氨基丁酸(gABA)多克隆抗體(異硫氰酸熒光素標記) | WB; IHC; ICC; IF. |
CEA900Ge | γ-氨基丁酸(gABA)檢測試劑盒(酶聯免疫吸附試驗法) | Enzyme-linked immunosorbent assay for Antigen Detection. |
AEA900Ge | 抗γ-氨基丁酸抗體(Anti-gABA)檢測試劑盒(酶聯免疫吸附試驗法) | Enzyme-linked immunosorbent assay for Antibody Detection. |
LMA900Ge | γ-氨基丁酸(gABA)等多因子檢測試劑盒(流式熒光發光法) | FLIA Kit for Antigen Detection. |
KSA900Ge11 | γ-氨基丁酸(gABA)檢測試劑盒DIY材料(酶聯免疫吸附試驗法) | Main materials for "Do It (ELISA Kit) Yourself". |
參考文獻
雜志 | 參考文獻 |
Toxicology and Industrial Health | Effect of sub-acute exposure to acrylamide on GABAergic neurons and astrocytes in weaning rat cerebellum [PubMed: 21444355] |
Neurosci Lett | Expression of the neuron-specific potassium chloride cotransporter KCC2 in adult rat cochlear. [PubMed: 18577424] |
Biomark Insights | Decreased Epidermal Growth Factor (EGF) Associated with HMGB1 and Increased Hyperactivity in Children with Autism [PubMed: PMC3623607] |
Biomarker insights | Correlation Between Hepatocyte Growth Factor (HGF) and Gamma-Aminobutyric Acid (GABA) Plasma Levels in Autistic Children [PubMed: PMC3694825] |
Biomarker insights | Decreased Hepatocyte Growth Factor (HGF) and Gamma Aminobutyric Acid (GABA) in Individuals with Obsessive-Compulsive Disorder (OCD) [PubMed: PMC3762604] |
Scientific Reports | Renal Denervation Improves the Baroreflex and GABA System in Chronic Kidney Disease-induced Hypertension [pubmed:27917928] |
Journal of Neuroscience | Sex differences in the glutamate signaling pathway in juvenile rats [Pubmed:28861894] |
Scientific Reports | A novel homozygous mutation in GAD1 gene described in a schizophrenic patient impairs activity and dimerization of GAD67 enzyme [Pubmed: 30341396] |
Neurochemical?Research | Aucubin Alleviates Seizures Activity in Li-Pilocarpine-Induced Epileptic Mice: Involvement of Inhibition of Neuroinflammation and Regulation of Neurotransmission [Pubmed: 30666488] |
Neuroscience?Letters | Differentiation of human glioblastoma U87 cells into cholinergic neuron [Pubmed: 30928478] |
Neurochemical Journal | Glutamate Signaling Defects in Propionic Acid Orally Administered to Juvenile Rats as an Experimental Animal Model of Autism [] |
Effect of gamma radiation on combination therapy of certain antiepileptic drugs in rats. [] | |
Experimental and Therapeutic Medicine | Antiepileptic effects of exogenous β?hydroxybutyrate on kainic acid?induced epilepsy [Pubmed: 33101467] |
Exp Anim | Dementia model mice exhibited improvements of neuropsychiatric symptoms as well as cognitive dysfunction with neural cell transplantation [33828024] |
Neurogenetics | Age-dependent neurological phenotypes in a mouse model of PRRT2-related diseases [34101060] |
Sci Rep | Overexpression of wild-type human amyloid precursor protein alters GABAergic transmission [34475508] |
J Food Biochem | Adaptogenic potential of ginsenosides against domoic acid‐induced toxicity by regulating neuronal stress and kinate receptors: Ex vivo and in silico studies [Pubmed:35102569] |
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