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GAD1 antibody | antibody review based on formal publications

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This is a review about GAD1 antibodies, based on 10 published articles using GAD1 antibodies in western blot, immunohistochemistry, immunoprecipitation, immunocytochemistry, and other immunological technologies. It is aimed to help Labome/ExactAntigen visitors find the most suited GAD1 antibody.

Assay Designs/Stressgen    

Assay Designs/Stressgen GAD1 products
ih, wbStressGen GAD antibody was used in western blot and immunohistochemistry to report the presence of an autoantibody to glutamic acid decarboxylase (GAD65) in cln3-knockout mice serum. to the paper

Sigma-Aldrich    

Sigma-Aldrich GAD1 products
icSigma anti-Gad65/67 was used to perform immunocytochemistry in order to reveal that the cooperation of Bmi-1 and Foxg1 plays an important role in maintaining neural stem cell self-renewal in the forebrain. to the paper

Millipore    

Millipore GAD1 products
ihMillipore rabbit anit-GAD67 was used to perform immunohistochemistry in order to study the importance of Ascl1 in the embryonic mouse telencephalon as a downstream effector of Gsx gene function. to the paper
wbChemicon anti-GAD67 antibody was used in western blot to study the immunohistochemical localization of GAD67-expressing neurons and processes in the rat brainstem. to the paper
wbChemicon mouse monoclonal GAD67 antibody was used in western blot to study modulation of glutamatergic synaptic transmission in the carp retina by melatonin. to the paper
ihChemicon anti-GAD-67 antibody was used in immunohistochemistry to study the association of aging in the rat hippocampus with widespread reductions in the number of glutamate decarboxylase-67 positive interneurons in sections from rat. to the paper
ihChemicon anti-glutamic acid decarboxylase antibody was used in immunohistochemistry to study the relationship of sustained elevation of extracellular dopamine with motor dysfunction and selective degeneration of striatal GABAergic neurons in tissue sections from mice. to the paper

BD Biosciences    

BD Biosciences GAD1 products
icBD Biosciences 5 μg/ml mouse anti-GAD antibody was used in immunocytochemistry to study the roles of EphB receptor tyrosine kinases in dendritic spine development. to the paper
STRESSGEN BIOREAGENTS
wbStressgen Bioreagents mouse monoclonal anti-GAD-65/67 antibody was used to detect GAD in western blot in order to demonstrate that the MAPK/CREB cascade and the STAT-3 signaling pathway mediate H-IL-6-activated neurogenesis and gliogenesis respectively. to the paper

Affiniti    

Affiniti GAD1 products
ih, wbAffiniti Research monoclonal anti-GAD67 antibody was used in western blot and immunohistochemistry to study the expression of the vesicular inhibitory amino acid transporter in pancreatic islet cells. to the paper

Articles Reviewed

1:Omedul Islam et al. Interleukin-6 and neural stem cells: more than gliogenesis. 2009
This publication discusses LIFR, CREB, MAPK1, GAD1, SCG10, tyrosine hydroxylase, TUBA1B, PRKACA, NES, STAT3, NTRK1, p53, AKT1, TUBB3, IL6ST, MAP2, IL6R, SLC17A7, and glial fibrillary acidic protein. Reagent reviews based on this publication are available for LIFR, CREB, ERK, GAD, phospho-CREB, pERK, STMN2, TH, tubulin, PKA??-cat, nestin, STAT-3, phospho-STAT-3, TRKA, p53, phospho-TRKA, AKT, III-tubulin, phospho-AKT, gp130, MAP2, IL-6R, VGLUT1, and GFAP.
2:Bei Wang et al. Ascl1 is a required downstream effector of Gsx gene function in the embryonic mouse telencephalon. 2009
Reagent reviews based on this publication are available for ABC kit.
3:Christopher A Fasano et al. Bmi-1 cooperates with Foxg1 to maintain neural stem cell self-renewal in the forebrain. 2009
This publication discusses TUBB3, glial fibrillary acidic protein, SYN1, hCG_1776007, GAD1, and MAP2. Reagent reviews based on this publication are available for SuperScript III, tubulin III, GFAP, Synapsin, NeuN, ECL, Gad65/67, and Map2.
4:Hai Huang et al. Modulation by melatonin of glutamatergic synaptic transmission in the carp retina. 2005
This publication discusses MTNR1A. Reagent reviews based on this publication are available for MT1 receptor.
5:Angelina Y Fong et al. Immunohistochemical localization of GAD67-expressing neurons and processes in the rat brainstem: subregional distribution in the nucleus tractus solitarius. 2005
6:Dirk P Stanley et al. Aging in the rat hippocampus is associated with widespread reductions in the number of glutamate decarboxylase-67 positive interneurons but not interneuron degeneration. 2004
7:Michel Cyr et al. Sustained elevation of extracellular dopamine causes motor dysfunction and selective degeneration of striatal GABAergic neurons. 2003
8:Mark Henkemeyer et al. Multiple EphB receptor tyrosine kinases shape dendritic spines in the hippocampus. 2003
This publication discusses EPHB2, EPHB1, EPHB3, EFNB3, DLG4, GRIA2, GRIN2A, GAD1, and CALB1. Reagent reviews based on this publication are available for EphB2, EphB1, EphB3, ephrin-B, PSD-95, GluR2, NMDAR2A, GAD, and calbindin.
9:Subrata Chattopadhyay et al. An autoantibody inhibitory to glutamic acid decarboxylase in the neurodegenerative disorder Batten disease. 2002
10:Steven D Chessler et al. Expression of the vesicular inhibitory amino acid transporter in pancreatic islet cells: distribution of the transporter within rat islets. 2002


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