Anti-Cav3.2 Ca2+ Channel Antibody (N55/10)

Our Anti-Cav3.2 Ca2+ channel mouse monoclonal primary antibody from NeuroMab is produced in-house from hybridoma clone N55/10. It is KO validated, detects human and mouse Cav3.2 Ca2+ channel, and is purified by Protein A chromatography. It is great for use in IHC, ICC, IP, WB.



SKU: 75-095

Volume: 100 µL
1-2 business days
Price:
Sale price$319.00

Product Specific References for Applications and Species

Immunocytochemistry: Mouse
PMID Dilution Publication
25825486not listedCurran, J., et al. 2015. Eps15 Homology Domain-containing Protein 3 Regulates Cardiac T-type Ca2+ Channel Targeting and Function in the Atria.. The Journal of Biological Chemistry, 12210-12221.
Immunohistochemitry: Mouse
PMID Dilution Publication
338639951:500Shen, M., et al. 2021. FXR1 regulation of parvalbumin interneurons in the prefrontal cortex is critical for schizophrenia-like behaviors. Molecular Psychiatry, 6845-6867.
27616982not listedAguado, C., et al. 2016. Ontogenic Changes and Differential Localization of T-type Ca(2+) Channel Subunits Cav3.1 and Cav3.2 in Mouse Hippocampus and Cerebellum. Frontiers in Neuroanatomy, 83.
273537651:50Liu, D.D., et al. 2016. Growth differentiation factor-15 promotes glutamate release in medial prefrontal cortex of mice through upregulation of T-type calcium channels. Scientific Reports, 28653.
25578363not listedMartinello, K., et al. 2015. Cholinergic afferent stimulation induces axonal function plasticity in adult hippocampal granule cells.. Neuron, 346-363.
21358644not listedHuang, Z., et al. 2011. Presynaptic HCN1 channels regulate Cav3.2 activity and neurotransmission at select cortical synapses. Nature Neuroscience, 478-486.
Immunohistochemitry: Rat
PMID Dilution Publication
25578363not listedMartinello, K., et al. 2015. Cholinergic afferent stimulation induces axonal function plasticity in adult hippocampal granule cells.. Neuron, 346-363.
Immunohistochemitry: Tree Shrew
PMID Dilution Publication
221142951:200Wei, H., et al. 2011. Thalamic burst firing propensity: a comparison of the dorsal lateral geniculate and pulvinar nuclei in the tree shrew.. Journal of Neuroscience, 17287-17299.
Western Blot: Human
PMID Dilution Publication
287429850.5ug/mlCain, S.M., et al. 2017. GABAB receptors suppress burst-firing in reticular thalamic neurons. Channels, 574-586.
243622521:500Dziegielewska, B., et al. 2014. T-type Ca2+ channel inhibition induces p53-dependent cell growth arrest and apoptosis through activation of p38-MAPK in colon cancer cells. Molecular Cancer Research, 348-358.
21362533not listedFeiner, E.C., et al. 2010. Left ventricular dysfunction in murine models of heart failure and in failing human heart is associated with a selective decrease in the expression of caveolin-3.. Journal of Cardiac Failure, 253-263.
Western Blot: Mouse
PMID Dilution Publication
31910261not listedLee, M., et al. 2020. Ecm29-mediated proteasomal distribution modulates excitatory GABA responses in the developing brain. Journal of Cell Biology, e201903033.
273537651:200Liu, D.D., et al. 2016. Growth differentiation factor-15 promotes glutamate release in medial prefrontal cortex of mice through upregulation of T-type calcium channels. Scientific Reports, 28653.
25825486not listedCurran, J., et al. 2015. Eps15 Homology Domain-containing Protein 3 Regulates Cardiac T-type Ca2+ Channel Targeting and Function in the Atria.. The Journal of Biological Chemistry, 12210-12221.
213586441:250Huang, Z., et al. 2011. Presynaptic HCN1 channels regulate Cav3.2 activity and neurotransmission at select cortical synapses. Nature Neuroscience, 478-486.
Western Blot: Tree Shrew
PMID Dilution Publication
221142951:1000Wei, H., et al. 2011. Thalamic burst firing propensity: a comparison of the dorsal lateral geniculate and pulvinar nuclei in the tree shrew.. Journal of Neuroscience, 17287-17299.
Additional Publications: Unspecified
PMID Publication
23287412Valerie, N.C., et al. 2013. Inhibition of T-type calcium channels disrupts Akt signaling and promotes apoptosis in glioblastoma cells.. Biochem Pharmacol., 888-897.

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