CaV3.2 T-Type Calcium Channels in Peripheral Sensory Neurons Are Important for Mibefradil-Induced Reversal of Hyperalgesia and Allodynia in Rats with Painful Diabetic Neuropathy
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Publisher
Public Library of Science (PLoS)
Subject
Multidisciplinary
Reference36 articles.
1. In-vivo silencing of the Cav3.2 T-type calcium channels in sensory neurons alleviates hyperalgesia in rats with streptozocin-induced diabetic neuropathy;RB Messinger;Pain,2009
2. Cell-specific alterations of T-type calcium current in painful diabetic neuropathy enhance excitability of sensory neurons;MM Jagodic;J Neurosci,2007
3. Specific functioning of Cav3.2 T-type calcium and TRPV1 channels under different types of STZ-diabetic neuropathy;EV Khomula;Biochim Biophys Acta,2013
4. Selective T-type calcium channel blockade alleviates hyperalgesia in ob/ob mice;JR Latham;Diabetes,2009
5. TTA-P2 is a potent and selective blocker of T-type calcium channels in rat sensory neurons and a novel antinociceptive agent;WJ Choe;Mol Pharm,2011
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1. Involvement of interaction of Cav3.2 and nociceptive TRPA1 in pathological pain transmission;Biomedical Research;2024-02-02
2. Inhibition of T-Type Calcium Channels With TTA-P2 Reduces Chronic Neuropathic Pain Following Spinal Cord Injury in Rats;The Journal of Pain;2023-09
3. Stereospecific Effects of Benzimidazolonepiperidine Compounds on T-Type Ca2+ Channels and Pain;ACS Chemical Neuroscience;2022-06-07
4. The T-Type Calcium Channel Cav3.2 in Somatostatin Interneurons in Spinal Dorsal Horn Participates in Mechanosensation and Mechanical Allodynia in Mice;Frontiers in Cellular Neuroscience;2022-04-08
5. The Mechanisms of Plasticity of Nociceptive Ion Channels in Painful Diabetic Neuropathy;Frontiers in Pain Research;2022-03-28
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