Global genetic deletion of CaV3.3 channels facilitates anaesthetic induction and enhances isoflurane-sparing effects of T-type calcium channel blockers

Author:

Feseha Simon,Timic Stamenic Tamara,Wallace Damon,Tamag Caesare,Yang Lingling,Pan Jen Q.,Todorovic Slobodan M.

Abstract

AbstractWe previously documented that the CaV3.3 isoform of T-type calcium channels (T-channels) is inhibited by clinically relevant concentrations of volatile anaesthetics, including isoflurane. However, little is understood about the functional role of CaV3.3 channels in anaesthetic-induced hypnosis and underlying neuronal oscillations. To address this issue, we used CaV3.3 knock-out (KO) mice and a panselective T-channel blocker 3,5-dichloro-N-[1-(2,2-dimethyltetrahydro-pyran-4-ylmethyl)-4-fluoro-piperidin-4-ylmethyl]-benzamide (TTA-P2). We found that mutant mice injected with the vehicle showed faster induction of hypnosis than wild-type (WT) mice, while the percent isoflurane at which hypnosis and immobility occurred was not different between two genotypes. Furthermore, we found that TTA-P2 facilitated isoflurane induction of hypnosis in the CaV3.3 KO mice more robustly than in the WT mice. Isoflurane-induced hypnosis following injections of TTA-P2 was accompanied with more prominent delta and theta EEG oscillations in the mutant mice, and reached burst-suppression pattern earlier when compared to the WT mice. Our findings point to a relatively specific value of CaV3.3 channels in anaesthetic induced hypnosis. Furthermore, we propose that T-channel blockers may be further explored as a valuable adjunct to reducing the usage of potent volatile anaesthetics, thereby improving their safety.

Funder

National Institute of General Medical Sciences

National Institute of Neurological Disorders and Stroke

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The T-type calcium channelosome;Pflügers Archiv - European Journal of Physiology;2023-12-01

2. CaV3.3 Channelopathies;Voltage-gated Ca2+ Channels: Pharmacology, Modulation and their Role in Human Disease;2023

3. Thalamic T-Type Calcium Channels as Targets for Hypnotics and General Anesthetics;International Journal of Molecular Sciences;2022-02-21

4. Voltage-Gated Ca2+ Channels. Lessons from Knockout and Knock-in Mice;Voltage-Gated Calcium Channels;2022

5. Different roles of T-type calcium channel isoforms in hypnosis induced by an endogenous neurosteroid epipregnanolone;Neuropharmacology;2021-10

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