Related Experiment Video
Updated: Jun 16, 2025

Optogenetic Activation of Afferent Pathways in Brain Slices and Modulation of Responses by Volatile Anesthetics
Published on: July 23, 2020
Calcium channels in anesthesia management: A molecular and clinical review
Mostafa Saberian1, Afzal Shamsi2, Mahdieh Mehrab Mohseni1
1Department of Medical Laboratory Sciences, School of Allied Medical Sciences, Tehran University of Medical Sciences, Tehran, Iran.
Abstract:
Calcium channels play an essential role in the molecular and physiological mechanisms underlying anesthesia by mediating intracellular calcium ion (Ca2+) flux, which regulates key processes such as neurotransmitter release, neuronal excitability, and immune responses. Voltage-gated calcium channels (VGCCs) and ligand-gated calcium channels (LGCCs) are integral to the anesthetic process, with subtypes such as T-type VGCCs and NMDA receptors influencing consciousness and pain perception. This review emphasizes current evidence to highlight how anesthetic agents interact with calcium channels via direct inhibition and modulation of intracellular signaling pathways, such as phosphatidylinositol metabolism. Additionally, calcium channelopathies - genetic or acquired dysfunctions affecting VGCCs and LGCCs - pose challenges in anesthetic management, including arrhythmias, malignant hyperthermia, and altered anesthetic sensitivity. These findings underscore the critical need for precision medicine approaches tailored to patients with these conditions. While significant progress has been made in understanding the roles of calcium channels in anesthesia, knowledge gaps remain regarding the long-term implications of anesthetic interactions on calcium signaling and clinical outcomes. This review bridges foundational science with clinical practice, emphasizing the translational potential of calcium channel research for optimizing anesthetic strategies. By integrating molecular insights with emerging pharmacogenomic approaches, it provides a pathway for developing safer and more effective anesthesia protocols that enhance patient outcomes.
Insights
Calcium channels are crucial for anesthesia, influencing neurotransmitter release and neuronal activity. Understanding their interaction with anesthetics and genetic conditions is key to developing safer anesthesia protocols.
Area of Science:
- Anesthesiology
- Molecular Biology
- Pharmacology
Background:
- Calcium channels mediate intracellular calcium ion (Ca2+) flux, regulating critical physiological processes.
- Voltage-gated calcium channels (VGCCs) and ligand-gated calcium channels (LGCCs) are integral to anesthetic mechanisms, affecting consciousness and pain.
- Anesthetic agents interact with calcium channels, influencing signaling pathways like phosphatidylinositol metabolism.
Purpose of the Study:
- To review the essential role of calcium channels in anesthesia.
- To highlight anesthetic agent interactions with calcium channels.
- To discuss challenges posed by calcium channelopathies in anesthetic management.
Main Methods:
- Literature review of current evidence on calcium channels and anesthesia.
- Analysis of molecular and physiological mechanisms.
- Integration of foundational science with clinical practice.
Main Results:
- Anesthetics directly inhibit and modulate calcium channels and related signaling pathways.
- Calcium channelopathies present anesthetic management challenges, including arrhythmias and altered sensitivity.
- Knowledge gaps exist regarding long-term implications of anesthetic-calcium channel interactions.
Conclusions:
- Precision medicine approaches are needed for patients with calcium channelopathies.
- Translational research on calcium channels can optimize anesthetic strategies.
- Integrating molecular and pharmacogenomic insights can lead to safer, more effective anesthesia.
More Related Videos
14:52Recording Brain Electromagnetic Activity During the Administration of the Gaseous Anesthetic Agents Xenon and Nitrous Oxide in Healthy Volunteers
Published on: January 13, 2018
08:23Adaptation of Microelectrode Array Technology for the Study of Anesthesia-induced Neurotoxicity in the Intact Piglet Brain
Published on: May 12, 2018
Related Concept Videos
Inhalational Anesthetics: Overview
General Anesthesia: Overview
General anesthesia induces unconsciousness in the whole body, while the others target specific areas or sensations. It is administered to minimize adverse effects, maintain...
Antiepileptic Drugs: Calcium Channel Blockers
Calcium channel blockers exert their antiepileptic effects by targeting T-type calcium channels, which are integral to transmitting nerve signals in the central nervous system. These channels allow the passage of calcium ions, which are vital for neuronal communication. By inhibiting T-type calcium channels, calcium channel blockers effectively reduce the release of neurotransmitters and...
Local Anesthetics: Clinical Application as Epidural Anesthesia
Since epidural anesthetics can be infused through an epidural catheter, all types of drugs, including short-acting ones, can be administered. Chloroprocaine and lidocaine are examples of short and long-duration anesthetics, respectively. Bupivacaine...
Local Anesthetics: Clinical Application as Spinal Anesthesia
Local Anesthetics: Mechanism of Action
Local anesthetics are amphiphilic molecules consisting of a hydrophobic aromatic part linked to a hydrophilic group by an ester or amide linkage. They are weak bases and are usually available as salts, which increases their solubility and stability. Once administered, LAs exist in the body either...