Cardiac Mechano-Gated Ion Channels and Arrhythmias
File(s)Cir Res Review_R1_last_PK.docx (1.39 MB)
Accepted version
Author(s)
Peyronnet, R
Nerbonne, JM
Kohl, P
Type
Journal Article
Abstract
Mechanical forces will have been omnipresent since the origin of life, and living organisms have evolved mechanisms to sense, interpret, and respond to mechanical stimuli. The cardiovascular system in general, and the heart in particular, is exposed to constantly changing mechanical signals, including stretch, compression, bending, and shear. The heart adjusts its performance to the mechanical environment, modifying electrical, mechanical, metabolic, and structural properties over a range of time scales. Many of the underlying regulatory processes are encoded intracardially and are, thus, maintained even in heart transplant recipients. Although mechanosensitivity of heart rhythm has been described in the medical literature for over a century, its molecular mechanisms are incompletely understood. Thanks to modern biophysical and molecular technologies, the roles of mechanical forces in cardiac biology are being explored in more detail, and detailed mechanisms of mechanotransduction have started to emerge. Mechano-gated ion channels are cardiac mechanoreceptors. They give rise to mechano-electric feedback, thought to contribute to normal function, disease development, and, potentially, therapeutic interventions. In this review, we focus on acute mechanical effects on cardiac electrophysiology, explore molecular candidates underlying observed responses, and discuss their pharmaceutical regulation. From this, we identify open research questions and highlight emerging technologies that may help in addressing them.
Date Issued
2016-01-22
Date Acceptance
2015-12-02
Citation
Circulation Research, 2016, 118 (2), pp.311-329
ISSN
1524-4571
Publisher
American Heart Association
Start Page
311
End Page
329
Journal / Book Title
Circulation Research
Volume
118
Issue
2
Copyright Statement
© 2016 American Heart Association, Inc.
Sponsor
Commission of the European Communities
British Heart Foundation
British Heart Foundation
British Heart Foundation
Grant Number
323099
FS/12/17/29532
DFRYQE0
FS/15/3/31047
Subjects
Science & Technology
Life Sciences & Biomedicine
Cardiac & Cardiovascular Systems
Hematology
Peripheral Vascular Disease
Cardiovascular System & Cardiology
cardiac electrophysiology
heart rhythm
mechanotransduction
STRETCH-ACTIVATED CHANNELS
SMOOTH-MUSCLE-CELLS
RECEPTOR POTENTIAL CHANNELS
BETA-ADRENERGIC STIMULATION
CHICK VENTRICULAR MYOCYTES
PRECORDIAL THUMP EFFICACY
TRANSVERSE TUBULAR SYSTEM
REGULATED ANION CHANNEL
TREK-1 K+ CHANNELS
MECHANOSENSITIVE CHANNELS
Publication Status
Published