Falcón Debora, Galeano-Otero Isabel, Calderón-Sánchez Eva, Del Toro Raquel, Martín-Bórnez Marta, Rosado Juan A, Hmadcha Abdelkrim, Smani Tarik
Department of Medical Physiology and Biophysics, Institute of Biomedicine of Seville, University of Seville, Sevilla, Spain.
CIBERCV, Madrid, Spain.
Front Physiol. 2019 Mar 1;10:159. doi: 10.3389/fphys.2019.00159. eCollection 2019.
Calcium is an important second messenger required not only for the excitation-contraction coupling of the heart but also critical for the activation of cell signaling pathways involved in the adverse cardiac remodeling and consequently for the heart failure. Sustained neurohumoral activation, pressure-overload, or myocardial injury can cause pathologic hypertrophic growth of the heart followed by interstitial fibrosis. The consequent heart's structural and molecular adaptation might elevate the risk of developing heart failure and malignant arrhythmia. Compelling evidences have demonstrated that Ca entry through TRP channels might play pivotal roles in cardiac function and pathology. TRP proteins are classified into six subfamilies: TRPC (canonical), TRPV (vanilloid), TRPM (melastatin), TRPA (ankyrin), TRPML (mucolipin), and TRPP (polycystin), which are activated by numerous physical and/or chemical stimuli. TRP channels participate to the handling of the intracellular Ca concentration in cardiac myocytes and are mediators of different cardiovascular alterations. This review provides an overview of the current knowledge of TRP proteins implication in the pathologic process of some frequent cardiac diseases associated with the adverse cardiac remodeling such as cardiac hypertrophy, fibrosis, and conduction alteration.
钙是一种重要的第二信使,不仅是心脏兴奋-收缩偶联所必需的,而且对于参与不良心脏重塑的细胞信号通路的激活至关重要,因此对于心力衰竭也至关重要。持续的神经体液激活、压力过载或心肌损伤可导致心脏病理性肥厚生长,继而出现间质纤维化。随之而来的心脏结构和分子适应性改变可能会增加发生心力衰竭和恶性心律失常的风险。有力的证据表明,通过瞬时受体电位(TRP)通道进入的钙可能在心脏功能和病理过程中起关键作用。TRP蛋白分为六个亚家族:TRPC(典型)、TRPV(香草酸)、TRPM(褪黑素)、TRPA(锚蛋白)、TRPML(黏脂素)和TRPP(多囊蛋白),它们可被多种物理和/或化学刺激激活。TRP通道参与心肌细胞内钙浓度的调节,并且是不同心血管改变的介质。本综述概述了目前关于TRP蛋白在一些与不良心脏重塑相关的常见心脏疾病(如心脏肥大、纤维化和传导改变)的病理过程中的作用的认识。