Walther-Straub-Institute for Pharmacology and Toxicology, School of Medicine,Ludwig-Maximilians-University München, 80336 Munich, Germany.
Adv Exp Med Biol. 2011;704:781-810. doi: 10.1007/978-94-007-0265-3_41.
Transient receptor potential (TRP) channels are expressed in almost every human tissue, including the heart and the vasculature. They play unique roles not only in physiological functions but, if over-expressed, also in pathophysiological disease states. Cardiovascular diseases are the leading cause of death in the industrialized countries. Therefore, TRP channels are attractive drug targets for more effective pharmacological treatments of these diseases. This review focuses on three major cell types of the cardiovascular system: cardiomyocytes as well as smooth muscle cells and endothelial cells from the systemic and pulmonary circulation. TRP channels initiate multiple signals in all three cell types (e.g. contraction, migration) and are involved in gene transcription leading to cell proliferation or cell death. Identification of their genes has significantly improved our knowledge of multiple signal transduction pathways in these cells. Some TRP channels are important cellular sensors and are mostly permeable to Ca(2+), while most other TRP channels are receptor activated and allow for the entry of Na(+), Ca(2+) and Mg(2+). Physiological functions of TRPA, TRPC, TRPM, TRPP and TRPV channels in the cardiovascular system, dissected by down-regulating channel activity in isolated tissues or by the analysis of gene-deficient mouse models, are reviewed. The involvement of TRPs as homomeric or heteromeric channels in pathophysiological processes in the cardiovascular system like heart failure, cardiac hypertrophy, hypertension as well as edema formation by increased endothelial permeability will be discussed.
瞬时受体电位 (TRP) 通道几乎存在于人体的所有组织中,包括心脏和血管。它们不仅在生理功能中发挥独特作用,而且在病理生理疾病状态下过度表达时也发挥独特作用。心血管疾病是工业化国家的主要死亡原因。因此,TRP 通道是治疗这些疾病的更有效药物治疗的有吸引力的药物靶点。
心肌细胞以及体循环和肺循环的平滑肌细胞和内皮细胞。TRP 通道在所有三种细胞类型中引发多种信号(例如收缩、迁移),并参与导致细胞增殖或细胞死亡的基因转录。它们的基因鉴定显著提高了我们对这些细胞中多种信号转导途径的认识。
一些 TRP 通道是重要的细胞传感器,主要允许 Ca(2+) 通过,而大多数其他 TRP 通道是受体激活的,允许 Na(+)、Ca(2+) 和 Mg(2+) 进入。通过在分离组织中下调通道活性或通过分析基因缺失的小鼠模型,对心血管系统中 TRPA、TRPC、TRPM、TRPP 和 TRPV 通道的生理功能进行了综述。讨论了 TRP 作为同源或异源通道在心力衰竭、心肌肥厚、高血压以及内皮通透性增加导致水肿形成等心血管系统病理生理过程中的参与。