Tsutsui Masato, Shimokawa Hiroaki, Otsuji Yutaka, Ueta Yoichi, Sasaguri Yasuyuki, Yanagihara Nobuyuki
Department of Pharmacology, School of Medicine, University of Occupational and Environmental Health, Kitakyushu 807-8555, Japan.
Circ J. 2009 Jun;73(6):986-93. doi: 10.1253/circj.cj-09-0208. Epub 2009 May 9.
Nitric oxide (NO) is produced in almost all tissues and organs, exerting a variety of biological actions under both physiological and pathological conditions. NO is synthesized by 3 distinct NO synthase (NOS) isoforms (neuronal, inducible, and endothelial NOS), all of which are expressed in the human cardiovascular system. The regulatory roles of NOSs in cardiovascular diseases have been described in pharmacological studies with selective and non-selective NOS inhibitors. However, the specificity of the NOS inhibitors continues to be an issue of debate. To overcome this issue, genetically engineered animals have been used. All types of NOS gene-deficient (knockout: KO) animals, including singly, doubly, and triply NOS-KO mice, and various types of NOS gene-transgenic (TG) animals, including conditional and non-conditional TG mice bearing endothelium-specific or cardiomyocyte-specific overexpression of each NOS gene, have thus far been developed. The roles of individual NOS isoforms, as well as the entire NOS system, in the cardiovascular system have been extensively investigated in those mice, and the results provide pivotal insights into the pathophysiology of NOSs in human cardiovascular diseases. Based on studies with murine NOS genetic models, this review summarizes the latest knowledge of NOSs and cardiovascular diseases.
一氧化氮(NO)几乎在所有组织和器官中产生,在生理和病理条件下均发挥多种生物学作用。NO由3种不同的一氧化氮合酶(NOS)亚型(神经元型、诱导型和内皮型NOS)合成,所有这些亚型在人体心血管系统中均有表达。在使用选择性和非选择性NOS抑制剂的药理学研究中,已经描述了NOS在心血管疾病中的调节作用。然而,NOS抑制剂的特异性仍然是一个有争议的问题。为了克服这个问题,人们使用了基因工程动物。到目前为止,已经培育出了所有类型的NOS基因缺陷(敲除:KO)动物,包括单、双和三重NOS-KO小鼠,以及各种类型的NOS基因转基因(TG)动物,包括条件性和非条件性TG小鼠,它们分别在内皮细胞或心肌细胞中特异性过表达每个NOS基因。在这些小鼠中,人们广泛研究了单个NOS亚型以及整个NOS系统在心血管系统中的作用,研究结果为人类心血管疾病中NOS的病理生理学提供了关键见解。基于对小鼠NOS遗传模型的研究,本综述总结了NOS与心血管疾病的最新知识。