Czibik Gabor, Derumeaux Geneviéve, Sawaki Daigo, Valen Guro, Motterlini Roberto
INSERM U955, Equipe 8, Faculty of Medicine, DHU A-TVB, Hôpital Henri Mondor, APHP, Creteil, University of Paris-Est, 3rd Floor, room 3006, Paris, France,
Basic Res Cardiol. 2014;109(6):450. doi: 10.1007/s00395-014-0450-9. Epub 2014 Oct 25.
Activation of heme oxygenase-1 (HO-1), a heme-degrading enzyme responsive to a wide range of cellular stress, is traditionally considered to convey adaptive responses to oxidative stress, inflammation and vasoconstriction. These diversified effects are achieved through the degradation of heme to carbon monoxide (CO), biliverdin (which is rapidly converted to bilirubin by biliverdin reductase) and ferric iron. Recent findings have added antiproliferative and angiogenic effects to the list of HO-1/CO actions. HO-1 along with its reaction products bilirubin and CO are protective against ischemia-induced injury (myocardial infarction, ischemia-reperfusion (IR)-injury and post-infarct structural remodelling). Moreover, HO-1, and CO in particular, possess acute antihypertensive effects. As opposed to these curative potentials, the long-believed protective effect of HO-1 in cardiac remodelling in response to pressure overload and type 2 diabetes mellitus (DM) has been questioned by recent work. These challenges, coupled with emerging regulatory mechanisms, motivate further in-depth studies to help understand untapped layers of HO-1 regulation and action. The outcomes of these efforts may shed new light on critical mechanisms that could be used to harness the protective potential of this enzyme for the therapeutic benefit of patients suffering from such highly prevalent cardiovascular disorders.
血红素加氧酶-1(HO-1)是一种对多种细胞应激有反应的血红素降解酶,其激活传统上被认为可介导对氧化应激、炎症和血管收缩的适应性反应。这些多样的作用是通过将血红素降解为一氧化碳(CO)、胆绿素(迅速被胆绿素还原酶转化为胆红素)和三价铁来实现的。最近的研究结果在HO-1/CO的作用列表中增加了抗增殖和血管生成作用。HO-1及其反应产物胆红素和CO对缺血诱导的损伤(心肌梗死、缺血再灌注(IR)损伤和梗死后结构重塑)具有保护作用。此外,HO-1,尤其是CO,具有急性降压作用。与这些治疗潜力相反,最近的研究对长期以来认为的HO-1在压力超负荷和2型糖尿病(DM)引起的心脏重塑中的保护作用提出了质疑。这些挑战,再加上新出现的调节机制,促使人们进行更深入的研究,以帮助理解HO-1调节和作用中尚未被挖掘的层面。这些努力的结果可能会为关键机制带来新的启示,这些机制可用于利用这种酶的保护潜力,为患有此类高度常见心血管疾病的患者带来治疗益处。