Rusanescu Gabriel, Weissleder Ralph, Aikawa Elena
Center for Molecular Imaging Research, Massachusetts General Hospital, Harvard Medical School, Boston, MA, USA.
Curr Cardiol Rev. 2008 Aug;4(3):148-56. doi: 10.2174/157340308785160552.
Recent increase in human lifespan has shifted the spectrum of aging-related disorders to an unprecedented upsurge in cardiovascular diseases, especially calcific aortic valve stenosis, which has an 80% risk of progression to heart failure and death. A current therapeutic option for calcified valves is surgical replacement, which provides only temporary relief. Recent progress in cardiovascular research has suggested that arterial and valve calcification are the result of an active process of osteogenic differentiation, induced by a pro-atherogenic inflammatory response. At molecular level, the calcification process is regulated by a network of signaling pathways, including Notch, Wnt and TGFbeta/BMP pathways, which control the master regulator of osteogenesis Cbfa1/Runx2. Genetic and in vitro studies have implicated Notch signaling in the regulation of macrophage activation and cardiovascular calcification. Individuals with inactivating Notch1 mutations have a high rate of cardiovascular disorders, including valve stenosis and calcification. This article reviews recent progress in the mechanism of cardiovascular calcification and discusses potential molecular mechanisms involved, focusing on Notch receptors. We propose a calcification model where extreme increases in vascular wall cell density due to inflammation-induced cell proliferation can trigger an osteogenic differentiation program mediated by Notch receptors.
近期人类寿命的延长已使与衰老相关的疾病谱转变为心血管疾病前所未有的激增,尤其是钙化性主动脉瓣狭窄,其进展为心力衰竭和死亡的风险高达80%。目前针对钙化瓣膜的治疗选择是手术置换,这只能提供暂时缓解。心血管研究的最新进展表明,动脉和瓣膜钙化是由促动脉粥样硬化炎症反应诱导的成骨分化活跃过程的结果。在分子水平上,钙化过程由包括Notch、Wnt和TGFβ/BMP通路在内的信号通路网络调控,这些通路控制着成骨的主要调节因子Cbfa1/Runx2。遗传和体外研究表明Notch信号参与巨噬细胞活化和心血管钙化的调控。携带Notch1失活突变的个体患心血管疾病的几率很高,包括瓣膜狭窄和钙化。本文综述了心血管钙化机制的最新进展,并讨论了潜在的分子机制,重点关注Notch受体。我们提出了一种钙化模型,即炎症诱导的细胞增殖导致血管壁细胞密度极度增加,可触发由Notch受体介导的成骨分化程序。