血管钙化——机制的新见解。

Vascular Calcification-New Insights Into Its Mechanism.

机构信息

New Drug Development Center, Daegu-Gyeongbuk Medical Innovation Foundation, Daegu 41061, Korea.

Leading-Edge Research Center for Drug Discovery and Development for Diabetes and Metabolic Disease, Kyungpook National University Hospital, Daegu 41404, Korea.

出版信息

Int J Mol Sci. 2020 Apr 13;21(8):2685. doi: 10.3390/ijms21082685.

Abstract

Vascular calcification (VC), which is categorized by intimal and medial calcification, depending on the site(s) involved within the vessel, is closely related to cardiovascular disease. Specifically, medial calcification is prevalent in certain medical situations, including chronic kidney disease and diabetes. The past few decades have seen extensive research into VC, revealing that the mechanism of VC is not merely a consequence of a high-phosphorous and -calcium milieu, but also occurs via delicate and well-organized biologic processes, including an imbalance between osteochondrogenic signaling and anticalcific events. In addition to traditionally established osteogenic signaling, dysfunctional calcium homeostasis is prerequisite in the development of VC. Moreover, loss of defensive mechanisms, by microorganelle dysfunction, including hyper-fragmented mitochondria, mitochondrial oxidative stress, defective autophagy or mitophagy, and endoplasmic reticulum (ER) stress, may all contribute to VC. To facilitate the understanding of vascular calcification, across any number of bioscientific disciplines, we provide this review of a detailed updated molecular mechanism of VC. This encompasses a vascular smooth muscle phenotypic of osteogenic differentiation, and multiple signaling pathways of VC induction, including the roles of inflammation and cellular microorganelle genesis.

摘要

血管钙化(VC)根据病变部位可分为内膜钙化和中膜钙化,与心血管疾病密切相关。具体而言,中膜钙化常见于某些医学情况,包括慢性肾脏病和糖尿病。过去几十年对 VC 进行了广泛的研究,揭示了 VC 的机制不仅是高磷和高钙环境的结果,而且还通过精细和组织良好的生物学过程发生,包括成骨和成软骨信号之间的失衡和抗钙化事件。除了传统的成骨信号外,钙稳态失调也是 VC 发展的必要条件。此外,防御机制的丧失,如微生物功能障碍,包括超片段化的线粒体、线粒体氧化应激、缺陷自噬或线粒体自噬和内质网(ER)应激,都可能导致 VC。为了促进对血管钙化的理解,跨越多个生物科学学科,我们提供了对 VC 详细更新的分子机制的综述。这包括血管平滑肌的成骨分化表型,以及 VC 诱导的多个信号通路,包括炎症和细胞微生物发生的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfc3/7216228/429739efe8ae/ijms-21-02685-g001.jpg

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