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[对因功能障碍而被取出的环氧处理生物人工心脏瓣膜小叶中蛋白水解酶及其抑制剂的筛选分析]

[Screening analysis of proteolytic enzymes and their inhibitors in the leaflets of epoxy-treated bioprosthetic heart valves explanted due to dysfunction].

作者信息

Kostyunin A E, Glushkova T V, Shishkova D K, Markova V E, Ovcharenko E A

机构信息

Research Institute for Complex Issues of Cardiovascular Diseases, Kemerovo, Russia.

出版信息

Biomed Khim. 2022 Jan;68(1):68-75. doi: 10.18097/PBMC20226801068.

DOI:10.18097/PBMC20226801068
PMID:35221298
Abstract

Bioprosthetic heart valves (BHVs) are known for their lower thrombogenicity rates and excellent hemodynamic parameters similar to native valves. However, the lifespan of these medical devices is limited to 15 years due to the structural valve degeneration. One of the mechanisms underlying functional impairment and calcification of BHVs includes proteolytic degradation of biomaterials. However, proteases found in xenogeneic BHVs tissue remain poorly studied. In this study using the dot blot assay, we have performed a screening analysis of proteolytic enzymes and their inhibitors in the leaflets of five BHVs explanted due to their dysfunction. Five aortic valves (AVs) explanted due to calcific aortic valve disease were studied as a comparison group. The results of the study have demonstrated that at least 17 proteases and 19 of their inhibitors can be found in BHVs. In the AVs 20 proteases and 21 their inhibitors were identified. Small quantitative differences were noted between proteomic profiles of the BHVs and AVs. Matrix metalloproteinases (MMPs) were expressed in BHVs and AVs at comparable levels, but the level of tissue inhibitors of metalloproteinases-1/-2 and RECK protein in implant tissues was lower than in natural valves. Probably, excessive activity of MMPs cannot be counterbalanced by their inhibitors in BHVs and therefore MMPs can degrade prosthetic biomaterial. Moreover, the detection of a wide range of proteolytic enzymes and their inhibitors in the degenerated BHVs suggests the existence of several pathophysiological pathways that can lead to structural valve degeneration.

摘要

生物人工心脏瓣膜(BHVs)以其较低的血栓形成率和与天然瓣膜相似的优异血流动力学参数而闻名。然而,由于结构性瓣膜退变,这些医疗器械的使用寿命限制在15年。BHVs功能受损和钙化的潜在机制之一包括生物材料的蛋白水解降解。然而,异种BHVs组织中发现的蛋白酶仍研究不足。在本研究中,我们使用斑点印迹法对5个因功能障碍而被取出的BHVs瓣叶中的蛋白水解酶及其抑制剂进行了筛选分析。作为对照组,研究了5个因钙化性主动脉瓣疾病而被取出的主动脉瓣(AVs)。研究结果表明,在BHVs中可发现至少17种蛋白酶及其19种抑制剂。在AVs中鉴定出20种蛋白酶及其21种抑制剂。BHVs和AVs的蛋白质组学图谱之间存在微小的定量差异。基质金属蛋白酶(MMPs)在BHVs和AVs中的表达水平相当,但植入组织中金属蛋白酶组织抑制剂-1/-2和RECK蛋白的水平低于天然瓣膜。可能,BHVs中MMPs的过度活性无法被其抑制剂抵消,因此MMPs可降解人工生物材料。此外,在退变的BHVs中检测到多种蛋白水解酶及其抑制剂,提示存在几种可导致结构性瓣膜退变的病理生理途径。

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