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细胞外基质蛋白聚糖 lumican 可提高小鼠在压力超负荷下的存活率,并对抗心脏扩张和衰竭。

The extracellular matrix proteoglycan lumican improves survival and counteracts cardiac dilatation and failure in mice subjected to pressure overload.

机构信息

Institute for Experimental Medical Research, Oslo University Hospital and University of Oslo, Oslo, Norway.

KG Jebsen Center for Cardiac Research, University of Oslo and Center for Heart Failure Research, Oslo University Hospital, Oslo, Norway.

出版信息

Sci Rep. 2019 Jun 24;9(1):9206. doi: 10.1038/s41598-019-45651-9.

Abstract

Left ventricular (LV) dilatation is a key step in transition to heart failure (HF) in response to pressure overload. Cardiac extracellular matrix (ECM) contains fibrillar collagens and proteoglycans, important for maintaining tissue integrity. Alterations in collagen production and cross-linking are associated with cardiac LV dilatation and HF. Lumican (LUM) is a collagen binding proteoglycan with increased expression in hearts of patients and mice with HF, however, its role in cardiac function remains poorly understood. To examine the role of LUM in pressure overload induced cardiac remodeling, we subjected LUM knock-out (LUMKO) mice to aortic banding (AB) and treated cultured cardiac fibroblasts (CFB) with LUM. LUMKO mice exhibited increased mortality 1-14 days post-AB. Echocardiography revealed increased LV dilatation, altered hypertrophic remodeling and exacerbated contractile dysfunction in surviving LUMKO 1-10w post-AB. LUMKO hearts showed reduced collagen expression and cross-linking post-AB. Transcriptional profiling of LUMKO hearts by RNA sequencing revealed 714 differentially expressed transcripts, with enrichment of cardiotoxicity, ECM and inflammatory pathways. CFB treated with LUM showed increased mRNAs for markers of myofibroblast differentiation, proliferation and expression of ECM molecules important for fibrosis, including collagens and collagen cross-linking enzyme lysyl oxidase. In conclusion, we report the novel finding that lack of LUM attenuates collagen cross-linking in the pressure-overloaded heart, leading to increased mortality, dilatation and contractile dysfunction in mice.

摘要

左心室(LV)扩张是压力超负荷导致心力衰竭(HF)的关键步骤。心脏细胞外基质(ECM)包含纤维胶原和蛋白聚糖,对于维持组织完整性很重要。胶原生成和交联的改变与心脏 LV 扩张和 HF 有关。赖氨酰氧化酶(LUM)是一种胶原结合蛋白聚糖,在 HF 患者和小鼠的心脏中表达增加,但其在心脏功能中的作用仍知之甚少。为了研究 LUM 在压力超负荷诱导的心脏重构中的作用,我们使 LUM 敲除(LUMKO)小鼠接受主动脉缩窄(AB)手术,并将 LUM 处理培养的心脏成纤维细胞(CFB)。LUMKO 小鼠在 AB 后 1-14 天的死亡率增加。超声心动图显示,LUMKO 小鼠在 AB 后 1-10 周的 LV 扩张增加,肥厚重构改变,收缩功能障碍加剧。AB 后 LUMKO 心脏的胶原表达和交联减少。通过 RNA 测序对 LUMKO 心脏进行转录谱分析显示,714 个差异表达的转录物,包括心肌毒性、细胞外基质和炎症途径的富集。用 LUM 处理的 CFB 显示出肌成纤维细胞分化、增殖和表达细胞外基质分子(包括胶原和胶原交联酶赖氨酰氧化酶)的标志物的 mRNA 增加。总之,我们报告了一个新发现,即缺乏 LUM 可减轻压力超负荷心脏中的胶原交联,导致小鼠的死亡率、扩张和收缩功能障碍增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a66f/6591256/104ca469acc4/41598_2019_45651_Fig1_HTML.jpg

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