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人心脏瓣膜发育起始阶段的弹性生成。

Elastogenesis at the onset of human cardiac valve development.

机构信息

University Women's Hospital Tübingen and Inter-University Centre for Medical Technology Stuttgart-Tübingen (IZST), Eberhard Karls University, 72076 Tübingen, Germany..

出版信息

Development. 2013 Jun;140(11):2345-53. doi: 10.1242/dev.093500. Epub 2013 May 1.

Abstract

Semilunar valve leaflets have a well-described trilaminar histoarchitecture, with a sophisticated elastic fiber network. It was previously proposed that elastin-containing fibers play a subordinate role in early human cardiac valve development; however, this assumption was based on data obtained from mouse models and human second and third trimester tissues. Here, we systematically analyzed tissues from human fetal first (4-12 weeks) and second (13-18 weeks) trimester, adolescent (14-19 years) and adult (50-55 years) hearts to monitor the temporal and spatial distribution of elastic fibers, focusing on semilunar valves. Global expression analyses revealed that the transcription of genes essential for elastic fiber formation starts early within the first trimester. These data were confirmed by quantitative PCR and immunohistochemistry employing antibodies that recognize fibronectin, fibrillin 1, 2 and 3, EMILIN1 and fibulin 4 and 5, which were all expressed at the onset of cardiac cushion formation (~week 4 of development). Tropoelastin/elastin protein expression was first detectable in leaflets of 7-week hearts. We revealed that immature elastic fibers are organized in early human cardiovascular development and that mature elastin-containing fibers first evolve in semilunar valves when blood pressure and heartbeat accelerate. Our findings provide a conceptual framework with the potential to offer novel insights into human cardiac valve development and disease.

摘要

半月瓣叶具有明确的三层组织学结构,拥有复杂的弹性纤维网络。此前有研究提出,含弹性蛋白的纤维在人类心脏瓣膜早期发育中起次要作用;然而,这一假设是基于从鼠模型和人类第二和第三个三个月组织中获得的数据。在这里,我们系统地分析了来自人类胎儿第一个(4-12 周)和第二个(13-18 周)三个月、青少年(14-19 岁)和成人(50-55 岁)心脏的组织,以监测弹性纤维的时空分布,重点关注半月瓣。全基因表达分析显示,弹性纤维形成所必需的基因转录在第一个三个月内很早就开始了。这些数据通过定量 PCR 和免疫组织化学得到了证实,免疫组织化学使用的抗体可以识别纤连蛋白、原纤维蛋白 1、2 和 3、弹性蛋白多糖 1 和 4、纤维连接蛋白 4 和 5,这些蛋白在心脏垫形成(约发育的第 4 周)时开始表达。原弹性蛋白/弹性蛋白蛋白表达最早可在 7 周心脏的瓣叶中检测到。我们揭示了在人类心血管早期发育中,不成熟的弹性纤维是有组织的,并且在血压和心跳加速时,含成熟弹性蛋白的纤维首先在半月瓣中演变。我们的发现提供了一个概念框架,有可能为人类心脏瓣膜发育和疾病提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9c3/3912871/aeb430b06262/DEV093500F1.jpg

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