抗cd34抗体对人冠状血管发育的组织学和免疫细胞化学研究

Ontogenez Pub Date : 2016-11-01
O Yu Pototska
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引用次数: 0

摘要

关于冠状动脉内皮细胞胚胎发育的信息是组织工程治疗缺血性心脏病新方法的主要线索。研究的目的是描述人类冠状血管的发育在产前个体发生的早期阶段。人类冠状血管发育的第一步是通过一些心外膜细胞和可能的心内膜细胞的转化形成新生内皮。下一步是心膜下静脉窦内皮向内生长,覆盖心室和心房,形成冠状血管。只有在7天后,心脏的原始冠状动脉丛才与主动脉相通(第三步)。在此期间,一些心膜下血管侵入心肌,一些心内血管与心腔接触。这种沟通有助于调节原始冠状动脉丛的血液循环,在动脉和静脉血管之间建立有效的接触之前,过量的血液可以直接排出到心腔。在圆锥树干凝聚的间质内发现了更多的CD34+细胞群;它参与了主动脉血管血管的形成。心外膜和静脉窦分别通过新生血管和血管生成生成冠状血管内皮。在血管从SV向内生长到主动脉之前的一周内,可以在心脏中发现心室-冠状动脉的通信。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Histological and Immunocytochemical Investigation of Human Coronary Vessel Development with ANTI-CD34 Antibodies].

Information about embryonic development of coronary endothelium is the main clue for the creation of new methods in tissue engineering for treatment of ischemic heart diseases. The purpose of the research was to describe human coronary vessels development on early stages of the prenatal ontogenesis. The first step in human coronary vessels development is the formation of endothelium de novo by transformation of some epicardial and, possibly, endocardial cells. The next step is the ingrowth of sinus venosus endothelium in subepicardium over ventricles and atria, which gives rise to the coronary vessels. Only after 7 days does the primitive coronary plexus of the heart communicate with aorta (third step). During this period, some subepicardial vessels invade myocardium and some intramyocardial vessels contact with the heart cavity. Such intercommunications could help in regulation of blood circulation in primitive coronary plexus before establishment of effective contacts between arterial and venous vessels—excess of blood could be discharged directly into the heart cavity. Additional population of CD34+ cells were revealed inside condensed mesenchyme of the conotruncus; it participates in the formation of vasa vasorum in the aorta. Epicardium and sinus venosus generate endothelium of coronary vessels by neovasculo- and angiogenesis, respectively. During a week after ingrowth of vessels from SV and before their ingrowth to the aorta, ventriculo-coronary communications could be found in the heart.

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