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良性和恶性组织中主要内皮细胞的黏附分子表达及功能与增殖相关。

Adhesion molecule expression and function of primary endothelial cells in benign and malignant tissues correlates with proliferation.

作者信息

Sievert Wolfgang, Tapio Soile, Breuninger Stephanie, Gaipl Udo, Andratschke Nicolaus, Trott Klaus-Rüdiger, Multhoff Gabriele

机构信息

Department of Radiation Oncology, Klinikum rechts der Isar, Technische Universität München, Munich, Germany; Clinical Cooperation Group (CCG) "Innate Immunity in Tumor Biology", Helmholtz Zentrum München (HMGU), German Research Center for Environmental Health Munich, Neuherberg, Germany.

Department of Radiation Biology, Helmholtz Zentrum München (HMGU), German Research Center for Environmental Health Munich, Neuherberg, Germany.

出版信息

PLoS One. 2014 Mar 14;9(3):e91808. doi: 10.1371/journal.pone.0091808. eCollection 2014.

Abstract

BACKGROUND

Comparative analysis of the cellular biology of the microvasculature in different tissues requires the availability of viable primary endothelial cells (ECs). This study describes a novel method to isolate primary ECs from healthy organs, repair blastemas and tumors as examples of non-proliferating and proliferating benign and malignant tissues and their functional characterization.

METHODOLOGY/PRINCIPAL FINDINGS: Single cell suspensions from hearts, lungs, repair blastemas and tumors were incubated consecutively with an anti-CD31 antibody and magnetic micro-beads, coupled to a derivative of biotin and streptavidin, respectively. Following magnetic bead separation, CD31-positive ECs were released by biotin-streptavidin competition. In the absence of micro-beads, ECs became adherent to plastic surfaces. ECs from proliferating repair blastemas and tumors were larger and exhibited higher expression densities of CD31, CD105 and CD102 compared to those from non-proliferating normal tissues such as heart and lung. The expression density of CD34 was particularly high in tumor-derived ECs, and that of CD54 and CD144 in ECs of repair blastemas. Functionally, ECs of non-proliferating and proliferating tissues differed in their capacity to form tubes in matrigel and to align under flow conditions.

CONCLUSIONS/SIGNIFICANCE: This method provides a powerful tool to generate high yields of viable, primary ECs of different origins. The results suggest that an altered expression of adhesion molecules on ECs in proliferating tissues contribute to loss of EC function that might cause a chaotic tumor vasculature.

摘要

背景

对不同组织中微血管的细胞生物学进行比较分析需要获得有活力的原代内皮细胞(ECs)。本研究描述了一种从健康器官、修复芽基和肿瘤中分离原代ECs的新方法,以非增殖性和增殖性良性及恶性组织为例,并对其进行功能表征。

方法/主要发现:分别将来自心脏、肺、修复芽基和肿瘤的单细胞悬液依次与抗CD31抗体和磁性微珠孵育,磁性微珠分别与生物素和链霉亲和素的衍生物偶联。经过磁珠分离后,通过生物素-链霉亲和素竞争释放CD31阳性的ECs。在没有微珠的情况下,ECs会粘附在塑料表面。与来自非增殖性正常组织(如心脏和肺)的ECs相比,来自增殖性修复芽基和肿瘤的ECs更大,并且CD31、CD105和CD102的表达密度更高。CD34的表达密度在肿瘤来源的ECs中特别高,而CD54和CD144在修复芽基的ECs中表达密度较高。在功能上,非增殖性和增殖性组织的ECs在形成基质胶管和在流动条件下排列的能力上有所不同。

结论/意义:该方法为高产率地生成不同来源的有活力的原代ECs提供了一个强大的工具。结果表明,增殖组织中ECs上粘附分子表达的改变导致了EC功能的丧失,这可能导致肿瘤血管系统的紊乱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba5e/3954738/3d112cd0b7cf/pone.0091808.g001.jpg

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