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外周血衍生的内皮祖细胞预处理方案用于组织工程构建物的内皮化。

A pre-conditioning protocol of peripheral blood derived endothelial colony forming cells for endothelialization of tissue engineered constructs.

机构信息

Leibniz University Hannover, Institute of Technical Chemistry, Callinstr. 5, D-30167 Hannover, Germany; Lower Saxony Centre for Biomedical Engineering, Implant Research and Development (NIFE), 30625 Hannover, Germany.

Department for Cardiothoracic, Transplantation and Vascular Surgery, Hannover Medical School, 30625 Hannover, Germany; Lower Saxony Centre for Biomedical Engineering, Implant Research and Development (NIFE), 30625 Hannover, Germany.

出版信息

Microvasc Res. 2021 Mar;134:104107. doi: 10.1016/j.mvr.2020.104107. Epub 2020 Nov 16.

Abstract

In regenerative medicine, autologous endothelial colony forming cells (ECFCs) bear the greatest potential to be used for surface endothelialization of tissue engineered constructs, as they are easily attainable and possess a high proliferation rate. The aim of this study was to develop a standardized pre-conditioning protocol under dynamic conditions simulating the physiology of human circulation to improve the formation of a flow resistant monolayer of ECFCs and to enhance the antithrombogenicity of the endothelial cells. The main focus of the study was to consequently compare the cellular behavior under a steady laminar flow against a pulsatile flow. Mononuclear cells were isolated out of peripheral blood (PB) buffy coats and plated on uncoated tissue culture flasks in anticipation of guidelines for Advanced Therapy Medicinal Products. ECFCs were identified by typical surface markers such as CD31, CD146 and VE-Cadherin. To explore the effects of dynamic cultivation, ECFCs and human umbilical vein endothelial cells were comparatively cultured under either laminar or pulsatile (1 Hz) flow conditions with different grades of shear stress (5 dyn/cmversus 20 dyn/cm). High shear stress of 20 dyn/cm led to a significant upregulation of the antithrombotic gene marker thrombomodulin in both cell types, but only ECFCs orientated and elongated significantly after shear stress application forming a confluent endothelial cell layer. The work therefore documents a suitable protocol to pre-condition PB-derived ECFCs for sustainable endothelialization of blood contacting surfaces and provides essential knowledge for future cultivations in bioreactor systems.

摘要

在再生医学中,自体内皮祖细胞 (ECFC) 最有潜力用于组织工程构建物的表面内皮化,因为它们易于获得且具有高增殖率。本研究的目的是开发一种在模拟人体循环生理学的动态条件下的标准化预处理方案,以改善 ECFC 形成抗流动单层的能力,并增强内皮细胞的抗血栓形成能力。本研究的主要重点是比较在稳态层流和脉动流下的细胞行为。单核细胞从外周血 (PB) 白细胞层中分离出来,并铺在未涂层的组织培养瓶中,以符合高级治疗药物产品的指南。ECFC 通过典型的表面标志物如 CD31、CD146 和 VE-Cadherin 来鉴定。为了探索动态培养的影响,将 ECFC 和人脐静脉内皮细胞分别在层流或脉动(1 Hz)条件下,在不同剪切应力(5 dyn/cm 对 20 dyn/cm)下进行比较培养。20 dyn/cm 的高剪切应力导致两种细胞类型的抗血栓形成基因标志物血栓调节蛋白显著上调,但只有 ECFC 在施加剪切应力后显著定向和伸长,形成连续的内皮细胞层。因此,这项工作记录了一种合适的方案,用于预处理 PB 来源的 ECFC,以实现与血液接触表面的可持续内皮化,并为未来在生物反应器系统中的培养提供了必要的知识。

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