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一种具有自组织毛细血管网络的新型灌注培养方法。

A new perfusion culture method with a self-organized capillary network.

机构信息

Department of Anatomy and Cell Biology, Kyushu University Graduate School of Medical Sciences, Fukuoka, Japan.

Frontier Research Institute for Interdisciplinary Sciences (FRIS), Tohoku University, Miyagi, Japan.

出版信息

PLoS One. 2020 Oct 28;15(10):e0240552. doi: 10.1371/journal.pone.0240552. eCollection 2020.

Abstract

A lack of perfusion has been one of the most significant obstacles for three-dimensional culture systems of organoids and embryonic tissues. Here, we developed a simple and reliable method to implement a perfusable capillary network in vitro. The method employed the self-organization of endothelial cells to generate a capillary network and a static pressure difference for culture medium circulation, which can be easily introduced to standard biological laboratories and enables long-term cultivation of vascular structures. Using this culture system, we perfused the lumen of the self-organized capillary network and observed a flow-induced vascular remodeling process, cell shape changes, and collective cell migration. We also observed an increase in cell proliferation around the self-organized vasculature induced by flow, indicating functional perfusion of the culture medium. We also reconstructed extravasation of tumor and inflammatory cells, and circulation inside spheroids including endothelial cells and human lung fibroblasts. In conclusion, this system is a promising tool to elucidate the mechanisms of various biological processes related to vascular flow.

摘要

灌注不足一直是类器官和胚胎组织的三维培养系统的最大障碍之一。在这里,我们开发了一种简单而可靠的方法,在体外实现可灌注的毛细血管网络。该方法利用内皮细胞的自组织生成毛细血管网络,并利用静态压力差实现培养基循环,这可以很容易地引入到标准的生物实验室中,并能够实现血管结构的长期培养。使用这种培养系统,我们对自组织毛细血管网络的管腔进行了灌注,并观察到了流诱导的血管重塑过程、细胞形状变化和细胞集体迁移。我们还观察到,由于流动引起的细胞增殖增加,培养基的功能灌注发生在自组织血管周围。我们还重建了肿瘤和炎症细胞的渗出,以及包括内皮细胞和人肺成纤维细胞在内的球体内部的循环。总之,该系统是阐明与血管流相关的各种生物学过程机制的有前途的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f73f/7592787/29d21e98d232/pone.0240552.g001.jpg

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