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微流控癌细胞外渗分析中微血管糖萼的凝集素染色

Lectin Staining of Microvascular Glycocalyx in Microfluidic Cancer Cell Extravasation Assays.

作者信息

Beyer Sebastian, Blocki Anna, Cheung Matthew Chung Yin, Wan Zoe Ho Ying, Mehrjou Babak, Kamm Roger Dale

机构信息

Department of Biomedical Engineering, The Chinese University of Hong Kong, New Territories, Hong Kong, China.

Institute for Tissue Engineering and Regenerative Medicine, The Chinese University of Hong Kong, New Territories, Hong Kong, China.

出版信息

Life (Basel). 2021 Feb 25;11(3):179. doi: 10.3390/life11030179.

Abstract

The endothelial glycocalyx forms the inner-most lining of human microvasculature. It ensures the physiological function of blood vessels and plays a crucial role in the occurrence and progression of microvascular diseases. The present communication aims to highlight the usefulness of high-resolution imaging of lectin ) stained endothelial glycocalyx in 3-dimensional microfluidic cell cultures. The microfluidic system allowed visualizing cancer cell extravasation, which is a key event in metastasis formation in cancer pathologies. In brief, microvascular networks were created through spontaneous vasculogenesis. This occurred from 3 dimensional (3D) suspensions of human umbilical vein endothelial cells (HUVECs) in hydrogels confined within microfluidic devices. Extravasation of MDA-MB-231 breast cancer cells from perfusable endothelial lumens was observed with confocal imaging of lectin-stained microvascular networks. The present work provides guidance towards optimizing the methodology used to elucidate the role of the endothelial glycocalyx during cancer cell extravasation. In particular, a high-resolution view of the endothelial glycocalyx at the site of extravasation is presented. The occurrence of glycocalyx defects is well aligned with the contemporary notion in the field that glycocalyx shedding precedes cancer cell extravasation.

摘要

内皮糖萼构成了人体微血管的最内层内膜。它确保血管的生理功能,并在微血管疾病的发生和发展中发挥关键作用。本通讯旨在强调在三维微流控细胞培养中对凝集素染色的内皮糖萼进行高分辨率成像的实用性。微流控系统能够可视化癌细胞外渗,这是癌症病理中转移形成的关键事件。简而言之,微血管网络是通过自发血管生成形成的。这是由人脐静脉内皮细胞(HUVECs)在微流控装置内的水凝胶中的三维(3D)悬浮液发生的。通过对凝集素染色的微血管网络进行共聚焦成像,观察到MDA-MB-231乳腺癌细胞从可灌注的内皮管腔中外渗。目前的工作为优化用于阐明内皮糖萼在癌细胞外渗过程中作用的方法提供了指导。特别是,展示了外渗部位内皮糖萼的高分辨率视图。糖萼缺陷的出现与该领域目前的观点高度一致,即糖萼脱落先于癌细胞外渗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8583/7996592/4208228c78b9/life-11-00179-g001.jpg

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