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血管研究中的微流控技术

Microfluidic technology in vascular research.

作者信息

van der Meer A D, Poot A A, Duits M H G, Feijen J, Vermes I

机构信息

Polymer Chemistry and Biomaterials Group, Faculty of Science and Technology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.

出版信息

J Biomed Biotechnol. 2009;2009:823148. doi: 10.1155/2009/823148. Epub 2009 Nov 10.

Abstract

Vascular cell biology is an area of research with great biomedical relevance. Vascular dysfunction is involved in major diseases such as atherosclerosis, diabetes, and cancer. However, when studying vascular cell biology in the laboratory, it is difficult to mimic the dynamic, three-dimensional microenvironment that is found in vivo. Microfluidic technology offers unique possibilities to overcome this difficulty. In this review, an overview of the recent applications of microfluidic technology in the field of vascular biological research will be given. Examples of how microfluidics can be used to generate shear stresses, growth factor gradients, cocultures, and migration assays will be provided. The use of microfluidic devices in studying three-dimensional models of vascular tissue will be discussed. It is concluded that microfluidic technology offers great possibilities to systematically study vascular cell biology with setups that more closely mimic the in vivo situation than those that are generated with conventional methods.

摘要

血管细胞生物学是一个具有重大生物医学相关性的研究领域。血管功能障碍涉及动脉粥样硬化、糖尿病和癌症等主要疾病。然而,在实验室研究血管细胞生物学时,很难模拟体内存在的动态三维微环境。微流控技术为克服这一困难提供了独特的可能性。在这篇综述中,将概述微流控技术在血管生物学研究领域的最新应用。将提供微流控技术如何用于产生剪切应力、生长因子梯度、共培养和迁移分析的实例。还将讨论微流控装置在研究血管组织三维模型中的应用。得出的结论是,微流控技术提供了极大的可能性,通过比传统方法更紧密模拟体内情况的设置来系统地研究血管细胞生物学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/366b/2775250/aea976f91553/JBB2009-823148.001.jpg

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