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芯片上的细胞、组织和器官:癌症肿瘤微环境面临的挑战和机遇。

Cells, tissues, and organs on chips: challenges and opportunities for the cancer tumor microenvironment.

机构信息

Department of Mechanical & Industrial Engineering, University of Toronto, 5 King's College Road, MC314B, Toronto, ON M5S 3G8, Canada.

出版信息

Integr Biol (Camb). 2013 Sep;5(9):1096-109. doi: 10.1039/c3ib40076j.

Abstract

The transition to increasingly sophisticated microfluidic systems has led to the emergence of "organ-on-chip" technology that can faithfully recapitulate organ-level function. Given the rapid progress at the interface between microfluidics and cell biology, there is need to provide a focused evaluation of the state-of-the-art in microfluidic systems for cancer research to advance development, accelerate discovery of novel insights, and facilitate cooperation between engineers, biologists and oncologists in the clinic. Here, we provide a focused review of microfluidics technology from cells- and tissues- to organs-on-chips with application toward studying the tumor microenvironment. Key aspects of the tumor microenvironment including angiogenesis, hypoxia, biochemical gradients, tumor-stromal interactions, and the extracellular matrix are summarized for both solid tumors and non-solid hematologic malignancies. An overview of microfluidic systems designed specifically to answer questions related to different aspects of the tumor microenvironment is provided, followed by an examination of how these systems offer new opportunities to study outstanding challenges related to the major cancer hallmarks. Challenges also remain for microfluidics engineers, but it is hoped that cooperation between engineers and biologists at the intersection of their respective fields will lead to significant impact on the utility of organs-on-chips in cancer research.

摘要

向日益复杂的微流控系统的转变催生了“类器官芯片”技术,该技术能够忠实地再现器官水平的功能。鉴于微流控和细胞生物学之间的快速进展,需要对用于癌症研究的微流控系统的最新技术进行重点评估,以推进发展、加速新见解的发现,并促进工程师、生物学家和临床肿瘤学家之间的合作。在这里,我们重点回顾了从细胞和组织到器官芯片的微流控技术在研究肿瘤微环境中的应用。总结了肿瘤微环境的关键方面,包括血管生成、缺氧、生化梯度、肿瘤-基质相互作用和细胞外基质,既适用于实体瘤,也适用于非实体性血液病。概述了专门用于回答与肿瘤微环境不同方面相关问题的微流控系统,然后考察了这些系统如何为研究与癌症主要特征相关的突出挑战提供新的机会。微流控工程师仍然面临挑战,但希望工程师和生物学家在各自领域的交叉点进行合作,将对器官芯片在癌症研究中的应用产生重大影响。

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