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生物工程 3D 组织和肿瘤类器官在药物开发和精准医学中的应用:现状与未来。

Applications of Bioengineered 3D Tissue and Tumor Organoids in Drug Development and Precision Medicine: Current and Future.

机构信息

Wake Forest Institute for Regenerative Medicine, Wake Forest School of Medicine, Medical Center Boulevard, Winston-Salem, NC, 27101, USA.

Virginia Tech - Wake Forest School of Biomedical Engineering and Sciences, Wake Forest School of Medicine, Medical Center Boulevard, Winston-Salem, NC, 27157, USA.

出版信息

BioDrugs. 2018 Feb;32(1):53-68. doi: 10.1007/s40259-017-0258-x.

DOI:10.1007/s40259-017-0258-x
PMID:29383499
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7995645/
Abstract

Over the past decade, advances in biomedical and tissue engineering technologies, such as cell culture techniques, biomaterials, and biofabrication, have driven increasingly widespread use of three-dimensional (3D) cell culture platforms and, subsequently, the use of organoids in a variety of research endeavors. Given the 3D nature of these organoid systems, and the frequent inclusion of extracellular matrix components, these constructs typically have more physiologically accurate cell-cell and cell-matrix interactions than traditional 2D cell cultures. As a result, 3D organoids can serve as better model systems than their 2D counterparts. Moreover, as organoids can be biofabricated from highly functional human cells, they have certain advantages over animal models, being human in nature and more easily manipulated in the laboratory. In this review, we describe such organoid technologies and their deployment in drug development and precision medicine efforts. Organoid technologies are rapidly being developed for these applications and now represent a wide variety of tissue types and diseases. Evidence is emerging that organoids are poised for widespread adoption, not only in academia but also in the pharmaceutical industry and in clinical diagnostic applications, positioning them as indispensable tools in medicine.

摘要

在过去的十年中,生物医学和组织工程技术的进步,如细胞培养技术、生物材料和生物制造,推动了三维(3D)细胞培养平台的广泛应用,进而推动了类器官在各种研究中的应用。鉴于这些类器官系统的 3D 性质,以及经常包含细胞外基质成分,这些构建体通常比传统的 2D 细胞培养具有更生理准确的细胞-细胞和细胞-基质相互作用。因此,3D 类器官可以作为比 2D 类器官更好的模型系统。此外,由于类器官可以从功能高度发达的人类细胞中生物制造,因此它们相对于动物模型具有一定的优势,在性质上是人类的,并且在实验室中更容易操作。在这篇综述中,我们描述了这些类器官技术及其在药物开发和精准医学中的应用。类器官技术正在为这些应用迅速发展,并代表了广泛的组织类型和疾病。有证据表明,类器官即将被广泛采用,不仅在学术界,而且在制药行业和临床诊断应用中,它们将成为医学中不可或缺的工具。

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