Fabrication approaches for high-throughput and biomimetic disease modeling.

Fabrication approaches for high-throughput and biomimetic disease modeling.
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DOI:
10.1016/j.actbio.2021.03.006
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发表时间:
2021-09-15
期刊:
影响因子:
9.7
通讯作者:
Caliari SR
Caliari SR
中科院分区:
工程技术1区
文献类型:
--
作者:
Grubb ML;Caliari SR

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在捕获病理生理复杂性的体外疾病建模平台和那些适合高通量制造和分析的平台之间通常存在权衡。然而,通过平行制造、自动化和流动驱动组装等几种制造方法的应用,这种差距正在缩小,这些方法可以设计复杂的细胞和生物材料系统。本综述的目的是强调制造高通量基于生物材料的平台的方法,并展示展示其在吞吐量和复杂性范围内的实用性的示例。最后,我们讨论了继续开发高通量体外平台的未来考虑因素,这些平台可以为所需的应用捕获适当水平的生物复杂性。
There is often a tradeoff between in vitro disease modeling platforms that capture pathophysiologic complexity and those that are amenable to high-throughput fabrication and analysis. However, this divide is closing through the application of a handful of fabrication approaches—parallel fabrication, automation, and flow-driven assembly—to design sophisticated cellular and biomaterial systems. The purpose of this review is to highlight methods for the fabrication of high-throughput biomaterial-based platforms and showcase examples that demonstrate their utility over a range of throughput and complexity. We conclude with a discussion of future considerations for the continued development of higher-throughput in vitro platforms that capture the appropriate level of biological complexity for the desired application.
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