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用于治疗性筛选和生物学发现应用的高通量细胞培养技术进展。

Advances in high throughput cell culture technologies for therapeutic screening and biological discovery applications.

作者信息

Ryoo Hyeon, Kimmel Hannah, Rondo Evi, Underhill Gregory H

机构信息

Bioengineering Department University of Illinois Urbana-Champaign Urbana Illinois USA.

出版信息

Bioeng Transl Med. 2023 Dec 4;9(3):e10627. doi: 10.1002/btm2.10627. eCollection 2024 May.

Abstract

Cellular phenotypes and functional responses are modulated by the signals present in their microenvironment, including extracellular matrix (ECM) proteins, tissue mechanical properties, soluble signals and nutrients, and cell-cell interactions. To better recapitulate and analyze these complex signals within the framework of more physiologically relevant culture models, high throughput culture platforms can be transformative. High throughput methodologies enable scientists to extract increasingly robust and broad datasets from individual experiments, screen large numbers of conditions for potential hits, better qualify and predict responses for preclinical applications, and reduce reliance on animal studies. High throughput cell culture systems require uniformity, assay miniaturization, specific target identification, and process simplification. In this review, we detail the various techniques that researchers have used to face these challenges and explore cellular responses in a high throughput manner. We highlight several common approaches including two-dimensional multiwell microplates, microarrays, and microfluidic cell culture systems as well as unencapsulated and encapsulated three-dimensional high throughput cell culture systems, featuring multiwell microplates, micromolds, microwells, microarrays, granular hydrogels, and cell-encapsulated microgels. We also discuss current applications of these high throughput technologies, namely stem cell sourcing, drug discovery and predictive toxicology, and personalized medicine, along with emerging opportunities and future impact areas.

摘要

细胞表型和功能反应受到其微环境中存在的信号调节,这些信号包括细胞外基质(ECM)蛋白、组织力学特性、可溶性信号和营养物质,以及细胞间相互作用。为了在更具生理相关性的培养模型框架内更好地概括和分析这些复杂信号,高通量培养平台可能具有变革性。高通量方法使科学家能够从单个实验中提取越来越强大和广泛的数据集,筛选大量条件以寻找潜在的命中目标,更好地确定和预测临床前应用的反应,并减少对动物研究的依赖。高通量细胞培养系统需要具备均匀性、检测小型化、特定靶点识别和流程简化等特点。在本综述中,我们详细介绍了研究人员为应对这些挑战并以高通量方式探索细胞反应所采用的各种技术。我们重点介绍了几种常见方法,包括二维多孔微孔板、微阵列和微流控细胞培养系统,以及未封装和封装的三维高通量细胞培养系统,其特点包括多孔微孔板、微模具、微孔、微阵列、颗粒水凝胶和细胞封装微凝胶。我们还讨论了这些高通量技术的当前应用,即干细胞来源、药物发现和预测毒理学以及个性化医疗,以及新兴机遇和未来影响领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5468/11135158/c2aff68e0a1a/BTM2-9-e10627-g001.jpg

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