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体外人体组织的动态生理培养:一项系统综述

Dynamic Physiological Culture of Ex Vivo Human Tissue: A Systematic Review.

作者信息

Hughes Daniel Ll, Hughes Aron, Soonawalla Zahir, Mukherjee Somnath, O'Neill Eric

机构信息

Department of Oncology, University of Oxford, Oxford OX3 7DQ, UK.

Undergraduate Centre, Cardiff University Medical School, Cardiff CF14 4YS, UK.

出版信息

Cancers (Basel). 2021 Jun 8;13(12):2870. doi: 10.3390/cancers13122870.

Abstract

Conventional static culture fails to replicate the physiological conditions that exist in vivo. Recent advances in biomedical engineering have resulted in the creation of novel dynamic culturing systems that permit the recapitulation of normal physiological processes ex vivo. Whilst the physiological benefit for its use in the culture of two-dimensional cellular monolayer has been validated, its role in the context of primary human tissue culture has yet to be determined. This systematic review identified 22 articles that combined dynamic physiological culture techniques with primary human tissue culture. The most frequent method described (55%) utilised dynamic perfusion culture. A diverse range of primary human tissue was successfully cultured. The median duration of successful ex vivo culture of primary human tissue for all articles was eight days; however, a wide range was noted (5 h-60 days). Six articles (27%) reported successful culture of primary human tissue for greater than 20 days. This review illustrates the physiological benefit of combining dynamic culture with primary human tissue culture in both long-term culture success rates and preservation of native functionality of the tissue ex vivo. Further research efforts should focus on developing precise biochemical sensors that would allow for real-time monitoring and automated self-regulation of the culture system in order to maintain homeostasis. Combining these techniques allows the creation of an accurate system that can be used to gain a greater understanding of human physiology.

摘要

传统的静态培养无法复制体内存在的生理条件。生物医学工程的最新进展催生了新型动态培养系统,该系统能够在体外重现正常的生理过程。虽然其在二维细胞单层培养中的生理益处已得到验证,但其在原代人体组织培养中的作用尚未确定。本系统综述检索到22篇将动态生理培养技术与原代人体组织培养相结合的文章。所描述的最常用方法(55%)是动态灌注培养。成功培养了多种原代人体组织。所有文章中原代人体组织体外成功培养的中位持续时间为8天;然而,观察到的范围很广(5小时 - 60天)。六篇文章(27%)报告了原代人体组织成功培养超过20天。本综述说明了在长期培养成功率和体外组织天然功能的保存方面,将动态培养与原代人体组织培养相结合的生理益处。进一步的研究工作应集中在开发精确的生化传感器上,以便对培养系统进行实时监测和自动自我调节,以维持体内平衡。结合这些技术可以创建一个精确的系统,用于更深入地了解人体生理学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de6f/8229413/af6a6f98e984/cancers-13-02870-g001.jpg

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