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用于模拟放射毒性和评估放射防护剂的人肠道类器官和微生理系统。

Human Intestinal Organoids and Microphysiological Systems for Modeling Radiotoxicity and Assessing Radioprotective Agents.

作者信息

Bouges Eloïse, Segers Charlotte, Leys Natalie, Lebeer Sarah, Zhang Jianbo, Mastroleo Felice

机构信息

RadioPharma Research, Nuclear Medical Applications, Belgian Nuclear Research Centre (SCK CEN), Boeretang 200, 2400 Mol, Belgium.

Department of Bioscience Engineering, University of Antwerp, Groenenborgerlaan 171, 2020 Antwerp, Belgium.

出版信息

Cancers (Basel). 2023 Dec 15;15(24):5859. doi: 10.3390/cancers15245859.

Abstract

Radiotherapy is a commonly employed treatment for colorectal cancer, yet its radiotoxicity-related impact on healthy tissues raises significant health concerns. This highlights the need to use radioprotective agents to mitigate these side effects. This review presents the current landscape of human translational radiobiology, outlining the limitations of existing models and proposing engineering solutions. We delve into radiotherapy principles, encompassing mechanisms of radiation-induced cell death and its influence on normal and cancerous colorectal cells. Furthermore, we explore the engineering aspects of microphysiological systems to represent radiotherapy-induced gastrointestinal toxicity and how to include the gut microbiota to study its role in treatment failure and success. This review ultimately highlights the main challenges and future pathways in translational research for pelvic radiotherapy-induced toxicity. This is achieved by developing a humanized in vitro model that mimics radiotherapy treatment conditions. An in vitro model should provide in-depth analyses of host-gut microbiota interactions and a deeper understanding of the underlying biological mechanisms of radioprotective food supplements. Additionally, it would be of great value if these models could produce high-throughput data using patient-derived samples to address the lack of human representability to complete clinical trials and improve patients' quality of life.

摘要

放射疗法是结直肠癌常用的治疗方法,然而其与放射毒性相关的对健康组织的影响引发了重大的健康问题。这凸显了使用放射保护剂来减轻这些副作用的必要性。本综述介绍了人类转化放射生物学的现状,概述了现有模型的局限性并提出了工程学解决方案。我们深入探讨放射治疗原理,包括辐射诱导细胞死亡的机制及其对正常和癌性结直肠细胞的影响。此外,我们探索微生理系统的工程学方面,以模拟放射治疗引起的胃肠道毒性,以及如何纳入肠道微生物群来研究其在治疗成败中的作用。本综述最终强调了盆腔放射治疗诱导毒性的转化研究中的主要挑战和未来途径。这是通过开发一种模拟放射治疗条件的人源化体外模型来实现的。体外模型应能深入分析宿主与肠道微生物群的相互作用,并更深入地了解放射保护食品补充剂的潜在生物学机制。此外,如果这些模型能够使用患者来源的样本产生高通量数据,以解决缺乏人体代表性以完成临床试验并改善患者生活质量的问题,那将具有巨大价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9a9/10741417/21a7ac470a9d/cancers-15-05859-g001.jpg

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