肿瘤放疗与人体微生物组的双向影响:微生物组作为潜在的抗肿瘤治疗疗效和毒性调节剂。

IF 1.8 4区 医学 Q3 MEDICINE, RESEARCH & EXPERIMENTAL
In vivo Pub Date : 2025-01-01 DOI:10.21873/invivo.13803
Martin Palkovsky, Nikol Modrackova, Vera Neuzil-Bunesova, Marian Liberko, Renata Soumarova
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引用次数: 0

摘要

微生物组和放射治疗是双向相互作用的实体。人体微生物组已成为放射治疗疗效和毒性的关键调节剂;然而,也观察到放射治疗对微生物组组成改变的互惠效应。本文综述了微生物组与颅外实体瘤之间的关系,特别关注放射治疗对器官特异性微生物组的双向影响。本文旨在对放射治疗引起的现场及远处微生物组的改变进行系统综述。在这篇综述中,特别关注的是口腔和肠道微生物群,它在癌症的发生和进展中的作用,以及它在放疗过程中是如何改变的。本文总结了对未来研究的建议,例如探索微生物组修饰以优化放射治疗诱导的毒性或增强其抗癌作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Bidirectional Impact of Cancer Radiotherapy and Human Microbiome: Microbiome as Potential Anti-tumor Treatment Efficacy and Toxicity Modulator.

Microbiome and radiotherapy represent bidirectionally interacting entities. The human microbiome has emerged as a pivotal modulator of the efficacy and toxicity of radiotherapy; however, a reciprocal effect of radiotherapy on microbiome composition alterations has also been observed. This review explores the relationship between the microbiome and extracranial solid tumors, particularly focusing on the bidirectional impact of radiotherapy on organ-specific microbiome. This article aims to provide a systematic review on the radiotherapy-induced microbial alteration in-field as well as in distant microbiomes. In this review, particular focus is directed to the oral and gut microbiome, its role in the development and progression of cancer, and how it is altered throughout radiotherapy. This review concludes with recommendations for future research, such as exploring microbiome modification to optimize radiotherapy-induced toxicities or enhance its anti-cancer effects.

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来源期刊
In vivo
In vivo 医学-医学:研究与实验
CiteScore
4.20
自引率
4.30%
发文量
330
审稿时长
3-8 weeks
期刊介绍: IN VIVO is an international peer-reviewed journal designed to bring together original high quality works and reviews on experimental and clinical biomedical research within the frames of physiology, pathology and disease management. The topics of IN VIVO include: 1. Experimental development and application of new diagnostic and therapeutic procedures; 2. Pharmacological and toxicological evaluation of new drugs, drug combinations and drug delivery systems; 3. Clinical trials; 4. Development and characterization of models of biomedical research; 5. Cancer diagnosis and treatment; 6. Immunotherapy and vaccines; 7. Radiotherapy, Imaging; 8. Tissue engineering, Regenerative medicine; 9. Carcinogenesis.
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