Fusobacterium nucleatum carcinogenesis and drug delivery interventions

IF 15.2 1区 医学 Q1 PHARMACOLOGY & PHARMACY
Zhenzhen Chen, Leaf Huang
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引用次数: 0

Abstract

The microbiome has emerged as a significant biomarker and modulator in cancer development and treatment response. Recent research highlights the notable role of Fusobacterium nucleatum (F. nucleatum) in various tumor types, including breast, colorectal, esophageal, gastric, pancreatic, and lung cancers. Accumulating evidence suggests that the local microbial community forms an integral component of the tumor microenvironment, with bacterial communities within tumors displaying specificity to tumor types. Mechanistic investigations indicate that tumor-associated microbiota can directly influence tumor initiation, progression, and responses to chemotherapy or immunotherapy. This article presents a comprehensive review of microbial communities especially F. nucleatum in tumor tissue, exploring their roles and underlying mechanisms in tumor development, treatment, and prevention. When the tumor-associated F. nucleatum is killed, the host immune response is activated to recognize tumor cells. Bacteria epitopes restricted by the host antigens, can be identified for future anti-bacteria/tumor vaccine development.

Abstract Image

核分枝杆菌致癌和给药干预。
微生物组已成为癌症发展和治疗反应的重要生物标志物和调节因子。最近的研究强调了核酸镰刀菌(F. nucleatum)在乳腺癌、结直肠癌、食管癌、胃癌、胰腺癌和肺癌等各种肿瘤中的显著作用。越来越多的证据表明,局部微生物群落是肿瘤微环境不可或缺的组成部分,肿瘤内的细菌群落对肿瘤类型具有特异性。机理研究表明,肿瘤相关微生物群可直接影响肿瘤的发生、发展以及对化疗或免疫疗法的反应。本文全面综述了肿瘤组织中的微生物群落,尤其是核酸酵母菌,探讨了它们在肿瘤发生、治疗和预防中的作用和内在机制。当与肿瘤相关的核酸酵母菌被杀死时,宿主的免疫反应被激活以识别肿瘤细胞。受宿主抗原限制的细菌表位可被识别出来,用于未来抗细菌/肿瘤疫苗的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
28.10
自引率
5.00%
发文量
294
审稿时长
15.1 weeks
期刊介绍: The aim of the Journal is to provide a forum for the critical analysis of advanced drug and gene delivery systems and their applications in human and veterinary medicine. The Journal has a broad scope, covering the key issues for effective drug and gene delivery, from administration to site-specific delivery. In general, the Journal publishes review articles in a Theme Issue format. Each Theme Issue provides a comprehensive and critical examination of current and emerging research on the design and development of advanced drug and gene delivery systems and their application to experimental and clinical therapeutics. The goal is to illustrate the pivotal role of a multidisciplinary approach to modern drug delivery, encompassing the application of sound biological and physicochemical principles to the engineering of drug delivery systems to meet the therapeutic need at hand. Importantly the Editorial Team of ADDR asks that the authors effectively window the extensive volume of literature, pick the important contributions and explain their importance, produce a forward looking identification of the challenges facing the field and produce a Conclusions section with expert recommendations to address the issues.
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