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生物膜增强肿瘤相关巨噬细胞在三维多层面肿瘤模型中的促癌作用。

Biofilm Potentiates Cancer-Promoting Effects of Tumor-Associated Macrophages in a 3D Multi-Faceted Tumor Model.

机构信息

Department of Biomedical Engineering, City University of Hong Kong, Kowloon, 999077, Hong Kong.

Hong Kong Center for Cerebro-Cardiovascular Health Engineering (COCHE), Kowloon, 999077, Hong Kong.

出版信息

Small. 2023 May;19(19):e2205904. doi: 10.1002/smll.202205904. Epub 2023 Feb 7.

Abstract

Components of the tumor microenvironment (TME), such as tumor-associated macrophages (TAMs), influence tumor progression. The specific polarization and phenotypic transition of TAMs in the tumor microenvironment lead to two-pronged impacts that can promote or hinder cancer development and treatment. Here, a novel microfluidic multi-faceted bladder tumor model (TAM ) is developed incorporating TAMs and cancer cells to evaluate the impact of bacterial distribution on immunomodulation within the tumor microenvironment in vivo. It is demonstrated for the first time that biofilm-induced inflammatory conditions within tumors promote the transition of macrophages from a pro-inflammatory M1-like to an anti-inflammatory/pro-tumor M2-like state. Consequently, multiple roles and mechanisms by which biofilms promote cancer by inducing pro-tumor phenotypic switch of TAMs are identified, including cancer hallmarks such as reducing susceptibility to apoptosis, enhancing cell viability, and promoting epithelial-mesenchymal transition and metastasis. Furthermore, biofilms formed by extratumoral bacteria can shield tumors from immune attack by TAMs, which can be visualized through various imaging assays in situ. The study sheds light on the underlying mechanism of biofilm-mediated inflammation on tumor progression and provides new insights into combined anti-biofilm therapy and immunotherapy strategies in clinical trials.

摘要

肿瘤微环境(TME)的组成部分,如肿瘤相关巨噬细胞(TAMs),会影响肿瘤的进展。TAMs 在肿瘤微环境中的特定极化和表型转变导致了双重影响,既可以促进也可以阻碍癌症的发展和治疗。在这里,开发了一种新型的微流控多方面膀胱肿瘤模型(TAM),其中包含了 TAMs 和癌细胞,以评估细菌分布对体内肿瘤微环境中免疫调节的影响。首次证明,肿瘤内生物膜诱导的炎症条件促进了巨噬细胞从促炎 M1 样向抗炎/促肿瘤 M2 样状态的转变。因此,确定了生物膜通过诱导 TAMs 的促肿瘤表型转换来促进癌症的多种作用和机制,包括癌症的标志性特征,如降低对细胞凋亡的敏感性、增强细胞活力、促进上皮间质转化和转移。此外,肿瘤外细菌形成的生物膜可以通过 TAMs 使肿瘤免受免疫攻击,这可以通过原位的各种成像检测来可视化。该研究揭示了生物膜介导的炎症对肿瘤进展的潜在机制,并为临床试验中的联合抗生物膜治疗和免疫治疗策略提供了新的见解。

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