Chen Ping, Tian Weiwei, Zeng Anqi, Gu Huan, Zeng Jin
Translational Chinese Medicine Key Laboratory of Sichuan Province, Sichuan-Chongqing Joint Key Laboratory of Innovation of New Drugs of Traditional Chinese Medicine, Sichuan Academy of Chinese Medicine Sciences, Chengdu, China.
College of Pharmacy and Food, Southwest Minzu University, Chengdu, China.
Cancer Med. 2025 May;14(9):e70900. doi: 10.1002/cam4.70900.
Fungi in tumors act as a double-edged sword, potentially worsening or alleviating malignancy based on the ecological balance within the tumor microenvironment (TME). Hydrogels, as innovative drug delivery systems, are poised to redefine treatment paradigms. As advanced biomaterials, they offer a versatile platform for encapsulating and releasing antifungal agents and immunomodulators, responding to the TME's unique demands.
We have conducted and collated numerous relevant reviews and studies in recent years from three aspects: Hydrogels, intra-tumoral fungi, and tumor microbe microenvironment, in the hope of identifying the connections between hydrogels and intra-tumoral microbes.
This review underscores the crucial role of intra-tumoral microbes, particularly fungi, in tumorigenesis, progression, and treatment efficacy. At the same time, we concentrated on the findings of hydrogels investigations, with their remarkable adaptability to the tumor microenvironment emerge as intelligent drug delivery systems.
Hydrogels unique ability to precisely target and modulate the tumor microflora, including fungi, endows them with a significant edge in enhancing treatment efficacy. This innovative approach not only holds great promise for improving cancer therapy outcomes but also paves the way for developing novel strategies to control metastasis and prevent cancer recurrence.
肿瘤中的真菌犹如一把双刃剑,根据肿瘤微环境(TME)内的生态平衡,可能会使恶性肿瘤恶化或缓解。水凝胶作为创新的药物递送系统,有望重新定义治疗模式。作为先进的生物材料,它们为封装和释放抗真菌剂及免疫调节剂提供了一个多功能平台,以响应TME的独特需求。
近年来,我们从水凝胶、肿瘤内真菌和肿瘤微生物微环境这三个方面进行并整理了大量相关综述和研究,以期确定水凝胶与肿瘤内微生物之间的联系。
本综述强调了肿瘤内微生物,特别是真菌,在肿瘤发生、发展和治疗效果中的关键作用。同时,我们关注了水凝胶研究的结果,其作为智能药物递送系统对肿瘤微环境具有显著的适应性。
水凝胶精确靶向和调节包括真菌在内的肿瘤微生物群的独特能力,使其在提高治疗效果方面具有显著优势。这种创新方法不仅有望改善癌症治疗结果,还为开发控制转移和预防癌症复发的新策略铺平了道路。