细菌/纳米酶复合体:疾病治疗的新疗法。

IF 10.7 2区 材料科学 Q1 CHEMISTRY, PHYSICAL
Small Methods Pub Date : 2025-01-01 Epub Date: 2024-06-25 DOI:10.1002/smtd.202400610
Qirui Wang, Lulu Jin, Huang Yang, Lisha Yu, Xinran Cao, Zhengwei Mao
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引用次数: 0

摘要

细菌疗法是公认的治疗多种疾病的经济有效的方法。然而,由于细菌的功能有限、固有治疗效果弱、易受恶劣微环境条件的影响,导致治疗效果不理想,从而阻碍了细菌疗法的发展。提高细菌活性和治疗效果成为一项关键挑战。纳米酶因其模拟酶的活性和高稳定性而备受关注。它们使细菌能够模仿表达相同功能酶的基因编辑细菌的功能,从而提高细菌活性和疗效。本综述阐述了细菌和纳米酶的治疗机制,随后总结了制备细菌/纳米酶复合材料的策略。此外,还强调了此类复合材料在胃肠道疾病和肿瘤等生物医学应用中的协同效应。最后,讨论了细菌/纳米酶复合材料所面临的挑战,并提出了潜在的解决方案。本研究旨在提供有价值的见解,为纳米材料辅助细菌疗法的发展提供理论指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Bacteria/Nanozyme Composites: New Therapeutics for Disease Treatment.

Bacteria/Nanozyme Composites: New Therapeutics for Disease Treatment.

Bacterial therapy is recognized as a cost-effective treatment for several diseases. However, its development is hindered by limited functionality, weak inherent therapeutic effects, and vulnerability to harsh microenvironmental conditions, leading to suboptimal treatment activity. Enhancing bacterial activity and therapeutic outcomes emerges as a pivotal challenge. Nanozymes have garnered significant attention due to their enzyme-mimic activities and high stability. They enable bacteria to mimic the functions of gene-edited bacteria expressing the same functional enzymes, thereby improving bacterial activity and therapeutic efficacy. This review delineates the therapeutic mechanisms of bacteria and nanozymes, followed by a summary of strategies for preparing bacteria/nanozyme composites. Additionally, the synergistic effects of such composites in biomedical applications such as gastrointestinal diseases and tumors are highlighted. Finally, the challenges of bacteria/nanozyme composites are discussed and propose potential solutions. This study aims to provide valuable insights to offer theoretical guidance for the advancement of nanomaterial-assisted bacterial therapy.

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来源期刊
Small Methods
Small Methods Materials Science-General Materials Science
CiteScore
17.40
自引率
1.60%
发文量
347
期刊介绍: Small Methods is a multidisciplinary journal that publishes groundbreaking research on methods relevant to nano- and microscale research. It welcomes contributions from the fields of materials science, biomedical science, chemistry, and physics, showcasing the latest advancements in experimental techniques. With a notable 2022 Impact Factor of 12.4 (Journal Citation Reports, Clarivate Analytics, 2023), Small Methods is recognized for its significant impact on the scientific community. The online ISSN for Small Methods is 2366-9608.
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