调节肿瘤微环境的铁基纳米材料。

Le Wang, Xiaoting Zhang, Lulu He, Yuanyuan Wei, Yujie Zhang, Aiguo Wu, Juan Li
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引用次数: 0

摘要

铁基纳米材料由于其独特的磁性、优异的生物相容性和多样的形态,在磁共振成像、靶向给药、肿瘤治疗等生物医学领域得到了广泛的应用。对其巨大的生物医学潜力的进一步研究仍在进行中,其新特性不断被挖掘和展示。其中,各种类型的IBNMs通过调节肿瘤微环境(tumor microenvironment, TME)显示出显著的癌症治疗能力。本文将介绍各种纳米材料,包括氧化铁基纳米材料(ionm)、铁基配合物共轭物(ICCs)和铁基单铁原子纳米材料(ISANMs),并强调它们在调节TME方面的优势。综述了IBNMs通过调节TME策略在肿瘤诊断和治疗中的最新进展,包括克服缺氧、调节酸度、减少氧化还原物质和免疫调节等。最后,简要讨论了该领域面临的挑战和机遇。该综述有望为未来设计和开发用于癌症治疗的下一代tme调节IBNMs做出贡献。
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Iron-Based Nanomaterials for Modulating Tumor Microenvironment.

Iron-based nanomaterials (IBNMs) have been widely applied in biomedicine applications including magnetic resonance imaging, targeted drug delivery, tumor therapy, and so forth, due to their unique magnetism, excellent biocompatibility, and diverse modalities. Further research on its enormous biomedical potential is still ongoing, and its new features are constantly being tapped and demonstrated. Among them, various types of IBNMs have demonstrated significant cancer therapy capabilities by regulating the tumor microenvironment (TME). In this review, a variety of IBNMs including iron oxide-based nanomaterials (IONMs), iron-based complex conjugates (ICCs), and iron-based single iron atom nanomaterials (ISANMs) will be introduced, and their advantages in regulating TME would also be emphasized. Besides, the recent progress of IBNMs for cancer diagnosis and treatment through the strategy of modulating TME will be summarized, including overcoming hypoxia, modulating acidity, decreasing redox species, and immunoregulation. Finally, the challenges and opportunities in this field are briefly discussed. This review is expected to contribute to the future design and development of next-generation TME-modulate IBNMs for cancer treatment.

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