Nanomaterial-based therapeutics for enhanced antifungal therapy

IF 6.1 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Fang Liu, Yongcheng Chen, Yue Huang, Qiao Jin and Jian Ji
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引用次数: 0

Abstract

The application of nanotechnology in antifungal therapy is gaining increasing attention. Current antifungal drugs have significant limitations, such as severe side effects, low bioavailability, and the rapid development of resistance. Nanotechnology offers an innovative solution to address these issues. This review discusses three key strategies of nanotechnology to enhance antifungal efficacy. Firstly, nanomaterials can enhance their interaction with fungal cells via ingenious surface tailoring of nanomaterials. Effective adhesion of nanoparticles to fungal cells can be achieved by electrostatic interaction or specific targeting to the fungal cell wall and cell membrane. Secondly, stimuli-responsive nanomaterials are developed to realize smart release of drugs in the specific microenvironment of pathological tissues, such as the fungal biofilm microenvironment and inflammatory microenvironment. Thirdly, nanomaterials can be designed to cross different physiological barriers, effectively addressing challenges posed by skin, corneal, and blood–brain barriers. Additionally, some new nanomaterial-based strategies in treating fungal infections are discussed, including the development of fungal vaccines, modulation of macrophage activity, phage therapy, the application of high-throughput screening in drug discovery, and so on. Despite the challenges faced in applying nanotechnology to antifungal therapy, its significant potential and innovation open new possibilities for future clinical antifungal applications.

Abstract Image

Abstract Image

增强抗真菌治疗的纳米材料疗法。
纳米技术在抗真菌治疗中的应用正受到越来越多的关注。目前的抗真菌药物存在严重的局限性,如副作用大、生物利用度低、抗药性发展迅速等。纳米技术为解决这些问题提供了创新的解决方案。本综述讨论了纳米技术提高抗真菌药效的三大策略。首先,纳米材料可通过巧妙的表面定制增强与真菌细胞的相互作用。纳米颗粒与真菌细胞的有效粘附可通过静电作用或特定靶向真菌细胞壁和细胞膜来实现。其次,开发刺激响应型纳米材料,实现药物在病理组织特定微环境(如真菌生物膜微环境和炎症微环境)中的智能释放。第三,纳米材料可跨越不同的生理屏障,有效解决皮肤、角膜和血脑屏障带来的挑战。此外,还讨论了一些基于纳米材料的治疗真菌感染的新策略,包括开发真菌疫苗、调节巨噬细胞活性、噬菌体疗法、在药物发现中应用高通量筛选等。尽管将纳米技术应用于抗真菌治疗面临诸多挑战,但其巨大的潜力和创新性为未来的临床抗真菌应用开辟了新的可能性。
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来源期刊
Journal of Materials Chemistry B
Journal of Materials Chemistry B MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.30%
发文量
866
期刊介绍: Journal of Materials Chemistry A, B & C cover high quality studies across all fields of materials chemistry. The journals focus on those theoretical or experimental studies that report new understanding, applications, properties and synthesis of materials. Journal of Materials Chemistry A, B & C are separated by the intended application of the material studied. Broadly, applications in energy and sustainability are of interest to Journal of Materials Chemistry A, applications in biology and medicine are of interest to Journal of Materials Chemistry B, and applications in optical, magnetic and electronic devices are of interest to Journal of Materials Chemistry C.Journal of Materials Chemistry B is a Transformative Journal and Plan S compliant. Example topic areas within the scope of Journal of Materials Chemistry B are listed below. This list is neither exhaustive nor exclusive: Antifouling coatings Biocompatible materials Bioelectronics Bioimaging Biomimetics Biomineralisation Bionics Biosensors Diagnostics Drug delivery Gene delivery Immunobiology Nanomedicine Regenerative medicine & Tissue engineering Scaffolds Soft robotics Stem cells Therapeutic devices
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