纳米粒子在抗击念珠菌生物膜方面的应用:当前进展与未来展望。

IF 5.7 3区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL
Drug Delivery and Translational Research Pub Date : 2025-05-01 Epub Date: 2024-11-26 DOI:10.1007/s13346-024-01749-w
Bahgat Fayed
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引用次数: 0

摘要

由于念珠菌具有多重耐药性并能形成强大的生物膜,特别是在医疗设备和医院表面,念珠菌已成为全球健康的重大威胁。生物膜使念珠菌免受抗真菌治疗和宿主免疫反应的影响,从而使感染持续存在且难以控制。这篇综述探讨了纳米颗粒在克服传统抗真菌疗法在抗C. auris生物膜方面的局限性的潜力。纳米颗粒具有独特的物理化学特性,为穿透生物膜基质、递送抗真菌剂和破坏生物膜结构提供了前景广阔的策略。各种类型的纳米颗粒,包括金属、聚合物、脂质和环糊精颗粒,都显示出更强的生物膜穿透力和抗真菌活性。它们能够产生活性氧、破坏细胞粘附性并以可控方式释放抗真菌药物,因此是生物膜靶向疗法的理想候选药物。本综述介绍了基于纳米粒子的解决方案的最新进展,强调了进一步研究其作用机制、安全性和临床应用的必要性。本综述特别针对肛门真菌生物膜所面临的挑战,对现有知识进行了重要综述,并确定了利用纳米技术开发有效抗真菌疗法的未来方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nanoparticles in the battle against Candida auris biofilms: current advances and future prospects.

Candida auris has emerged as a significant global health threat due to its multidrug resistance and ability to form robust biofilms, particularly on medical devices and hospital surfaces. Biofilms protect C. auris from antifungal treatments and the host immune response, making infections persistent and difficult to control. This review explores the potential of nanoparticles to overcome the limitations of traditional antifungal therapies in combating C. auris biofilms. Nanoparticles, with their unique physicochemical properties, offer promising strategies to penetrate biofilm matrices, deliver antifungal agents, and disrupt biofilm structure. Various types of nanoparticles, including metallic, polymeric, lipid-based, and cyclodextrin-based, demonstrate enhanced biofilm penetration and antifungal activity. Their ability to generate reactive oxygen species, disrupt cell adhesion, and release antifungals in a controlled manner makes them ideal candidates for biofilm-targeted therapies. This review presents the current advancements in nanoparticle-based solutions, emphasizing the need for further research into their mechanisms of action, safety, and clinical application. By addressing the challenge of C. auris biofilms specifically, this review provides a critical synthesis of existing knowledge and identifies future directions for developing effective antifungal therapies using nanotechnology.

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来源期刊
Drug Delivery and Translational Research
Drug Delivery and Translational Research MEDICINE, RESEARCH & EXPERIMENTALPHARMACOL-PHARMACOLOGY & PHARMACY
CiteScore
11.70
自引率
1.90%
发文量
160
期刊介绍: The journal provides a unique forum for scientific publication of high-quality research that is exclusively focused on translational aspects of drug delivery. Rationally developed, effective delivery systems can potentially affect clinical outcome in different disease conditions. Research focused on the following areas of translational drug delivery research will be considered for publication in the journal. Designing and developing novel drug delivery systems, with a focus on their application to disease conditions; Preclinical and clinical data related to drug delivery systems; Drug distribution, pharmacokinetics, clearance, with drug delivery systems as compared to traditional dosing to demonstrate beneficial outcomes Short-term and long-term biocompatibility of drug delivery systems, host response; Biomaterials with growth factors for stem-cell differentiation in regenerative medicine and tissue engineering; Image-guided drug therapy, Nanomedicine; Devices for drug delivery and drug/device combination products. In addition to original full-length papers, communications, and reviews, the journal includes editorials, reports of future meetings, research highlights, and announcements pertaining to the activities of the Controlled Release Society.
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