Advancements in Nanotechnology for Enhanced Antifungal Drug Delivery: A Comprehensive Review.

Rajat Srivastava, Ajay Kumar Singh Rawat, Manoj Kumar Mishra, Amit Kumar Patel
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Abstract

Infections caused by fungi can be mildly bothersome or fatal, causing life-threatening conditions or even death. Antifungal drugs have used synthetic chemicals, organic compounds, and phytoconstituents in their formulations to treat fungal infections. Research into novel antifungal drugs has progressed more rapidly than into antibacterial treatments. This can be attributed to the low resistance of fungal infections to antifungal bioactivities and the relatively low incidence of these diseases. Carrier systems based on nanotechnology have generated much interest recently because of the incredible potential of these systems. By using nanoarchitecture as a better carrier and drug delivery system (DDS), we can have greater antifungal effectiveness, bioavailability, targeted action, and less cytotoxicity, a development made possible using nanotechnology. This review discusses various nanocarrier-based technologies in addition to other nanotechnological methods. These include liposomes, transfersomes, ethosomes, niosomes, dendrimers, polymeric nanoparticles, polymer nanocomposites, metallic nanoparticles, carbon nanomaterials, etc. This review focused on general information regarding fungi infections, different antifungal agent types and mechanisms of action, and an overview of formulation strategies such as nanotechnology systems, which are frequently researched for antifungal therapies. We concluded that new drug delivery systems are crucial to delivering antifungal medicines to their target site with the optimum concentration. The researchers also concentrated on these innovative drug delivery systems, which primarily focus on regulating and maintaining the release of antifungal drugs.

纳米技术在增强抗真菌药物输送方面的进展:全面回顾。
由真菌引起的感染轻则令人烦恼,重则会危及生命,甚至导致死亡。抗真菌药物在配方中使用合成化学物质、有机化合物和植物成分来治疗真菌感染。与抗菌治疗相比,新型抗真菌药物的研究进展更为迅速。这是因为真菌感染对抗真菌生物活性的抗药性较低,而且这些疾病的发病率相对较低。基于纳米技术的载体系统最近引起了人们的极大兴趣,因为这些系统具有惊人的潜力。通过使用纳米结构作为更好的载体和给药系统(DDS),我们可以获得更高的抗真菌效果、生物利用度、靶向作用和更低的细胞毒性,而纳米技术的发展使这一切成为可能。除了其他纳米技术方法外,本综述还讨论了各种基于纳米载体的技术。这些技术包括脂质体、转移体、乙糖体、niosomes、树枝状聚合物、聚合物纳米复合材料、金属纳米颗粒、碳纳米材料等。这篇综述重点介绍了真菌感染的一般信息、不同的抗真菌药物类型和作用机制,并概述了纳米技术系统等制剂策略,这些都是抗真菌疗法的常用研究方法。我们得出的结论是,新型给药系统对于将抗真菌药物以最佳浓度输送到目标部位至关重要。研究人员还集中研究了这些创新的给药系统,它们主要侧重于调节和维持抗真菌药物的释放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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