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专业化尼莫辛药物传递的最新进展:制造、特性描述和药物传递应用。

Current Advances in Specialised Niosomal Drug Delivery: Manufacture, Characterization and Drug Delivery Applications.

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, Sefako Makgatho Health Sciences University, Pretoria 0208, South Africa.

出版信息

Int J Mol Sci. 2022 Aug 26;23(17):9668. doi: 10.3390/ijms23179668.

Abstract

Development of nanomaterials for drug delivery has received considerable attention due to their potential for achieving on-target delivery to the diseased area while the surrounding healthy tissue is spared. Safe and efficiently delivered payloads have always been a challenge in pharmaceutics. Niosomes are self-assembled vesicular nanocarriers formed by hydration of a non-ionic surfactant, cholesterol or other molecules that combine to form a versatile drug delivery system with a variety of applications ranging from topical delivery to targeted delivery. Niosomes have advantages similar to those of liposomes with regards to their ability to incorporate both hydrophilic and hydrophobic payloads. Moreover, niosomes have simple manufacturing methods, low production cost and exhibit extended stability, consequently overcoming the major drawbacks associated with liposomes. This review provides a comprehensive summary of niosomal research to date, including the types of niosomes and critical material attributes (CMA) and critical process parameters (CPP) of niosomes and their effects on the critical quality attributes (CQA) of the technology. Furthermore, physical characterisation techniques of niosomes are provided. The review then highlights recent applications of specialised niosomes in drug delivery. Finally, limitations and prospects for this technology are discussed.

摘要

由于纳米材料具有将药物靶向递送至病变部位而使周围健康组织免受伤害的潜力,因此其在药物传递中的应用受到了广泛关注。安全有效地递送有效载荷一直是药剂学中的一个挑战。非离子表面活性剂、胆固醇或其他分子的水合作用形成了自组装的囊泡纳米载体,这些囊泡纳米载体形成了一种多功能药物传递系统,具有多种应用,从局部递送到靶向递送到各种应用。与脂质体一样,囊泡能够包含亲水性和疏水性有效载荷,具有相似的优点。此外,囊泡具有简单的制造方法、低生产成本和延长的稳定性,因此克服了与脂质体相关的主要缺点。本文综述了迄今为止有关囊泡的研究,包括囊泡的类型和关键材料属性(CMA)和关键工艺参数(CPP)及其对该技术关键质量属性(CQA)的影响。此外,还提供了囊泡的物理特性分析技术。然后,本文重点介绍了特殊囊泡在药物传递中的最新应用。最后,讨论了该技术的局限性和前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cd5/9455955/30743d69bc5d/ijms-23-09668-g001.jpg

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