Aquasomal给药系统:特别强调配方技术和应用

IF 0.4 Q4 PHARMACOLOGY & PHARMACY
Prakash Rajak, Rofiqul Islam, Arka Karmakar, Biman Bhuyan
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引用次数: 0

摘要

Aquasome是一种自组装的三层纳米颗粒载体系统。该体系由多羟基低聚物包覆的内纳米晶固体内核组成。被包覆层上吸附有药物分子或具有生物化学活性的化合物。这种意义上的自组装是指分子独立形成有组织的、持久的、非共价键的模式。本文概述了水溶体的形成,包括结构性质,配方方法,以及这种新型药物输送技术的优点和缺点。本文主要讨论了用于创建自组装纳米结构的配方过程及其各种可能的应用。方法:采用Science Direct、Medline、Web of Science、Google Scholar、Scopus等在线数据库进行文献检索。检索截至2023年7月的研究条目。本文特别介绍了各种研究人员采用共沉淀、自沉淀、溅射等方法或改进技术形成水质体的许多因素。它也说明了各种各样的治疗领域,其中水溶体已被认为有重要的影响,如氧气和提取物载体。结果:固体核心负责提供结构稳定性,而低聚物涂层对于防止脱水和稳定生物活性分子至关重要。这种可生物降解的药物递送载体在纳米水平上表现出在肝脏和肌肉中积累的趋势。药物吸附在水质体表面的非修饰性,通过允许在作用部位无障碍的受体识别,促进了迅速的药理反应。结论:水溶体是一种简单的新型药物传递系统,具有提高难溶性药物的溶解度和生物利用度的潜力。尽管存在许多挑战,如耗时、复杂的工艺、安全性和昂贵的研究成本,但水溶体在未来可能会成为一种替代的囊泡载体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aquasomal drug delivery system: A special emphasis on the formulation techniques and applications
Introduction: Aquasome is a self-assembled nanoparticulate carrier system with three layers. The system is made up of a polyhydroxy oligomer-coated inner nanocrystalline solid core. Adsorbed on the coated layer are drug molecules or biochemically active compounds. Self-assembly in this sense refers to the independent formation of molecules into organised, long-lasting, and non-covalently bonded patterns.This paper gives an overview of aquasome formation, covering structural properties, formulation methodologies, and the benefits and drawbacks of this novel drug delivery technology. The article primarily addresses the formulation processes used to create self-assembled nanostructures and their various possible applications. Method: Several online databases, including Science Direct, Medline, Web of Science, Google Scholar and Scopus, were used in the literature search. The datasets were searched for entries of studies up to July, 2023. The review paper especially addresses many elements of aquasome formation by various researchers employing methods/modified techniques such as co-precipitation, self-precipitation, sputtering, and and so forth. It also illustrates a variety of fields of therapy in which aquasome has been recognised to have a major influence, such as oxygen and extract carrier. Results: The solid core is responsible for providing structural stability, while the oligomeric coating is crucial for safeguarding against dehydration and stabilising the bioactive molecules. This biodegradable drug delivery vehicle at the nanoscale level exhibits a tendency to accumulate in the liver and muscles. The non-modification of drug adsorption onto the aquasome surface facilitates prompt pharmacological response by allowing unobstructed receptor recognition at the action site. Conclusions: Aquasome, a three-layered self-assembled molecule, is a simple yet new drug delivery system with promising carrier potentials to increase the solubility and bioavailability of poorly soluble drugs. Despite a host of challenges, such as time consumption, sophisticated processes, safety, and expensive research costs, aquasome may emerge as an alternative vesicular carrier in the future.
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来源期刊
Ars Pharmaceutica
Ars Pharmaceutica PHARMACOLOGY & PHARMACY-
自引率
25.00%
发文量
18
审稿时长
10 weeks
期刊介绍: La revista ARS PHARMACEUTICA se edita trimestralmente, publicando tanto trabajos de investigación y revisión, como breves cartas al director sobe experiencias realizadas en el campo de las ciencias farmacéuticas y afines. Los trabajos se publicarán en español e inglés.
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