Department of Medicinal Chemistry, Shiraz University of Technology, Shiraz, Iran.
Department of Chemistry, Sharif University of Technology, Tehran, Iran.
Int J Nanomedicine. 2020 Jun 19;15:4363-4392. doi: 10.2147/IJN.S252237. eCollection 2020.
With continual rapid developments in the biomedical field and understanding of the important mechanisms and pharmacokinetics of biological molecules, controlled drug delivery systems (CDDSs) have been at the forefront over conventional drug delivery systems. Over the past several years, scientists have placed boundless energy and time into exploiting a wide variety of excipients, particularly diverse polymers, both natural and synthetic. More recently, the development of nano polymer blends has achieved noteworthy attention due to their amazing properties, such as biocompatibility, biodegradability and more importantly, their pivotal role in controlled and sustained drug release in vitro and in vivo. These compounds come with a number of effective benefits for improving problems of targeted or controlled drug and gene delivery systems; thus, they have been extensively used in medical and pharmaceutical applications. Additionally, they are quite attractive for wound dressings, textiles, tissue engineering, and biomedical prostheses. In this sense, some important and workable natural polymers (namely, chitosan (CS), starch and cellulose) and some applicable synthetic ones (such as poly-lactic-co-glycolic acid (PLGA), poly(lactic acid) (PLA) and poly-glycolic acid (PGA)) have played an indispensable role over the last two decades for their therapeutic effects owing to their appealing and renewable biological properties. According to our data, this is the first review article highlighting CDDSs composed of diverse natural and synthetic nano biopolymers, blended for biological purposes, mostly over the past five years; other reviews have just briefly mentioned the use of such blended polymers. We, additionally, try to make comparisons between various nano blending systems in terms of improved sustained and controlled drug release behavior.
随着生物医学领域的持续快速发展和对生物分子重要机制和药代动力学的理解,控释给药系统(CDDS)已经超越传统的给药系统处于前沿地位。在过去的几年中,科学家们投入了无限的精力和时间来开发各种赋形剂,特别是各种天然和合成的聚合物。最近,纳米聚合物共混物的发展由于其惊人的特性,如生物相容性、可生物降解性,更重要的是,它们在体外和体内控制和持续药物释放中的关键作用,引起了人们的极大关注。这些化合物在改善靶向或控制药物和基因传递系统方面有许多有效的优势,因此在医学和制药应用中得到了广泛的应用。此外,它们在伤口敷料、纺织品、组织工程和生物医学假体方面也很有吸引力。从这个意义上说,一些重要的和可行的天然聚合物(即壳聚糖(CS)、淀粉和纤维素)和一些适用的合成聚合物(如聚乳酸-共-羟基乙酸(PLGA)、聚乳酸(PLA)和聚羟基乙酸(PGA))在过去的二十年中发挥了不可或缺的作用,因为它们具有吸引人的可再生生物特性而具有治疗效果。根据我们的数据,这是第一篇重点介绍由各种天然和合成纳米生物聚合物组成的 CDDS 的综述文章,主要是在过去五年内用于生物目的的文章;其他综述文章只是简要提到了使用这种共混聚合物。此外,我们还尝试根据改善的持续和控制药物释放行为对各种纳米共混系统进行比较。