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Liposome mimicking polymersomes; A comparative study of the merits of polymersomes in terms of formulation and stability

机译:脂质体模仿多聚体;聚合物脂质体在配方和稳定性方面的优点的比较研究

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摘要

The past few decades have seen a significant rise in research into alternative polymer based nanosized unilamellar drug delivery systems, termed polymersomes. The reported benefits of polymersomes over the more traditional liposomes include increased stability, higher encapsulation efficacies, better adaptability and reduced water permeation due to an increased bilayer thickness. Together, these advantages render them suitable for a plethora of therapies. The work presented in this manuscript creates and compares four such drug delivery systems, two based on the traditional liposome and two prepared from amphiphilic polymers. From there we assess these systems in terms of size, stability, encapsulation efficiency, drug release, cellular toxicity and cellular uptake. We can confirm from this comprehensive investigation that the multi-functional synthetic polymersomes are undoubtedly a future contender in this expanding field of nanomedicines. Their ability to encapsulate a cocktail of different compounds, high stability as well as their ease of adaptability will ensure that they feature prominently in the future of advanced drug delivery systems.
机译:在过去的几十年中,人们对基于聚合物的纳米级单层药物递送系统(称为聚合物小体)的研究有了显着增长。与更传统的脂质体相比,报道的聚合物小体的优点包括稳定性增强,更高的包封效率,更好的适应性以及由于双层厚度增加而降低的水渗透性。总之,这些优点使它们适用于多种疗法。本手稿中的工作创建并比较了四个这样的药物输送系统,两个基于传统脂质体,两个由两亲聚合物制备。从那里,我们从大小,稳定性,封装效率,药物释放,细胞毒性和细胞摄取方面评估这些系统。我们可以从这项全面的研究中证实,多功能合成聚合物囊泡无疑是纳米药物这一不断发展的领域的未来竞争者。它们封装不同化合物的混合物的能力,高稳定性以及易于适应性,将确保它们在先进的药物输送系统的未来中具有突出的地位。

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