基于蛋白质的药物传输纳米结构。

Journal of Pharmaceutics Pub Date : 2018-05-16 eCollection Date: 2018-01-01 DOI:10.1155/2018/9285854
Deepali Verma, Neha Gulati, Shreya Kaul, Siddhartha Mukherjee, Upendra Nagaich
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引用次数: 0

摘要

基于蛋白质的纳米结构的关键作用最近彻底改变了纳米医学时代。蛋白质纳米粒子因其尺寸和更大的表面积而成为改变许多传统材料不同性质的主要依据,这促使它们对其他一些分子更具反应性。蛋白质纳米粒子具有更好的生物相容性和生物可降解性,还可以进行表面改性。这些纳米结构可以利用白蛋白、明胶、乳清蛋白、胶蛋白、豆蛋白、弹性蛋白、玉米蛋白、大豆蛋白和牛奶蛋白等蛋白质合成。其制造技术包括乳化、去溶胶、复合共凝胶和电喷雾。蛋白质纳米颗粒的表征参数包括粒度、颗粒形态、表面电荷、药物负载、药物截留测定、颗粒结构和体外药物释放。本综述重点介绍了著名研究人员通过不同给药途径探索和报道的大量蛋白质纳米粒子应用,以及蛋白质纳米粒子作为药物输送载体获得的专利。
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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Protein Based Nanostructures for Drug Delivery.

The key role of protein based nanostructures has recently revolutionized the nanomedicine era. Protein nanoparticles have turned out to be the major grounds for the transformation of different properties of many conventional materials by virtue of their size and greater surface area which instigates them to be more reactive to some other molecules. Protein nanoparticles have better biocompatibilities and biodegradability and also have the possibilities for surface modifications. These nanostructures can be synthesized by using protein like albumin, gelatin, whey protein, gliadin, legumin, elastin, zein, soy protein, and milk protein. The techniques for their fabrication include emulsification, desolvation, complex coacervation, and electrospray. The characterization parameters of protein nanoparticles comprise particle size, particle morphology, surface charge, drug loading, determination of drug entrapment, and particle structure and in vitro drug release. A plethora of protein nanoparticles applications via different routes of administration are explored and reported by eminent researchers which are highlighted in the present review along with the patents granted for protein nanoparticles as drug delivery carriers.

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来源期刊
Journal of Pharmaceutics
Journal of Pharmaceutics PHARMACOLOGY & PHARMACY-
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