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用于药物应用的含蛋白质和肽的聚合物纳米结构

Polymeric Nanostructures Containing Proteins and Peptides for Pharmaceutical Applications.

作者信息

Vardaxi Antiopi, Kafetzi Martha, Pispas Stergios

机构信息

Theoretical and Physical Chemistry Institute, National Hellenic Research Foundation, 48 Vassileos Constantinou Avenue, 11635 Athens, Greece.

出版信息

Polymers (Basel). 2022 Feb 16;14(4):777. doi: 10.3390/polym14040777.

Abstract

Over the last three decades, proteins and peptides have attracted great interest as drugs of choice for combating a broad spectrum of diseases, including diabetes mellitus, cancer, and infectious and neurological diseases. However, the delivery of therapeutic proteins to target sites should take into account the obstacles and limitations related to their intrinsic sensitivity to different environmental conditions, fragile tertiary structures, and short half-life. Polymeric nanostructures have emerged as competent vehicles for protein delivery, as they are multifunctional and can be tailored according to their peculiarities. Thus, the enhanced bioavailability and biocompatibility, the adjustable control of physicochemical features, and the colloidal stability of polymer-based nanostructures further enable either the embedding or conjugation of hydrophobic or hydrophilic bioactive molecules, which are some of the features of paramount importance that they possess and which contribute to their selection as vehicles. The present review aims to discuss the prevalent nanostructures composed of block copolymers from the viewpoint of efficient protein hospitality and administration, as well as the up-to-date scientific publications and anticipated applications of polymeric nanovehicles containing proteins and peptides.

摘要

在过去三十年中,蛋白质和肽作为治疗多种疾病的首选药物引起了极大关注,这些疾病包括糖尿病、癌症以及传染性和神经疾病。然而,将治疗性蛋白质递送至靶位点时,应考虑到与其对不同环境条件的固有敏感性、脆弱的三级结构和短半衰期相关的障碍和限制。聚合物纳米结构已成为蛋白质递送的有效载体,因为它们具有多功能性,并且可以根据其特性进行定制。因此,基于聚合物的纳米结构具有增强的生物利用度和生物相容性、可调节的物理化学特性控制以及胶体稳定性,这进一步使得疏水性或亲水性生物活性分子能够嵌入或缀合,这些是它们所具有的一些至关重要的特性,有助于它们被选作载体。本综述旨在从高效蛋白质容纳和给药的角度讨论由嵌段共聚物组成的常见纳米结构,以及含有蛋白质和肽的聚合物纳米载体的最新科学出版物和预期应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9023/8877994/41858309113d/polymers-14-00777-sch001.jpg

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