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本文引用的文献

1
Engineering Multifunctional Films Based on Metal-Phenolic Networks for Rational pH-Responsive Delivery and Cell Imaging.基于金属酚醛网络构建多功能薄膜用于合理的pH响应递送及细胞成像
ACS Biomater Sci Eng. 2016 Mar 14;2(3):317-325. doi: 10.1021/acsbiomaterials.5b00363. Epub 2016 Feb 2.
2
Fabrication of surfactant-stabilized zein nanoparticles: A pH modulated antisolvent precipitation method.表面活性剂稳定的玉米醇溶蛋白纳米颗粒的制备:一种pH调节的抗溶剂沉淀法。
Food Res Int. 2014 Oct;64:329-335. doi: 10.1016/j.foodres.2014.07.004. Epub 2014 Jul 11.
3
Dual responsive zein hydrogel membrane with selective protein adsorption and sustained release property.具有选择性蛋白质吸附和缓释性能的双响应性玉米醇溶蛋白水凝胶膜
Mater Sci Eng C Mater Biol Appl. 2017 Jan 1;70(Pt 1):347-356. doi: 10.1016/j.msec.2016.09.010. Epub 2016 Sep 7.
4
Soy protein isolate as a nanocarrier for enhanced water dispersibility, stability and bioaccessibility of β-carotene.大豆分离蛋白作为一种纳米载体,用于增强β-胡萝卜素的水分散性、稳定性和生物可及性。
J Sci Food Agric. 2017 May;97(7):2230-2237. doi: 10.1002/jsfa.8033. Epub 2016 Oct 11.
5
Zein nanoparticles for oral delivery of quercetin: Pharmacokinetic studies and preventive anti-inflammatory effects in a mouse model of endotoxemia.载姜黄素壳聚糖纳米粒的制备及其体内药动学研究
Nanomedicine. 2017 Jan;13(1):103-110. doi: 10.1016/j.nano.2016.08.033. Epub 2016 Sep 8.
6
Synchronized cycles of bacterial lysis for in vivo delivery.用于体内递送的细菌裂解同步循环。
Nature. 2016 Aug 4;536(7614):81-85. doi: 10.1038/nature18930. Epub 2016 Jul 20.
7
Temperature-Responsive Smart Nanocarriers for Delivery Of Therapeutic Agents: Applications and Recent Advances.温度响应型智能纳米载体用于治疗剂的递送:应用及最新进展。
ACS Appl Mater Interfaces. 2016 Aug 24;8(33):21107-33. doi: 10.1021/acsami.6b00371. Epub 2016 Aug 11.
8
Core-Shell Soy Protein-Soy Polysaccharide Complex (Nano)particles as Carriers for Improved Stability and Sustained Release of Curcumin.核壳型大豆蛋白-大豆多糖复合物(纳米)颗粒作为姜黄素改善稳定性和缓释的载体
J Agric Food Chem. 2016 Jun 22;64(24):5053-9. doi: 10.1021/acs.jafc.6b01176. Epub 2016 Jun 7.
9
Albumin nanostructures as advanced drug delivery systems.白蛋白纳米结构作为先进的药物递送系统。
Expert Opin Drug Deliv. 2016 Nov;13(11):1609-1623. doi: 10.1080/17425247.2016.1193149. Epub 2016 Jun 3.
10
Drug delivery with living cells.用活细胞进行药物输送。
Adv Drug Deliv Rev. 2016 Nov 15;106(Pt A):63-72. doi: 10.1016/j.addr.2016.04.021. Epub 2016 Apr 27.

基于植物蛋白的疏水性精细和超细载药系统载体颗粒。

Plant protein-based hydrophobic fine and ultrafine carrier particles in drug delivery systems.

机构信息

a Advanced Nanobiotechnology and Nanomedicine Research Group (ANNRG) , Iran University of Medical Sciences , Tehran , Iran.

b Department of Biotechnology , University of Kerala , Trivandrum , India.

出版信息

Crit Rev Biotechnol. 2018 Feb;38(1):47-67. doi: 10.1080/07388551.2017.1312267. Epub 2017 Apr 24.

DOI:10.1080/07388551.2017.1312267
PMID:28434263
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5654697/
Abstract

For thousands of years, plants and their products have been used as the mainstay of medicinal therapy. In recent years, besides attempts to isolate the active ingredients of medicinal plants, other new applications of plant products, such as their use to prepare drug delivery vehicles, have been discovered. Nanobiotechnology is a branch of pharmacology that can provide new approaches for drug delivery by the preparation of biocompatible carrier nanoparticles (NPs). In this article, we review recent studies with four important plant proteins that have been used as carriers for targeted delivery of drugs and genes. Zein is a water-insoluble protein from maize; Gliadin is a 70% alcohol-soluble protein from wheat and corn; legumin is a casein-like protein from leguminous seeds such as peas; lectins are glycoproteins naturally occurring in many plants that recognize specific carbohydrate residues. NPs formed from these proteins show good biocompatibility, possess the ability to enhance solubility, and provide sustained release of drugs and reduce their toxicity and side effects. The effects of preparation methods on the size and loading capacity of these NPs are also described in this review.

摘要

几千年来,植物及其产品一直是医学治疗的主要手段。近年来,除了试图分离药用植物的有效成分外,还发现了植物产品的其他新应用,例如将其用于制备药物传递载体。纳米生物技术是药理学的一个分支,通过制备生物相容性载体纳米颗粒(NPs),可以为药物传递提供新的方法。本文综述了近年来利用四种重要的植物蛋白作为载体进行靶向药物和基因传递的研究。玉米醇溶蛋白是一种来自玉米的不溶于水的蛋白质;麦醇溶蛋白是一种来自小麦和玉米的 70%酒精可溶蛋白;豆球蛋白是豌豆等豆类种子中的一种类酪蛋白;凝集素是天然存在于许多植物中的糖蛋白,能够识别特定的碳水化合物残基。由这些蛋白质形成的 NPs 具有良好的生物相容性,能够提高药物的溶解度,并提供药物的持续释放,降低其毒性和副作用。本文还描述了制备方法对这些 NPs 的粒径和载药量的影响。