生物相容性
分散性
药物输送
淀粉样纤维
材料科学
纳米技术
背景(考古学)
同种类的
小分子
生物物理学
化学
淀粉样β
生物化学
高分子化学
古生物学
病理
冶金
物理
热力学
疾病
生物
医学
作者
Ulyana Shimanovich,Igor R. Efimov,Thomas O. Mason,Patrick Flagmeier,Alexander K. Buell,Aharon Gedanken,Sara Linse,Karin S. Åkerfeldt,Christopher M. Dobson,David A. Weitz,Tuomas P. J. Knowles
出处
期刊:ACS Nano
[American Chemical Society]
日期:2015-01-12
卷期号:9 (1): 43-51
被引量:120
摘要
Nanofibrillar forms of proteins were initially recognized in the context of pathology, but more recently have been discovered in a range of functional roles in nature, including as active catalytic scaffolds and bacterial coatings. Here we show that protein nanofibrils can be used to form the basis of monodisperse microgels and gel shells composed of naturally occurring proteins. We explore the potential of these protein microgels to act as drug carrier agents, and demonstrate the controlled release of four different encapsulated drug-like small molecules, as well as the component proteins themselves. Furthermore, we show that protein nanofibril self-assembly can continue after the initial formation of the microgel particles, and that this process results in active materials with network densities that can be modulated in situ. We demonstrate that these materials are nontoxic to human cells and that they can be used to enhance the efficacy of antibiotics relative to delivery in homogeneous solution. Because of the biocompatibility and biodegradability of natural proteins used in the fabrication of the microgels, as well as their ability to control the release of small molecules and biopolymers, protein nanofibril microgels represent a promising class of functional artificial multiscale materials generated from natural building blocks.
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