纳米工程
原细胞
纳米技术
药物输送
微尺度化学
仿生材料
生物分子
纳米生物技术
纳米机器人学
化学
纳米颗粒
小分子
材料科学
生物物理学
膜
生物
生物化学
数学教育
数学
作者
Fenfang Zhao,Guizhi Shen,Chengjun Chen,Ruirui Xing,Qianli Zou,Guanghui Ma,Xuehai Yan
标识
DOI:10.1002/chem.201400348
摘要
Abstract We present a general strategy to nanoengineer protein‐based colloidal spheres (biomimetic protocells) as versatile delivery carriers with stimuli responsiveness by the electrostatic assembly of binary components (proteins and polypeptides) in association with intermolecular disulfide cross‐linking. The size of the colloidal spheres, ranging from nanoscale to microscale, is readily tuned through parameters like protein and polypeptide concentration, the ratio between both, pH, and so on. Moreover, such colloidal spheres show versatile encapsulation of various guest molecules including small organic molecules and biomacromolecules. The pH and redox dual‐responsiveness facilitates the rapid release of the payload in an acidic and reductant‐enriched ambient such as in lysosomes. Thus, nanoengineering of protein‐based biomimetic protocells opens a new alternative avenue for developing delivery vehicles with multifunctional properties towards a range of therapeutic and diagnostic applications.
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