Construction of Active Protein Materials: Manipulation on Morphology of Salmon Calcitonin Assemblies with Enhanced Bone Regeneration Effect

生物相容性 生物材料 材料科学 药品 蛋白质聚集 生物物理学 蛋白质降解 蛋白质工程 蛋白质稳定性 药物输送 体内 纳米技术 化学 生物化学 药理学 生物 生物技术 冶金
作者
Libin Wu,Liang Cheng,Jing Yang,Yufei Yan,Ensong Zhang,Zdravko Kochovski,Long Li,Zhen Wang,Lianfu Deng,Yan Lü,Pol Besenius,Wenguo Cui,Guosong Chen
出处
期刊:Advanced Materials [Wiley]
卷期号:34 (45): e2207526-e2207526 被引量:19
标识
DOI:10.1002/adma.202207526
摘要

The effect of protein drugs is always limited by their relatively low stability and fast degradation property; thus, various elegant efforts have been made to improve the bioactivity and biocompatibility of the protein drugs. Here, an alternative way is proposed to solve this problem. By simply adding a limited amount of small-molecular regulator, which tunes the subtle balance of protein-protein interactions (PPIs) and disulfide bond formation, the self-assembly property of the protein drug can be regulated, forming an "active protein material" itself. This means that, the resulting biomaterial is dominated by the protein drug and water, with significantly enhanced bone regeneration effect compared to the virgin protein in vitro and in vivo, through multivalent effect between the protein and receptor and the retarded degradation of the assembled proteins. In this active protein material, the protein drug is not only the active drug, but also the drug carrier, which greatly increases the drug-loading efficiency of the biomaterial, indicating the advantages of the easy preparation, high efficiency, and low cost of the active protein material with a bright future in biomedical applications.
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