丝素
丝绸
生物材料
材料科学
表面改性
组织工程
分泌物
纳米技术
高分子科学
化学工程
生物医学工程
生物
生物化学
复合材料
工程类
作者
Feng Wang,Feng Wang,Hexu Lei,Tian Chi,Yanting Ji,Fangyu Wang,Fangyu Wang,Hanxin Deng,Hongji Zhou,Siyu Chen,Yujuan Zhou,Zihan Meng,Mengyao He,Shifeng Yang,Huan Dong,Deyu Tu,Wang He,Xian Li,David L. Kaplan,Qingyou Xia
标识
DOI:10.1002/adma.202414878
摘要
Abstract Long historical evolution and domestication endow silkworms with the super ability to synthesize and secrete massive silk proteins using silk glands. The major component of this secretion consists of silk fibroin, considered a promising biomaterial for tissue repairs and engineering. To further expand the utility of this unique protein, there is a continuing need for silk fibroin functionalization. Here, a highly‐efficient Fib‐H EXP biosynthetic system is established to synthesize massive recombinant RFP in silk fibers using transgenic silkworms, which accounts for ≈7.86% of silk mass and achieves fabrication of fluorescent silk fibroin (SF) biomaterials. The universality of the Fib‐H EXP system is validated by genetic engineering glucose oxidase (GOx) functionalized silk fibers for fabricating GOx‐SF hydrogels with antimicrobial activity to promote healing of infected diabetic wounds in mouse through the enzyme‐catalyzed reaction of glucose to gluconic acid and H 2 O 2 . These findings demonstrate that the Fib‐H EXP system provides an opportunity for genetic functionalization of SF to broaden the utility of this biomaterial for a range of potential applications.
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