首页
最新动态 交流合作 科研项目 论文著作 精彩瞬间 招生招聘
  • Functional polypeptide and hybrid materials: Precision synthesis via -amino acid N-carboxyanhydride polymerization and emerging biomedical applications
  • 来源:邓超教授个人网站 2014-03-18
  • Polypeptides derived from naturally occurring ?-amino acids have emerged as a unique andversatile family of bio-inspired biomaterials that can be tailor-made for varying biomedical applications such as controlled drug release, gene delivery, tissue engineering and regenerative medicine. In contrast to traditional biodegradable polymers such as aliphatic polyesters and polycarbonates, polypeptides are inherently functional, allow precise con-trol over polarity and charges, show excellent stability against hydrolysis, and are prone to rapid biodegradation in vivo by specific enzymes. Ring-opening polymerization (ROP) of ?-amino acid N-carboxyanhydrides (NCAs) is the most straightforward and practical approachfor large-scale production of high molecular weight polypeptides. In the past decade, a remarkable progree has been made in controlled NCA polymerization, which offers an unprecedented access to precision polypeptide and hybrid materials by combining with living radical polymerization, click chemistry, and/or post-polymerization modification. Notably, several micellar anti-cancer drugs based on poly(ethylene glycol)-polypeptides have been already advanced to the clinical evaluation. In this review paper, we give an overview on de novo design, controlled synthesis and emerging biomedical applications of functional poplypeptide and hybrid materials.
  • [来源:中国聚合物网]
  • 了解更多请进入: 邓超教授个人网站
相关新闻
  • · In Situ Forming Hydrogels via Catalyst-Free and Bioorthogonal “Tetrazole–Alkene” Photo-Click Chemistry
  • · Intracellular Release of Doxorubicin from Core-Crosslinked Polypeptide Micelles Triggered by Both pH and Reduction Conditions
  • · Click Hydrogels, Microgels and Nanogels: Emerging Platforms for Drug Delivery and Tissue Engineering
  • · A Simple and Versatile Synthetic Strategy to Functional Polypeptides via Vinyl Sulfone-Substituted L?Cysteine N?Carboxyanhydride

关于我们  |  联系我们  

网站:中国聚合物网

polymer.cn Copyright ©2017