详细信息

Chemo-Enzymatic Synthesis of Poly(4-piperidine lactone-b-ω-opentadecalactone) Block Copolymers as Biomaterials with Antibacterial Properties  ( SCI-EXPANDED收录)  

文献类型:期刊文献

英文题名:Chemo-Enzymatic Synthesis of Poly(4-piperidine lactone-b-ω-opentadecalactone) Block Copolymers as Biomaterials with Antibacterial Properties

作者:Xiao, Yan[1];Pan, Jinghao[1];Wang, Dong[1];Heise, Andreas[2];Lang, Meidong[1]

机构:[1]East China Univ Sci & Technol, Sch Mat Sci & Engn, Minist Educ, Key Lab Ultrafine Mat, Shanghai 200237, Peoples R China;[2]Royal Coll Surgeons Ireland, Dept Pharmaceut & Med Chem, Dublin 2, Ireland

年份:2018

卷号:19

期号:7

起止页码:2673

外文期刊名:BIOMACROMOLECULES

收录:;WOS:【SCI-EXPANDED(收录号:WOS:000438470800030)】;

基金:Y.X., J.P., and D.W. acknowledged financial supports from the National Natural Science Foundation of China (21674037) and the Shanghai Scientific and Technological Innovation Project (14520720600). M.L. acknowledged the National Key Research and Development Program (2016YFC1100703). A.H. acknowledged financial support from the Science Foundation Ireland (SFI) Principle Investigator Award 13/IA/1840.

语种:英文

摘要:With increasing troubles in bacterial contamination and antibiotic resistance, new materials possessing both biocompatibility and antimicrobial efficacy are supposed to be developed for future biomedical application. Herein, we demonstrated a chemo-enzymatic ring opening polymerization (ROP) approach for block copolyester, that is, poly(4-benzyl formate piperidine lactone-b-omega-pentadecalactone) (PNPIL-b-PPDL), in a one-pot two-step process. Afterward, cationic poly(4-piperidine lactone-b-omega-pentadecalactone) (PPIL-b-PPDL) with pendent secondary amino groups was obtained via acidic hydrolysis of PNPIL-b-PPDL. The resulting cationic block copolyester exhibited high antibacterial activity against Gram negative E. coli and Gram positive S. aureus, while showed low toxicity toward NIH-3T3 cells. Moreover, the antibacterial property, cytotoxicity and degradation behavior could be tuned simply by variation of PPIL content. Therefore, we anticipate that such cationic block copolymers could potentially be applied as biomaterials for medicine or implants.

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