Printable hybrid hydrogel by dual enzymatic polymerization with superactivity.

نویسندگان

  • Qingcong Wei
  • Mengchi Xu
  • Chuanan Liao
  • Qing Wu
  • Mingyu Liu
  • Ye Zhang
  • Chengtie Wu
  • Liming Cheng
  • Qigang Wang
چکیده

A new approach has been developed to fabricate tough hybrid hydrogels by employing dual enzyme-mediated redox initiation to achieve post-self-assembly cross-linking polymerization. The resulting hydrogel combines the merits of supramolecular hydrogels with polymeric hydrogels to achieve higher mechanical strength and porous networks. Designed 3D constructs were fabricated via in situ 3D printing. The in situ immobilized GOx/HRP in Gel II exhibited superactivity compared to free enzymes, which might be attributed to the synergistic effect of co-localized GOx and HRP minimizing the distances for mass transport between the gel and the bulk solution. This mechanically strong hybrid hydrogel maintained high reusability and thermal stability as well. In addition, in situ 3D cell culture was demonstrated, thus indicating that this biodegradable hybrid hydrogel is biocompatible with cells. The subsequent 3D cell printing further indicates that the hybrid hydrogel is a promising scaffold for bio-related applications such as biocatalysis and tissue engineering.

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منابع مشابه

Printable hybrid hydrogel by dual enzymatic polymerization with superactivity† †Electronic supplementary information (ESI) available: Experimental details and supplementary figures. See DOI: 10.1039/c5sc02234g Click here for additional data file.

Department of Chemistry, Advanced Resear 200092, P. R. China. E-mail: wangqg66@to State Key Laboratory of Performance C Shanghai Institute of Ceramics, Chinese Ac R. China. E-mail: [email protected] School of Life Sciences and Technology, To China Bioinspired SoMatter Unit, Okinawa Insti Japan. E-mail: [email protected] Spine Division of Orthopaedics Department, of Medicine, Shanghai 200...

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عنوان ژورنال:
  • Chemical science

دوره 7 4  شماره 

صفحات  -

تاریخ انتشار 2016