丝素
胰岛素释放
材料科学
血糖性
纳米技术
生物相容性材料
人工胰腺
胰岛素
按需
生物医学工程
计算机科学
糖尿病
医学
1型糖尿病
复合材料
丝绸
内科学
内分泌学
多媒体
作者
Siyuan Chen,Hiroko Matsumoto,Yuki Moro‐oka,Miyako Tanaka,Yuji Miyahara,Takayoshi Suganami,Akira Matsumoto
标识
DOI:10.1002/adfm.201807369
摘要
Abstract Achieving persistent glycemic control in a painless and convenient way is the ultimate goal of diabetes management. Herein, an “enzyme‐free” polymeric microneedle (MN)‐array patch composed of a boronate‐containing hydrogel semi‐interpenetrated by biocompatible silk fibroin is developed. Consistent with the previous reports, the presence of the boronate‐hydrogel allows for glucose‐responsive diffusion‐control of insulin, while the crystalline fibroin component serves as a matrix‐stiffener to validate skin penetration. Remarkably, this “enzyme‐free” smart artificial on‐skin pancreas prototype remains stable for at least 2 months in an aqueous environment. Furthermore, it establishes sustained as well as acute glucose‐responsive insulin delivery, and is to the authors' knowledge, the first successful material design addressing such two technical challenges at once on an MN format. This long‐acting, on‐demand insulin delivery technology may offer a candidate for a next‐generation diabetes therapy that is remarkably stable, safe, economically efficient, and capable of providing both acute‐ and continuous glycemic control in a manner minimally dependent on patient compliance.
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