透皮
胰岛素
苯硼酸
体内
糖尿病
胰岛素释放
内分泌学
内科学
药物输送
基质(化学分析)
透皮贴片
医学
药理学
化学
1型糖尿病
生物化学
生物
色谱法
生物技术
催化作用
有机化学
作者
Jicheng Yu,Jinqiang Wang,Yuqi Zhang,Guojun Chen,Weiwei Mao,Yanqi Ye,Anna R. Kahkoska,John B. Buse,Róbert Langer,Zhen Gu
标识
DOI:10.1038/s41551-019-0508-y
摘要
Glucose-responsive insulin delivery systems that mimic pancreatic endocrine function could enhance health and improve quality of life for people with type 1 and type 2 diabetes with reduced β-cell function. However, insulin delivery systems with rapid in vivo glucose-responsive behaviour typically have limited insulin-loading capacities and cannot be manufactured easily. Here, we show that a single removable transdermal patch, bearing microneedles loaded with insulin and a non-degradable glucose-responsive polymeric matrix, and fabricated via in situ photopolymerization, regulated blood glucose in insulin-deficient diabetic mice and minipigs (for minipigs >25 kg, glucose regulation lasted >20 h with patches of ~5 cm2). Under hyperglycaemic conditions, phenylboronic acid units within the polymeric matrix reversibly form glucose–boronate complexes that—owing to their increased negative charge—induce the swelling of the polymeric matrix and weaken the electrostatic interactions between the negatively charged insulin and polymers, promoting the rapid release of insulin. This proof-of-concept demonstration may aid the development of other translational stimuli-responsive microneedle patches for drug delivery. A single removable transdermal patch bearing microneedles loaded with insulin and a non-degradable glucose-responsive polymeric matrix regulates blood glucose in insulin-deficient diabetic mice and minipigs.
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