核壳型微针凝胶用于自我调节胰岛素递药。
Core-Shell Microneedle Gel for Self-Regulated Insulin Delivery.
机构信息
Joint Department of Biomedical Engineering , University of North Carolina at Chapel Hill and North Carolina State University , Raleigh , North Carolina 27695 , United States.
Division of Molecular Pharmaceutics and Center for Nanotechnology in Drug Delivery, Eshelman School of Pharmacy , University of North Carolina at Chapel Hill , Chapel Hill , North Carolina 27599 , United States.
出版信息
ACS Nano. 2018 Mar 27;12(3):2466-2473. doi: 10.1021/acsnano.7b08152. Epub 2018 Feb 19.
A bioinspired glucose-responsive insulin delivery system for self-regulation of blood glucose levels is desirable for improving health and quality of life outcomes for patients with type 1 and advanced type 2 diabetes. Here we describe a painless core-shell microneedle array patch consisting of degradable cross-linked gel for smart insulin delivery with rapid responsiveness and excellent biocompatibility. This gel-based device can partially dissociate and subsequently release insulin when triggered by hydrogen peroxide (HO) generated during the oxidation of glucose by a glucose-specific enzyme covalently attached inside the gel. Importantly, the HO-responsive microneedles are coated with a thin-layer embedding HO-scavenging enzyme, thus mimicking the complementary function of enzymes in peroxisomes to protect normal tissues from injury caused by oxidative stress. Utilizing a chemically induced type 1 diabetic mouse model, we demonstrated that this smart insulin patch with a bioresponsive core and protective shell could effectively regulate the blood glucose levels within a normal range with improved biocompatibility.
对于改善 1 型和 2 型糖尿病患者的健康和生活质量,一种能够自我调节血糖水平的仿生葡萄糖响应型胰岛素输送系统是非常需要的。在这里,我们描述了一种无痛的核心-壳型微针贴片阵列,由可降解交联凝胶组成,用于智能胰岛素输送,具有快速响应性和优异的生物相容性。这种基于凝胶的装置可以在凝胶内部通过共价附着的葡萄糖特异性酶氧化葡萄糖产生的过氧化氢(HO)触发下部分解离,并随后释放胰岛素。重要的是,HO 响应性微针涂有一层薄薄的嵌入 HO 清除酶,从而模拟过氧化物酶体中酶的互补功能,以保护正常组织免受氧化应激引起的损伤。利用化学诱导的 1 型糖尿病小鼠模型,我们证明了这种具有生物响应性核心和保护壳的智能胰岛素贴片可以有效地将血糖水平调节到正常范围内,同时具有改善的生物相容性。