Department of Pharmaceutical Engineering, School of Engineering, China Pharmaceutical University, Nanjing 211198, P. R. China.
Department of Public Security and Management, Jiangsu Police Institute, Nanjing 210031, Jiangsu, China.
Biomater Sci. 2024 Jan 16;12(2):507-517. doi: 10.1039/d3bm01760e.
"Closed-loop" insulin-loaded microneedle patche shows great promise for improving therapeutic outcomes and life quality for diabetes patients. However, it is typically hampered by limited insulin loading capacity, random degradation, and intricate preparation procedures for the independence of the "closed-loop" bulk microneedles. In this study, we combined the solubility of microneedles and "closed-loop" systems and designed poly(vinyl alcohol)-based bulk microneedles (MNs@GI) through photopolymerization for multi-responsive and sustained hypoglycemic therapy, which significantly simplified the preparation process and improved insulin loading. GOx/insulin co-encapsulated MNs@GI with a phenylboronic ester structure improved glycemic responsiveness to control the insulin release under high glucose conditions and reduced inflammation risk in the normal skin. MNs@GI could further degrade to increase insulin release due to the crosslinked acetal-linkage hydrolysis in the presence of gluconic acid, which was caused by GOx-mediated glucose-oxidation in a hyperglycemic environment. The results showed that MNs@GI effectively regulated glycemic levels within the normal range for approximately 10 h compared to that of only insulin-loaded microneedles (MNs@INS). Consequently, the highly insulin-loaded, multi-responsive, and pH-triggered MN system has tremendous potential for diabetes treatment.
“闭环”胰岛素加载微针贴片在改善糖尿病患者的治疗效果和生活质量方面具有巨大的潜力。然而,它通常受到胰岛素载量有限、随机降解以及独立的“闭环”散装微针制备程序复杂的限制。在本研究中,我们结合了微针的溶解性和“闭环”系统,并通过光聚合设计了基于聚乙烯醇的散装微针(MN@GI),用于多响应和持续的降血糖治疗,这显著简化了制备过程并提高了胰岛素的载量。具有苯硼酸酯结构的 GOx/胰岛素共包封 MN@GI 可改善血糖反应,以控制高葡萄糖条件下的胰岛素释放,并降低正常皮肤的炎症风险。由于在高血糖环境中 GOx 介导的葡萄糖氧化作用,交联缩醛键水解会导致 MN@GI 进一步降解,从而增加胰岛素的释放。结果表明,MN@GI 可有效将血糖水平调节至正常范围内约 10 h,而仅加载胰岛素的微针(MN@INS)则不能。因此,高胰岛素载量、多响应和 pH 触发的 MN 系统在糖尿病治疗方面具有巨大的潜力。