Morariu Simona
"Petru Poni" Institute of Macromolecular Chemistry, Grigore Ghica Voda Alley 41A, 700487 Iasi, Romania.
Polymers (Basel). 2023 Jan 23;15(3):582. doi: 10.3390/polym15030582.
Diabetes, characterized by an uncontrolled blood glucose level, is the main cause of blindness, heart attack, stroke, and lower limb amputation. Glucose-sensitive hydrogels able to release hypoglycemic drugs (such as insulin) as a response to the increase of the glucose level are of interest for researchers, considering the large number of diabetes patients in the world (537 million in 2021, reported by the International Diabetes Federation). Considering the current growth, it is estimated that, up to 2045, the number of people with diabetes will increase to 783 million. The present work reviews the recent developments on the hydrogels based on phenylboronic acid and its derivatives, with sensitivity to glucose, which can be suitable candidates for the design of insulin delivery systems. After a brief presentation of the dynamic covalent bonds, the design of glucose-responsive hydrogels, the mechanism by which the hypoglycemic drug release is achieved, and their self-healing capacity are presented and discussed. Finally, the conclusions and the main aspects that should be addressed in future research are shown.
糖尿病的特征是血糖水平不受控制,它是导致失明、心脏病发作、中风和下肢截肢的主要原因。考虑到全球糖尿病患者数量众多(国际糖尿病联合会报告称,2021年为5.37亿),能够随着血糖水平升高而释放降糖药物(如胰岛素)的葡萄糖敏感水凝胶引起了研究人员的兴趣。根据目前的增长情况估计,到2045年,糖尿病患者人数将增至7.83亿。本工作综述了基于苯硼酸及其衍生物的对葡萄糖敏感的水凝胶的最新进展,这些水凝胶可能是设计胰岛素递送系统的合适候选材料。在简要介绍了动态共价键之后,介绍并讨论了葡萄糖响应水凝胶的设计、实现降糖药物释放的机制及其自愈能力。最后,给出了结论以及未来研究应关注的主要方面。