The Institute of Technological Sciences & School of Power and Mechanical Engineering, Wuhan University, Wuhan 430072, China.
Nanoscale. 2019 Mar 28;11(13):6471-6479. doi: 10.1039/c9nr00668k.
Diabetes has become the third threat to public health worldwide. Traditional treatments of diabetes require frequent blood glucose testing and insulin injections, which not only bring great pain to patients but also exhibit difficulty in controlling the blood glucose accurately. In order to solve these problems, we developed a smart glucose-responsive insulin delivery system responding to the environmental glucose concentration based on gold nanoclusters (GNCs). First, we prepared GNCs as high drug-loading nanocarriers, and we decorated GNCs with phenylboronic acid molecules (4-carboxyphenylboronic acid (PBA) and 4-carboxy-3-fluorophenylboronic acid (FPBA)) as responsive ligands; then, we grafted insulin on the surface to form glucose-responsive insulin-release nanocomplexes GNC-PBA-Ins and GNC-FPBA-Ins, respectively. In the in vitro test, these complexes exhibited high sensitivity to glucose concentrations and rapidly released insulin in a hyperglycemic state. In type 1 diabetic mice in vivo, these complexes could maintain the blood glucose levels of mice in a normoglycemic range for up to 48 h without peaks of hyperglycemia or hypoglycemia, where the GNC-FPBA-Ins complex showed a better regulation of glucose than the GNC-PBA-Ins complex. These gold nanocluster systems mimic the function of the natural pancreas for blood glucose control, which has great potentials for the diagnosis and treatment of diabetes in the future.
糖尿病已成为全球第三大公共健康威胁。传统的糖尿病治疗需要频繁的血糖检测和胰岛素注射,这不仅给患者带来极大的痛苦,而且在精确控制血糖方面也存在困难。为了解决这些问题,我们基于金纳米簇(GNCs)开发了一种智能葡萄糖响应型胰岛素递药系统,该系统可响应环境葡萄糖浓度。首先,我们制备了 GNCs 作为高载药纳米载体,并将苯硼酸分子(4-羧基苯硼酸(PBA)和 4-羧基-3-氟苯硼酸(FPBA))修饰在 GNCs 表面作为响应配体;然后,我们在表面接枝胰岛素,分别形成葡萄糖响应型胰岛素释放纳米复合物 GNC-PBA-Ins 和 GNC-FPBA-Ins。在体外实验中,这些复合物对葡萄糖浓度表现出高灵敏度,并在高血糖状态下迅速释放胰岛素。在 1 型糖尿病小鼠体内实验中,这些复合物可将小鼠的血糖水平维持在正常范围内长达 48 小时,没有出现高血糖或低血糖峰值,其中 GNC-FPBA-Ins 复合物对血糖的调节作用优于 GNC-PBA-Ins 复合物。这些金纳米簇系统模拟了天然胰腺的血糖控制功能,为未来糖尿病的诊断和治疗具有巨大的潜力。