The Center for Convergent Bioscience and Medicine (CCBM), The University of Alabama, Tuscaloosa, Alabama, USA.
Bioscience and Medicine Initiative, College of Community Health Sciences, The University of Alabama, Tuscaloosa, Alabama, USA.
AAPS J. 2023 Jul 13;25(4):72. doi: 10.1208/s12248-023-00839-w.
Successful management of type 2 diabetes mellitus (T2DM), a complex and chronic disease, requires a combination of anti-hyperglycemic and anti-inflammatory agents. Here, we have conceptualized and tested an integrated "closed-loop mimic" in the form of a glucose-responsive microgel (GRM) based on chitosan, comprising conventional insulin (INS) and curcumin-laden nanoparticles (nCUR) as a potential strategy for effective management of the disease. In addition to mimicking the normal, on-demand INS secretion, such delivery systems display an uninterrupted release of nCUR to combat the inflammation, oxidative stress, lipid metabolic abnormality, and endothelial dysfunction components of T2DM. Additives such as gum arabic (GA) led to a fivefold increased INS loading capacity compared to GRM without GA. The GRMs showed excellent in vitro on-demand INS release, while a constant nCUR release is observed irrespective of glucose concentrations. Thus, this study demonstrates a promising drug delivery technology that can simultaneously, and at physiological/pathophysiological relevance, deliver two drugs of distinct physicochemical attributes in the same formulation.
成功管理 2 型糖尿病(T2DM)这种复杂且慢性的疾病,需要结合抗高血糖和抗炎药物。在这里,我们设计并测试了一种基于壳聚糖的葡萄糖响应性微凝胶(GRM)形式的综合“闭环模拟物”,其包含常规胰岛素(INS)和负载姜黄素的纳米颗粒(nCUR),作为有效管理该疾病的潜在策略。除了模拟正常的按需 INS 分泌外,这种递药系统还能持续释放 nCUR,以对抗 T2DM 的炎症、氧化应激、脂质代谢异常和内皮功能障碍成分。与不含 GA 的 GRM 相比,阿拉伯树胶(GA)等添加剂使 INS 的载药量增加了五倍。GRMs 表现出优异的体外按需 INS 释放,而无论葡萄糖浓度如何,均能观察到 nCUR 的持续释放。因此,本研究展示了一种有前景的药物递送技术,该技术可以在同一配方中同时、以生理/病理生理相关性递送两种具有不同物理化学特性的药物。