Biological Sciences, Faculty of Sciences and Technology, State Islamic University of Sunan Kalijaga (UIN Sunan Kalijaga), Yogyakarta 55281, Indonesia.
Graduated School of Medicine, Faculty of Medicine, Hasanuddin University, Makassar 90245, Indonesia.
Molecules. 2024 Mar 14;29(6):1294. doi: 10.3390/molecules29061294.
Diabetes, particularly type 2 diabetes (T2D), is the main component of metabolic syndrome. It is highly prevalent and has drastically increased with sedentary lifestyles, notably behaviors linked to ease of access and minimal physical activity. Central to this condition is insulin, which plays a pivotal role in regulating glucose levels in the body by aiding glucose uptake and storage in cells, and what happens to diabetes? In diabetes, there is a disruption and malfunction in insulin regulation. Despite numerous efforts, effectively addressing diabetes remains a challenge. This article explores the potential of photoactivatable drugs in diabetes treatment, with a focus on light-activated insulin. We discuss its advantages and significant implications. This article is expected to enrich the existing literature substantially, offering a comprehensive analysis of potential strategies for improving diabetes management. With its minimal physical intrusion, light-activated insulin promises to improve patient comfort and treatment adherence. It offers precise regulation and localized impact, potentially mitigating the risks associated with conventional diabetes treatments. Additionally, light-activated insulin is capable of explicitly targeting RNA and epigenetic factors. This innovative approach may pave the way for more personalized and effective diabetes treatments, addressing not only the symptoms but also the underlying biological causes of the disease. The advancement of light-activated insulin could revolutionize diabetes management. This study represents a pioneering introduction to this novel modality for diabetes management.
糖尿病,特别是 2 型糖尿病(T2D),是代谢综合征的主要组成部分。它的发病率很高,随着久坐不动的生活方式而急剧增加,尤其是与方便获取和最小体力活动相关的行为。胰岛素是这种疾病的核心,它通过帮助葡萄糖在细胞中的摄取和储存来调节体内的葡萄糖水平,那么糖尿病会发生什么呢?在糖尿病中,胰岛素的调节出现了中断和功能障碍。尽管做出了许多努力,但有效地解决糖尿病仍然是一个挑战。本文探讨了光激活药物在糖尿病治疗中的潜力,重点是光激活胰岛素。我们讨论了它的优点和重要意义。本文有望大大丰富现有文献,对改善糖尿病管理的潜在策略进行全面分析。光激活胰岛素具有最小的物理侵入性,有望提高患者的舒适度和治疗依从性。它提供了精确的调节和局部影响,可能降低与传统糖尿病治疗相关的风险。此外,光激活胰岛素能够明确靶向 RNA 和表观遗传因素。这种创新方法可能为更个性化和有效的糖尿病治疗铺平道路,不仅针对症状,还针对疾病的潜在生物学原因。光激活胰岛素的进步可能会彻底改变糖尿病的管理。本研究代表了对这种新型糖尿病管理模式的开创性介绍。