Roy Bipradas
Department of Physiology, Wayne State University, Detroit, MI 48202, USA.
Med Sci (Basel). 2025 Jul 2;13(3):87. doi: 10.3390/medsci13030087.
Diabetic vascular diseases have emerged as a significant concern in medical research due to their considerable impact on human health. The challenge lies in the insufficient understanding of the intricate pathophysiological mechanisms associated with different forms of diabetic vascular diseases, which hampers our ability to identify effective treatment targets. Addressing this knowledge gap is essential for developing successful interventions. Unraveling the molecular pathways through which diabetes leads to microvascular and macrovascular complications in vital organs such as the heart, brain, kidneys, retina, and extremities is crucial. Notably, oxidative stress resulting from hyperglycemia is the key factor in initiating these complications. This review aims to elucidate the specific molecular mechanisms by which oxidative stress drives microvascular and macrovascular diseases and to highlight promising therapeutic advancements that offer hope for effective treatment solutions.
糖尿病血管疾病因其对人类健康的重大影响,已成为医学研究中的一个重要关注点。挑战在于对与不同形式糖尿病血管疾病相关的复杂病理生理机制了解不足,这阻碍了我们识别有效治疗靶点的能力。填补这一知识空白对于开发成功的干预措施至关重要。阐明糖尿病导致心脏、大脑、肾脏、视网膜和四肢等重要器官微血管和大血管并发症的分子途径至关重要。值得注意的是,高血糖引起的氧化应激是引发这些并发症的关键因素。本综述旨在阐明氧化应激驱动微血管和大血管疾病的具体分子机制,并强调有望带来有效治疗方案的治疗进展。