Romero-García Tatiana, Vázquez-Jiménez J Gustavo, Sánchez-Hernández Rommel, Olivares-Reyes J Alberto, Rueda Angélica
Department of Biochemistry, Center for Research and Advanced Studies (Cinvestav) of the National Polytechnic Institute, México City, Mexico.
Facultad de Medicina, Universidad Autónoma de Baja California, Mexicali, Mexico.
Front Physiol. 2025 Jun 10;16:1535153. doi: 10.3389/fphys.2025.1535153. eCollection 2025.
Prediabetes and Metabolic Syndrome (MetS) share a common pathway to induce vascular dysfunction through hyperinsulinemia without the presence of overt hyperglycemia. Insulin resistance (IR) is a key factor in vascular complications in diabetes; however, vascular dysfunction has been reported in MetS patients, even in the absence of chronic hyperglycemic conditions. We consider that the alterations in the intracellular Ca handling of vascular smooth muscle cells (VSMCs) and the impairment of the insulin receptor signaling pathway may contribute to the etiology of vascular diseases in prediabetes and MetS. Therefore, it is critical to understand the mechanisms by which prediabetes and MetS alter the expression and activity of proteins involved in intracellular Ca signaling in VSMCs, particularly those related to vasorelaxation. The functional unit, integrated by the voltage-gated L-type Ca channel (Ca1.2), the Sarco/Endoplasmic Reticulum Ca ATPase (SERCA pump), the ryanodine receptor (RyR), and the large-conductance Ca-activated K channel (BK), regulates the vascular tone and promotes vasorelaxation of the resistance arteries. Changes in this functional unit may contribute to vascular dysfunction. This review summarizes the most recent knowledge regarding alterations in the expression or activity of these proteins in the vasculature of experimental models with characteristics of prediabetes and MetS.
糖尿病前期和代谢综合征(MetS)通过高胰岛素血症诱导血管功能障碍,且不存在明显的高血糖,二者有着共同的途径。胰岛素抵抗(IR)是糖尿病血管并发症的关键因素;然而,即使在没有慢性高血糖状况的情况下,MetS患者也有血管功能障碍的报道。我们认为,血管平滑肌细胞(VSMCs)细胞内钙处理的改变以及胰岛素受体信号通路的受损可能导致糖尿病前期和MetS血管疾病的病因。因此,了解糖尿病前期和MetS改变VSMCs细胞内钙信号相关蛋白表达和活性的机制至关重要,尤其是那些与血管舒张相关的机制。由电压门控L型钙通道(Ca1.2)、肌浆网/内质网钙ATP酶(SERCA泵)、兰尼碱受体(RyR)和大电导钙激活钾通道(BK)整合而成的功能单元,调节血管张力并促进阻力动脉的血管舒张。该功能单元的变化可能导致血管功能障碍。本综述总结了有关这些蛋白在具有糖尿病前期和MetS特征的实验模型血管系统中表达或活性改变的最新知识。