Peña Juan S, Ramanujam Ranjini K, Risman Rebecca A, Tutwiler Valerie, Berthiaume Francois, Vazquez Maribel
Department of Biomedical Engineering, Rutgers, The State University of New Jersey, Piscataway, NJ 08854, USA.
Bioengineering (Basel). 2024 Jan 8;11(1):63. doi: 10.3390/bioengineering11010063.
Diabetic retinopathy affects more than 100 million people worldwide and is projected to increase by 50% within 20 years. Increased blood glucose leads to the formation of advanced glycation end products (AGEs), which cause cellular and molecular dysfunction across neurovascular systems. These molecules initiate the slow breakdown of the retinal vasculature and the inner blood retinal barrier (iBRB), resulting in ischemia and abnormal angiogenesis. This project examined the impact of AGEs in altering the morphology of healthy cells that comprise the iBRB, as well as the effects of AGEs on thrombi formation, in vitro. Our results illustrate that AGEs significantly alter cellular areas and increase the formation of blood clots via elevated levels of tissue factor. Likewise, AGEs upregulate the expression of cell receptors (RAGE) on both endothelial and glial cells, a hallmark biomarker of inflammation in diabetic cells. Examining the effects of AGEs stimulation on cellular functions that work to diminish iBRB integrity will greatly help to advance therapies that target vision loss in adults.
糖尿病视网膜病变影响着全球超过1亿人,预计在20年内将增加50%。血糖升高会导致晚期糖基化终末产物(AGEs)的形成,这些产物会导致整个神经血管系统的细胞和分子功能障碍。这些分子会引发视网膜血管系统和视网膜内血屏障(iBRB)的缓慢破坏,导致缺血和异常血管生成。该项目在体外研究了AGEs对构成iBRB的健康细胞形态的影响,以及AGEs对血栓形成的影响。我们的结果表明,AGEs通过升高组织因子水平显著改变细胞面积并增加血凝块的形成。同样,AGEs上调内皮细胞和神经胶质细胞上细胞受体(RAGE)的表达,这是糖尿病细胞炎症的标志性生物标志物。研究AGEs刺激对降低iBRB完整性的细胞功能的影响,将极大地有助于推进针对成人视力丧失的治疗方法。