Early Enhanced Leucine-Rich Alpha-2-Glycoprotein-1 Expression In Glomerular Endothelial Cells Of Type 2 Diabetic Nephropathy Model Mice

BIOMED RESEARCH INTERNATIONAL(2018)

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摘要
Abnormal angiogenesis plays a major role in the development of early stage diabetic nephropathy. Vascular endothelial growth factor (VEGF) is a classical proangiogenic factor that regulates abnormal glomerular angiogenesis linked to glomerular hypertrophy in the early stage of diabetic nephropathy. Leucine-rich alpha-2-glycoprotein-1 (LRG1) was recently reported as a novel proangiogenic factor that is expressed in endothelial cells and promotes angiogenesis by modulating the transforming growth factor-beta signaling pathway. However, the pathophysiology of LRGI in diabetic nephropathy remains largely unknown. In the present study, we investigated intrarenal expression of the novel proangiogenic factor LRG1 in diabetic db/db mice by immunohistochemistry and a laser capture microdissection method during the development of diabetic nephropathy. We hypothesized that glomerular LRG1 expression is increased earlier than VEGF expression under conditions of pathological angiogenesis in the early stage of diabetic nephropathy. Thus, we compared glomerular expression of VEGF and LRG1 in diabetic db/db mice at 16 and 24 weeks of age. At 16 weeks, diabetic db/db mice exhibited glomerular hypertrophy with abnormal angiogenesis characterized by endothelial cell proliferation, which was concomitant with an increase in LRG1 expression of glomerular endothelial cells. However, glomerular VEGF expression was not increased at this early stage. At 24 weeks, the features of early diabetic nephropathy in db/db mice had developed further, along with further enhanced glomerular LRGI expression. At this late stage, glomerular VEGF and fibrosisrelated-gene expression was also significantly increased compared with nondiabetic db/m mice. These results suggest that LRGI plays a pivotal role in the initial development of diabetic nephropathy by promoting abnormal angiogcncsis, thereby suggesting that LRG1 is a potential preemptive therapeutic target of diabetic nephropathy.
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