4.7 Article

Glomerular injury is exacerbated in diabetic integrin α1-null mice

期刊

KIDNEY INTERNATIONAL
卷 70, 期 3, 页码 460-470

出版社

ELSEVIER SCIENCE INC
DOI: 10.1038/sj.ki.5000359

关键词

streptozotocin; collagen IV; integrins; diabetes; reactive oxygen species

资金

  1. NCI NIH HHS [R01 CA94849-01] Funding Source: Medline
  2. NIDDK NIH HHS [P50 DK39261-16, P01 DK65123, U01DK61018, R01 DK69921, K08 DK59975] Funding Source: Medline

向作者/读者索取更多资源

Excessive glomerular collagen IV and reactive oxygen species (ROS) production are key factors in the development of diabetic nephropathy. Integrin alpha 1 beta 1, the major collagen IV receptor, dowregulates collagen IV and ROS production, suggesting this integrin might determine the severity of diabetic nephropathy. To test this possibility, wild-type and integrin alpha 1-null mice were rendered diabetic with streptozotocin (STZ) (100mg/kg single intraperitoneal injection), after which glomerular filtration rate (GFR), glomerular collagen deposition, and glomerular basement membrane (GBM) thickening were evaluated. In addition, ROS and collagen IV production by mesangial cells as well as their proliferation was measured in vitro. Diabetic alpha 1-null mice developed worse renal disease than diabetic wild-type mice. A significant increase in GFR was evident in the alpha 1-null mice at 6 weeks after the STZ injection; it started to decrease by week 24 and reached levels of non-diabetic mice by week 36. In contrast, GFR only increased in wild-type mice at week 12 and its elevation persisted throughout the study. Diabetic mutant mice also showed increased glomerular deposition of collagen IV and GBM thickening compared to diabetic wild-type mice. Primary all-null mesangial cells exposed to high glucose produced more ROS than wild-type cells, which led to decreased proliferation and increased collagen IV synthesis, thus mimicking the in vivo finding. In conclusion, this study suggests that lack of integrin alpha 1 beta 1 exacerbates the glomerular injury in a mouse model of diabetes by modulating GFR, ROS production, cell proliferation, and collagen deposition.

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