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Vascular endothelial growth factor-receptor 1 inhibition aggravates diabetic nephropathy through eNOS signaling
Keun Suk Yang1, Ji Hee Lim1, Tae Woo Kim1
1Seoul St. Mary's Hospital, Department of Internal Medicine, College of Medicine, the Catholic University of Korea, Seoul, Korea.
Abstract:
The manipulation of vascular endothelial growth factor (VEGF)-receptors (VEGFRs) in diabetic nephropathy is as controversial as issue as ever. It is known to be VEGF-A and VEGFR2 that regulate most of the cellular actions of VEGF in experimental diabetic nephropathy. On the other hand, such factors as VEGF-A, -B and placenta growth factor bind to VEGFR1 with high affinity. Such notion instigated us to investigate on whether selective VEGFR1 inhibition with GNQWFI hexamer aggravates the progression of diabetic nephropathy in db/db mice. While diabetes suppressed VEGFR1, it did increase VEGFR2 expressions in the glomerulus. Db/db mice with VEGFR1 inhibition showed more prominent features with respect to, albuminuria, mesangial matrix expansion, inflammatory cell infiltration and greater numbers of apoptotic cells in the glomerulus, and oxidative stress than that of control db/db mice. All these changes were related to the suppression of diabetes-induced increases in PI3K activity and Akt phosphorylation as well as the aggravation of endothelial dysfunction associated with the inactivation of FoxO3a and eNOS-NOx. In cultured human glomerular endothelial cells (HGECs), high-glucose media with VEGFR1 inhibition induced more apoptotic cells and oxidative stress than did high-glucose media alone, which were associated with the suppression of PI3K-Akt phosphorylation, independently of the activation of AMP-activated protein kinase, and inactivation of FoxO3a and eNOS-NOx pathway. In addition, transfection with VEGFR1 siRNA in HGECs also suppressed PI3K-Akt-eNOS signaling. In conclusion, the specific blockade of VEGFR1 with GNQWFI caused severe renal injury related to profound suppression of the PI3K-Akt, FoxO3a and eNOS-NOx pathway, giving rise to the oxidative stress-induced apoptosis of glomerular cells in type 2 diabetic nephropathy.
Insights
Selective inhibition of vascular endothelial growth factor receptor 1 (VEGFR1) worsened diabetic nephropathy in mice. This VEGFR1 blockade aggravated kidney injury by suppressing key signaling pathways, leading to increased cell death and oxidative stress.
Area of Science:
- Nephrology
- Endocrinology
- Molecular Biology
Background:
- Vascular endothelial growth factor receptors (VEGFRs) play a complex role in diabetic nephropathy.
- VEGF-A and VEGFR2 are known regulators, while VEGF-A, VEGF-B, and placenta growth factor bind VEGFR1.
Purpose of the Study:
- To investigate if selective VEGFR1 inhibition exacerbates diabetic nephropathy progression in db/db mice.
- To explore the molecular mechanisms underlying VEGFR1's role in diabetic kidney disease.
Main Methods:
- Utilized db/db mouse model of type 2 diabetic nephropathy.
- Administered GNQWFI hexamer for selective VEGFR1 inhibition.
- Examined glomerular histology, albuminuria, oxidative stress, and apoptosis.
- Investigated PI3K/Akt, FoxO3a, and eNOS-NOx signaling pathways.
- Conducted experiments using cultured human glomerular endothelial cells (HGECs) with high-glucose media and VEGFR1 siRNA.
Main Results:
- VEGFR1 inhibition in db/db mice led to increased albuminuria, mesangial expansion, inflammation, apoptosis, and oxidative stress.
- Suppression of PI3K activity, Akt phosphorylation, FoxO3a, and eNOS-NOx was observed.
- High-glucose conditions with VEGFR1 inhibition in HGECs increased apoptosis and oxidative stress.
- VEGFR1 inhibition downregulated PI3K-Akt-eNOS signaling in HGECs, independent of AMPK activation.
Conclusions:
- Specific blockade of VEGFR1 with GNQWFI significantly worsened renal injury in type 2 diabetic nephropathy.
- VEGFR1 inhibition suppressed crucial PI3K-Akt, FoxO3a, and eNOS-NOx pathways.
- This suppression resulted in oxidative stress-induced apoptosis of glomerular cells.
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