6 Month Update: Carmen De Miguel

6 Month Project Update

The goal of our pilot project is to identify the role that the G protein-coupled estrogen receptor (GPER) plays in the development and progression of kidney disease during type 1 diabetes. GPER is expressed in many organs in the body, but interestingly, females have almost twice as much expression of this receptor in the kidney compared to males. By using a mouse model that lacks GPER, we aim to determine the role of GPER in kidney disease during type 1 diabetes. We are also interested in determining if GPER plays the same role in diabetic kidney disease in both sexes.

During the last 6 months we have made important progress with this project. We measured the levels of different markers of kidney disease in the urine of male mice after 10 weeks of diabetes. Our preliminary results suggest that, similar to what happens in patients with diabetes, there is an increase of protein in urine with the disease; however, the absence of GPER leads to lower excretion of kidney injury marker-1 (KIM-1) in the urine. These results suggest that GPER mediates damage to the kidney in the male mice, as absence of GPER prevents the damage. Other markers of kidney damage, like NGAL or nephrin were not chemokine that attracts and activates leukocytes. Accordingly, we also found lower numbers of T cells in the kidney of GPER KO mice compared to diabetic control mice. Altogether, these preliminary data suggest that activation of GPER leads to kidney damage and increased inflammation in type 1 diabetes. We are still trying to determine if this is also true in the female kidney during diabetes. 

In the next six months, we aim to further characterize the immune landscape systemically and in the kidney of both males and females during diabetes. We will perform flow cytometry studies to determine the populations of immune cells as well as their activation status in diabetic control and GPER KO mice. We will also finish histological staining of kidney tissue in order to quantify the degree of kidney damage present in our experimental animals. In addition, we will also measure if lack of GPER leads to changes to kidney function by measuring glomerular filtration rate in vivo, as well as glomerular permeability to albumin in ex vivo glomeruli. 

Related Projects

We grant up to $75,000 to support each research project

 
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