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The molecular basis of age-related kidney disease
Feng Zheng1, Anna Rita Plati, Anita Banerjee
1Department of Medicine, Vascular Biology Institute, University of Miami, Miami, FL 33136, USA.
Abstract:
Renal disease affects 11% of people in the United States over the age of 65, not including those with diabetes or hypertension. Although glomerular disease is the most common underlying etiology of age-related renal dysfunction, the cause of glomerular disease and whether it is the only contributor to renal failure are not known. Our studies in female mice show that renal disease in the postmenopausal period is associated with progressive glomerular enlargement and scarring, as well as abnormal renal function. To study the underlying causes of aging-related glomerular disease, we isolated and characterized glomerular smooth muscle (mesangial) cells from female mice of various ages. We found that the cells from older mice exhibit a variety of phenotypic changes, including increased concentrations of p27, a protein that serves to inhibit progression from the G1 to the S phase of the cell cycle. Because the bone marrow (BM) contains mesangial cell progenitors that can transfer the donor glomerular phenotype (normal or diseased) to recipients, we exchanged BM between postmenopausal and premenopausal mice and found that aging-related glomerular enlargement and scarring are transferred to young recipient glomeruli. In addition, BM from normal, young donors led to the regression of aging-related glomerular disease in postmenopausal recipients; namely, both glomerular enlargement and scarring were reduced. Thus, aging-related glomerular disease is an entity distinct from all other causes of renal disease, is characterized by phenotypic changes in mesangial cell progenitors, and is reversible when the phenotype of the progenitors is returned to normal.
Insights
Aging-related kidney disease in older female mice involves glomerular enlargement and scarring. Bone marrow cell transplants show this condition is reversible by restoring normal progenitor cell function.
Area of Science:
- Nephrology
- Gerontology
- Cell Biology
Background:
- Renal disease impacts 11% of Americans over 65, excluding those with diabetes or hypertension.
- Glomerular disease is a primary cause of age-related kidney dysfunction, but its origins and role in renal failure remain unclear.
- Aging is linked to progressive glomerular enlargement, scarring, and impaired renal function in female mice.
Purpose of the Study:
- To investigate the underlying causes of aging-related glomerular disease.
- To characterize phenotypic changes in mesangial cells (glomerular smooth muscle cells) with age.
- To determine the role of bone marrow-derived progenitors in the development and reversibility of aging-related glomerular disease.
Main Methods:
- Isolation and characterization of mesangial cells from female mice of varying ages.
- Phenotypic analysis of mesangial cells, including p27 protein concentration.
- Bone marrow (BM) transplantation experiments between postmenopausal and premenopausal mice.
- Assessment of glomerular enlargement and scarring following BM exchange.
Main Results:
- Mesangial cells from older mice showed increased p27 concentrations, inhibiting cell cycle progression.
- Aging-related glomerular changes were transferable to young recipients via BM transplantation.
- BM transplantation from young, healthy donors reversed glomerular enlargement and scarring in older recipients.
Conclusions:
- Aging-related glomerular disease is a distinct entity characterized by progenitor cell phenotypic changes.
- The disease is reversible by normalizing the phenotype of bone marrow-derived mesangial cell progenitors.
- This suggests a novel therapeutic target for age-related kidney disease.