The caveolin-1 regulated protein follistatin protects against diabetic kidney disease

Dan Zhang1, Agata L Gava2, Richard Van Krieken1

  • 1Division of Nephrology, Department of Medicine, McMaster University, Hamilton, Ontario, Canada.

Kidney International
|September 8, 2019
PubMed

Insights

Caveolin-1 deletion upregulates follistatin, inhibiting activin A. This protects against diabetic kidney disease by reducing glomerular matrix accumulation and offering a potential new therapy.

Area of Science:

  • Nephrology
  • Molecular Biology
  • Diabetology

Background:

  • Diabetic kidney disease involves glomerular matrix accumulation driven by mesangial cells.
  • Caveolae and caveolin-1 regulate matrix synthesis in response to high glucose.
  • Caveolin-1 knockout mice show protection against diabetic kidney disease.

Purpose of the Study:

  • To investigate the molecular mechanisms behind caveolin-1's protective role in diabetic kidney disease.
  • To explore the role of follistatin and activins in diabetic kidney disease pathogenesis.
  • To evaluate follistatin as a potential therapeutic agent for diabetic kidney disease.

Main Methods:

  • In vitro studies using primary mesangial cells to assess follistatin regulation by caveolin-1 and its effect on matrix production.
  • In vivo studies using immunohistochemistry to detect activin A in mouse and human diabetic kidney disease.
  • Administration of follistatin to type 1 diabetic Akita mice to evaluate its therapeutic effects.

Main Results:

  • Caveolin-1 deletion upregulates follistatin, which inhibits basal and glucose-induced matrix production in mesangial cells.
  • Activin A is upregulated in both mouse and human diabetic kidney disease kidneys.
  • Follistatin treatment attenuated key features of early diabetic kidney disease in Akita mice.

Conclusions:

  • Activin A mediates high glucose-induced profibrotic responses in mesangial cells.
  • Follistatin acts as an antifibrotic factor by neutralizing activins.
  • Follistatin represents a potential novel therapeutic strategy for preventing diabetic kidney disease.

Related Concept Videos

A High-Throughput Multiplexed Screening for Type 1 Diabetes, Celiac Diseases, and COVID-1906:46

A High-Throughput Multiplexed Screening for Type 1 Diabetes, Celiac Diseases, and COVID-19

In line with the urgent need for screening for type 1 diabetes, celiac disease, and coronavirus disease 2019, we developed a high throughput 6-Plex electrochemiluminescence assay to simultaneously detect all four islet autoantibodies, tissue transglutaminase autoantibodies, and antibodies to the receptor binding domain of severe acute respiratory syndrome coronavirus...
3.2K
Comparative Proteomic Analysis of Whole Kidney, Medulla, and Cortical Tubules in Diabetic Pathogenesis of Kidney Injury in Mice10:31

Comparative Proteomic Analysis of Whole Kidney, Medulla, and Cortical Tubules in Diabetic Pathogenesis of Kidney Injury in Mice

Here, we present a detailed protocol for proteomic analysis of the whole kidney, isolated cortical tubule, and medullary proteomes. The study also compares regional proteomes in a diabetic mouse model and non-diabetic mice.
618
A High-Throughput Electrochemiluminescence 7-Plex Assay Simultaneously Screening for Type 1 Diabetes and Multiple Autoimmune Diseases06:50

A High-Throughput Electrochemiluminescence 7-Plex Assay Simultaneously Screening for Type 1 Diabetes and Multiple Autoimmune Diseases

We model a simple multiplexed ECL assay that combines 7 autoantibody assays together. The assay is capable of screening for T1D and multiple other autoimmune diseases, simultaneously, including celiac disease, autoimmune thyroid disease, and autoimmune polyglandular syndrome...
3.0K
Regulatory T cells: Therapeutic Potential for Treating Transplant Rejection and Type I Diabetes16:26

Regulatory T cells: Therapeutic Potential for Treating Transplant Rejection and Type I Diabetes

6.2K
An Assay to Detect Protection of the Retinal Vasculature from Diabetes-Related Death in Mice04:36

An Assay to Detect Protection of the Retinal Vasculature from Diabetes-Related Death in Mice

A protection assay was developed to monitor the retinal vasculature's resilience to death from diabetes/diabetic retinopathy-related insults such as oxidative stress and cytokines.
1.6K
A Protocol for Constructing a Rat Wound Model of Type 1 Diabetes05:18

A Protocol for Constructing a Rat Wound Model of Type 1 Diabetes

The streptozotocin-induced diabetic wound model in male SD rats is currently the most widely used model for studying wound healing in type I diabetes mellitus. This protocol describes the methods used to construct this model. It also presents and addresses potential challenges and examines the progression and angiogenic characteristics of diabetic wounds.
5.6K