Catechins prevent obesity-induced kidney damage by modulating PPARγ/CD36 pathway and gut-kidney axis in rats

Vikram Patial1, Swati Katoch1, Jyoti Chhimwal1

  • 1Pharmacology and Toxicology Laboratory, Dietetics and Nutrition Technology Division, CSIR-Institute of Himalayan Bioresource Technology, Palampur 176061, H.P., India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, Uttar Pradesh 201002, India.

Life Sciences
|January 26, 2023
PubMed

Insights

Green tea catechins (GTC) prevent obesity-induced kidney damage by improving gut health and modulating key molecular pathways. This study highlights GTC as a potential therapeutic for metabolic and kidney health.

Area of Science:

  • Biochemistry
  • Pharmacology
  • Nephrology

Background:

  • Obesity is a global health crisis and a major risk factor for chronic kidney disease (CKD).
  • Understanding the molecular mechanisms linking obesity to kidney damage is crucial for developing effective interventions.

Purpose of the Study:

  • To investigate the protective effects of green tea catechins (GTC) against obesity-induced kidney damage.
  • To elucidate the underlying molecular mechanisms, including effects on cellular signaling and gut microbiota.

Main Methods:

  • Quantification of green tea catechins using HPLC.
  • In vitro studies using NRK-52E cells treated with fatty acids and GTC.
  • In vivo studies with rats fed a high-fat diet (HFD) and treated with GTC at varying doses.
  • Assessment of kidney function markers, adipokines, insulin levels, gene expression, histopathology, gut microbiota composition, and fecal metabolome.

Main Results:

  • GTC treatment reduced fat accumulation in vitro and improved kidney function markers (creatinine, urea, microalbumin) in HFD-fed rats.
  • GTC modulated the expression of PPARγ, CD36, and TGFβ, indicating effects on lipid metabolism and fibrosis.
  • GTC treatment improved insulin sensitivity, reduced inflammation, prevented gut dysbiosis by promoting beneficial bacteria, and altered fecal metabolites.

Conclusions:

  • Green tea catechins (GTC) demonstrate significant protective effects against obesity-induced kidney damage.
  • GTC acts by modulating PPARγ/CD36 signaling pathways and improving gut health and microbial balance.
  • These findings suggest GTC as a potential therapeutic agent for managing obesity-related kidney complications.

Related Concept Videos

cAMP-dependent Protein Kinase Pathways01:25

cAMP-dependent Protein Kinase Pathways

Cyclic Adenosine Monophosphate (cAMP) is an essential second messenger that activates protein kinase A (PKA) and regulates various biological processes. A single epinephrine molecule binds to GPCR and activates several heterotrimeric G proteins, each stimulating multiple adenylyl cyclase, amplifying the signal, and synthesizing large numbers of cAMP molecules. Small changes in cAMP concentration affect PKA activity. The binding of four cAMP molecules induces a conformational change in PKA,...
6.5K
External Anatomy of the Kidney01:21

External Anatomy of the Kidney

The kidneys are a pair of bean-shaped organs in the human body that play a critical role in maintaining overall health. They filter out waste products from the blood, regulate blood pressure, maintain electrolyte balance, and stimulate the production of red blood cells.
The kidneys are located in the retroperitoneal space on either side of the vertebral column, protected posteriorly by the 11th and 12th ribs. The right kidney sits slightly lower than the left owing to the presence of the liver...
1.3K
GPCRs Regulate Adenylyl Cylase Activity01:09

GPCRs Regulate Adenylyl Cylase Activity

Some GPCRs transmit signals through adenylyl cyclase (AC), a transmembrane enzyme. AC helps synthesize second messenger cyclic adenosine monophosphate (cAMP). AC catalyzes cyclization reaction and converts ATP to cAMP by releasing a pyrophosphate. The pyrophosphate is further hydrolyzed to phosphate by the enzyme pyrophosphatase, which drives cAMP synthesis to completion. However, cAMP is rapidly degraded to 5′ AMP by the enzymes phosphodiesterase (PDE), preventing overstimulation of...
5.8K