Ion channels alterations in the forebrain of high-fat diet fed rats

Proshanta Roy1, Ilenia Martinelli2, Michele Moruzzi3

  • 1School of Biosciences and Veterinary Medicine, University of Camerino. proshanta.roy@unicam.it.

Insights

Diet-induced obesity alters transient receptor potential (TRP) ion channel expression in rat brains, specifically TRPC1, TRPC6, and TRPM2 in the hippocampus and frontal cortex, suggesting neuroinflammation and synaptic changes.

Area of Science:

  • Neuroscience
  • Metabolic Disorders
  • Ion Channel Physiology

Background:

  • Transient receptor potential (TRP) ion channel dysfunction is implicated in metabolic and neurological disorders.
  • TRP channelopathies, caused by gene dysregulation, affect multiple organ systems, including the nervous system.

Purpose of the Study:

  • To investigate the expression of TRP ion channels in the forebrain of rats with diet-induced obesity (DIO).
  • To correlate changes in TRP channel expression with metabolic parameters and potential neurodegenerative processes.

Main Methods:

  • Diet-induced obesity model in rats using a high-fat diet (HFD) for 17 weeks.
  • Assessment of metabolic parameters: body weight, food intake, fat mass, glucose, insulin, cholesterol, and triglycerides.
  • Analysis of TRP channel gene and protein expression in the frontal cortex (FC) and hippocampus (HIP) using qRT-PCR, Western blot, and immunohistochemistry.

Main Results:

  • DIO rats exhibited significant weight gain and altered metabolic profiles.
  • TRPC1 and TRPC6 channels were upregulated in the hippocampus but downregulated in the frontal cortex of DIO rats.
  • TRPM2 expression increased in both the hippocampus and frontal cortex, potentially linked to oxidative stress.

Conclusions:

  • Altered TRP channel expression in the DIO rat brain may indicate neuroinflammation and neurodegeneration, evidenced by glial cell activation and PSD-95 alterations.
  • These findings provide insights into neuronal changes in obesity and highlight the potential of TRP channels as therapeutic targets.
  • Further research is needed to elucidate the role of TRP channels in synaptic plasticity and cognitive decline associated with obesity.

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