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Active TRAINING, INDIVIDUAL NIH (US)

PERIFORNICAL AREA OF THE ANTERIOR HYPOTHALAMUS REGULATES METABOLIC BALANCE

$818.9K USD

Funder NATIONAL INSTITUTE OF DIABETES AND DIGESTIVE AND KIDNEY DISEASES
Recipient Organization Baylor College of Medicine
Country United States
Start Date Sep 01, 2024
End Date Aug 31, 2027
Duration 1,094 days
Number of Grantees 1
Roles Principal Investigator
Data Source NIH (US)
Grant ID 10992553
Grant Description

PROJECT SUMMARY Obesity is a common, serious, and costly chronic disease that continues to increase in the world. Understanding the causes and determinants of obesity is a critical step toward developing effective policies and treatments to prevent this pandemic. The fundamental cause of obesity and overweight is an imbalance of energy homeostasis

between calorie consumption and expenditure. Energy homeostasis is strictly regulated by the central nervous system, and the hypothalamus is a brain region thought to play a critical role in the regulation of energy balance. The perifornical area of the anterior hypothalamus (PeFAH) was identified in 2015 and its function is unknown.

The PeFAH has extensive extracellular structures, perineuronal nets (PNNs), to enmesh GABAergic neurons. I found that chronic disruption of PNNs in the PeFAH decreases the excitability of GABAergic neurons and prevents high-fat diet induced weight gain and fat mass accumulation. The first objective of this proposal is to

use loss-of-function and gain-of-function model to determine the functional relevance of PeFAH PNNs in energy homeostasis in mice fed with high-fat diet. The second objective is to determine how PNNs regulate excitability/synaptic activity of GABAPeFAH neurons, and I will also use pharmacological, chemogenetic and

genetic methods to further investigate the possible orexigenic role of GABAPeFAH neurons in energy homeostasis. The proposed studies are expected to substantially advance the understanding about the newly discovered brain region in regulation of feeding behavior and metabolic process in general. They could be novel therapeutic

targets for the treatment or prevention of obesity or overeating.

All Grantees

Baylor College of Medicine

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