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Oct-B: A derivative of L-BAIBA significantly alleviating high-fat diet-induced obesity in mice. | LitMetric

Oct-B: A derivative of L-BAIBA significantly alleviating high-fat diet-induced obesity in mice.

Biochem Biophys Res Commun

Translational Pharmaceutical Laboratory, Jining First People's Hospital, Shandong First Medical University, Jining, 272000, China; Institute of Translational Pharmacy, Jining Medical Research Academy, Jining, 272000, China. Electronic address:

Published: November 2024

AI Article Synopsis

  • * Oct-B not only lowers harmful lipids and liver enzyme levels but also reduces fat accumulation in the liver and regulates fat-related proteins in white adipose tissue, indicating its potential in improving metabolic health.
  • * The research suggests that Oct-B works by altering the expression of various genes related to fat storage and breakdown, enhancing the body’s ability to manage fat and providing a promising therapeutic option for obesity related to high-fat diets.

Article Abstract

The rising prevalence of obesity is a global health concern. Supplementation with (S)-β-aminoisobutyric acid (L-BAIBA) has shown potential in preventing obesity and related metabolic disorders induced by high-fat diets. However, developing effective and low-toxicity BAIBA derivatives remains a challenging yet promising field. In this study, we introduce Oct-B, a novel BAIBA ester compound, which exhibits 80-fold greater efficacy than L-BAIBA in alleviating obesity in high-fat diet-fed mice. Our results demonstrate that Oct-B significantly reduces serum TG, TC, LDL-C, and the activities of ALT and AST, and also reduces TG and TC in liver, surpassing the effects of L-BAIBA. Histological analysis shows that Oct-B significantly decreases lipid accumulation in liver tissues, normalizes mast cells in white adipose tissue, and upregulates the expression of UCP1 protein in white adipose tissue. The qRT-PCR results indicated Oct-B alleviates obesity by downregulating lipogenic genes (PPARγ, ACC1, FAS), upregulating lipolysis related genes (PPARα, HSL) and thermogenic gene UCP1. Additionally, quantitative mass spectrometry reveals a marked increase in L-BAIBA levels in white fat, brown fat, serum, and muscle following Oct-B administration. These findings suggest that Oct-B is an efficient L-BAIBA substitute, offering a promising therapeutic approach for preventing and treating high-fat diet-induced obesity.

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Source
http://dx.doi.org/10.1016/j.bbrc.2024.150739DOI Listing

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