4.1 Article

Ramadan fasting model exerts hepatoprotective, anti-obesity, and anti-hyperlipidemic effects in an experimentally-induced nonalcoholic fatty liver in rats

Journal

SAUDI JOURNAL OF GASTROENTEROLOGY
Volume 30, Issue 1, Pages 53-62

Publisher

WOLTERS KLUWER MEDKNOW PUBLICATIONS
DOI: 10.4103/sjg.sjg_204_23

Keywords

Anti-Hyperlipidemia; hepatoprotective; NAFLD; obesity; Ramadan fasting

Funding

  1. King Saud University, Riyadh, Saudi Arabia [RSP2023R338]

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This study aimed to validate the potential therapeutic benefits of the Ramadan fasting model on nonalcoholic fatty liver disease. Through experiments on obese male rats, it was found that this model can reduce weight, improve lipid profile, lower liver enzyme levels, and reduce hepatic steatosis.
Background: The epidemic of nonalcoholic fatty liver disease (NAFLD) and its metabolic effects present a serious public health concern. We hypothesized that the Ramadan fasting model (RFM), which involves fasting from dawn to dusk for a month, could provide potential therapeutic benefits and mitigate NAFLD. Accordingly, we aimed to validate this hypothesis using obese male rats. Methods: Rats were split into two groups (n = 24 per group), and they were given either a standard (S) or high-fat diet (HFD) for 12 weeks. During the last four weeks of the study period, both S- and HFD-fed rats were subdivided into eight groups to assess the effect of RFM with/without training (T) or glucose administration (G) on the lipid profile, liver enzymes, and liver structure (n = 6/group). Results: The HFD+RFM group exhibited a significantly lower final body weight than that in the HFDC group. Serum cholesterol, low-density lipoprotein, and triglyceride levels were significantly lower in the HFD+RFM, HFD+RFM+T, and HFD+RFM+G groups than those in the HFDC group. Compared with the HFDC group, all groups had improved serum high-density lipoprotein levels. Furthermore, HFD groups subjected to RFM had reduced serum levels of aspartate transaminase and alanine transaminase compared with those of the HFD-fed group. Moreover, the liver histology improved in rats subjected to RFM compared with that of HFD-fed rats, which exhibited macro- and micro-fat droplet accumulation. Conclusion: RFM can induce positive metabolic changes and improve alterations associated with NAFLD, including weight gain, lipid profile, liver enzymes, and hepatic steatosis.

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