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Published on: November 1, 2019
Melatonin treatment suppresses appetite genes and improves adipose tissue plasticity in diet-induced obese zebrafish
G Montalbano1,2, M Mania3, F Abbate3,4
1Department of Veterinary Sciences, University of Messina, Polo Universitario SS. Annunziata, Messina, 98168, Italy. gmontalbano@unime.it.
Purpose:
Overweight and obesity are important risk factors for diabetes, cardiovascular diseases, and premature death in modern society. Recently, numerous natural and synthetic compounds have been tested in diet-induced obese animal models, to counteract obesity. Melatonin is a circadian hormone, produced by pineal gland and extra-pineal sources, involved in processes which have in common a rhythmic expression. In teleost, it can control energy balance by activating or inhibiting appetite-related peptides. The study aims at testing effects of melatonin administration to control-fed and overfed zebrafish, in terms of expression levels of orexigenic (Ghrelin, orexin, NPY) and anorexigenic (leptin, POMC) genes expression and morphometry of visceral and subcutaneous fat depots.
Methods:
Adult male zebrafish (n = 56) were divided into four dietary groups: control, overfed, control + melatonin, overfed + melatonin. The treatment lasted 5 weeks and BMI levels of every fish were measured each week. After this period fishes were sacrificed; morphological and morphometric studies have been carried out on histological sections of adipose tissue and adipocytes. Moreover, whole zebrafish brain and intestine were used for qRT-PCR.
Results:
Our results demonstrate that melatonin supplementation may have an effect in mobilizing fat stores, in increasing basal metabolism and thus in preventing further excess fat accumulation. Melatonin stimulates the anorexigenic and inhibit the orexigenic signals.
Conclusions:
It seems that adequate melatonin treatment exerts anti-obesity protective effects, also in a diet-induced obesity zebrafish model, that might be the result of the restoration of many factors: the final endpoint reached is weight loss and stabilization of weight gain.
Insights
Melatonin supplementation in zebrafish reduced obesity by mobilizing fat stores and balancing appetite-regulating genes. This hormone treatment led to weight loss and stabilized weight gain in diet-induced obese fish.
Area of Science:
- Endocrinology
- Metabolic Research
- Zebrafish Models
Background:
- Obesity is a major risk factor for chronic diseases like diabetes and cardiovascular conditions.
- Melatonin, a circadian hormone, influences energy balance and appetite regulation.
- Zebrafish are a valuable model for studying metabolic disorders due to their genetic similarity to mammals.
Purpose of the Study:
- To investigate the anti-obesity effects of melatonin in diet-induced obese zebrafish.
- To analyze the impact of melatonin on orexigenic and anorexigenic gene expression.
- To assess changes in fat depots and adipocyte morphology following melatonin treatment.
Main Methods:
- Adult male zebrafish were divided into control and overfed groups, with and without melatonin supplementation for 5 weeks.
- Body Mass Index (BMI) was monitored weekly.
- Histological analysis of adipose tissue and gene expression analysis (qRT-PCR) of brain and intestine tissues were performed.
Main Results:
- Melatonin supplementation promoted fat mobilization and increased basal metabolism, preventing excessive fat accumulation.
- Melatonin treatment suppressed orexigenic signals (Ghrelin, orexin, NPY) and stimulated anorexigenic signals (leptin, POMC).
- Morphometric analysis indicated reduced adipocyte size and improved fat depot morphology.
Conclusions:
- Melatonin exhibits significant anti-obesity effects in a zebrafish model of diet-induced obesity.
- The observed protective effects are attributed to the restoration of metabolic balance and appetite regulation.
- Melatonin treatment leads to weight loss and stabilization of weight gain, highlighting its therapeutic potential.
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