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https://hdl.handle.net/20.500.13003/20489 Early Life Programming of Adipose Tissue Remodeling and Browning Capacity by Micronutrients and Bioactive Compounds as a Potential Anti-Obesity Strategy
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eISSN: 2073-4409
WOS ID: 001234313200001
Scopus EID: 2-s2.0-85194130643
PMID: 38786092
Embase PUI: L2029985886
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Publication date
2024-05-18
Document type
research article
Citation
Bonet ML, Ribot J, Sánchez J, Palou A, Picó C. Early Life Programming of Adipose Tissue Remodeling and Browning Capacity by Micronutrients and Bioactive Compounds as a Potential Anti-Obesity Strategy. Cells. 2024 May 18;13(10).
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Abstract
The early stages of life, especially the period from conception to two years, are crucial for shaping metabolic health and the risk of obesity in adulthood. Adipose tissue (AT) plays a crucial role in regulating energy homeostasis and metabolism, and brown AT (BAT) and the browning of white AT (WAT) are promising targets for combating weight gain. Nutritional factors during prenatal and early postnatal stages can influence the development of AT, affecting the likelihood of obesity later on. This narrative review focuses on the nutritional programming of AT features. Research conducted across various animal models with diverse interventions has provided insights into the effects of specific compounds on AT development and function, influencing the development of crucial structures and neuroendocrine circuits responsible for energy balance. The hormone leptin has been identified as an essential nutrient during lactation for healthy metabolic programming against obesity development in adults. Studies have also highlighted that maternal supplementation with polyunsaturated fatty acids (PUFAs), vitamin A, nicotinamide riboside, and polyphenols during pregnancy and lactation, as well as offspring supplementation with myo-inositol, vitamin A, nicotinamide riboside, and resveratrol during the suckling period, can impact AT features and long-term health outcomes and help understand predisposition to obesity later in life.
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Keywords
MeSH
Pregnancy
Anti-Obesity Agents
Female
Animals
Humans
Adipose Tissue
Micronutrients
Obesity
Adipose Tissue, Brown
Anti-Obesity Agents
Female
Animals
Humans
Adipose Tissue
Micronutrients
Obesity
Adipose Tissue, Brown
DeCS
Tejido Adiposo
Animales
Tejido Adiposo Pardo
Obesidad
Humanos
Micronutrientes
Embarazo
Fármacos Antiobesidad
Femenino
Animales
Tejido Adiposo Pardo
Obesidad
Humanos
Micronutrientes
Embarazo
Fármacos Antiobesidad
Femenino












