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1.
Birth Defects Res ; 115(19): 1835-1850, 2023 11 15.
Artigo em Inglês | MEDLINE | ID: mdl-37497595

RESUMO

Orofacial clefts (OFCs) are one of the most common types of structural birth defects. The etiologies are complicated, involving with genetic, epigenetic, and environmental factors. Studies have found that maternal diabetes and metabolic syndrome are associated with a higher risk of OFCs in offspring. Metabolic syndrome is a clustering of several disease risk factors, including hyperglycemia, dyslipidemia, obesity, and hypertension. Metabolic disease during pregnancy can increase risk of adverse outcomes and significantly influence fetal development, including orofacial formation and fusion. An altered metabolic state may contribute to developmental disorders or congenital defects including OFCs, potentially through epigenetic modulations, such as histone modification, DNA methylation, and noncoding RNA expression to alter activities of critical morphogenetic signaling or related developmental genes. This review summarizes the currently available evidence and underlying mechanisms of how the maternal metabolic syndrome is associated with OFCs in mostly human and some animal studies. It may provide a better understanding of the interactions between intrauterine metabolic status and fetal orofacial development which might be applied toward prevention and treatments of OFCs.


Assuntos
Fenda Labial , Fissura Palatina , Diabetes Gestacional , Síndrome Metabólica , Gravidez , Feminino , Animais , Humanos , Fenda Labial/complicações , Fenda Labial/genética , Fissura Palatina/complicações , Fissura Palatina/genética , Síndrome Metabólica/complicações , Síndrome Metabólica/genética , Epigênese Genética
2.
Aging Cell ; 16(1): 4-16, 2017 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-27686535

RESUMO

In mammals, seven members of the sirtuin protein family known as class III histone deacetylase have been identified for their characteristic features. These distinguished characteristics include the tissues where they are distributed or located, enzymatic activities, molecular functions, and involvement in diseases. Among the sirtuin members, SIRT3 has received much attention for its role in cancer genetics, aging, neurodegenerative disease, and stress resistance. SIRT3 controls energy demand during stress conditions such as fasting and exercise as well as metabolism through the deacetylation and acetylation of mitochondrial enzymes. SIRT3 is well known for its ability to eliminate reactive oxygen species and to prevent the development of cancerous cells or apoptosis. This review article provides a comprehensive review on numerous (noteworthy) molecular functions of SIRT3 and its effect on cancer cells and various diseases including Huntington's disease, amyotrophic lateral sclerosis, and Alzheimer's disease.


Assuntos
Fenômenos Fisiológicos Celulares , Mitocôndrias/metabolismo , Neoplasias/metabolismo , Doenças Neurodegenerativas/metabolismo , Sirtuína 3/metabolismo , Animais , Humanos , Modelos Biológicos
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