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American Journal of Physiology - Endocrinology and Metabolism, ISSN 0193-1849, 05/2016, Volume 310, Issue 10, pp. E797 - E810
The placental metabolism can adapt to the environment throughout pregnancy to both the demands of the fetus and the signals from the mother. Such adaption... 
Reproduction | Placenta | Peroxisome proliferator-activated receptors | Epigenetic programming | Metabolism | PHYSIOLOGY | DIFFERENTIAL EXPRESSION | LIPID-METABOLISM | HIGH-FAT-DIET | DNA METHYLATION | PROTEIN RESTRICTION | peroxisome proliferator-activated receptors | epigenetic programming | NITRIC-OXIDE PRODUCTION | GAMMA/RXR-ALPHA HETERODIMERS | ENDOCRINOLOGY & METABOLISM | GENE-EXPRESSION | placenta | PPAR-GAMMA | metabolism | INTRAUTERINE GROWTH RESTRICTION | reproduction | Glucose Transport Proteins, Facilitative - metabolism | Diabetes, Gestational - metabolism | Epigenesis, Genetic | Humans | Fetus - metabolism | Malnutrition - metabolism | Overnutrition - metabolism | PPAR gamma - metabolism | Diabetes, Gestational - genetics | Malnutrition - genetics | Gene Expression Regulation, Developmental | Female | Lipid Metabolism - genetics | Fetal Development - genetics | Pregnancy Complications - metabolism | Energy Metabolism - genetics | Fatty Acids - metabolism | PPAR gamma - genetics | Peroxisome Proliferator-Activated Receptors - genetics | Signal Transduction | Placentation | Placenta - metabolism | Pregnancy | Peroxisome Proliferator-Activated Receptors - metabolism | Pregnancy Complications - genetics | Glucose - metabolism | Overnutrition - genetics | Epigenetic inheritance | Peroxisomes | Cell receptors | Growth | Physiological aspects | Fetus | Physiological research | Genetic aspects | Research | Epigenetics | Prenatal development | Gene expression
Journal Article
American Journal of Physiology - Endocrinology and Metabolism, ISSN 0193-1849, 2017, Volume 312, Issue 1, pp. E27 - E36
Citrulline (CIT) is an endogenous amino acid produced by the intestine. Recent literature has consistently shown CIT to be an activator of muscle protein... 
Protein synthesis | Mammalian target of rapamycin | Mitogen-activated protein kinase | Amino acids | Muscle | Myotube | Phosphatidylinositol 3-kinase | Eukaryotic initiation factor 4E-binding protein 1 | CELLS | PHYSIOLOGY | NITROGEN HOMEOSTASIS | amino acids | RATS | protein synthesis | eukaryotic initiation factor 4E-binding protein 1 | IMPAIRMENT | mitogen-activated protein kinase | CROSS-TALK | SUPPLEMENTATION | SKELETAL-MUSCLE | mammalian target of rapamycin | myotube | METABOLISM | AMINO-ACIDS | muscle | ENDOCRINOLOGY & METABOLISM | LEUCINE | phosphatidylinositol 3-kinase | Phosphoproteins - drug effects | TOR Serine-Threonine Kinases - metabolism | Citrulline - metabolism | Malnutrition - metabolism | Male | Muscle, Skeletal - metabolism | Phosphatidylinositol 3-Kinases - metabolism | Muscle Fibers, Skeletal - drug effects | Muscle Fibers, Skeletal - metabolism | Carrier Proteins - drug effects | Phosphoproteins - metabolism | Mechanistic Target of Rapamycin Complex 1 | Muscle Proteins - biosynthesis | Multiprotein Complexes - metabolism | Muscle, Skeletal - drug effects | Phosphatidylinositol 3-Kinases - drug effects | Flavonoids - pharmacology | Chromones - pharmacology | Proto-Oncogene Proteins c-akt - metabolism | TOR Serine-Threonine Kinases - drug effects | Multiprotein Complexes - drug effects | Signal Transduction | Enzyme Inhibitors - pharmacology | Morpholines - pharmacology | Rats | Muscle Proteins - drug effects | Rats, Sprague-Dawley | Sirolimus - pharmacology | Animals | Carrier Proteins - metabolism | Citrulline - pharmacology | Androstadienes - pharmacology | Protein Kinase Inhibitors - pharmacology | In Vitro Techniques | Mitogen-Activated Protein Kinases - drug effects | Mitogen-Activated Protein Kinases - metabolism | Proto-Oncogene Proteins c-akt - drug effects | Physiological aspects | Protein research | Protein biosynthesis | Citrulline | Research | Homeostasis | Phosphorylation | Muscular system | Digestive system | Life Sciences | Human health and pathology | Endocrinology and metabolism
Journal Article
Endocrinology, ISSN 0013-7227, 08/2010, Volume 151, Issue 8, pp. 3652 - 3664
Journal Article
PLoS ONE, ISSN 1932-6203, 03/2017, Volume 12, Issue 3, p. e0174894
Dexmedetomidine is generally used for sedaton in critically ill, it could shorten duration of mechanical ventilation, ICU stay and lower basic metabolism.... 
TRIAL | SKELETAL-MUSCLE | MULTIDISCIPLINARY SCIENCES | SEDATION | SIGNALS | PATIENT | SEPSIS | WEIGHT | CRITICALLY-ILL PATIENTS | INTENSIVE-CARE | PROPOFOL | Tumor Necrosis Factor-alpha - metabolism | Interleukin-1 - metabolism | Dexmedetomidine - therapeutic use | Muscular Atrophy - metabolism | Endotoxemia - drug therapy | Rats | Male | Muscle, Skeletal - metabolism | Neuropeptides - metabolism | Muscular Atrophy - drug therapy | Agouti-Related Protein - metabolism | Rats, Sprague-Dawley | Nerve Tissue Proteins - metabolism | Neuropeptide Y - metabolism | Pro-Opiomelanocortin - metabolism | Inflammation - metabolism | Animals | Hypothalamus - metabolism | Inflammation - drug therapy | Methylhistidines - metabolism | Muscle, Skeletal - drug effects | Hypothalamus - drug effects | Muscle, Skeletal - pathology | Endotoxemia - metabolism | Usage | Septicemia | Dexmedetomidine | Physiological aspects | Hypothalamic hormones | Inflammation | Models | Drug therapy | Atrophy, Muscular | Delirium | Coma | Drinking water | Anorexia | Peptides | Central nervous system | Nervous system | Neuropeptides | Bone surgery | Nuclei | Proteins | Alterations | Temperature effects | Surgery | Bone marrow | Anesthesia | Physiology | Anxiety | Starvation | Cytokines | Mortality | Metabolism | Gene expression | Insulin | Immunosuppression | Hospitals | Agouti-related protein | Binding energy | Ventilation | Sepsis | Adults | Mice | Environmental monitoring | Endocrinology | Kidney transplantation | Drugs | Adolescence | Animal models | Intensive care | Mental disorders | Arcuate nucleus | Medical services | Homeostasis | Antibodies | Risk | Stimulation | Infections | Medical schools | Atrophy | Pain | Metabolites | E coli | Lighting | Rodents | Attenuation | Adolescents | Malnutrition | Buffers | Hypertension | Appetite | Pain perception | Nutrition | Neurons | Complications | Medical instruments | Oxygen consumption | Parenteral nutrition | Medicine | Analgesia | Musculoskeletal system | Lungs | Steroids
Journal Article
PLoS ONE, ISSN 1932-6203, 11/2014, Volume 9, Issue 11, p. e112118
Monocarboxylates such as pyruvate, lactate and ketone bodies are crucial for energy supply of all tissues, especially during energy restriction. The transport... 
AMINO-ACID TRANSPORTER | ANCILLARY PROTEIN | XENOPUS-LAEVIS OOCYTES | NULL MOUSE | MULTIDISCIPLINARY SCIENCES | PSYCHOMOTOR RETARDATION | SKELETAL-MUSCLES | TAT1 SLC16A10 | TRANSLATIONAL ACTIVATION | ALPHA PPAR-ALPHA | THYROID-HORMONE TRANSPORTER | Pituitary Gland - metabolism | Hydroxymethylglutaryl-CoA Synthase - genetics | Thyroxine - blood | Male | Hydroxymethylglutaryl-CoA Synthase - metabolism | RNA, Messenger - metabolism | Kidney - metabolism | Monocarboxylic Acid Transporters - metabolism | Protein Isoforms - metabolism | Myocardium - metabolism | Fatty Acids, Nonesterified - blood | Fasting | 3-Hydroxybutyric Acid - blood | Liver - metabolism | PPAR alpha - genetics | Mice, Knockout | PPAR alpha - deficiency | Animals | Hypothalamus - metabolism | Mice | Intestine, Small - metabolism | Monocarboxylic Acid Transporters - genetics | PPAR alpha - metabolism | Thyroid Gland - metabolism | Protein Isoforms - genetics | Physiological aspects | Lactates | Thyroid hormones | Fatty acids | Adaptations | Drugs | Regulations | Energy metabolism | Syngeneic grafts | Liver | Homeostasis | Amino acids | Pyruvic acid | Ketone bodies | Thyroid gland | Tissue analysis | Hormones | Hypothalamus | Energy requirements | Small intestine | Metabolites | Rodents | Animal tissues | Pituitary gland | Thyroid | Deprivation | Kidneys | Neurons | Metabolism | Mammals | Energy balance | Pituitary | Isoforms | Regulation | Peroxisome proliferator-activated receptors | Lactic acid | Mutation | Transport | Kidney transplantation
Journal Article
Journal of Nutrition, ISSN 0022-3166, 03/2004, Volume 134, Issue 3, pp. 489 - 492
Glutathione (gamma-glutamyl-cysteinyl-glycine; GSH) is the most abundant low-molecular-weight thiol, and GSH/glutathione disulfide is the major redox couple in... 
Oxidative stress | Amino acids | Cysteine | Disease | GLYCINE | CAPACITY | disease | amino acids | cysteine | CHILDREN | MALNUTRITION | NUTRITION & DIETETICS | GLUTAMATE | NITRIC-OXIDE | REDOX | HEPATIC GLUTATHIONE | SYNTHESIS RATES | oxidative stress | Glutathione - biosynthesis | Glycine - metabolism | Glutathione - metabolism | Health | Humans | Cysteine - metabolism | Glutamic Acid - metabolism
Journal Article
Journal Article
American Journal of Physiology - Gastrointestinal and Liver Physiology, ISSN 0193-1857, 05/2018, Volume 314, Issue 5, pp. G566 - G582
Chronic alcohol consumption promotes mitochondrial dysfunction, oxidative stress, defective protein metabolism, and fat accumulation in hepatocytes (liver... 
Branched-chain amino acids | Endothelial nitric oxide synthase | Mechanistic target of rapamycin | Mitochondrial biogenesis | Alcoholic liver disease | CHRONIC ETHANOL-CONSUMPTION | PHYSIOLOGY | NITRIC-OXIDE SYNTHASE | RATS | mechanistic target of rapamycin | branched-chain amino acids | mitochondrial biogenesis | PROMOTES MITOCHONDRIAL BIOGENESIS | alcoholic liver disease | MAMMALIAN SIRTUIN-1 | INDUCED OXIDATIVE STRESS | GENE-EXPRESSION | endothelial nitric oxide synthase | INDUCED FATTY LIVER | ENERGY-METABOLISM | GASTROENTEROLOGY & HEPATOLOGY | HEPATIC-ENCEPHALOPATHY | Liver - pathology | Reactive Oxygen Species - metabolism | Rats, Wistar | Amino Acids, Branched-Chain - metabolism | Humans | Mitochondrial Diseases - metabolism | Hepatocytes - metabolism | Mitochondrial Diseases - chemically induced | Nitric Oxide Synthase Type III - metabolism | Energy Metabolism - physiology | Alcohol Drinking - metabolism | Hepatocytes - drug effects | NAD - metabolism | Disease Models, Animal | Mitochondrial Diseases - prevention & control | Fatty Liver - metabolism | Liver - metabolism | Fatty Liver - prevention & control | Rats | Mitochondria - drug effects | Alcohol Drinking - adverse effects | Hep G2 Cells | Animals | Amino Acids, Branched-Chain - pharmacology | Oxidative Stress - drug effects | Mitochondria - physiology | Dietary Supplements | Fatty Liver - etiology | Amino acids | Health aspects | Rodents | NADPH | Oxidative stress | Transcription factors | Fat metabolism | Toxicity | Oxidative metabolism | Mitochondrial DNA | Leucine | Protein turnover | Mitochondria | Fatty liver | Casein | Arginine | Malnutrition | Liver diseases | Ethanol | Dietary supplements | Adenine | Rapamycin | Gene expression | SIRT1 protein | NAD | Hepatocytes | Nitric oxide | Nicotinamide | Electron transport
Journal Article