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Thermogenesis
What Activates Thermogenesis When Lipid Droplet Lipolysis Is Absent in Brown Adipocytes?
Functional Relationship of Thyroid Hormone-Induced Lipogenesis, Lipolysis, and Thermogenesis in the Rat
Mitochondrial TNAP Controls Thermogenesis by Hydrolysis of Phosphocreatine
The Role of Adipose Tissue Mitochondria: Regulation of Mitochondrial Function for the Treatment of Metabolic Diseases
Towards a Molecular Understanding of Adaptive Thermogenesis Bradford B
Brown Adipose Tissue: New Challenges for Prevention of Childhood Obesity
Adipose and Skeletal Muscle Thermogenesis: Studies from Large Animals
UCP1 Deficiency Causes Brown Fat Respiratory Chain Depletion And
Thermogenesis in Adipose Tissue Activated by Thyroid Hormone
Bola3 Regulates Beige Adipocyte Thermogenesis Via Maintaining Mitochondrial Homeostasis and Lipolysis
PHOSPHO1 Puts the Breaks on Thermogenesis in Brown Adipocytes COMMENTARY Christy M
Energetics at the Molecular Level Douglas R Moellering, Ph.D
Sympathetic Transmitters Controlling Thermogenic Efficacy of Brown Adipocytes by Modulating Mitochondrial Complex V
ORIGINAL ARTICLE Determinants of Brown Adipocyte Development and Thermogenesis
IRF3 Reduces Adipose Thermogenesis Via ISG15- Mediated Reprogramming of Glycolysis
Substrate Cycling Between De Novo Lipogenesis and Lipid Oxidation: a Thermogenic Mechanism Against Skeletal Muscle Lipotoxicity and Glucolipotoxicity
Brown Adipose Tissue Is Involved in Diet-Induced Thermogenesis and Whole-Body Fat Utilization in Healthy Humans
Nutritional Regulation of Human Brown Adipose Tissue
Top View
Renal Gluconeogenesis Its Importance in Human Glucose Homeostasis
Stimulation of S14 Mrna and Lipogenesis in Brown Fat by Hypothyroidism, Cold Exposure, and Cafeteria Feeding: Evidence Supportin
Decreased White Fat Cell Thermogenesis in Obese Individuals
Adipose Tissue NAD+ Biosynthesis Is Required for Regulating Adaptive Thermogenesis and Whole-Body Energy Homeostasis in Mice
IRF3 Reduces Adipose Thermogenesis Via ISG15-Mediated Reprogramming of Glycolysis
Mitochondrial Lipid Signaling and Adaptive Thermogenesis
Theoretical Model and Characteristics of Mitochondrial Thermogenesis
Negative Calorie Foods: an Empirical Examination of What Is Fact Or Fiction
Murburn Scheme for Thermogenesis Mediated by Uncoupling Protein
Mitochondrial Pyruvate Carrier Is Required for Optimal Brown Fat Thermogenesis 2 3 Vanja Panic1, Stephanie Pearson1, James Banks1, Trevor S
Gluttony and Thermogenesis Revisited{
Tables1. Effects on Energy Expenditure and Hypothesized Mechanisms to Induce Weight Loss
Functional Thermogenic Beige Adipogenesis Is Inducible in Human Neck Fat
Brown Adipose Tissue and Its Role in Insulin and Glucose Homeostasis
Independent Effects of Obesity and Insulin Resistance on Postprandial Thermogenesis in Men
Theranostics Mir-22 Modulates Brown Adipocyte Thermogenesis by Synergistically Activating the Glycolytic and Mtorc1 Signaling Pa
The P-Adrenergic Receptors and the Control of Adipose Tissue Metabolism and Thermogenesis
Thermogenic Activation Represses Autophagy in Brown Adipose Tissue
Uncoupling Protein 1 Controls Reactive Oxygen Species in Brown Adipose Tissue Martin Jastrocha,B,C,1
Mtorc2 Promotes Lipid Storage and Suppresses Thermogenesis in Brown Adipose Tissue in Part Through AKT-Independent Regulation of Foxo1: a Dissertation
The Biology of Mitochondrial Uncoupling Proteins
Adipose Tissue in Control of Metabolism
Effect of Obesity and Insulin Resistance on Resting and Glucose-Induced Thermogenesis in Man
Uncoupling Proteins: Their Roles in Adaptive Thermogenesis and Substrate Metabolism Reconsidered
Diet-Induced Thermogenesis 238:3 R185–R191 Endocrinology REVIEW Diet-Induced Thermogenesis: Fake Friend Or Foe?
Regulation and Metabolic Significance of De Novo Lipogenesis in Adipose Tissues
Uncoupling Protein-2 (UCP2): Molecular and Genetic Studies
De Novo Lipogenesis in Humans: Metabolic and Regulatory Aspects