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Jel Ritmikus Lírai farmer s.r 2006 cell metab 4 263 273 meghal Malacka vakolat

Raspberry Ketone Reduced Lipid Accumulation in 3T3-L1 Cells and  Ovariectomy-Induced Obesity in Wistar Rats by Regulating Autophagy  Mechanisms | Journal of Agricultural and Food Chemistry
Raspberry Ketone Reduced Lipid Accumulation in 3T3-L1 Cells and Ovariectomy-Induced Obesity in Wistar Rats by Regulating Autophagy Mechanisms | Journal of Agricultural and Food Chemistry

Loss of Notch signaling in skeletal stem cells enhances bone formation with  aging | Bone Research
Loss of Notch signaling in skeletal stem cells enhances bone formation with aging | Bone Research

Genes and miRNAs involved in the inhibition of adipogenesis by... |  Download Scientific Diagram
Genes and miRNAs involved in the inhibition of adipogenesis by... | Download Scientific Diagram

Phenotypic Discovery of SB1501, an Anti‐obesity Agent, through Modulating  Mitochondrial Activity - Jo - 2021 - ChemMedChem - Wiley Online Library
Phenotypic Discovery of SB1501, an Anti‐obesity Agent, through Modulating Mitochondrial Activity - Jo - 2021 - ChemMedChem - Wiley Online Library

Selective targeting of visceral adiposity by polycation nanomedicine |  Nature Nanotechnology
Selective targeting of visceral adiposity by polycation nanomedicine | Nature Nanotechnology

Transcriptional control of adipocyte formation - ScienceDirect
Transcriptional control of adipocyte formation - ScienceDirect

Cells | Free Full-Text | The Intricate Role of p53 in Adipocyte  Differentiation and Function
Cells | Free Full-Text | The Intricate Role of p53 in Adipocyte Differentiation and Function

IJMS | Free Full-Text | The Potential to Fight Obesity with Adipogenesis  Modulating Compounds
IJMS | Free Full-Text | The Potential to Fight Obesity with Adipogenesis Modulating Compounds

IJMS | Free Full-Text | Albizia julibrissin Exerts Anti-Obesity Effects by  Inducing the Browning of 3T3L1 White Adipocytes
IJMS | Free Full-Text | Albizia julibrissin Exerts Anti-Obesity Effects by Inducing the Browning of 3T3L1 White Adipocytes

The KLF2 Transcription Factor Does Not Affect the Formation of  Preadipocytes but Inhibits Their Differentiation into Adipocytes |  Biochemistry
The KLF2 Transcription Factor Does Not Affect the Formation of Preadipocytes but Inhibits Their Differentiation into Adipocytes | Biochemistry

Foods | Free Full-Text | Black Wheat Extracts (Arriheuk) Regulate  Adipogenesis and Lipolysis via Adenosine Monophosphate (AMP) Activated  Protein Kinase (AMPK)/Sirtuin 1 (SIRT1) Signaling Pathways
Foods | Free Full-Text | Black Wheat Extracts (Arriheuk) Regulate Adipogenesis and Lipolysis via Adenosine Monophosphate (AMP) Activated Protein Kinase (AMPK)/Sirtuin 1 (SIRT1) Signaling Pathways

Distinct regulatory mechanisms governing embryonic versus adult adipocyte  maturation | Nature Cell Biology
Distinct regulatory mechanisms governing embryonic versus adult adipocyte maturation | Nature Cell Biology

Biomedicines | Free Full-Text | Autophagy, Mesenchymal Stem Cell  Differentiation, and Secretion
Biomedicines | Free Full-Text | Autophagy, Mesenchymal Stem Cell Differentiation, and Secretion

Single-cell transcriptional networks in differentiating preadipocytes  suggest drivers associated with tissue heterogeneity | Nature Communications
Single-cell transcriptional networks in differentiating preadipocytes suggest drivers associated with tissue heterogeneity | Nature Communications

Transcriptional control of adipocyte formation - ScienceDirect
Transcriptional control of adipocyte formation - ScienceDirect

Single cell full-length transcriptome of human subcutaneous adipose tissue  reveals unique and heterogeneous cell populations - ScienceDirect
Single cell full-length transcriptome of human subcutaneous adipose tissue reveals unique and heterogeneous cell populations - ScienceDirect

Valerenic Acid Promotes Adipocyte Differentiation, Adiponectin Production,  and Glucose Uptake via Its PPARγ Ligand Activity | ACS Omega
Valerenic Acid Promotes Adipocyte Differentiation, Adiponectin Production, and Glucose Uptake via Its PPARγ Ligand Activity | ACS Omega

IJMS | Free Full-Text | APE1/Ref-1 Inhibits Adipogenic Transcription  Factors during Adipocyte Differentiation in 3T3-L1 Cells
IJMS | Free Full-Text | APE1/Ref-1 Inhibits Adipogenic Transcription Factors during Adipocyte Differentiation in 3T3-L1 Cells

Frontiers | Lysozyme Gene Expression in 3T3-L1 Cells Sustains Expression of  Adipogenic Genes and Adipocyte Differentiation
Frontiers | Lysozyme Gene Expression in 3T3-L1 Cells Sustains Expression of Adipogenic Genes and Adipocyte Differentiation

Srebf1a is a key regulator of transcriptional control for adipogenesis |  Scientific Reports
Srebf1a is a key regulator of transcriptional control for adipogenesis | Scientific Reports

Antioxidants | Free Full-Text | Extract of Isatidis Radix Inhibits Lipid  Accumulation in In Vitro and In Vivo by Regulating Oxidative Stress
Antioxidants | Free Full-Text | Extract of Isatidis Radix Inhibits Lipid Accumulation in In Vitro and In Vivo by Regulating Oxidative Stress

Mdm2 controls CREB-dependent transactivation and initiation of adipocyte  differentiation | Cell Death & Differentiation
Mdm2 controls CREB-dependent transactivation and initiation of adipocyte differentiation | Cell Death & Differentiation

Untapped Pharmaceutical Potential of 4,5,4′-Trihydroxy-3,3′-dimethoxybibenzyl  for Regulating Obesity: A Cell-Based Study with a Focus on Terminal  Differentiation in Adipogenesis | Journal of Natural Products
Untapped Pharmaceutical Potential of 4,5,4′-Trihydroxy-3,3′-dimethoxybibenzyl for Regulating Obesity: A Cell-Based Study with a Focus on Terminal Differentiation in Adipogenesis | Journal of Natural Products

IJMS | Free Full-Text | Epigenomic Control of Thermogenic Adipocyte  Differentiation and Function
IJMS | Free Full-Text | Epigenomic Control of Thermogenic Adipocyte Differentiation and Function