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Selective modulator of nuclear receptor PPARγ with reduced adipogenic  potential ameliorates experimental nephrotic syn
Selective modulator of nuclear receptor PPARγ with reduced adipogenic potential ameliorates experimental nephrotic syn

Salinomycin as a Drug for Targeting Human Cancer Stem Cells
Salinomycin as a Drug for Targeting Human Cancer Stem Cells

Selective modulator of nuclear receptor PPARγ with reduced adipogenic  potential ameliorates experimental nephrotic syn
Selective modulator of nuclear receptor PPARγ with reduced adipogenic potential ameliorates experimental nephrotic syn

Selective Modulator of Nuclear Receptor PPARγ with Reduced Adipogenic  Potential Ameliorates Experimental Nephrotic Syndrome | bioRxiv
Selective Modulator of Nuclear Receptor PPARγ with Reduced Adipogenic Potential Ameliorates Experimental Nephrotic Syndrome | bioRxiv

Regulation of Adipogenesis and Key Adipogenic Gene Expression by 1,  25-Dihydroxyvitamin D in 3T3-L1 Cells | PLOS ONE
Regulation of Adipogenesis and Key Adipogenic Gene Expression by 1, 25-Dihydroxyvitamin D in 3T3-L1 Cells | PLOS ONE

Regulation of Adipogenesis and Key Adipogenic Gene Expression by 1,  25-Dihydroxyvitamin D in 3T3-L1 Cells | PLOS ONE
Regulation of Adipogenesis and Key Adipogenic Gene Expression by 1, 25-Dihydroxyvitamin D in 3T3-L1 Cells | PLOS ONE

Frontiers | Leishmania guyanensis suppressed inducible nitric oxide  synthase provoked by its viral endosymbiont
Frontiers | Leishmania guyanensis suppressed inducible nitric oxide synthase provoked by its viral endosymbiont

Antioxidants | Free Full-Text | Oleuropein Enhances Stress Resistance and  Extends Lifespan via Insulin/IGF-1 and SKN-1/Nrf2 Signaling Pathway in  Caenorhabditis elegans
Antioxidants | Free Full-Text | Oleuropein Enhances Stress Resistance and Extends Lifespan via Insulin/IGF-1 and SKN-1/Nrf2 Signaling Pathway in Caenorhabditis elegans

Selective modulator of nuclear receptor PPARγ with reduced adipogenic  potential ameliorates experimental nephrotic syn
Selective modulator of nuclear receptor PPARγ with reduced adipogenic potential ameliorates experimental nephrotic syn

Lipodistrophy: a paradigm for understanding the consequences of  “overloading” adipose tissue | Physiological Reviews
Lipodistrophy: a paradigm for understanding the consequences of “overloading” adipose tissue | Physiological Reviews

Atherosclerosis: Basic Mechanisms | Circulation
Atherosclerosis: Basic Mechanisms | Circulation

Selective modulator of nuclear receptor PPARγ with reduced adipogenic  potential ameliorates experimental nephrotic syndrome. - Abstract - Europe  PMC
Selective modulator of nuclear receptor PPARγ with reduced adipogenic potential ameliorates experimental nephrotic syndrome. - Abstract - Europe PMC

Lipodistrophy: a paradigm for understanding the consequences of  “overloading” adipose tissue | Physiological Reviews
Lipodistrophy: a paradigm for understanding the consequences of “overloading” adipose tissue | Physiological Reviews

Frontiers | Leishmania guyanensis suppressed inducible nitric oxide  synthase provoked by its viral endosymbiont
Frontiers | Leishmania guyanensis suppressed inducible nitric oxide synthase provoked by its viral endosymbiont

Reverse-Engineering the Human Auditory Pathway | SpringerLink
Reverse-Engineering the Human Auditory Pathway | SpringerLink

Serum Levels of Lipopolysaccharides and Risk of Advanced Colorectal Adenoma
Serum Levels of Lipopolysaccharides and Risk of Advanced Colorectal Adenoma

Frontiers | Leishmania guyanensis suppressed inducible nitric oxide  synthase provoked by its viral endosymbiont
Frontiers | Leishmania guyanensis suppressed inducible nitric oxide synthase provoked by its viral endosymbiont

Selective modulator of nuclear receptor PPARγ with reduced adipogenic  potential ameliorates experimental nephrotic syndrome. - Abstract - Europe  PMC
Selective modulator of nuclear receptor PPARγ with reduced adipogenic potential ameliorates experimental nephrotic syndrome. - Abstract - Europe PMC

Lipodistrophy: a paradigm for understanding the consequences of  “overloading” adipose tissue | Physiological Reviews
Lipodistrophy: a paradigm for understanding the consequences of “overloading” adipose tissue | Physiological Reviews

Selective modulator of nuclear receptor PPARγ with reduced adipogenic  potential ameliorates experimental nephrotic syndrome. - Abstract - Europe  PMC
Selective modulator of nuclear receptor PPARγ with reduced adipogenic potential ameliorates experimental nephrotic syndrome. - Abstract - Europe PMC

Insulin specifically regulates expression of liver and muscle  phosphofructokinase isoforms - ScienceDirect
Insulin specifically regulates expression of liver and muscle phosphofructokinase isoforms - ScienceDirect

Cancers | Free Full-Text | Disruption of Tumor Suppressors HNF4α/HNF1α  Causes Tumorigenesis in Liver
Cancers | Free Full-Text | Disruption of Tumor Suppressors HNF4α/HNF1α Causes Tumorigenesis in Liver

Selective modulator of nuclear receptor PPARγ with reduced adipogenic  potential ameliorates experimental nephrotic syn
Selective modulator of nuclear receptor PPARγ with reduced adipogenic potential ameliorates experimental nephrotic syn

Selective modulator of nuclear receptor PPARγ with reduced adipogenic  potential ameliorates experimental nephrotic syn
Selective modulator of nuclear receptor PPARγ with reduced adipogenic potential ameliorates experimental nephrotic syn

Frontiers | Leishmania guyanensis suppressed inducible nitric oxide  synthase provoked by its viral endosymbiont
Frontiers | Leishmania guyanensis suppressed inducible nitric oxide synthase provoked by its viral endosymbiont

Insulin specifically regulates expression of liver and muscle  phosphofructokinase isoforms - ScienceDirect
Insulin specifically regulates expression of liver and muscle phosphofructokinase isoforms - ScienceDirect

Selective modulator of nuclear receptor PPARγ with reduced adipogenic  potential ameliorates experimental nephrotic syndrome - ScienceDirect
Selective modulator of nuclear receptor PPARγ with reduced adipogenic potential ameliorates experimental nephrotic syndrome - ScienceDirect