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Caveolin-1-mediated sphingolipid oncometabolism underlies a metabolic  vulnerability of prostate cancer | Nature Communications
Caveolin-1-mediated sphingolipid oncometabolism underlies a metabolic vulnerability of prostate cancer | Nature Communications

C16:0-Ceramide Signals Insulin Resistance: Cell Metabolism
C16:0-Ceramide Signals Insulin Resistance: Cell Metabolism

PDF) SMPDL3b modulates insulin receptor signaling in diabetic kidney disease
PDF) SMPDL3b modulates insulin receptor signaling in diabetic kidney disease

SMPDL3b modulates insulin receptor signaling in diabetic kidney disease | Nature  Communications
SMPDL3b modulates insulin receptor signaling in diabetic kidney disease | Nature Communications

Targeting a ceramide double bond improves insulin resistance and hepatic  steatosis | Science
Targeting a ceramide double bond improves insulin resistance and hepatic steatosis | Science

On ceramides, other sphingolipids and impaired glucose homeostasis -  ScienceDirect
On ceramides, other sphingolipids and impaired glucose homeostasis - ScienceDirect

IJMS | Free Full-Text | Sphingolipid Metabolism: New Insight into Ceramide-Induced  Lipotoxicity in Muscle Cells | HTML
IJMS | Free Full-Text | Sphingolipid Metabolism: New Insight into Ceramide-Induced Lipotoxicity in Muscle Cells | HTML

IJMS | Free Full-Text | Sphingolipid Metabolism: New Insight into Ceramide-Induced  Lipotoxicity in Muscle Cells | HTML
IJMS | Free Full-Text | Sphingolipid Metabolism: New Insight into Ceramide-Induced Lipotoxicity in Muscle Cells | HTML

Cell-permeable ceramides increase basal glucose incorporation into  triacylglycerols but decrease the stimulation by insulin in 3T3-L1  adipocytes | International Journal of Obesity
Cell-permeable ceramides increase basal glucose incorporation into triacylglycerols but decrease the stimulation by insulin in 3T3-L1 adipocytes | International Journal of Obesity

PDF) On ceramides, other sphingolipids and impaired glucose homeostasis☆
PDF) On ceramides, other sphingolipids and impaired glucose homeostasis☆

Palmitic and Oleic Acid: The Yin and Yang of Fatty Acids in Type 2 Diabetes  Mellitus: Trends in Endocrinology & Metabolism
Palmitic and Oleic Acid: The Yin and Yang of Fatty Acids in Type 2 Diabetes Mellitus: Trends in Endocrinology & Metabolism

PDF] Sphingolipid Metabolism: New Insight into Ceramide-Induced  Lipotoxicity in Muscle Cells | Semantic Scholar
PDF] Sphingolipid Metabolism: New Insight into Ceramide-Induced Lipotoxicity in Muscle Cells | Semantic Scholar

A selective inhibitor of ceramide synthase 1 reveals a novel role in fat  metabolism | Nature Communications
A selective inhibitor of ceramide synthase 1 reveals a novel role in fat metabolism | Nature Communications

The Path to Insulin Resistance: Paved with Ceramides?: Cell Metabolism
The Path to Insulin Resistance: Paved with Ceramides?: Cell Metabolism

Frontiers | The Role of Ceramides in Insulin Resistance | Endocrinology
Frontiers | The Role of Ceramides in Insulin Resistance | Endocrinology

Welcome to Scientific Archives | Role of Sphingolipid Signaling in  Glomerular Diseases: Focus on DKD and FSGS.
Welcome to Scientific Archives | Role of Sphingolipid Signaling in Glomerular Diseases: Focus on DKD and FSGS.

Mitochondrial ATP transporter depletion protects mice against liver  steatosis and insulin resistance. - Nat. Commun. - X-MOL
Mitochondrial ATP transporter depletion protects mice against liver steatosis and insulin resistance. - Nat. Commun. - X-MOL

Figure 1 from Adiponectin and its Hydrolase-Activated Receptors. | Semantic  Scholar
Figure 1 from Adiponectin and its Hydrolase-Activated Receptors. | Semantic Scholar

Hepatocyte TRAF3 promotes liver steatosis and systemic insulin resistance  through targeting TAK1-dependent signalling.,Nature Communications - X-MOL
Hepatocyte TRAF3 promotes liver steatosis and systemic insulin resistance through targeting TAK1-dependent signalling.,Nature Communications - X-MOL

PDF) On ceramides, other sphingolipids and impaired glucose homeostasis☆
PDF) On ceramides, other sphingolipids and impaired glucose homeostasis☆

Frontiers | The Role of Ceramides in Insulin Resistance | Endocrinology
Frontiers | The Role of Ceramides in Insulin Resistance | Endocrinology

P053 selectively reduces C18 sphingolipids in cultured cells. a... |  Download Scientific Diagram
P053 selectively reduces C18 sphingolipids in cultured cells. a... | Download Scientific Diagram

Genetic deletion of mast cell serotonin synthesis prevents the development  of obesity and insulin resistance. - Nat. Commun. - X-MOL
Genetic deletion of mast cell serotonin synthesis prevents the development of obesity and insulin resistance. - Nat. Commun. - X-MOL

Frontiers | The Role of Ceramides in Insulin Resistance | Endocrinology
Frontiers | The Role of Ceramides in Insulin Resistance | Endocrinology

Insulin action and resistance in obesity and type 2 diabetes | Nature  Medicine
Insulin action and resistance in obesity and type 2 diabetes | Nature Medicine

Adiponectin and its Hydrolase-Activated Receptors | Sharma | Journal of  Nature and Science (JNSCI)
Adiponectin and its Hydrolase-Activated Receptors | Sharma | Journal of Nature and Science (JNSCI)

A selective inhibitor of ceramide synthase 1 reveals a novel role in fat  metabolism | Nature Communications
A selective inhibitor of ceramide synthase 1 reveals a novel role in fat metabolism | Nature Communications

Metabolic Messengers: ceramides | Nature Metabolism
Metabolic Messengers: ceramides | Nature Metabolism