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IJMS | Free Full-Text | Ceramides as Mediators of Oxidative Stress and  Inflammation in Cardiometabolic Disease
IJMS | Free Full-Text | Ceramides as Mediators of Oxidative Stress and Inflammation in Cardiometabolic Disease

C16-ceramide is a natural regulatory ligand of p53 in cellular stress  response | Nature Communications
C16-ceramide is a natural regulatory ligand of p53 in cellular stress response | Nature Communications

Long-chain ceramides are cell non-autonomous signals linking lipotoxicity  to endoplasmic reticulum stress in skeletal muscle | Nature Communications
Long-chain ceramides are cell non-autonomous signals linking lipotoxicity to endoplasmic reticulum stress in skeletal muscle | Nature Communications

Ceramides And Stress Signalling Intersect With Autophagic Defects In  Neurodegenerative Drosophila blue cheese (bchs) Mutants | Scientific Reports
Ceramides And Stress Signalling Intersect With Autophagic Defects In Neurodegenerative Drosophila blue cheese (bchs) Mutants | Scientific Reports

Ceramide upregulation causes pulmonary cell apoptosis and emphysema-like  disease in mice | Nature Medicine
Ceramide upregulation causes pulmonary cell apoptosis and emphysema-like disease in mice | Nature Medicine

Long-chain ceramides are cell non-autonomous signals linking lipotoxicity  to endoplasmic reticulum stress in skeletal muscle | Nature Communications
Long-chain ceramides are cell non-autonomous signals linking lipotoxicity to endoplasmic reticulum stress in skeletal muscle | Nature Communications

C16-ceramide is a natural regulatory ligand of p53 in cellular stress  response | Nature Communications
C16-ceramide is a natural regulatory ligand of p53 in cellular stress response | Nature Communications

Ceramide-orchestrated signalling in cancer cells | Nature Reviews Cancer
Ceramide-orchestrated signalling in cancer cells | Nature Reviews Cancer

Ca2+-activated sphingomyelin scrambling and turnover mediate  ESCRT-independent lysosomal repair | Nature Communications
Ca2+-activated sphingomyelin scrambling and turnover mediate ESCRT-independent lysosomal repair | Nature Communications

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

Antibacterial activity of ceramide and ceramide analogs against pathogenic  Neisseria | Scientific Reports
Antibacterial activity of ceramide and ceramide analogs against pathogenic Neisseria | Scientific Reports

Metabolomics of sebum reveals lipid dysregulation in Parkinson's disease | Nature  Communications
Metabolomics of sebum reveals lipid dysregulation in Parkinson's disease | Nature Communications

C16-ceramide is a natural regulatory ligand of p53 in cellular stress  response | Nature Communications
C16-ceramide is a natural regulatory ligand of p53 in cellular stress response | Nature Communications

Long-chain ceramides are cell non-autonomous signals linking lipotoxicity  to endoplasmic reticulum stress in skeletal muscle | Nature Communications
Long-chain ceramides are cell non-autonomous signals linking lipotoxicity to endoplasmic reticulum stress in skeletal muscle | Nature Communications

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

Lipid regulation of hERG1 channel function | Nature Communications
Lipid regulation of hERG1 channel function | Nature Communications

Sphingolipids produced by gut bacteria enter host metabolic pathways  impacting ceramide levels | Nature Communications
Sphingolipids produced by gut bacteria enter host metabolic pathways impacting ceramide levels | Nature Communications

The role of ceramides in metabolic disorders: when size and localization  matters | Nature Reviews Endocrinology
The role of ceramides in metabolic disorders: when size and localization matters | Nature Reviews Endocrinology

The role of ceramides in metabolic disorders: when size and localization  matters | Nature Reviews Endocrinology
The role of ceramides in metabolic disorders: when size and localization matters | Nature Reviews Endocrinology

Targeting sphingolipid metabolism as an approach for combination therapies  in haematological malignancies | Cell Death Discovery
Targeting sphingolipid metabolism as an approach for combination therapies in haematological malignancies | Cell Death Discovery

Nanoscale imaging of bacterial infections by sphingolipid expansion  microscopy | Nature Communications
Nanoscale imaging of bacterial infections by sphingolipid expansion microscopy | Nature Communications

Ceramides bind VDAC2 to trigger mitochondrial apoptosis | Nature  Communications
Ceramides bind VDAC2 to trigger mitochondrial apoptosis | Nature Communications

C16-ceramide is a natural regulatory ligand of p53 in cellular stress  response | Nature Communications
C16-ceramide is a natural regulatory ligand of p53 in cellular stress response | Nature Communications

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

Long-chain ceramides are cell non-autonomous signals linking lipotoxicity  to endoplasmic reticulum stress in skeletal muscle | Nature Communications
Long-chain ceramides are cell non-autonomous signals linking lipotoxicity to endoplasmic reticulum stress in skeletal muscle | Nature Communications

Ceramides and other sphingolipids as drivers of cardiovascular disease |  Nature Reviews Cardiology
Ceramides and other sphingolipids as drivers of cardiovascular disease | Nature Reviews Cardiology