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UK-Essen
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Hufelandstr. 55
45122 Essen
45122 Essen
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Gruppe der akademischen Mitarbeiterinnen und Mitarbeiter, Institut für Molekularbiologie (Tumorforschung)
Aktuelle Veranstaltungen
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WiSe 2025
Vergangene Veranstaltungen (max. 10)
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SoSe 2025
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WiSe 2024
Die folgenden Publikationen sind in der Online-Universitätsbibliographie der Universität Duisburg-Essen verzeichnet. Weitere Informationen finden Sie gegebenenfalls auch auf den persönlichen Webseiten der Person.
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Amitriptyline potently neutralizes distinct SARS-CoV-2 variants including D614G, Omicron BA.5, and Omicron XBB.1In: Frontiers in Microbiology, Jg. 16, 2025, 1631947DOI, Online Volltext (Open Access)
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Fluoxetine and Sertraline Potently Neutralize the Replication of Distinct SARS-CoV-2 VariantsIn: Viruses, Jg. 16, 2024, Nr. 4, 545DOI (Open Access)
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Acid sphingomyelinase expression is associated with survival in resectable pancreatic ductal adenocarcinomaIn: Journal of Molecular Medicine, Jg. 101, 2023, Nr. 7, S. 891 – 903DOI (Open Access)
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Medications Modulating the Acid Sphingomyelinase/Ceramide System and 28-Day Mortality among Patients with SARS-CoV-2: An Observational StudyIn: Pharmaceuticals, Jg. 16, 2023, Nr. 8, 1107DOI (Open Access)
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Risk of Death in Individuals Hospitalized for COVID-19 With and Without Psychiatric Disorders : An Observational Multicenter Study in FranceIn: Biological Psychiatry Global Open Science, Jg. 3, 2023, Nr. 1, S. 56 – 67DOI (Open Access)
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Simultaneous targeting of mitochondrial Kv1.3 and lysosomal acid sphingomyelinase amplifies killing of pancreatic ductal adenocarcinoma cells in vitro and in vivoIn: Journal of Molecular Medicine, Jg. 101, 2023, Nr. 3, S. 295 – 310DOI (Open Access)
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Antidepressant Use and Its Association with 28-Day Mortality in Inpatients with SARS-CoV-2 : Support for the FIASMA Model against COVID-19In: Journal of Clinical Medicine (JCM), Jg. 11, 2022, Nr. 19, 5882DOI (Open Access)
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Antimicrobial effects of inhaled sphingosine against Pseudomonas aeruginosa in isolated ventilated and perfused pig lungsIn: PLoS ONE, Jg. 17, 2022, e0271620DOI (Open Access)
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Cell-intrinsic ceramides determine T cell function during melanoma progressionIn: eLife, Jg. 11, 2022, e83073DOI (Open Access)
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Comorbid medical conditions are a key factor to understand the relationship between psychiatric disorders and COVID-19-related mortality : Results from 49,089 COVID-19 inpatientsIn: Molecular Psychiatry, Jg. 27, 2022, Nr. 3, S. 1278 – 1280DOI (Open Access)
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Acid ceramidase rescues cystic fibrosis mice from pulmonary infectionsIn: Infection and Immunity, Jg. 89, 2021, Nr. 2, S. e00677 – 20DOI (Open Access)
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Ceramide and related molecules in viral infectionsIn: International Journal of Molecular Sciences (IJMS), Jg. 22, 2021, Nr. 11DOI (Open Access)
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Corrigendum to: “Insight into the mechanism of cytotoxicity of membrane-permeant psoralenic Kv1.3 channel inhibitors by chemical dissection of a novel member of the family”In: Redox Biology, Jg. 45, 2021, 102036DOI (Open Access)
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Ex vivo assay to evaluate the efficacy of drugs targeting sphingolipids in preventing SARS-CoV-2 infection of nasal epithelial cellsIn: STAR Protocols, Jg. 2, 2021, Nr. 1, 100356DOI (Open Access)
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Inhibition of acid sphingomyelinase by ambroxol prevents SARS-CoV-2 entry into epithelial cellsIn: The Journal of Biological Chemistry (JBC), Jg. 296, 2021, 100701DOI (Open Access)
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Integrative genomic analyses of patient-matched intracranial and extracranial metastases reveal a novel brain-specific landscape of genetic variants in driver genes of malignant melanomaIn: Cancers, Jg. 13, 2021, Nr. 4, S. 731DOI, Online Volltext (Open Access)
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Interferon regulatory factor 8 regulates expression of acid ceramidase and infection susceptibility in cystic fibrosisIn: The Journal of Biological Chemistry (JBC), Jg. 296, 2021, 100650DOI (Open Access)
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Repurposing antidepressants inhibiting the sphingomyelinase acid/ceramide system against COVID-19 : Current evidence and potential mechanismsIn: Molecular Psychiatry, Jg. 26, 2021, Nr. 12, S. 7098 – 7099DOI (Open Access)
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Staphylococcus aureus α-Toxin Induces Acid Sphingomyelinase Release From a Human Endothelial Cell LineIn: Frontiers in Microbiology, Jg. 12, 2021, 694489DOI (Open Access)
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Acid ceramidase of macrophages traps herpes simplex virus in multivesicular bodies and protects from severe diseaseIn: Nature Communications, Jg. 11, 2020, Nr. 1, S. 1338DOI, Online Volltext (Open Access)
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Acid sphingomyelinase regulates TH2 cytokine release and bronchial asthmaIn: Allergy, Jg. 75, 2020, Nr. 3, S. 603 – 615DOI (Open Access)
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Characterization of the small molecule ARC39, a direct and specific inhibitor of acid sphingomyelinase in vitroIn: Journal of Lipid Research, Jg. 61, 2020, Nr. 6, S. 896 – 910DOI (Open Access)
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Insight into the mechanism of cytotoxicity of membrane-permeant psoralenic Kv1.3 channel inhibitors by chemical dissection of a novel member of the familyIn: Redox Biology, Jg. 37, 2020, 101705DOI (Open Access)
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Pharmacological Inhibition of Acid Sphingomyelinase Prevents Uptake of SARS-CoV-2 by Epithelial CellsIn: Cell Reports Medicine, Jg. 1, 2020, Nr. 8, 100142DOI (Open Access)
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Recombinant Acid Ceramidase Reduces Inflammation and Infection in Cystic FibrosisIn: American Journal of Respiratory and Critical Care Medicine (AJRCCM), Jg. 202, 2020, Nr. 8, S. 1133 – 1145DOI (Open Access)
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Role of 1-Deoxysphingolipids in docetaxel neurotoxicityIn: Journal of Neurochemistry, Jg. 154, 2020, Nr. 6DOI, Online Volltext (Open Access)
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Sphingosine is able to prevent and eliminate Staphylococcus epidermidis biofilm formation on different orthopedic implant materials in vitroIn: Journal of Molecular Medicine, Jg. 98, 2020, Nr. 2, S. 209 – 219DOI (Open Access)
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Sphingosine kills bacteria by binding to cardiolipinIn: The Journal of Biological Chemistry (JBC), Jg. 295, 2020, Nr. 22, S. 7686 – 7696DOI (Open Access)
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Sphingosine prevents binding of SARS-CoV-2 spike to its cellular receptor ACE2In: The Journal of Biological Chemistry (JBC), Jg. 295, 2020, Nr. 45, S. 15174 – 15182DOI (Open Access)
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Acid sphingomyelinase deficiency ameliorates farber diseaseIn: International Journal of Molecular Sciences (IJMS), Jg. 20, 2019, Nr. 24, S. 6253DOI (Open Access)
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Clinical development of sphingosine as anti-bacterial drug : Inhalation of sphingosine in mini pigs has no adverse side effectsIn: Cellular Physiology and Biochemistry, Jg. 53, 2019, Nr. 6, S. 1015 – 1028DOI (Open Access)
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Inhibition of PI-3-K and AKT Amplifies Kv1.3 Inhibitor-Induced Death of Human T Leukemia CellsIn: Cellular Physiology and Biochemistry, Jg. 53, 2019, Nr. S1, S. 1 – 10DOI (Open Access)
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Intestinal acid sphingomyelinase protects from severe pathogen-driven colitisIn: Frontiers in Immunology, Jg. 10, 2019, 1386DOI, Online Volltext (Open Access)
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Pharmacological Inhibition of Acid Sphingomyelinase Ameliorates Experimental Autoimmune EncephalomyelitisIn: Neurosignals, Jg. 27, 2019, Nr. S1, S. 20 – 31DOI (Open Access)
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Signalling Effects Induced by Acid Ceramidase in Human Epithelial Or Leukemic Cell LinesIn: Cellular Physiology and Biochemistry, Jg. 52, 2019, Nr. 5, S. 1092 – 1102DOI (Open Access)
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Specific inhibition of the NLRP3 inflammasome as an antiinflammatory strategy in cystic fibrosisIn: American Journal of Respiratory and Critical Care Medicine (AJRCCM), Jg. 200, 2019, Nr. 11, S. 1381 – 1391
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Sphingosine-coating of plastic surfaces prevents ventilator-associated pneumoniaIn: Journal of Molecular Medicine, Jg. 97, 2019, Nr. 8, S. 1195 – 1211DOI (Open Access)
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T cell-specific overexpression of acid sphingomyelinase results in elevated T cell activation and reduced parasitemia during Plasmodium yoelii infectionIn: Frontiers in Immunology, Jg. 10, 2019, S. 1225DOI (Open Access)
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Antidepressants act by inducing autophagy controlled by sphingomyelin–ceramideIn: Molecular Psychiatry, Jg. 23, 2018, Nr. 12, S. 2324 – 2346DOI (Open Access)
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Antidepressants regulate autophagy by targeting acid sphingomyelinaseIn: Molecular Psychiatry, Jg. 23, 2018, Nr. 12, S. 2251
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Blockade of experimental multiple sclerosis by inhibition of the acid sphingomyelinase/ceramide systemIn: Neurosignals, Jg. 25, 2018, Nr. 1, S. 88 – 97DOI (Open Access)
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Highlight : Sphingolipids in infectious biology and immunologyIn: Biological Chemistry, Jg. 399, 2018, Nr. 10, S. 1113 – 1113
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Pathological manifestations of Farber disease in a new mouse modelIn: Biological Chemistry, Jg. 399, 2018, Nr. 10, S. 1183 – 1202DOI, Online Volltext (Open Access)
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Pulmonary infection of cystic fibrosis mice with Staphylococcus aureus requires expression of α-toxinIn: Biological Chemistry, Jg. 399, 2018, Nr. 10, S. 1203 – 1213
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Sphingolipids as targets for inhalation treatment of cystic fibrosisIn: Advanced Drug Delivery Reviews, Jg. 133, 2018, S. 66 – 75
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Staphylococcus aureus alpha-toxin disrupts endothelial-cell tight junctions via acid sphingomyelinase and ceramideIn: Infection and Immunity, Jg. 86, 2018, Nr. 1, S. e00606 – 17DOI, Online Volltext (Open Access)
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Targeting the potassium channel Kv1.3 kills glioblastoma cellsIn: Neurosignals, Jg. 25, 2018, Nr. 1, S. 26 – 38DOI (Open Access)
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Acid sphingomyelinase deficiency enhances myelin repair after acute and chronic demyelinationIn: PLoS ONE, Jg. 12, 2017, Nr. 6, S. e0178622DOI (Open Access)
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Direct pharmacological targeting of a mitochondrial ion channel selectively kills tumor cells in vivoIn: Cancer Cell, Jg. 31, 2017, Nr. 4, S. 516 – 531.e10DOI (Open Access)
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Glucosylceramide Critically Contributes to the Host Defense of Cystic Fibrosis LungsIn: Cellular Physiology and Biochemistry, Jg. 41, 2017, Nr. 3, S. 1208 – 1218DOI (Open Access)
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Melanoma cell metastasis via P-selectin-mediated activation of acid sphingomyelinase in plateletsIn: Clinical and Experimental Metastasis, Jg. 34, 2017, Nr. 1, S. 25 – 35
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Neutrophils Kill Reactive Oxygen Species-Resistant Pseudomonas aeruginosa by SphingosineIn: Cellular Physiology and Biochemistry, Jg. 43, 2017, Nr. 4, S. 1603 – 1616DOI, Online Volltext (Open Access)
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Regulation of Arthritis Severity by the Acid SphingomyelinaseIn: Cellular Physiology and Biochemistry, Jg. 43, 2017, Nr. 4, S. 1460 – 1471DOI (Open Access)
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Sphingosine's role in epithelial host defense : a natural antimicrobial and novel therapeuticIn: Biochimie, Jg. 141, 2017, S. 91 – 96
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Staphylococcus aureus α-Toxin Induces Inflammatory Cytokines via Lysosomal Acid Sphingomyelinase and CeramidesIn: Cellular Physiology and Biochemistry, Jg. 43, 2017, Nr. 6, S. 2170 – 2184DOI (Open Access)
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The activity of the neutral sphingomyelinase is important in T cell recruitment and directional migrationIn: Frontiers in Immunology, Jg. 8, 2017, S. 1007DOI (Open Access)
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β1-Integrin Accumulates in Cystic Fibrosis Luminal Airway Epithelial Membranes and Decreases Sphingosine, Promoting Bacterial InfectionsIn: Cell Host & Microbe, Jg. 21, 2017, Nr. 6, S. 707 – 718.e8DOI, Online Volltext (Open Access)
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Inhibition of Acid Sphingomyelinase Allows for Selective Targeting of CD4+ Conventional versus Foxp3+ Regulatory T CellsIn: The Journal of Immunology (JI), Jg. 197, 2016, Nr. 8, S. 3130 – 3141DOI (Open Access)
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Lack of Sphingosine Causes Susceptibility to Pulmonary Staphylococcus Aureus Infections in Cystic FibrosisIn: Cellular Physiology and Biochemistry, Jg. 38, 2016, Nr. 6, S. 2094 – 2102DOI (Open Access)
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Role of Acid Sphingomyelinase-Induced Signaling in Melanoma Cells for Hematogenous Tumor MetastasisIn: Cellular Physiology and Biochemistry, Jg. 38, 2016, Nr. 1, S. 1 – 14DOI (Open Access)
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A central role for the acid sphingomyelinase/ceramide system in neurogenesis and major depressionIn: Journal of Neurochemistry, Jg. 134, 2015, Nr. 2, S. 183 – 192
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Engineered liposomes sequester bacterial exotoxins and protect from severe invasive infections in miceIn: Nature Biotechnology, Jg. 33, 2015, Nr. 1, S. 81 – 88
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Novel mechanisms of action of classical chemotherapeutic agents on sphingolipid pathwaysIn: Biological Chemistry, Jg. 396, 2015, Nr. 6-7, S. 669 – 679
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Pseudomonas aeruginosa Pyocyanin Induces Neutrophil Death via Mitochondrial Reactive Oxygen Species and Mitochondrial Acid SphingomyelinaseIn: Antioxidants and Redox Signaling, Jg. 22, 2015, Nr. 13, S. 1097 – 1110DOI (Open Access)
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Regulation of hematogenous tumor metastasis by acid sphingomyelinaseIn: EMBO Molecular Medicine, Jg. 7, 2015, Nr. 6, S. 714 – 734DOI (Open Access)
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Inhibition of acid sphingomyelinase by tricyclic antidepressants and analogonsIn: Frontiers in Physiology, 2014, Nr. 5, S. 331DOI (Open Access)
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Invariant natural killer T (iNKT) cells prevent autoimmunity, but induce pulmonary inflammation in cystic fibrosisIn: Cellular Physiology and Biochemistry, Jg. 34, 2014, Nr. 1, S. 56 – 70DOI (Open Access)
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Regulation of the inflammasome by ceramide in cystic fibrosis lungsIn: Cellular Physiology and Biochemistry, Jg. 34, 2014, Nr. 1, S. 45 – 55DOI (Open Access)
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Acid sphingomyelinase-ceramide system mediates effects of antidepressant drugsIn: Nature Medicine, Jg. 19, 2013, Nr. 7, S. 934 – 938
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Clofazimine, Psora-4 and PAP-1, inhibitors of the potassium channel Kv1.3, as a new and selective therapeutic strategy in chronic lymphocytic leukemiaIn: Leukemia, Jg. 27, 2013, Nr. 8, S. 1782 – 1785
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Glioma Cell Death Induced by Irradiation or Alkylating Agent Chemotherapy Is Independent of the Intrinsic Ceramide PathwayIn: PLoS ONE, Jg. 8, 2013, Nr. 5, S. e63527DOI (Open Access)
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Wirkungsvolle Lipide : Sphingolipide, bakterielle Infektionen und zystische FibroseIn: Unikate: Berichte aus Forschung und Lehre, 2013, Nr. 44: Medizin: 50 Jahre Universitätsklinikum Essen, S. 22 – 31DOI, Online Volltext (Open Access)
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Role of CD95 in pulmonary inflammation and infection in cystic fibrosisIn: Journal of Molecular Medicine, Jg. 90, 2012, Nr. 9, S. 1011 – 1023
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Lipids in cystic fibrosisIn: Expert Review of Respiratory Medicine, Jg. 5, 2011, Nr. 4, S. 527 – 535
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Molecular Analysis of Staphylococcus Aureus Isolates from an Ongoing Prospective Observational Longitudinal Multicenter Study Determining Staphylococcus Aureus Airway Colonization or Infection in Cystic Fibrosis PatientsIn: Pediatric Pulmonology, Jg. 34, 2011, S. 323 – 323
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Accumulation of ceramide in the trachea and intestine of cystic fibrosis mice causes inflammation and cell deathIn: Biochemical and Biophysical Research Communications (BBRC), Jg. 403, 2010, Nr. 3-4, S. 368 – 374
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Acid sphingomyelinase inhibitors normalize pulmonary ceramide and inflammation in cystic fibrosisIn: American Journal of Respiratory Cell and Molecular Biology, Jg. 42, 2010, Nr. 6, S. 716 – 724
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CFTR-dependent susceptibility of the cystic fibrosis-host to Pseudomonas aeruginosaIn: International Journal of Medical Microbiology (IJMM), Jg. 300, 2010, Nr. 8, S. 578 – 583
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Ceramide in pseudomonas aeruginosa infections and cystic fibrosisIn: Cellular Physiology and Biochemistry, Jg. 26, 2010, Nr. 1, S. 57 – 66DOI (Open Access)
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Ceramide in redox signaling and cardiovascular diseasesIn: Cellular Physiology and Biochemistry, Jg. 26, 2010, Nr. 1, S. 41 – 48DOI (Open Access)
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The Role of Sphingolipids and Ceramide in Pulmonary Inflammation in Cystic FibrosisIn: Open Respiratory Medicine Journal, Jg. 4, 2010, S. 39 – 47
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Antidepressant Use and Its Association with 28-Day Mortality in Inpatients with SARS-CoV-2 : Support for the FIASMA Model against COVID-19
31st European Congress of Psychiatry, EPA 2023, 25-28 March 2023, Paris, France,In: European Psychiatry. Cambridge: Cambridge University Press, Jg. 66, 2023, Nr. S1, S. S118 – S119DOI (Open Access) -
Development of sphingosine-coupled oxygen carriers as novel drugs for treating pneumonia
98th Meeting of the German Physiological Society, 30 September ‐ 2 October 2019, Ulm, Germany,In: Acta Physiologica. Weinheim: Wiley-Blackwell, Jg. 227, 2019, Nr. S719, B 04-10 -
CeramideIn: Encyclopedia of Cancer / Schwab, Manfred (Hrsg.). Berlin: Springer Berlin Heidelberg, 2014, S. 906 – 908DOI (Open Access)
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Acid SphingomyelinaseIn: Sphingolipids: Basic Science and Drug Development / Gulbins, Erich; Petrache, Irena. Heidelberg [u.a.]: Springer, 2013, S. 77 – 88
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Bacterial infections and ceramideIn: Sphingolipids in Disease / Gulbins, Erich; Petrache, Irina. Wien [u.a.]: Springer, 2013, S. 305 – 320
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Rolle vonSphingolipidenbei Entzündungen und InfektionenDuisburg ; Essen, 2017