Einträge von Chamulitrat, Walee auf dem Publikationsserver
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Anzahl der Einträge: 13.
2022
Li, Huili, Herrmann, Thomas, Seeßle, Jessica, Liebisch, Gerhard
, Merle, Uta, Stremmel, Wolfgang
und Chamulitrat, Walee
(2022)
Role of fatty acid transport protein 4 in metabolic tissues: insights into obesity and fatty liver disease.
Bioscience Reports 42 (6).
Volltext nicht vorhanden.
, Merle, Uta, Stremmel, Wolfgang
und Chamulitrat, Walee
(2022)
Role of fatty acid transport protein 4 in metabolic tissues: insights into obesity and fatty liver disease.
Bioscience Reports 42 (6).
Volltext nicht vorhanden.
2021
Wong, Heng Yeng, Langlotz, Monika, Gan-Schreier, Hongying, Xu, Weihong, Staffer, Simone, Tuma-Kellner, Sabine, Liebisch, Gerhard, Merle, Uta und Chamulitrat, Walee
(2021)
Constitutive oxidants from hepatocytes of male iPLA2β-null mice increases the externalization of phosphatidylethanolamine on plasma membrane.
Free Radical Research 55 (6), S. 625-633.
Volltext nicht vorhanden.
2020
Chamulitrat, Walee
, Jansakun, Chutima, Li, Huili und Liebisch, Gerhard
(2020)
Rescue of Hepatic Phospholipid Remodeling Defect in iPLA2β-Null Mice Attenuates Obese but Not Non-Obese Fatty Liver.
Biomolecules 10 (9), S. 1332.
Volltext nicht vorhanden.
, Jansakun, Chutima, Li, Huili und Liebisch, Gerhard
(2020)
Rescue of Hepatic Phospholipid Remodeling Defect in iPLA2β-Null Mice Attenuates Obese but Not Non-Obese Fatty Liver.
Biomolecules 10 (9), S. 1332.
Volltext nicht vorhanden.
2019
Seessle, Jessica, Liebisch, Gerhard
, Schmitz, Gerd, Stremmel, Wolfgang und Chamulitrat, Walee
(2019)
Compositional Changes Among Triglycerides and Phospholipids During FATP4 Sensitization with Palmitate Lead to ER Stress in Cultured Cells.
European Journal of Lipid Science and Technology 121 (5), S. 1800394.
Volltext nicht vorhanden.
, Schmitz, Gerd, Stremmel, Wolfgang und Chamulitrat, Walee
(2019)
Compositional Changes Among Triglycerides and Phospholipids During FATP4 Sensitization with Palmitate Lead to ER Stress in Cultured Cells.
European Journal of Lipid Science and Technology 121 (5), S. 1800394.
Volltext nicht vorhanden.
Döring, Stephan, Seeßle, Jessica, Gan-Schreier, Hongying, Javaheri, Bahador, Jiao, Li, Cheng, Yuting, Tuma-Kellner, Sabine, Liebisch, Gerhard
, Herrmann, Thomas, Stremmel, Wolfgang
und Chamulitrat, Walee
(2019)
Elevation of blood lipids in hepatocyte-specific fatty acid transport 4-deficient mice fed with high glucose diets.
Molecular Genetics and Metabolism 126 (1), S. 30-38.
Volltext nicht vorhanden.
, Herrmann, Thomas, Stremmel, Wolfgang
und Chamulitrat, Walee
(2019)
Elevation of blood lipids in hepatocyte-specific fatty acid transport 4-deficient mice fed with high glucose diets.
Molecular Genetics and Metabolism 126 (1), S. 30-38.
Volltext nicht vorhanden.
Otto, Ann-Christin, Gan-Schreier, Hongying, Zhu, Xingya, Tuma-Kellner, Sabine, Staffer, Simone, Ganzha, Alexandra, Liebisch, Gerhard
und Chamulitrat, Walee
(2019)
Group VIA phospholipase A2 deficiency in mice chronically fed with high-fat-diet attenuates hepatic steatosis by correcting a defect of phospholipid remodeling.
Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 1864 (5), S. 662-676.
Volltext nicht vorhanden.
und Chamulitrat, Walee
(2019)
Group VIA phospholipase A2 deficiency in mice chronically fed with high-fat-diet attenuates hepatic steatosis by correcting a defect of phospholipid remodeling.
Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 1864 (5), S. 662-676.
Volltext nicht vorhanden.
Zhu, Xingya, Gan-Schreier, Hongying, Otto, Ann-Christin, Cheng, Yuting, Staffer, Simone, Tuma-Kellner, Sabine, Ganzha, Alexandra, Liebisch, Gerhard
und Chamulitrat, Walee
(2019)
iPla2β deficiency in mice fed with MCD diet does not correct the defect of phospholipid remodeling but attenuates hepatocellular injury via an inhibition of lipid uptake genes.
Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 1864 (5), S. 677-687.
Volltext nicht vorhanden.
und Chamulitrat, Walee
(2019)
iPla2β deficiency in mice fed with MCD diet does not correct the defect of phospholipid remodeling but attenuates hepatocellular injury via an inhibition of lipid uptake genes.
Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 1864 (5), S. 677-687.
Volltext nicht vorhanden.
2017
Jiao, Li, Gan-Schreier, Hongying, Zhu, Xingya, Wei, Wang, Tuma-Kellner, Sabine, Liebisch, Gerhard
, Stremmel, Wolfgang und Chamulitrat, Walee
(2017)
Ageing sensitized by iPLA 2 β deficiency induces liver fibrosis and intestinal atrophy involving suppression of homeostatic genes and alteration of intestinal lipids and bile acids.
Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 1862 (12), S. 1520-1533.
Volltext nicht vorhanden.
, Stremmel, Wolfgang und Chamulitrat, Walee
(2017)
Ageing sensitized by iPLA 2 β deficiency induces liver fibrosis and intestinal atrophy involving suppression of homeostatic genes and alteration of intestinal lipids and bile acids.
Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 1862 (12), S. 1520-1533.
Volltext nicht vorhanden.
2016
Deng, Xiuling, Wang, Jiliang, Jiao, Li, Utaipan, Tanyarath
, Tuma-Kellner, Sabine, Schmitz, Gerd, Liebisch, Gerhard
, Stremmel, Wolfgang und Chamulitrat, Walee
(2016)
iPLA2β deficiency attenuates obesity and hepatic steatosis in ob / ob mice through hepatic fatty-acyl phospholipid remodeling.
Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 1861 (5), S. 449-461.
Volltext nicht vorhanden.
, Tuma-Kellner, Sabine, Schmitz, Gerd, Liebisch, Gerhard
, Stremmel, Wolfgang und Chamulitrat, Walee
(2016)
iPLA2β deficiency attenuates obesity and hepatic steatosis in ob / ob mice through hepatic fatty-acyl phospholipid remodeling.
Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 1861 (5), S. 449-461.
Volltext nicht vorhanden.
2015
Seeßle, Jessica, Liebisch, Gerhard
, Schmitz, Gerd
, Stremmel, Wolfgang und Chamulitrat, Walee
(2015)
Palmitate activation by fatty acid transport protein 4 as a model system for hepatocellular apoptosis and steatosis.
Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 1851 (5), S. 549-565.
Volltext nicht vorhanden.
, Schmitz, Gerd
, Stremmel, Wolfgang und Chamulitrat, Walee
(2015)
Palmitate activation by fatty acid transport protein 4 as a model system for hepatocellular apoptosis and steatosis.
Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 1851 (5), S. 549-565.
Volltext nicht vorhanden.
Pathil, Anita, Liebisch, Gerhard
, Okun, Jürgen G., Chamulitrat, Walee, Schmitz, Gerd
und Stremmel, Wolfgang
(2015)
Ursodeoxycholyl Lysophosphatidylethanolamide modifies aberrant lipid profiles in NAFLD.
European Journal of Clinical Investigation 45 (9), S. 925-931.
Volltext nicht vorhanden.
, Okun, Jürgen G., Chamulitrat, Walee, Schmitz, Gerd
und Stremmel, Wolfgang
(2015)
Ursodeoxycholyl Lysophosphatidylethanolamide modifies aberrant lipid profiles in NAFLD.
European Journal of Clinical Investigation 45 (9), S. 925-931.
Volltext nicht vorhanden.
2013
Chamulitrat, Walee, Liebisch, Gerhard
, Xu, Weihong, Gan-Schreier, Hongying, Pathil, Anita, Schmitz, Gerd
und Stremmel, Wolfgang
(2013)
Ursodeoxycholyl Lysophosphatidylethanolamide Inhibits Lipoapoptosis by Shifting Fatty Acid Pools toward Monosaturated and Polyunsaturated Fatty Acids in Mouse Hepatocytes.
Molecular Pharmacology 84 (5), S. 696-709.
Volltext nicht vorhanden.
, Xu, Weihong, Gan-Schreier, Hongying, Pathil, Anita, Schmitz, Gerd
und Stremmel, Wolfgang
(2013)
Ursodeoxycholyl Lysophosphatidylethanolamide Inhibits Lipoapoptosis by Shifting Fatty Acid Pools toward Monosaturated and Polyunsaturated Fatty Acids in Mouse Hepatocytes.
Molecular Pharmacology 84 (5), S. 696-709.
Volltext nicht vorhanden.
2011
Lenz, Lena-Solveig, Marx, Jana, Chamulitrat, Walee, Kaiser, Iris, Gröne, Hermann-Josef, Liebisch, Gerhard
, Schmitz, Gerd
, Elsing, Christoph, Straub, Beate K.
, Füllekrug, Joachim, Stremmel, Wolfgang und Herrmann, Thomas
(2011)
Adipocyte-specific Inactivation of Acyl-CoA Synthetase Fatty Acid Transport Protein 4 (Fatp4) in Mice Causes Adipose Hypertrophy and Alterations in Metabolism of Complex Lipids under High Fat Diet.
Journal of Biological Chemistry 286 (41), S. 35578-35587.
Volltext nicht vorhanden.
, Schmitz, Gerd
, Elsing, Christoph, Straub, Beate K.
, Füllekrug, Joachim, Stremmel, Wolfgang und Herrmann, Thomas
(2011)
Adipocyte-specific Inactivation of Acyl-CoA Synthetase Fatty Acid Transport Protein 4 (Fatp4) in Mice Causes Adipose Hypertrophy and Alterations in Metabolism of Complex Lipids under High Fat Diet.
Journal of Biological Chemistry 286 (41), S. 35578-35587.
Volltext nicht vorhanden.
