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Olov Wiklund

Showing results (31-40 of 63) with videos related to

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Human Molecular Genetics|December 22, 2005
Tagging-SNP haplotype analysis of the secretory PLA2IIa gene PLA2G2A shows strong association with serum levels of sPLA2IIa: results from the UDACS studyPeter T E Wootton, Fotios Drenos, Jackie A Cooper, et al.
Atherosclerosis|July 28, 2005
Oxidized LDL induces a coordinated up-regulation of the glutathione and thioredoxin systems in human macrophagesDaniel Hägg, Mikael C O Englund, Margareta Jernås, et al.
Journal of Clinical Lipidology|September 1, 2016
Identification and characterization of two novel mutations in the LPL gene causing type I hyperlipoproteinemiaPiero Pingitore, Saverio Massimo Lepore, Carlo Pirazzi, et al.
Atherosclerosis|July 16, 2003
Copper induces the expression of cholesterogenic genes in human macrophagesPer Arne Svensson, Mikael C O Englund, Emilia Markström, et al.
European Journal of Preventive Cardiology|February 6, 2020
Virtual genetic diagnosis for familial hypercholesterolemia powered by machine learningAna Pina, Saga Helgadottir, Rosellina Margherita Mancina, et al.
Journal of the American College of Cardiology|December 20, 2008
Long-term effects of fenofibrate on carotid intima-media thickness and augmentation index in subjects with type 2 diabetes mellitusAnne Hiukka, Jukka Westerbacka, Eeva S Leinonen, et al.
Atherosclerosis|November 9, 2004
Identification of genes predominantly expressed in human macrophagesPer-Arne Svensson, Daniel A Hägg, Margareta Jernås, et al.
Human Molecular Genetics|June 5, 2007
Tagging SNP haplotype analysis of the secretory PLA2-V gene, PLA2G5, shows strong association with LDL and oxLDL levels, suggesting functional distinction from sPLA2-IIA: results from the UDACS studyPeter T E Wootton, Nupur L Arora, Fotios Drenos, et al.
Diabetes|June 9, 2009
ApoCIII-enriched LDL in type 2 diabetes displays altered lipid composition, increased susceptibility for sphingomyelinase, and increased binding to biglycanAnne Hiukka, Marcus Ståhlman, Camilla Pettersson, et al.
Arteriosclerosis, Thrombosis, and Vascular Biology|September 11, 2004
Hypoxia increases LDL oxidation and expression of 15-lipoxygenase-2 in human macrophagesEllen Knutsen Rydberg, Alexandra Krettek, Christina Ullström, et al.
Pageof 7

Showing results (31-40 of 63) with videos related to

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Pageof 7
Human Molecular Genetics|December 22, 2005
Tagging-SNP haplotype analysis of the secretory PLA2IIa gene PLA2G2A shows strong association with serum levels of sPLA2IIa: results from the UDACS studyPeter T E Wootton, Fotios Drenos, Jackie A Cooper, et al.
Atherosclerosis|July 28, 2005
Oxidized LDL induces a coordinated up-regulation of the glutathione and thioredoxin systems in human macrophagesDaniel Hägg, Mikael C O Englund, Margareta Jernås, et al.
Journal of Clinical Lipidology|September 1, 2016
Identification and characterization of two novel mutations in the LPL gene causing type I hyperlipoproteinemiaPiero Pingitore, Saverio Massimo Lepore, Carlo Pirazzi, et al.
Atherosclerosis|July 16, 2003
Copper induces the expression of cholesterogenic genes in human macrophagesPer Arne Svensson, Mikael C O Englund, Emilia Markström, et al.
European Journal of Preventive Cardiology|February 6, 2020
Virtual genetic diagnosis for familial hypercholesterolemia powered by machine learningAna Pina, Saga Helgadottir, Rosellina Margherita Mancina, et al.
Journal of the American College of Cardiology|December 20, 2008
Long-term effects of fenofibrate on carotid intima-media thickness and augmentation index in subjects with type 2 diabetes mellitusAnne Hiukka, Jukka Westerbacka, Eeva S Leinonen, et al.
Atherosclerosis|November 9, 2004
Identification of genes predominantly expressed in human macrophagesPer-Arne Svensson, Daniel A Hägg, Margareta Jernås, et al.
Human Molecular Genetics|June 5, 2007
Tagging SNP haplotype analysis of the secretory PLA2-V gene, PLA2G5, shows strong association with LDL and oxLDL levels, suggesting functional distinction from sPLA2-IIA: results from the UDACS studyPeter T E Wootton, Nupur L Arora, Fotios Drenos, et al.
Diabetes|June 9, 2009
ApoCIII-enriched LDL in type 2 diabetes displays altered lipid composition, increased susceptibility for sphingomyelinase, and increased binding to biglycanAnne Hiukka, Marcus Ståhlman, Camilla Pettersson, et al.
Arteriosclerosis, Thrombosis, and Vascular Biology|September 11, 2004
Hypoxia increases LDL oxidation and expression of 15-lipoxygenase-2 in human macrophagesEllen Knutsen Rydberg, Alexandra Krettek, Christina Ullström, et al.
Pageof 7