Human vascular endothelial cells are a rich and regulatable source of secretory sphingomyelinase. Implications for early atherogenesis and ceramide-mediated cell signaling (Q42450640): Difference between revisions

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Set a claim value: title (P1476): Human vascular endothelial cells are a rich and regulatable source of secretory sphingomyelinase. Implications for early atherogenesis and ceramide-mediated cell signaling
 
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Human vascular endothelial cells are a rich and regulatable source of secretory sphingomyelinase. Implications for early atherogenesis and ceramide-mediated cell signaling.
Human vascular endothelial cells are a rich and regulatable source of secretory sphingomyelinase. Implications for early atherogenesis and ceramide-mediated cell signaling
label / nllabel / nl
 
Human vascular endothelial cells are a rich and regulatable source of secretory sphingomyelinase. Implications for early atherogenesis and ceramide-mediated cell signaling
description / astdescription / ast
artículu científicu
artículu científicu espublizáu en 1998
description / ukdescription / uk
наукова стаття
наукова стаття, опублікована в лютому 1998
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Human vascular endothelial cells are a rich and regulatable source of secretory sphingomyelinase. Implications for early atherogenesis and ceramide-mediated cell signaling. (English)
Human vascular endothelial cells are a rich and regulatable source of secretory sphingomyelinase. Implications for early atherogenesis and ceramide-mediated cell signaling (English)
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Property / main subject: endothelium / rank
 
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Property / ResearchGate publication ID: 13768463 / rank
 
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Property / language of work or name: English / rank
 
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Latest revision as of 11:11, 21 August 2023

scientific article published on February 1998
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Human vascular endothelial cells are a rich and regulatable source of secretory sphingomyelinase. Implications for early atherogenesis and ceramide-mediated cell signaling
scientific article published on February 1998

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    Human vascular endothelial cells are a rich and regulatable source of secretory sphingomyelinase. Implications for early atherogenesis and ceramide-mediated cell signaling (English)
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