Arachidonic acid and store-independent calcium entry [electronic resource] / Luca Munaron.

By: Munaron, Luca [spk]Material type: FilmFilmSeries: Henry Stewart talksBiomedical & life sciences collection. Calcium signaling I: Publisher: London : Henry Stewart Talks, 2011Description: 1 online resource (1 streaming video file (19 min.) : color, sound)Other title: Arachidonic acid and store-independent Ca2+ entrySubject(s): Arachidonic acid -- Metabolism | Arachidonic acid -- Physiological effect | Calcium -- Physiological effect | Cellular signal transduction | Arachidonic Acids -- metabolism | Calcium Metabolism Disorders | Calcium Signaling | Cell Differentiation | Cyclic AMP Response Element-Binding Protein | NFATC Transcription Factors | Serum Response Factor | Signal Transduction | Transcription FactorsOnline resources: Click here to access online | Series
Contents:
Contents: Agonist-activated calcium entry: different modes -- Synthesis and metabolism of arachidonic acid (AA) -- Properties of AA-activated calcium channels -- Other effects of AA on calcium homeostasis -- Calcium entry and cell proliferation -- AA as a critical mediator of mitogen-activated calcium entry in fibroblasts -- Role of AA-dependent calcium entry in endothelial cell proliferation and angiogenesis -- Nitric oxide, calcium entry and angiogenesis -- Regulation of proangiogenic calcium signals: a complex picture.
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Animated audio-visual presentation with synchronized narration.

Title from title frames.

Updated version of a talk first published in 2007.

Contents: Agonist-activated calcium entry: different modes -- Synthesis and metabolism of arachidonic acid (AA) -- Properties of AA-activated calcium channels -- Other effects of AA on calcium homeostasis -- Calcium entry and cell proliferation -- AA as a critical mediator of mitogen-activated calcium entry in fibroblasts -- Role of AA-dependent calcium entry in endothelial cell proliferation and angiogenesis -- Nitric oxide, calcium entry and angiogenesis -- Regulation of proangiogenic calcium signals: a complex picture.

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Mode of access: World Wide Web.

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