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Overcoming Hypoxia-Induced Apoptotic Resistance through Combinatorial Inhibition of GSK-3β and CDK1

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Patrick A. Mayes, Nathan G. Dolloff, Colin J. Daniel, J. Judy Liu, Lori S. Hart, Kageaki Kuribayashi, Joshua E. Allen, David I.H. Jee, Jay F. Dorsey, Yingqiu Y. Liu, David T. Dicker, J. Martin Brown, Emma E. Furth, Peter S. Klein, Rosalie C. Sears, and Wafik S. El-Deiry

Intracoronary mesenchymal stem cells promote postischemic myocardial functional recovery, decrease inflammation, and reduce apoptosis via a signal transducer and activator of transcription 3 mechanism

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Read more about Intracoronary mesenchymal stem cells promote postischemic myocardial functional recovery, decrease inflammation, and reduce apoptosis via a signal transducer and activator of transcription 3 mechanism

Poynter JA, Herrmann JL, Manukyan MC, Wang Y, Abarbanell AM, Weil BR, Brewster BD, Meldrum DR.

Hypoxia increases transepithelial electrical conductance and reduces occludin at the plasma membrane in alveolar epithelial cells via PKC- and PP2A pathway

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Read more about Hypoxia increases transepithelial electrical conductance and reduces occludin at the plasma membrane in alveolar epithelial cells via PKC- and PP2A pathway

Juan Carlos Caraballo, Cecilia Yshii, Maria L. Butti, Whitney Westphal, Jennifer A. Borcherding, Chantal Allamargot, and Alejandro P. Comellas