Search Results - "Balakrishnan, Meenakshi P."

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    Cardiac arrest: An interdisciplinary scoping review of the literature from 2019 by Murphy, Travis W., Cohen, Scott A., Avery, K. Leslie, Balakrishnan, Meenakshi P., Balu, Ramani, Chowdhury, Muhammad Abdul Baker, Crabb, David B., Huesgen, Karl W., Hwang, Charles W., Maciel, Carolina B., Gul, Sarah S., Han, Francis, Becker, Torben K.

    Published in Resuscitation plus (01-12-2020)
    “…The Interdisciplinary Cardiac Arrest Research Review (ICARE) group was formed in 2018 to conduct a systematic annual search of peer-reviewed literature…”
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    The Association of Health Literacy With Preventable Emergency Department Visits: A Cross‐sectional Study by Balakrishnan, Meenakshi P., Herndon, Jill Boylston, Zhang, Jingnan, Payton, Thomas, Shuster, Jonathan, Carden, Donna L., Alter, Harrison J.

    Published in Academic emergency medicine (01-09-2017)
    “…Background Policymakers argue that emergency department (ED) visits for conditions preventable with high‐quality outpatient care contribute to waste in the…”
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    THAP5 is a human cardiac-specific inhibitor of cell cycle that is cleaved by the proapoptotic Omi/HtrA2 protease during cell death by Balakrishnan, Meenakshi P, Cilenti, Lucia, Mashak, Zineb, Popat, Paiyal, Alnemri, Emad S, Zervos, Antonis S

    “…Omi/HtrA2 is a mitochondrial serine protease that has a dual function: while confined in the mitochondria, it promotes cell survival, but when released into…”
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    THAP5 is a DNA-binding transcriptional repressor that is regulated in melanoma cells during DNA damage-induced cell death by Balakrishnan, Meenakshi P., Cilenti, Lucia, Ambivero, Camilla, Goto, Yamafumi, Takata, Minoru, Turkson, James, Li, Xiaoman Shawn, Zervos, Antonis S.

    “…► THAP5 is a DNA-binding protein and a transcriptional repressor. ► THAP5 is induced in melanoma cells upon exposure to UV or treatment with cisplatin. ► THAP5…”
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    Abstract 1858: Development of a multiplex panel of biomarkers to assess energy metabolism in cancer by Balakrishnan, Meenakshi P., Parchment, Ralph E., Hollingshead, Melinda G., Tomaszewski, Joseph E., Kinders, Robert J., Doroshow, James H., Srivastava, Apurva K.

    Published in Cancer research (Chicago, Ill.) (15-04-2013)
    “…Background: Cancer cells have an altered glucose metabolism, which not only permits them to survive under hypoxic conditions but confers a distinct growth…”
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