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  <Header>
    <ArticleTitle>COMPUTER SCIENCE TOOLS TO BETTER UNDERSTAND QURAN</ArticleTitle>
  </Header>
  <ArticleParameters>
    <ArticleReceivingDate>2016-05-05</ArticleReceivingDate>
    <ArticleRevisedDate>2016-05-10</ArticleRevisedDate>
    <ArticleAcceptanceDate>2016-05-15</ArticleAcceptanceDate>
    <ArticlePublishedOn>9/29/2024 5:40:54 AM</ArticlePublishedOn>
    <Journal>Advanced Humanities and Social Sciences</Journal>
    <Volume>3</Volume>
    <Year>2016</Year>
    <ArticleType>Conference abstract</ArticleType>
    <FirstPage>21</FirstPage>
    <LastPage>22</LastPage>
    <CollectionYear>2016</CollectionYear>
    <ArticleDoi>http://dx.doi.org/10.21065/2520-5986.1.21</ArticleDoi>
    <Language>English</Language>
  </ArticleParameters>
  <Authors>
    <ArticleAuthors>Afzal Uppal, Ph.D.</ArticleAuthors>
  </Authors>
  <keywords>
    <Articlekeywords>UNDERSTAND QURAN, COMPUTER SCIENCE TOOLS</Articlekeywords>
  </keywords>
  <Abstract>
    <ArticleAbstract>A novel strategy to prevent pancreatic inflammation due to an endoscopic procedure called
an ERCP. There is a pressing need to develop effective preventative therapies for
post-ERCP pancreatitis (PEP). We recently published that early PEP events are induced
through the activation of a calcium-activated phosphatase called calcineurin and that global
deletion of calcineurin abolishes PEP in a mouse model. A crucial question is whether
calcineurin within the pancreas itself controls the initiation of PEP. We now show, using two
complementary genetic approaches, that PEP is dependent on calcineurin produced by the
main cells of the pancreas called acinar cells and that calcineurin inhibitor medications,
infused within the radiocontrast given during ERCP, can largely prevent PEP. These results
provide impetus for launching clinical trials to test the efficacy of this novel delivery of
calcineurin inhibitors to prevent PEP.</ArticleAbstract>
  </Abstract>
</ArticalData>