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  <front>
    <journal-meta>
      <journal-title-group>
        <journal-title>British Journal of Medical and Health Research</journal-title>
        <abbrev-journal-title abbrev-type="publisher">BJMHR</abbrev-journal-title>
      </journal-title-group>
      <issn pub-type="epub">2394-2967</issn>
    </journal-meta>
    <article-meta>
      <article-id pub-id-type="doi">10.46624/bjmhr.2018.v5.i02.002</article-id>
      <article-id pub-id-type="publisher-id">BJMHR0502002</article-id>
      <title-group>
        <article-title>CRISPR-CAS9 Technology Mechanism- The New Gene Editing Tool for Disease Prevention &amp; Treatment.</article-title>
      </title-group>
      <contrib-group>
        <contrib contrib-type="author">
          <name>
            <surname>Mishal</surname>
            <given-names>R. H.</given-names>
          </name>
          <xref ref-type="aff" rid="aff1"/>
        </contrib>
        <contrib contrib-type="author">
          <name>
            <surname>Mishal</surname>
            <given-names>B. H.</given-names>
          </name>
          <xref ref-type="aff" rid="aff2"/>
        </contrib>
        <contrib contrib-type="author">
          <name>
            <surname>Mishal</surname>
            <given-names>H. B.</given-names>
          </name>
          <xref ref-type="aff" rid="aff3"/>
        </contrib>
      </contrib-group>
      <aff id="aff1">Dr. M. S. Gosavi College of Pharmaceutical Education &amp; Research, Prin. T. A. Kulkarni Vidyanagar, Nashik-422005.</aff>
      <aff id="aff2">Sinhgad Instituteâ€™s Sinhgad College of engineering, Vadgaon (Bk), Pune-411041</aff>
      <aff id="aff3">METâ€™s Institute of Pharmacy, Bhujbal Knowledge City, Adgaon, Nashik-422003.</aff>
      <pub-date pub-type="epub" iso-8601-date="2018-02-01">
        <month>02</month>
        <day>01</day>
        <year>2018</year>
      </pub-date>
      <volume>5</volume>
      <issue>2</issue>
      <abstract>
        <p>Genome editing (also called gene editing) is a group of technologies that give scientists the ability to change an organism&apos;s DNA. These technologies allow genetic material to be added, removed, or altered at particular locations in the genome. Several approaches to genome editing have been developed. A recent one is known as CRISPR-Cas9, which is short for clustered regularly interspaced short palindromic repeats and CRISPR-associated protein 9. The CRISPR-Cas9 system has generated a lot of excitement in the scientific community because it is faster, cheaper, more accurate, and more efficient than other existing genome editing methods. Genome editing is of great interest in the prevention and treatment of human diseases. Currently, most research on genome editing is done to understand diseases using cells and animal models. Scientists are still working to determine whether this approach is safe and effective for use in people. It is being explored in research on a wide variety of diseases, including single-gene disorders such as cystic fibrosis, hemophilia, and sickle cell disease. It also holds promise for the treatment and prevention of more complex diseases, such as cancer, heart disease, mental illness, and human immunodeficiency virus (HIV) infection. This paper throws light on this technology.</p>
      </abstract>
      <kwd-group kwd-group-type="author">
        <kwd>CRISPR</kwd>
        <kwd>DNA sequence</kwd>
        <kwd>genome editing</kwd>
        <kwd>gene therapy</kwd>
        <kwd>immune system.</kwd>
      </kwd-group>
    </article-meta>
  </front>
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