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<journal_metadata>   <full_title>Journal of Pharmaceutical Technology, Research and Management</full_title>   <abbrev_title>JPTRM</abbrev_title>   <issn media_type='print'>23212217</issn>   <issn media_type='electronic'>23212225</issn>   <doi_data>     <doi>10.15415/jptrm</doi>     <resource>https://jptrm.chitkara.edu.in/</resource>   </doi_data> </journal_metadata> <journal_issue>  <publication_date media_type='print'>     <month>05</month>     <day>20</day>     <year>2013</year>   </publication_date>  <publication_date media_type='online'>     <month>05</month>     <day>20</day>     <year>2013</year>   </publication_date>   <journal_volume>     <volume>1</volume>   </journal_volume>   <issue>1</issue>   <doi_data>     <doi>10.15415/jptrm.2013.11</doi>     <resource>https://jptrm.chitkara.edu.in/2013/vol-1-no-1/</resource>   </doi_data> </journal_issue><!-- ============== --> <journal_article publication_type='full_text'>   <titles>     <title>Advances in Magnetofection &amp; − Magnetically Guided Nucleic Acid Delievery:a Review</title>     <original_language_title>Advances in Magnetofection &amp; − Magnetically Guided Nucleic Acid Delievery:a Review</original_language_title>   </titles>   <contributors>      <organization sequence='first' contributor_role='author'>Chitkara College of Pharmacy, Chitkara University, Rajpura, Punjab-140401</organization>    <person_name sequence='first' contributor_role='author'>      <given_name>Sandeep</given_name>      <surname>Arora</surname>    </person_name>    <person_name sequence='additional' contributor_role='author'>       <given_name>Girish </given_name>       <surname>Gupta</surname>     </person_name>     <organization sequence='additional' contributor_role='author'>Omni Active Health Technologies, Thane, Maharashtra, INDIA</organization>     <person_name sequence='additional' contributor_role='author'>       <given_name>Sukhbir </given_name>       <surname>Singh</surname>     </person_name>     <organization sequence='additional' contributor_role='author'>Chitkara College of Pharmacy, Chitkara University, Rajpura, Punjab-140401</organization>     <person_name sequence='additional' contributor_role='author'>       <given_name>Neelam </given_name>       <surname>Singh</surname>     </person_name>     <organization sequence='additional' contributor_role='author'>Chitkara College of Pharmacy, Chitkara University, Rajpura, Punjab-140401</organization>   </contributors>    <jats:abstract xml:lang='en'>         <jats:p>During the last decade, nanomagnetic methods for delivering and targeting nucleic acids have been developed which are often referred to as magnetofection. Nucleic acids carry the building plans of living systems. As such, they can be exploited to make cells produce a desired protein, or to shut down the expression of endogenous genes or even to repair defective genes. Hence, nucleic acids are unique substances for research and therapy. To exploit their potential, they need to be delivered into cells which can be a challenging task in many respects. Magnetofection provides a novel tool for high throughput gene screening in vitro and can help to overcome fundamental limitations to gene therapy in vivo. Magnetofection is nucleic acid delivery to cells, supported and site-specifically guided by the attractive forces of magnetic fields acting on nucleic acid shuttles (vectors) which are associated with magnetic nanoparticles. In a magnetofection procedure, self-assembling complexes of enhancers like cationic lipids with plasmid DNA or small interfering RNA (siRNA) are associated with magnetic nanoparticles and are then concentrated at the surface of cultured cells by applying a permanent inhomogeneous magnetic field.</jats:p>     </jats:abstract>  <publication_date media_type='print'>     <month>05</month>     <day>20</day>     <year>2013</year>   </publication_date>  <publication_date media_type='online'>     <month>05</month>     <day>20</day>     <year>2013</year>   </publication_date>   <pages>     <first_page>19</first_page>     <last_page>29</last_page>   </pages>   <doi_data>     <doi>10.15415/jptrm.2013.11002</doi>     <resource>https://jptrm.chitkara.edu.in/2013/advances-in-magnetofection-%e2%88%92-magnetically-guided-nucleic-acid-delieverya-review/</resource>   </doi_data> </journal_article>
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