Design and development of polymers for gene delivery
Identifieur interne : 001E82 ( Main/Exploration ); précédent : 001E81; suivant : 001E83Design and development of polymers for gene delivery
Auteurs : Daniel W. Pack [États-Unis] ; Allan S. Hoffman [États-Unis] ; Suzie Pun [États-Unis] ; Patrick S. Stayton [États-Unis]Source :
- Nature Reviews Drug Discovery [ 1474-1776 ] ; 2005-07.
Abstract
The lack of safe and efficient gene-delivery methods is a limiting obstacle to human gene therapy. Synthetic gene-delivery agents, although safer than recombinant viruses, generally do not possess the required efficacy. In recent years, a variety of effective polymers have been designed specifically for gene delivery, and much has been learned about their structure–function relationships. With the growing understanding of polymer gene-delivery mechanisms and continued efforts of creative polymer chemists, it is likely that polymer-based gene-delivery systems will become an important tool for human gene therapy.
Url:
DOI: 10.1038/nrd1775
Affiliations:
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<front><div type="abstract" xml:lang="eng">The lack of safe and efficient gene-delivery methods is a limiting obstacle to human gene therapy. Synthetic gene-delivery agents, although safer than recombinant viruses, generally do not possess the required efficacy. In recent years, a variety of effective polymers have been designed specifically for gene delivery, and much has been learned about their structure–function relationships. With the growing understanding of polymer gene-delivery mechanisms and continued efforts of creative polymer chemists, it is likely that polymer-based gene-delivery systems will become an important tool for human gene therapy.</div>
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