| Literature DB >> 26202766 |
Chiara Bonini1, Anna Mondino2.
Abstract
Tumors originate from a number of genetic events that deregulate homeostatic mechanisms controlling normal cell behavior. The immune system, devoted to patrol the organism against pathogenic events, can identify transformed cells, and in several cases cause their elimination. It is however clear that several mechanisms encompassing both central and peripheral tolerance limit antitumor immunity, often resulting into progressive diseases. Adoptive T-cell therapy with either allogeneic or autologous T cells can transfer therapeutic immunity. To date, genetic engineering of T cells appears to be a powerful tool for shaping tumor immunity. In this review, we discuss the most recent achievements in the areas of suicide gene therapy, and TCR-modified T cells and chimeric antigen receptor gene-modified T cells. We provide an overview of current strategies aimed at improving the safety and efficacy of these approaches, with an outlook on prospective developments.Entities:
Keywords: Adoptive T-cell therapy; Chimeric antigen receptor; Genetic engineering; Immunotherapy; T cells; T-cell receptor
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Year: 2015 PMID: 26202766 DOI: 10.1002/eji.201545552
Source DB: PubMed Journal: Eur J Immunol ISSN: 0014-2980 Impact factor: 5.532