| Literature DB >> 24969588 |
Ze Liu1, Min Xiong2, Junbo Gong3, Yan Zhang1, Nan Bai1, Yunping Luo4, Luyuan Li1, Yuquan Wei5, Yanhua Liu1, Xiaoyue Tan2, Rong Xiang1.
Abstract
Specific targeting and cellular internalization are key properties for carriers of antitumor therapeutic agents. Here, we develop a drug carrier through the attachment of substrate of endoprotease legumain, alanine-alanine-asparagine (AAN), to cell-penetrating peptides (TAT, trans-activating factor). The addition of the AAN moiety to the fourth lysine in the TAT creates a branched peptide moiety, which leads to a decrease in the transmembrane transport capacity of TAT by 72.65%. Legumain efficiently catalyses the release of TAT-liposome from the AAN-TAT-liposome and thereby recovers the penetrating capacity of TAT. Doxorubicin carried by the AAN-TAT-liposome led to an increase in the tumoricidal effect of doxorubicin and a reduction in its systemic adverse effects in comparison with doxorubicin carried by a control delivery system. Thus, the specific targeting and high efficiency of this delivery platform offers a novel approach to limit the toxicity of anticancer agents as well as increasing their efficacy in cancer therapy.Entities:
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Year: 2014 PMID: 24969588 DOI: 10.1038/ncomms5280
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919