Targeting nanoparticles by conjugating various specific ligands has shown potential therapeutic efficacy in nanomedicine. However, poor penetration of antitumor drugs into solid tumors remains a major obstacle. Here, we describe a targeting strategy for antitumor drug delivery by conjugating a crosslinked multilamellar liposomal vesicle (cMLV) formulation with a tumor-penetrating peptide, iRGD. The results showed that iRGD peptides could facilitate the binding and cellular uptake of drug-loaded cMLVs and consequently enhance the antitumor efficacy in breast tumor cells, including multidrug-resistant cells. Moreover, colocalization data revealed that iRGD-conjugated cMLVs (iRGD-cMLVs) entered cells via the clathrin-mediated pathway, followed by endosome-lysosome transport for efficient drug delivery. Finally, in vivo study indicated that iRGD-cMLVs could deliver anticancer drugs efficiently to mediate significant tumor suppression.
Enhanced therapeutic efficacy of iRGD-conjugated crosslinked multilayer liposomes for drug delivery.
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作者:Liu Yarong, Ji Man, Wong Michael K, Joo Kye-Il, Wang Pin
| 期刊: | Biomed Research International | 影响因子: | 2.300 |
| 时间: | 2013 | 起止号: | 2013;2013:378380 |
| doi: | 10.1155/2013/378380 | ||
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