| Literature DB >> 27934087 |
Lu Zhang1, Huilan Su, Jiali Cai2, Dengfeng Cheng, Yongjie Ma, Jianping Zhang, Chuanqing Zhou, Shiyuan Liu2, Hongcheng Shi, Yingjian Zhang, Chunfu Zhang1,3.
Abstract
Image-guided combined chemo-thermal therapy assists in optimizing treatment time, enhancing therapeutic efficiency, and circumventing side effects. In the present study, we developed a chemo-photothermal theranostic platform based on polydopamine (PDA)-coated gold nanorods (GNRs). The PDA coating was thin; however, it significantly suppressed the cytotoxicity of the cetyltrimethylammonium bromide template and allowed high cisplatin loading efficiency, arginine-glycine-aspartic acid (RGD) peptide (c(RGDyC)) conjugation, and chelator-free iodine-125 labeling (RGD-125IPt-PDA@GNRs). While loaded cisplatin was released in a pH-sensitive manner, labeled 125I was outstandingly stable under biological conditions. RGD-125IPt-PDA@GNRs had a high specificity for αvβ3 integrin, and consequently, they could selectively accumulate in tumors, as revealed by single photon emission computed tomography/CT imaging, and in target tumor angiogenic vessels, as shown by high-resolution photoacoustic imaging. As RGD-125IPt-PDA@GNRs targets tumor angiogenesis, it is a highly potent tumor therapy. Combined chemo-photothermal therapy with probes could thoroughly ablate tumors and inhibit tumor relapse via a synergistic antitumor effect. Our studies demonstrated that RGD-125IPt-PDA@GNRs is a robust platform for image-guided, chemo-thermal tumor therapy with outstanding synergistic tumor killing and relapse inhibition effects.Entities:
Keywords: angiogenesis targeted; chemo-photothermal combined therapy; cisplatin; gold nanorods; image-guided; photoacoustic imaging; polydopamine
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Year: 2016 PMID: 27934087 DOI: 10.1021/acsnano.6b06267
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881