Literature DB >> 29452945

Reduction-sensitive fluorescence enhanced polymeric prodrug nanoparticles for combinational photothermal-chemotherapy.

Yuanyuan Zhang1, Dan Yang2, Hongzhong Chen3, Wei Qi Lim3, Fiona Soo Zeng Phua3, Guanghui An4, Piaoping Yang5, Yanli Zhao6.   

Abstract

In this study, a reduction-sensitive supramolecular polymeric drug delivery system was developed for combinational photothermal-chemotherapy of cancer. The multifunctional system was self-assembled by specific host-guest interactions between hydrophilic β-cyclodextrin functionalized hyaluronic acid and adamantane linked camptothecin/dye conjugate, where a near-infrared (NIR) absorbing dye IR825 was loaded. The hydrophilic hyaluronic acid shell endows the assembly with excellent colloidal stability and biocompatibility. The embedded disulfide bond in the camptothecin/dye conjugate was cleaved under reducing environment, leading to the release of the conjugated drug and the recovery of fluorescence emission. Meanwhile, the dye IR825 could efficiently transfer the absorbed light into local heat, making the nanoplatform an effective system for photothermal therapy. As evident by confocal microscopy images, the nanoplatform was quickly internalized by HeLa, MCF-7, and U14 cancer cells and released drug molecules inside the cells. In vitro cell viability assays confirmed that the cancer cells were efficiently killed by the treatment of the nanoplatform under NIR light irradiation. Significant tumor regression was also observed in the tumor-bearing mice upon the administration of the nanoplatform through combinational photothermal-chemotherapy therapy. Hence, this nanoplatform presented a great potential in site-specific combined photothermal-chemotherapy of tumor.
Copyright © 2018 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Camptothecin prodrug; Combined photothermal-chemotherapy; Fluorescence enhancement; In vivo studies; Supramolecular nanoparticles

Mesh:

Substances:

Year:  2018        PMID: 29452945     DOI: 10.1016/j.biomaterials.2018.02.023

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  15 in total

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Review 10.  Smart Nanoparticles for Chemo-Based Combinational Therapy.

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