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- W2325992502 abstract "In this study, we reported a simple polydopamine (pD)-based surface modification method to prepare novel nanoparticle-aptamer bioconjugates (Apt-pD-DTX/NPs) for in vivo tumor targeting and enhanced therapeutic effects of breast cancer. With simple preparation procedures, the new functionalized Apt-pD-DTX/NPs could maximumly increase the local effective drug concentration on tumor sites, achieving enhanced treatment effectiveness and minimizing side effects. The dopamine polymerization and aptamer conjugation barely changed the characters of NPs. Both in vitro cell experiments (i.e. endocytosis of fluorescent NPs, in vitro cellular targeting and cytotoxicity assays) and in vivo animal studies (i.e. in vivo imaging, biodistribution and antitumor effects of NPs) demonstrated that the Apt-pD-DTX/NPs could achieve significantly high targeting efficiency and enhanced therapeutic effects compared with clinical Taxotere(®) and NPs without functional modification. Above all, the Apt-pD-DTX/NPs showed great potential as a promising nanoformulation for in vivo breast cancer therapy and the construction of pD-modified NP-aptamer bioconjugates could be of great value in medical use." @default.
- W2325992502 created "2016-06-24" @default.
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- W2325992502 date "2016-01-01" @default.
- W2325992502 modified "2023-10-09" @default.
- W2325992502 title "Polydopamine-Based Surface Modification of Novel Nanoparticle-Aptamer Bioconjugates for<i> In Vivo</i> Breast Cancer Targeting and Enhanced Therapeutic Effects" @default.
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- W2325992502 doi "https://doi.org/10.7150/thno.14184" @default.
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