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Folate-receptor-targeted NIR-sensitive polydopamine nanoparticles for chemophotothermal cancer therapy

机译:叶酸受体靶向的NIR敏感聚二胺纳米胺用于化学热癌疗法

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We propose the use of folate-receptor-targeted, near-infrared-sensitive polydopamine nanoparticles (NPs) for chemo-photothermal cancer therapy as an enhanced type of drugdelivery system which can be synthesized by in situ polymerization and conjugation with folic acid. The NPs consist of a Fe3O4/Au core, coated polydopamine, conjugated folic acid, and loaded anti-cancer drug (doxorubicin). The proposed multifunctional NPs show many advantages for therapeutic applications such as good biocompatibility and easy bioconjugation. The polydopamine coating of the NPs show a higher photothermal effect and thus more effective cancer killing compared to Fe3O4/Au nanoparticles at the same intensity as near-infrared laser irradiation. In addition, the conjugation of folic acid was shown to enhance cancer cellular uptake efficiency via the folate receptor and thus improve chemotherapeutic efficiency. Through in vitro cancer cell treatment testing, the proposed multifunctional NPs showed advanced photothermal and chemotherapeutic performance. Based on these enhanced anti-cancer properties, we expect that the proposed multifunctional NPs can be used as a drug-delivery system in cancer therapy.
机译:我们提出使用叶酸受体靶向,近红外敏感的聚德米多多氨基氨氨氨酸(NPS),用于化学光热癌疗法,作为增强的药物配送系统,可以通过原位聚合和与叶酸缀合来合成。 NPS由Fe3O4 / Au核,涂覆的聚德多样,缀合的叶酸和负载抗癌药物(多柔比星)组成。所提出的多功能NPS对治疗应用的许多优点显示出良好的生物相容性和易生物谐波。与Fe3O4 / Au纳米颗粒相比,NPS的NPS的聚二胺涂层显示出更高的光热效果,从而与近红外激光照射相同的Fe3O4 / Au纳米颗粒更有效的癌症杀灭。此外,显示叶酸的缀合通过叶酸受体来增强癌症细胞吸收效率,从而提高化学治疗效率。通过体外癌细胞治疗测试,所提出的多功能NPS显示出先进的光热和化学治疗性能。基于这些增强的抗癌性质,我们预计所提出的多功能NPS可以用作癌症治疗中的药物输送系统。

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