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Doxorubicin-Loaded Carbon Dots Lipid-Coated Calcium Phosphate Nanoparticles for Visual Targeted Delivery and Therapy of Tumor

机译:加载型多柔比星的碳点脂质涂覆的磷酸钙纳米粒子,用于视觉靶向递送和治疗肿瘤

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Background: Carbon dots (CDs) have attracted extensive attention in recent years because of their high biocompatibility and unique optical property. But they could not be well applied in the drug delivery system to enable distribution in tumor sites with their low pH sensitivity. They are barriers for drug delivery. CDs as an imaging proper?were conjugated with doxorubicin (DOX)?lipid-coated?calcium phosphate (LCP) nanoparticle, for a pH-sensitive nanocarrier and delivery of the antitumor drugs. Materials and Methods: CDs were prepared by one-step hydrothermal treatment of citric acid and ethylenediamine. The nanoparticles were simply prepared by using microemulsion technology to form calcium phosphate (CaP) core and further coated with cationic lipids. Results: The structure was characterized by FTIR, XRD and TEM. In vitro release study revealed that DOX-CDs@LCP was pH dependent. The cytotoxicity assay demonstrated that it exhibited enhanced efficiency compared to the control group (DOX-CDs), but weaker than free DOX. The cellular uptake revealed that these pH-sensitive nanoparticles could be taken up effectively and deliver DOX into the?cytoplasm to reach antitumor effect. The fluorescence imaging indicated that DOX-CDs@LCP mostly distributed in the tumor region due to the enhanced permeability and retention effect (EPR) to reduce its systematical toxicity. Importantly, an antitumor activity study demonstrated that the DOX-CDs@LCP nanoparticles had higher antitumor activity than any other groups and lower toxicity. The results showed that LCP could significantly promote the release in tumor microenvironment due to pH-response. The DOX-CDs could enhance load capacity and reduce drug premature releasing; real-time tracking of efficacy as confocal imaging contrast agent. Thus, DOX-CDs@LCP had antitumor capacity and lower systematic toxicity in tumor therapy. Conclusion: DOX-CDs@LCP were?proven as a promising tumor pH-sensitive and imaging-guided drug delivery system for liver cancer chemotherapy.
机译:背景:由于其高生物相容性和独特的光学性质,近年来,碳点(CDS)引起了广泛的关注。但它们不能很好地应用于药物递送系统,以使其在肿瘤部位的分布具有低pH敏感性。它们是药物递送的障碍。 CD作为成像正确?与多柔比星(DOX)缀合出脂质涂覆的?磷酸钙(LCP)纳米粒子,用于pH敏感的纳米载体和抗肿瘤药物的递送。材料和方法:通过柠檬酸和乙二胺的一步水热处理制备CD。通过使用微乳液技术制备纳米颗粒以形成磷酸钙(帽)核并进一步涂有阳离子脂质。结果:该结构的特点是FTIR,XRD和TEM。体外释放研究表明,DOX-CDS / LCP依赖于pH值。细胞毒性测定证明它与对照组(DOX-CDS)相比表现出增强的效率,但比免费的DOX弱。细胞摄取显示,可以有效地溶解这些pH敏感的纳米颗粒并将DOX递送到β细胞质中以达到抗肿瘤效果。荧光成像表明,由于增强的渗透性和保留效应(EPR)来降低其系统毒性,DOX-CDS / LCP主要分布在肿瘤区域中。重要的是,抗肿瘤活性研究证明DOX-CDS / LCP纳米颗粒具有比任何其他基团和较低毒性更高的抗肿瘤活性。结果表明,LCP由于pH响应,LCP可以显着促进肿瘤微环境中的释放。 DOX-CD可以提高负载能力,减少药物过早释放;实时跟踪疗效作为共焦成像造影剂。因此,DOX-CDS @ LCP具有抗肿瘤能力和肿瘤治疗的系统毒性。结论:DOX-CDS @ LCP是肝癌化疗的有前途肿瘤pH敏感和成像引导的药物递送系统。

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