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Preloading of Hydrophobic Anticancer Drug into Multifunctional Nanocarrier for Multimodal Imaging, NIR-Responsive Drug Release, and Synergistic Therapy

机译:将疏水性抗癌药预装到多功能纳米载体中以进行多模式成像,近红外响应药物释放和协同治疗

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摘要

Applications of hydrophobic drug-based nanocarriers (NCs) remain largely limited because of their low loading capacity. Here, development of a multifunctional hybrid NC made of a magnetic Fe3O4 core and a mesoporous silica shell embedded with carbon dots (CDs) and paclitaxel (PTX), and covered by another layer of silica is reported. The NC is prepared via a one-pot process under mild condition. The PTX loading method introduced in this study simplifies drug loading process and demonstrates a high loading capacity due to mesoporous silica dual-shell structure, supramolecular p-stacking between conjugated rings of PTX molecules, and aromatic rings of the CDs in the hybrid NC. The CDs serve as both confocal and two-photon fluorescence imaging probes, while the Fe3O4 core serves as a magnetic resonance imaging contrast agent. Significantly, NC releases PTX in response to near infrared irradiation as a result of local heating of the embedded CDs and the heating of CDs also provides an additional therapeutic effect by thermally killing cancer cells in tumor in addition to the chemotherapeutic effect of released PTX. Both in vitro and in vivo results show that NC demonstrates high therapeutic efficacy through a synergistic effect from the combined chemo-photothermal treatments.
机译:疏水性基于药物的纳米载体(NCs)的应用由于其低负载能力而受到很大限制。在此,报道了一种由Fe3O4磁性核和嵌有碳点(CD)和紫杉醇(PTX)并被另一层二氧化硅覆盖的介孔二氧化硅壳制成的多功能混合NC的开发。 NC是在温和条件下通过一锅法制备的。这项研究中引入的PTX加载方法简化了药物加载过程,并由于中孔二氧化硅双壳结构,PTX分子共轭环之间的超分子p堆积以及杂化NC中CD的芳族环而显示出较高的加载能力。 CD既可以用作共聚焦荧光成像探针,也可以用作双光子荧光成像探针,而Fe3O4磁芯则用作磁共振成像造影剂。重要的是,由于嵌入的CD的局部加热,NC响应近红外辐射释放PTX,并且CD的加热除释放的PTX的化学治疗作用外,还通过热杀死肿瘤中的癌细胞提供了额外的治疗作用。体外和体内结果均表明,NC通过联合化学-光热疗法的协同作用显示出高疗效。

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