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Self-Assembled Hybrids of Fluorescent Carbon Dots and PAMAM Dendrimers for Epirubicin Delivery and Intracellular Imaging

机译:荧光碳点和PAMAM树状聚合物的自组装杂合物用于表柔比星传递和细胞内成像

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Advanced nanomaterials integrating imaging and therapeutic modalities on a single platform offers a new horizon in current cancer treatment strategies. Recently, carbon dots (CQDs) have been successfully employed for bioimaging of cancer cells. In the present study, luminescent CQDs with anionic terminus and cationic acetylated G5 poly(amido amine) (G5-Ac85) dendrimers were combined via noncovalent interactions to form self-assembled fluorescent hybrids. The fluorescence of CQDs in hybrids is enhanced in the vicinity of primary amine groups of dendrimers, making them suitable as cellular imaging probes. Encapsulation of chemo-drug epirubicin (EN) in the dendrimer interiors endowed the fluorescent hybrids with therapeutic potential. The in vitro release of an entrapped EPI drug from CQDs@EPI subset of G5-Ac85 hybrids was faster in an acidic environment than under physiological conditions. Herein, multifunctional CQDs@EPI subset of G5-Ac85 hybrids serve as a dual-emission delivery system, to track the intracellular distribution and cytotoxic effects of EPI drugs. Green emission properties of CQDs were used for fluorescence microscopic imaging and cellular uptake by flow cytometry. Cell cycle analysis, field-emission scanning electron microscopy (FE-SEM), reactive oxygen species (ROS) generation, and up-regulation of apoptotic signaling genes unanimously demonstrated the apoptosis inducing ability of CQDs@EPI subset of GS-Ac85 hybrids in breast cancer (MCF-7) cells. Therefore, we have evaluated CQDs@EPI subset of G5-Ac85 hybrids as prospective candidates to achieve simultaneous imaging and drug delivery in cancer cells.
机译:在单个平台上集成了成像和治疗方式的先进纳米材料为当前的癌症治疗策略提供了新的视野。最近,碳点(CQD)已成功地用于癌细胞的生物成像。在本研究中,具有阴离子末端的发光CQD和阳离子乙酰化的G5聚(酰胺基胺)(G5-Ac85)树状聚合物通过非共价相互作用结合在一起,形成自组装的荧光杂交体。杂合体中CQD的荧光在树枝状聚合物的伯胺基团附近增强,使其适合用作细胞成像探针。在树状大分子内部包封化学药物表柔比星(EN)使荧光杂种具有治疗潜力。与酸性条件相比,酸性环境下从G5-Ac85杂种的CQDs @ EPI子集释放包埋的EPI药物的速度更快。在本文中,G5-Ac85杂种的多功能CQDs @ EPI子集用作双重发射传递系统,以追踪EPI药物的细胞内分布和细胞毒性作用。 CQD的绿色发射特性用于荧光显微镜成像和流式细胞仪对细胞的摄取。细胞周期分析,场发射扫描电子显微镜(FE-SEM),活性氧(ROS)生成和凋亡信号基因的上调一致证明了GS-Ac85杂种的CQDs @ EPI子集在乳腺癌中的凋亡诱导能力。癌细胞(MCF-7)。因此,我们评估了G5-Ac85杂种的CQDs @ EPI子集,作为实现癌细胞中同时成像和药物递送的潜在候选对象。

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