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Potential Application of Oleylamine-Encapsulated AgInS_2-ZnS Quantum Dots for Cancer Cell Labeling

机译:Ouleylamine封装的agins_2-Zns量子点用于癌细胞标记的潜在应用

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This study improves a simple strategy for phase transfer process via ultrasonication approach. Water-soluble AgInS_2-ZnS quantum dots (QDs) encapsulated with oleylamine have been successfully prepared without the presence of surfactant or polymer. During the propagation process, ultrasonication creates harmonic pressure (relative to the equilibrium hydrostatic pressure of the liquid), which was helpful for the dispersion of nanomaterials in two immiscible phases. The highly photoluminescent ZnS coated AgInS_2 QDs (up to 55.3% QY) was synthesized with a one-pot two-step process with narrow particle distribution and successfully transferred to water phase without significant effect on optical properties. Beside QDs characterization, some factors such as pH stability, ionic strength, and bonding properties were investigated to reach a good condition of water soluble AgInS_2-ZnS QDs. These nanoparticles also showed potential application for cancer cell staining. To demonstrate the targeting capability, folic acid was further conjugated with oleylamine encapsulated AgInS_2-ZnS QDs for HeLa and MCF7 cancer cell staining. This study also reveals that the water-soluble QDs still gave lower fluorescence intensity on confocal imaging, even without folic acid conjugation. Moreover, folic acid is efficiently internalized into cells through folate receptor-mediated endocytosis. Confocal imaging characterization further informs folic acid-conjugated AgInS_2-ZnS QDs that could specifically be targeted to the human cervical (HeLa) cells.
机译:本研究通过超声处理方法改善了相移过程的简单策略。在没有表面活性剂或聚合物的情况下,已经成功地制备了用Oxylamine封装的水溶性agins_2-ZnS量子点(QDS)。在繁殖过程中,超声波会产生谐波压力(相对于液体的平衡静静压压力),这有助于纳米材料在两个不混溶的阶段中的分散。用一盆两步法合成高度光致发光的ZnS涂覆的agins_2 QDs(最多55.3%Qy),用一锅两步法,颗粒分布窄,并成功转移到水相而不对光学性质的显着影响。除QDS表征外,还研究了一些因素,例如pH稳定性,离子强度和粘合性能,以达到水溶性agins_2-Zns QDS的良好条件。这些纳米颗粒还显示出癌细胞染色的潜在应用。为了证明靶向能力,对于Hela和MCF7癌细胞染色,将叶酸进一步与油胺包封的agins_2-Zns QDS缀合。该研究还揭示了水溶性QD仍然在共聚焦成像上较低的荧光强度,即使没有叶酸缀合。此外,叶酸通过叶酸受体介导的内吞作用有效地内化到细胞中。共聚焦成像表征进一步通知叶酸 - 缀合的agins_2-ZnS QD,其可以特异性地靶向人宫颈(HeLa)细胞。

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