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首页> 外文期刊>Theranostics >Synthesis of Zn-Cu-In-S/ZnS Core/Shell Quantum Dots with Inhibited Blue-Shift Photoluminescence and Applications for Tumor Targeted Bioimaging
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Synthesis of Zn-Cu-In-S/ZnS Core/Shell Quantum Dots with Inhibited Blue-Shift Photoluminescence and Applications for Tumor Targeted Bioimaging

机译:抑制蓝移光致发光的Zn-Cu-In-S / ZnS核/壳量子点的合成及其在肿瘤靶向生物成像中的应用

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A facile strategy is reported here for synthesis of Zn-Cu-In-S/ZnS (ZCIS/ZnS) core/shell QDs to address the synthetic issues that the unexpected blue-shift of CuInS2-based nanocrystals. In this strategy, Zn2+ ions are intentionally employed for the synthesis of alloyed ZCIS core QDs before ZnS shell coating, which contributes to the reduced blue-shift in photoluminescence (PL) emission. The experimental results demonstrate this elaborate facile strategy is effective for the reduction of blue-shift during shell growth. Particularly, a hypothesis is proposed and proved for explanation of this effective strategy. Namely, both cation exchange inhibition and ions accumulation are involved during the synthesis of ZCIS/ZnS QDs. Furthermore, the obtained near infrared (NIR) ZCIS/ZnS QDs are transferred into aqueous phase by a polymer coating technique and coupled with cyclic Arg-Gly-Asp peptide (cRGD) peptides. After confirmation of biocompability by cytotoxicity test on normal 3T3 cells, these QDs are injected via tail vein into nude mice bearing U87 MG tumor. The result indicates that the signals detected in the tumor region are much more distinguishing injected with ZCIS/ZnS-cRGD QDs than that injected with ZCIS/ZnS QDs.
机译:此处报道了一种用于合成Zn-Cu-In-S / ZnS(ZCIS / ZnS)核/壳量子点的简便策略,以解决基于CuInS 2 的意外蓝移的合成问题纳米晶体。在该策略中,有意将Zn 2 + 离子用于在ZnS壳涂层之前合成合金化的ZCIS核心量子点,这有助于减少光致发光(PL)发射中的蓝移。实验结果表明,这种精心设计的简便策略可有效减少壳生长过程中的蓝移。特别是,提出并假设了一个假说,以解释这种有效策略。即,ZCIS / ZnS QD的合成过程中既涉及阳离子交换抑制作用,又涉及离子积累。此外,通过聚合物包被技术将获得的近红外(NIR)ZCIS / ZnS QD转移到水相中,并与环状Arg-Gly-Asp肽(cRGD)肽偶联。通过对正常3T3细胞的细胞毒性测试确认生物相容性后,将这些QD通过尾静脉注射入带有U87 MG肿瘤的裸鼠中。结果表明,在肿瘤区域中检测到的信号与注入ZCIS / ZnS-cRGD QD相比具有更大的区别。

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