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Cadmium-free CuInS_2/ZnS quantum dots for sentinel lymph node imaging with reduced toxicity

机译:无镉CuInS_2 / ZnS量子点用于前哨淋巴结成像,毒性降低

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Semiconductor quantum dots (QDs) could significantly impact the performance of biomedical near-infrared (NIR) imaging by providing fluorescent probes that are brighter and more photostable than conventional organic dyes. However, the toxicity of the components of NIR emitting II-VI and IV-VI QDs that have been made so far (Cd, Hg, Te, Pb, etc.) has remained a major obstacle to the clinical use of QDs. Here, we present the synthesis of CuInS_2/ZnS core/shell QDs emitting in the NIR (~ 800 nm) with good quantum yield and stability even after transfer into water. We demonstrate the potential of these QDs by imaging two regional lymph nodes (LNs) in vivo in mice. We then compare the inflammatory response of the axillary LN induced by different doses of CuInS_2/ZnS and CdTeSe/CdZnS QDs and show a clear difference in acute local toxicity, the onset of inflammation only occurring at a 10 times more concentrated dose for CuInS_2/ZnS QDs than for their Cd-containing counterparts.
机译:半导体量子点(QD)通过提供比传统有机染料更亮,更光稳定的荧光探针,可以显着影响生物医学近红外(NIR)成像的性能。然而,到目前为止,已经制造出的发射NIR II-VI和IV-VI QD的成分(镉,汞,碲,铅等)的毒性仍然是临床使用QD的主要障碍。在这里,我们提出了在近红外(〜800 nm)中发射的CuInS_2 / ZnS核/壳量子点的合成方法,即使转移到水中也具有良好的量子产率和稳定性。我们通过在小鼠体内成像两个区域淋巴结(LNs)证明了这些量子点的潜力。然后,我们比较了不同剂量的CuInS_2 / ZnS和CdTeSe / CdZnS QDs诱导的腋窝LN的炎症反应,并显示出急性局部毒性的明显差异,仅在浓度为CuInS_2 / ZnS的10倍时,才开始出现炎症QDs比含Cd的QDs多。

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