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      Probing the Cytotoxicity Of Semiconductor Quantum Dots.

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          Abstract

          With their bright, photostable fluorescence, semiconductor quantum dots show promise as alternatives to organic dyes for biological labeling. Questions about their potential cytotoxicity, however, remain unanswered. While cytotoxicity of bulk cadmium selenide (CdSe) is well documented, a number of groups have suggested that CdSe QDs are cytocompatible, at least with some immortalized cell lines. Using primary hepatocytes as a liver model, we found that CdSe-core QDs were indeed acutely toxic under certain conditions. Specifically, we found that the cytotoxicity of QDs was modulated by processing parameters during synthesis, exposure to ultraviolet light, and surface coatings. Our data further suggests that cytotoxicity correlates with the liberation of free Cd2+ ions due to deterioration of the CdSe lattice. When appropriately coated, CdSe-core QDs can be rendered non-toxic and used to track cell migration and reorganization in vitro. Our results inform design criteria for the use of QDs in vitro and especially in vivo where deterioration over time may occur.

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          Author and article information

          Journal
          Nano Lett
          Nano letters
          American Chemical Society (ACS)
          1530-6992
          1530-6984
          Jan 01 2004
          : 4
          : 1
          Affiliations
          [1 ] Dept of Bioengineering, University of California at San Diego, La Jolla, California, USA.
          Article
          NIHMS874662
          10.1021/nl0347334
          5588688
          28890669
          0027c516-91d8-4b09-b51e-a06c6ad53f7c
          History

          cadmium,nanocrystals,nanoparticles,quantum dots,toxicity
          cadmium, nanocrystals, nanoparticles, quantum dots, toxicity

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