
AbstractCarbon quantum dots (C-QDs) are becoming a desirable alternative to metal-based QDs and dye probes owing to their high biocompatibility, low toxicity, ease of preparation and unique photophysical properties. Herein, we describe fluorescence bioimaging of zebrafish using C-QDs as probe in terms of the preparation of C-QDs, zebrafish husbandry, embryo harvesting and introduction of C-QDs into embryos and larvae by soaking and microinjection. The multicolor of C-QDs was validated with their imaging for zebrafish embryo. The distribution of C-QDs in zebrafish embryos and larvae were successfully observed from their fluorescence emission. the bio-toxicity of C-QDs was tested with zebrafish as model and C-QDs do not interfere to the development of zebrafish embryo. All of the results confirmed the high biocompatibility and low toxicity of C-QDs as imaging probe. The absorption, distribution, metabolism and excretion route (ADME) of C-QDs in zebrafish was revealed by their distribution. Our work provides the useful information for the researchers interested in studying with zebrafish as a model and the applications of C-QDs. The operations related zebrafish are suitable for the study of the toxicity, adverse effects, transport and biocompatibility of nanomaterials as well as for drug screening with zebrafish as model.
Male, Embryo, Nonmammalian, Microinjections, Article, Carbon, Microscopy, Fluorescence, Quantum Dots, Animals, Female, Zebrafish, Fluorescent Dyes
Male, Embryo, Nonmammalian, Microinjections, Article, Carbon, Microscopy, Fluorescence, Quantum Dots, Animals, Female, Zebrafish, Fluorescent Dyes
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