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glutathione fluorescence elegans Medium-dependent selectivity for Cu2+ and by a near-infrared fluorescent probe Detection of glutathione and Fe3+/Hg2+

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10.1016/j.bprint.2021.e00165 91 LockeD

glutathione fluorescence elegans Medium-dependent selectivity for Cu2+ and by a near-infrared fluorescent probe Detection of glutathione and Fe3+/Hg2+

Comprehensive analysis of the transcriptional landscape of the human FMR1 gene reveals two new long noncoding RNAs differentially expressed in Fragile X syndrome and Fragile X-associated tremor/ataxia syndrome

glutathione fluorescence elegans Medium-dependent selectivity for Cu2+ and by a near-infrared fluorescent probe Detection of glutathione and Fe3+/Hg2+

The Johns Hopkins University

glutathione fluorescence elegans Medium-dependent selectivity for Cu2+ and by a near-infrared fluorescent probe Detection of glutathione and Fe3+/Hg2+

Understanding these distinct characteristics proves crucial for optimizing product development approaches

glutathione fluorescence elegans Medium-dependent selectivity for Cu2+ and by a near-infrared fluorescent probe Detection of glutathione and Fe3+/Hg2+

Molecular characterization and physiological role of a glyoxysome-bound ascorbate peroxidase from spinach

glutathione fluorescence elegans Medium-dependent selectivity for Cu2+ and by a near-infrared fluorescent probe Detection of glutathione and Fe3+/Hg2+

LC: Literature retrieval

glutathione fluorescence elegans Medium-dependent selectivity for Cu2+ and by a near-infrared fluorescent probe Detection of glutathione and Fe3+/Hg2+

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