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glutathione stability ph Water-soluble gold nanoclusters with pH-dependent fluorescence and high colloidal over a wide range via co-reduction of and citrate Glutathione catalysis and the reaction

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Meth Enzymol 186:464478

glutathione stability ph Water-soluble gold nanoclusters with pH-dependent fluorescence and high colloidal over a wide range via co-reduction of and citrate Glutathione catalysis and the reaction

Cai J, Fan M, Yu A, Wu C

glutathione stability ph Water-soluble gold nanoclusters with pH-dependent fluorescence and high colloidal over a wide range via co-reduction of and citrate Glutathione catalysis and the reaction

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glutathione stability ph Water-soluble gold nanoclusters with pH-dependent fluorescence and high colloidal over a wide range via co-reduction of and citrate Glutathione catalysis and the reaction

Truong MT , Erasmus JJ, Macapinlac HA, Marom EM, Mawlawi O, Gladish GW, Sabloff BS, Bruzzi JF, Munden RF

glutathione stability ph Water-soluble gold nanoclusters with pH-dependent fluorescence and high colloidal over a wide range via co-reduction of and citrate Glutathione catalysis and the reaction

4b, the HA-positive molecules were detected in the Myc-immunoprecipitate derived from the cells co-expressing Chac1 (K0)-MycHis and HA-Ub (WT) in the presence of MG132

glutathione stability ph Water-soluble gold nanoclusters with pH-dependent fluorescence and high colloidal over a wide range via co-reduction of and citrate Glutathione catalysis and the reaction

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