Lo, H. Bioorganometallic Chemistry. Inorg Chem 2001 40(26)6705-6716.* |
Lo, H. Regioselective Reduction of NAD+Models . . . Angew Chem Int Ed 199 38(10)1429-1432.* |
Willner I. Thermal and Photochemical Regeneration of Nicotinamide Cofactors . . . J Chem Soc, Perkin Trans 2, 1990 Vol. 4, 559-564.* |
Friedlos et al. (1992). Identification of novel reduced pyridinium derivatives as synthetic co-factors for the enzyme DT diaphorose NAD(P)H dehydrogenase. Biochemical Pharmacology 44 (1): 25-31.* |
Maria Miller, et al., 482-Red-Ox Transformations of NAD+Model Compounds, Bioelectrochemistry and Bioenergetics, 9:287-298 (1982). |
Adam Heller, Electrical Wiring of Redox Enzymes, Acc. Chem. Res., 23:128-134 (1990). |
A. S. Paxinos, et al., Direct Electron Transfer From Modified Glassy Carbon Electrodes Carrying Covalently Immoblixed Mediators to a Dissolved Viologen Accepting Pyridine Nucleotide Oxidoreductase and Dihydrolipoamide Dehydrogenase, Bioelectrochemistry and Bioenergetics, 12:425-436 (1991). |
Dariusch Hekmat, et al., Production of Pyruvate from (R)-lactate in an Enzyme-Membrane Reactor with Coupled Electrochemical Regeneration of the Artifical Mediator Anthraquinone-2,6-disulfonate, Enzyme and Microbial Technology, 24:471-479 (1999). |
Eva Höfer, et al., Polymer-Modified Electrodes with Pendant [RhIII(C5Me5) (L)Cl]+-complexes Formed by γ-irridiation Cross-Linking, Journal of Electroanalytical Chemistry, 402:115-122 (1996). |
Richard J. Ansell, et al., Synthesis and Properties of New Coenzyme Mimics Based on the Artifical Coenzyme CL4, J. Mol. Recognit., 12:45-56 (1999). |