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0343520124
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Electroenzymology/coenzyme regeneration
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Application of poly-lysine bound succinyl-NAD to a membrane reactor
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Kinetic properties of N6-(2-carboxyethyl)-NAD(H) and poly-(ethylene-glycol)-bound NAD(H) for alcohol, lactate, malate and glyceraldehyde-3-phosphate dehydrogenase from different organisms
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Katayama, N., Hayakawa, K., Urabe, I., and Okada, H.: Kinetic properties of N6-(2-carboxyethyl)-NAD(H) and poly-(ethylene-glycol)-bound NAD(H) for alcohol, lactate, malate and glyceraldehyde-3-phosphate dehydrogenase from different organisms. Enzyme Miocrob. Technol., 6, 538-542 (1984).
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Improvement for L-leucine production in a continuously operated enzyme membrane reactor
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Theoretical study of continuous NAD recycling by conjugated enzymes immobilized in ultraflltration hollow fiber
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Miyawaki, O., Nakamura, K., and Yano, T.: Theoretical study of continuous NAD recycling by conjugated enzymes immobilized in ultraflltration hollow fiber. J. Chem. Eng. Japan, 15, 142-147 (1982).
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Experimental investigation of continuous NAD recycling by conjugated enzymes immobilized in ultrafiltration hollow fiber
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Miyawaki, O., Nakamura, K., and Yano, T.: Experimental investigation of continuous NAD recycling by conjugated enzymes immobilized in ultrafiltration hollow fiber. J. Chem. Eng. Japan, 15, 224-228 (1982).
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An affinity Chromatographic reactor for highly efficient turnover of dissociable cofactors
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Dynamic affinity between dissociable coenzyme and immobilized enzyme in an affinity Chromatographic reactor with single enzyme
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Sorbitol production in charged membrane bioreactor with coenzyme regeneration system: I. Selective retainment of NADP(H) in a continuous reaction
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Ikemi, M., Koizumi, N., and Ishimatsu, Y.: Sorbitol production in charged membrane bioreactor with coenzyme regeneration system: I. Selective retainment of NADP(H) in a continuous reaction. Biotechnol. Bioeng., 36, 149-154 (1990).
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Sorbitol production in charged membrane bioreactor with coenzyme regeneration system: II. Theoretical analysis of a continuous reaction with retained and regenerated NADPH
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Ikemi, M., Ishimatsu, Y., and Kise, S.: Sorbitol production in charged membrane bioreactor with coenzyme regeneration system: II. Theoretical analysis of a continuous reaction with retained and regenerated NADPH. Biotechnol. Bioeng., 36, 155-165 (1990).
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Ikemi, M.1
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Continuous coenzyme dependent stereoselective synthesis of sulcatol by alcohol dehydrogenase
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R-(-)-Mandelic acid production from racemic mandelic acids using Pseudomonas polycolor IFO 3918 and Micrococcus freudenreichii FERM-P13221
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Takahashi, E., Nakamichi, K., and Furui, M.: R-(-)-Mandelic acid production from racemic mandelic acids using Pseudomonas polycolor IFO 3918 and Micrococcus freudenreichii FERM-P13221. J. Ferment. Bioeng., 80, 247-250 (1995).
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Reduction of hydroxyacetone with NADPH regenerated through photosynthetic pathway of the holotolerant alga Dunaliella parva
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Hatanaka, Y., Kobayashi, O., Higashihara, M., and Hiyama, K.: Reduction of hydroxyacetone with NADPH regenerated through photosynthetic pathway of the holotolerant alga Dunaliella parva. J. Ferment. Bioeng., 81, 379-385 (1996).
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Enzymatic production of (S)-1-acetoxy-2-alkanol with baker's yeast cell-free extract in a membrane reactor
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Ishihara, K., Higashi, Y., Nakajima, N., Utaka, M., and Nakamura, K.: Enzymatic production of (S)-1-acetoxy-2-alkanol with baker's yeast cell-free extract in a membrane reactor. J. Ferment. Bioeng., 81, 266-268 (1996).
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