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1.
Pakistan Journal of Pharmaceutical Sciences. 2017; 30 (Supp. 3): 955-960
in English | IMEMR | ID: emr-188077

ABSTRACT

In order to brought S-naproxen into small intestine, an optically pure [S]-naproxen starch ester was produced by lipase through enantio-selective trans-esterification of racemic naproxen methyl ester with pretreatment starch in solvent system. With carefully selection of the reaction medium [isooctane], lipase [Carica Papaya Lipase, CPL] and the reaction mode [intermittent opening], a high conversion rate [48.6%] and enantiomeric excess of product [99.6%] was obtained. The slow release macromolecular [S]-Naproxen had been synthesized to improve the efficacy of racemic naproxen and overcome its side effects. The enanitomeric ratio of CPL [E=52.5] was higher than CRL [E=22] and greatly influenced by the byproduct methyl alcohol. The intermittent opening reaction mode was the effective way to remove the inhibition of methyl alcohol and to improve the enantio-selectivity of CPL. S-naproxen starch was confirmed by HPLC and [1]H NMR. This method may also apply to preparation the other optically pure 2-phenylpropionic acid derivatives. S-naproxen starch was a new optically pure derivatives possessing emulsifying and slow release properties would be widely applied to the food, pharmaceutical and biomedical industries

2.
Chinese Journal of Biotechnology ; (12): 1007-1012, 2006.
Article in Chinese | WPRIM | ID: wpr-325434

ABSTRACT

Methanotrophs can catalyze hydroxylate of methane and some hydrocarbon. Which play an important role in mitigating global warming and have also potential significance for industrial applications or bioremediation. A high activity of hydroxylase, a crucial component in sMMO, from Methylosinus trichosporium IMV 3011 has been purified to homologues by using chromatographic techniques. The molecular weight of the hydroxylase determined by gel filtration is 201.3 kD, and SDS-PAGE showed that hydroxylase consists of three subunits(alpha beta gamma) with molecular weights of 58kD, 36kD and 23kD respectively, drawing a comparison both methods indicated that the hydroxylase is a homodimer with an (alpha beta gamma)2 configuration. Purified hydroxylase has a pI at 5.2 judged by thin layer isoelectric focusing. The purified hydroxylase contains 3.02 mol of iron per mol of protein. The stability pH for the hydroxylase in solution is 5.8-8.0 and the stability temperature is below 35 degrees C. The cells form show a long, bent, and rod-shaped with even surface observed by scanning electron microscopy.


Subject(s)
Chemical Phenomena , Enzyme Stability , Hydrogen-Ion Concentration , Iron , Metabolism , Methylosinus trichosporium , Microscopy, Electron , Oxygenases , Chemistry , Metabolism , Spectrometry, Fluorescence , Spectrophotometry, Ultraviolet , Temperature
3.
Chinese Journal of Biotechnology ; (12): 89-93, 2002.
Article in Chinese | WPRIM | ID: wpr-231366

ABSTRACT

Using a fluidized bed as immobilization system, mixed culture methanotrophic attached-films were developed on diatomite particles. The Methane Monooxygenase (MMO) activity was found to increase obviously as soon as the lag phase ended. Greater than 90% of the MMO activity in the bed was attached. Biofilm concentration of 3.3-3.7 mg dry weight cell/g DS was observed. Batch experiments were performed to explore the possibility of producing epoxypropane by a cooxidation process. The effect of methane on the oxidation of propene to epoxypropane and the effect of propene on the growth of methanotroph were also studied. In continuous experiments, optimum mixed gaseous substrates (methane: 35%; propene: 20%; oxygen: 45%) were continuously circulated through the fluidized bed reactor to remove product. Initial epoxypropane productivity was 110-150 mumol/d. The bioreactor operated continuously for 25 d without obvious loss of epoxypropane productivity.


Subject(s)
Adhesins, Bacterial , Physiology , Biofilms , Bioreactors , Microbiology , Cells, Immobilized , Microbiology , Epoxy Compounds , Metabolism , Methane , Metabolism , Pharmacology , Methylococcaceae , Methylosinus , Oxidation-Reduction , Oxygenases , Metabolism , Propane , Metabolism , Pharmacology
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