Reactivity of a glucose oxidase electrode in a polar organic solvent

1994 ◽  
Vol 31 (1) ◽  
pp. 19 ◽  
Author(s):  
Emmanuel I. Iwuoha ◽  
Malcolm R. Smyth
2011 ◽  
Vol 1 (4) ◽  
pp. 352-368
Author(s):  
Maria Luisa Moya ◽  
Maria del Mar Graciani/snm ◽  
> ◽  
Victoria Isabel Martin

2020 ◽  
Vol 8 ◽  
Author(s):  
Hang Su ◽  
Wei Chen ◽  
Liang Li ◽  
Bin Li ◽  
Zhi-Yuan Zhang ◽  
...  

1980 ◽  
Vol 26 (1) ◽  
pp. 89-92 ◽  
Author(s):  
L Sokol ◽  
C Garber ◽  
M Shults ◽  
S Updike

Abstract We present a rate-determination method for analyzing glucose. A glucose enzyme electrode serves as the sensor and is made by placing a gel-immobilized layer of glucose oxidase over the tip of a Clark-type O2 electrode. The electrode membrane is made of Teflon and is derivatized by etching with a suspension of colloidal sodium metal in organic solvent. The enzyme is coupled to the membrane surface by use of paraformaldehyde. The immobilized-enzyme method is compared with a similar solution-enzyme method and with the National Glucose Reference method. The immobilized enzyme method compares favorably with the solution-enzyme method and offers the advantages of simplicity, economy of enzyme, and linearity over a greater range of concentration.


Catalysts ◽  
2019 ◽  
Vol 9 (4) ◽  
pp. 391 ◽  
Author(s):  
Ying Chen ◽  
Nana Xia ◽  
Yuewang Liu ◽  
Pu Wang

(R)-1-[4-(Trifluoromethyl)phenyl]ethanol is an important pharmaceutical intermediate of a chemokine CCR5 antagonist. In the present study, a bioprocess for the asymmetric reduction of 4-(trifluoromethyl)acetophenone to (R)-1-[4-(trifluoromethyl)phenyl]ethanol was developed by recombinant Escherichia coli cells with excellent enantioselectivity. In order to overcome the conversion limitation performed in the conventional buffer medium resulting from poor solubility of non-natural substrate, we subsequently established a polar organic solvent-aqueous medium to improve the efficacy. Isopropanol was selected as the most suitable cosolvent candidate, based on the investigation on a substrate solubility test and cell membrane permeability assay in different organic solvent-buffer media. Under the optimum conditions, the preparative-scale asymmetric reduction generated a 99.1% yield with >99.9% product enantiomeric excess (ee) in a 15% (v/v) isopropanol proportion, at 100 mM of 4-(trifluoromethyl)acetophenone within 3 h. Compared to bioconversion in the buffer medium, the developed isopropanol-aqueous system enhanced the substrate concentration by 2-fold with a remarkably improved yield (from 62.5% to 99.1%), and shortened the reaction time by 21 h. Our study gave the first example for a highly enantioselective production of (R)-1-[4-(trifluoromethyl)phenyl]ethanol by a biological method, and the bioreduction of 4-(trifluoromethyl)acetophenone in a polar organic solvent-aqueous system was more efficient than that in the buffer solution only. This process is also scalable and has potential in application.


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