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1.
Electron. j. biotechnol ; 28: 87-94, July. 2017. tab, graf
Article Dans Anglais | LILACS | ID: biblio-1015957

Résumé

Background: Inferior Tieguanyin oolong tea leaves were treated with tannase. The content and bioactivity of catechins in extracts from the treated tea leaves were investigated to assess the improvement in the quality of inferior Tieguanyin oolong tea. Results: Analysis showed that after treatment, the esterified catechin content decreased by 23.5%, whereas non-galloylated catechin and gallic acid contents increased by 15.3% and 182%, respectively. The extracts from tannase-treated tea leaves showed reduced ability to bind to BSA and decreased tea cream levels. The extracts also exhibited increased antioxidant ability to scavenge OH and DPPH radicals, increased ferric reducing power, and decreased inhibitory effects on pancreatic α-amylase and lipase activities. Conclusions: These results suggested that tannase treatment could improve the quality of inferior Tieguanyin oolong tea leaves.


Sujets)
Thé/enzymologie , Carboxylic ester hydrolases/métabolisme , Thé/métabolisme , Thé/composition chimique , Température , Catalyse , Catéchine/analyse , Feuilles de plante/enzymologie , Fermentation , Hydrolyse , Triacylglycerol lipase/antagonistes et inhibiteurs , Triacylglycerol lipase/métabolisme , Antioxydants
2.
Electron. j. biotechnol ; 18(3): 143-147, May 2015. ilus, tab
Article Dans Anglais | LILACS | ID: lil-750639

Résumé

Background A sequential statistical strategy was used to optimize tannase production from Aspergillus tubingensis using tea stalks by solid-state fermentation. Results First, using a Plackett-Burman design, inoculum size and incubation time (among seven tested variables) were identified as the most significant factors for tannase yield. The effects of significant variables were further evaluated through a single steepest ascent experiment and central composite design with response surface analysis. Under optimal conditions, the experimental value of 84.24 units per gram of dry substrate (U/gds) closely matched the predicted value of 87.26 U/gds. Conclusions The result of the statistical approach was 2.09 times higher than the basal medium (40.22 U/gds). The results were fitted onto a second-order polynomial model with a correlation coefficient (R²) of 0.9340, which implied an adequate credibility of the model.


Sujets)
Aspergillus/enzymologie , Thé , Carboxylic ester hydrolases/métabolisme , Carboxylic ester hydrolases/biosynthèse , Analyse de variance , Modèles statistiques , Biomasse , Fermentation
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