Articles with "amyloglucosidase" as a keyword



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Agarose Hydrogel Beads: An Effective Approach to Improve the Catalytic Activity, Stability and Reusability of Fungal Amyloglucosidase of GH15 Family

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Published in 2018 at "Catalysis Letters"

DOI: 10.1007/s10562-018-2460-y

Abstract: This study deals with the immobilization of amyloglucosidase within agarose using method of entrapment. Enzyme was produced from Aspergillus fumigatus KIBGE-IB33 and then partially purified using 40% ammonium sulphate saturation. Using 40 gl−1 concentration of agarose… read more here.

Keywords: hydrogel beads; agarose hydrogel; reusability; amyloglucosidase ... See more keywords
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Role of two polysaccharide matrices on activity, stability and recycling efficiency of immobilized fungal amyloglucosidase of GH15 family.

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Published in 2017 at "International journal of biological macromolecules"

DOI: 10.1016/j.ijbiomac.2016.12.023

Abstract: Current study deals with immobilization of amyloglucosidase using two different strategies (entrapment and covalent binding). Chitosan beads were prepared using neutralization method while alginate beads were synthesized by simple gelation. Results of this study showed… read more here.

Keywords: stability; immobilization; role two; amyloglucosidase ... See more keywords
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C-6 fluorinated casuarines as highly potent and selective amyloglucosidase inhibitors: Synthesis and structure-activity relationship study.

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Published in 2022 at "European journal of medicinal chemistry"

DOI: 10.2139/ssrn.4207640

Abstract: A series of C-6 fluorinated casuarine derivatives have been synthesized via organocatalytic stereoselective α-fluorination of iminosugar-based aldehydes or direct nucleophilic fluorination of polyhydroxylated pyrrolizidines. Glycosidase assays against various glycosidases allowed systematic structure-activity relationship (SAR) study… read more here.

Keywords: activity relationship; structure activity; amyloglucosidase; fluorinated casuarines ... See more keywords