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Inhibition of endoplasmic reticulum alpha-glucosidase 2 in human HL-60 cells assessed as free oligosaccharide level at 50 uM after 24 hrs
Assay data:1 Active, 1 Tested
SummaryCompounds, ActivePubMed CitationRelated BioAssays by Target
Inhibition of endoplasmic reticulum alpha-glucosidase 2 in human HL-60 cells assessed as free oligosaccharide level at 500 uM after 24 hrs
Assay data:1 Tested
SummaryPubMed CitationRelated BioAssays by Target
Inhibition of human alpha glucosidase
Assay data:2 Tested
Percentage inhibition (100 uM) against Alpha glucosidase
Assay data:11 Tested
Competitive Inhibition constant on yeast alpha Glucosidase at pH 7.0
Assay data:3 Tested
SummaryRelated BioAssays by Target
Competitive Inhibition constant on yeast alpha Glucosidase at pH 6.0
Competitive Inhibition constant on yeast alpha Glucosidase at pH 5.0
Assay data:1 Active, 4 Tested
SummaryCompounds, ActiveRelated BioAssays by Target
Competitive Inhibition constant on yeast alpha Glucosidase; LI=Limited inhibition
Competitive Inhibition constant on yeast alpha Glucosidase; I=Inhibitor
Competitive Inhibition constant on rice alpha Glucosidase at pH 8.0
Competitive Inhibition constant on rice alpha Glucosidase at pH 6.0
Assay data:1 Active, 2 Activity ≤ 1 µM, 2 Tested
SummaryCompounds, ActiveCompounds, activity ≤ 1 µMRelated BioAssays by Target
Competitive Inhibition constant on rice alpha Glucosidase at pH 5.0
Assay data:2 Active, 3 Activity ≤ 1 µM, 4 Tested
Competitive Inhibition constant on rice alpha Glucosidase; LI=Limited inhibition
Competitive Inhibition constant on rice alpha Glucosidase; I=Inhibitor
Competitive Inhibition constant on yeast alpha Mannosidase; MI=Moderate Inhibition
Competitive Inhibition constant on rice alpha Mannosidase; MI=Moderate Inhibition
Tested for competitive inhibition of endoplasmic reticulum alpha-glucosidase II.
Tested for competitive inhibition of golgi alpha mannosidase II
Concentration that causes 50% inhibition of soluble mammalian alpha-mannosidase was determined in rat liver; NI is less than 50 % inhibition at 1000 uM
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