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Amylases
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Amylases 関連製品 (102)
関連製品 (102)
- α-Amylase (α-アミラーゼ)
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Docosapentaenoic acid (22n-3)
(Docosapentaenoic acid (22n-3))
0 Images別名: all-cis-7,10,13,16,19-ドコサペンタエン酸Docosapentaenoic acid (22n-3) is a component of phospholipids. Docosapentaenoic acid 22n-3 has inhibitory activity against α-amylase and α-glucosidase, with IC50s value of 17 μg/mL and 22 μg/mL, respectively. Docosapentaenoic acid 22n-3 increases cell vitality. Docosapentaenoic acid 22n-3 has a weak anti-inflammatory effect. -
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Dehydrocholic acid
(デヒドロコール酸)
0 ImagesDehydrocholic acid (Dehydrocholate) is an orally active hydrocholeretic agent. Dehydrocholic acid modulates Autophagy, reduces serum amylase and lipase levels. Dehydrocholic acid has the effects of promoting choleretic function, protecting the liver, reducing pancreatic damage, and regulating cholesterol metabolism. Dehydrocholic acid can be used in the study of acute biliary pancreatitis and obstructive jaundice. -
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Maltopentaose
(マルトペンタオース)
0 Images別名: Maltopentaose; MaltopentoseMaltopentaose is the shortest chain oligosaccharide. Maltopentaose is a substrate for α-amylases. Maltopentaose can be classified as maltodextrin and is also used in a study to investigate glycation and phosphorylation of α-lactalbumin. Maltopentaose is used to study the inhibition kinetics of human pancreatic α-amylase by dehydrodieugenol B. -
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Rubusoside
(ルブソシド)
0 Images別名: RubusosideRubusoside is a diterpene glycoside that is also a sweetener and solubilizer with anti-angiogenic, anti-cancer, anti-obesity, anti-allergic and anti-asthmatic effects. Rubusoside attenuates airway hyperresponsiveness and reduces inflammatory cells in bronchoalveolar lavage fluid (BALF), reducing OVA (HY-W250978)-induced airway inflammation. Rubusoside also prevents palmitic acid-induced lipotoxicity in pancreatic INS-1 cells, reduces the transport of human glucose transporters GLUT-1 and fructose GLUT-5, and inhibits NF-κB and α-amylase (α-amylase). -
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α-Amylase/α-Glucosidase-IN-25
0 Images製品番号: HY-184383α-Amylase/α-Glucosidase-IN-25 is a α-Amylase inhibitor and a competitive α-Glucosidase inhibitor, with an IC50 of 10.89 μM against α-glucosidase and an IC50 of 20.62 μM against α-amylase. α-Amylase/α-Glucosidase-IN-25 limits carbohydrate digestion. α-Amylase/α-Glucosidase-IN-25 can be used in the research of type 2 diabetes. -
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Acetylregaloside C
0 Images製品番号: HY-N17989CAS 番号: 1585019-84-6Acetylregaloside C is a natural compound that can be extracted from Madonna Lily (Lilium candidum L.). Acetylregaloside C exhibits antioxidant properties and has the effect of promoting the production of α-amylase. -
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α-Amylase/α-Glucosidase-IN-24
0 Images製品番号: HY-184380CAS 番号: 450380-22-0α-Amylase/α-Glucosidase-IN-24 is a dual inhibitor of α-amylase and α-glucosidase, with IC50 values of 40.18 μg/mL and 31.80 μg/mL, respectively. α-Amylase/α-Glucosidase-IN-24 exhibits weak anti-inflammatory and antioxidant activities, as well as moderate antibacterial activity. α-Amylase/α-Glucosidase-IN-24 can be used for the research of type 2 diabetes. -
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- Bacterial α-Amylase
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Ethylidene-4-nitrophenyl-a-D-Maltoheptaoside
0 Images別名: pNP-G7Ethylidene-4-nitrophenyl-α-D-Maltoheptaoside (EPS; pNP-G7) serves as a substrate for α-amylase. In the presence of an auxiliary enzyme such as α-glucosidase (α-glucosidase), Ethylidene-4-nitrophenyl-α-D-Maltoheptaoside is degraded by amylase (Amylase) to release a chromophore, enabling the measurement of amylase activity. Ethylidene-4-nitrophenyl-α-D-Maltoheptaoside is applicable for the diagnosis of pancreatitis[2]. -
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1-Hydroxyphenazine
0 Images別名: Hemipyocyanine; 1-Phenazinol; Hemi-pyocyanin1-Hydroxyphenazine (Hemipyocyanine; 1-Phenazinol; Hemi-pyocyanin) is an inhibitor for α-Amylase with an IC50 of 3.1 μg/mL. 1-Hydroxyphenazine exhibits anticancer and anti-inflammatory activity against cells A549, 1321N1 and RAW264.7, antifungal and antibacterial activity against strains Candida albicans, Aspergillus fumigatus, Escherichia coli and Xanthomonas campestris. -
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Quinoline-2-carboxylic acid
(キナルジン酸)
0 Images別名: Quinoline-2-carboxylic acidQuinoline-2-carboxylic acid exhibits antidiabetic activity. Quinoline-2-carboxylic acid can be used as drug intermediate for synthesis of various active compounds. -
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- α-Amylase from Aspergillus oryzae
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- Chinese gallotannin
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Dehydrocholic acid sodium
0 ImagesDehydrocholic acid (Dehydrocholate) sodium is an orally active hydrocholeretic agent. Dehydrocholic acid sodium modulates Autophagy, reduces serum amylase and lipase levels. Dehydrocholic acid sodium has the effects of promoting choleretic function, protecting the liver, reducing pancreatic damage, and regulating cholesterol metabolism. Dehydrocholic acid sodium can be used in the study of acute biliary pancreatitis and obstructive jaundice. -
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Chrysin-7-O-glucuronide
(Chrysin-7-O-glucuronide)
0 Images別名: クリシン-7-グルクロニドChrysin-7-O-glucuronide is a flavonoid found in Scutellaria baicalensis. Chrysin-7-O-glucuronide inhibits α-glucosidase and α-amylase with IC50 values of 612.13 and 980.73 μg/mL. Chrysin-7-O-glucuronide suppresses NF-κB signaling activity. Chrysin-7-O-glucuronide scavenges free radicals, acts as a tight junction protector, and mitigates intestinal mucosal barrier injury. Chrysin-7-O-glucuronide can be used for the research of type 2 diabetes and severe acute pancreatitis-induced intestinal mucosal barrier injury. -
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Glycogen, Oysters
0 Images製品番号: HY-113511ACAS 番号: 9005-79-2Glycogen, Oysters is a polysaccharide extracted from oysters and serves as the storage form of glucose in oysters. Glycogen, Oysters belongs to the intermediate products of glycolysis and high-energy phosphates, and is also an endogenous metabolite. -
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- Amylase
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2-Hydroxyquinoline
0 Images2-Hydroxyquinoline is an inhibitor of α-glucosidase and α-amylase with IC50 values of 64.4 µg/mL and 130.5 µg/mL, respectively. 2-Hydroxyquinoline can be used in the study of diabetes. -
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Gardenia yellow
0 Images製品番号: HY-N6675CAS 番号: 94238-00-3Gardenia yellow is a competitive inhibitor of α-Amylase (HY-B2193) and α-glucosidase. Gardenia yellow can bind to the catalytic sites of α-Amylase and α-glucosidase, inhibit starch digestion, and significantly increase the contents of resistant starch and slowly digestible starch in starch-based systems. Gardenia yellow reduces the glycemic index and hydrolysis index. Gardenia yellow can be used in diabetes-related research. -
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