100 Results for "

Starch

" in MedChemExpress (MCE) Product Catalog:
Products (100)

100 Results for "Starch" in MCE Product Catalog:

Cat. No.: HY-B2193E
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

α-Amylase, Bacteroides fragilis (EC 3.2.1.1) is a protein enzyme that hydrolyses alpha bonds of large, alpha-linked polysaccharides, such as starch and glycogen, yielding glucose and maltose.
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Cat. No.: HY-E71204
Research Areas:  

Others

α,α-Phosphotrehalase (EC 3.2.1.93) belongs to the family of hydrolases, specifically those glycosidases that hydrolyse O-and S-glycosyl compounds. This enzyme participates in starch and sucrose metabolism.
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Cat. No.: HY-P2802H
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

α-Glucosidase, Saccharomyces cerevisiae (EC 3.2.1.20), is a glucosidase located at the brush border of the small intestine, acting on 1,4-α-glycosidic bonds. α-Glucosidase breaks down starch and disaccharides into glucose.
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Cat. No.: HY-P2802E
Target:  

Endogenous Metabolite

Research Areas:  

Metabolic Disease

α-Glucosidase, Escherichia coli (EC 3.2.1.20), is a glucosidase located at the brush border of the small intestine, acting on 1,4-α-glycosidic bonds. α-Glucosidase breaks down starch and disaccharides into glucose.
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Cat. No.: HY-175991S
Synonyms: Sodium stearyl sulfate sulfate-d37
Sodium octadecyl sulfate-d37 (Sodium stearyl sulfate-d37) is the deuterium labeled Sodium octadecyl sulfate (HY-W276164). Sodium octadecyl sulfate (Sodium stearyl sulfate) is a long-chain alkyl sodium sulfate that functions as an emulsifier, crosslinking agent, and regulator. Sodium octadecyl sulfate has high safety, with a LD50 greater than 3.00 Gm./Kg for both intraperitoneal injection in mice and oral administration in rats. Sodium octadecyl sulfate enhances continuous contraction of the gastrocnemius muscle in frogs and boosts intestinal smooth muscle activity in albino rats. However, Sodium octadecyl sulfate exerts no significant effect on isolated tortoise myocardium and does not alter the conduction function of frog sciatic nerves. Sodium octadecyl sulfate can also be used to coat the surface of starch aggregates, promote crosslinking and increase aggregate size through hydrophobic and electrostatic interactions, and further form a coexistent B-V type crystalline structure with acid-hydrolyzed gelatinized starch, thereby effectively modifying the structure and surface properties of high-starch systems .
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Cat. No.: HY-E71725
Research Areas:  

Others

α-1,3-N-Acetyl-galactosaminyltransferase (Helicobacter mustelae, recombinant) (EC 2.4.1.40) is a hexosyltransferase responsible for adding glucose units to existing glucan chains; it is one of the key enzymes in plant starch biosynthesis.
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Cat. No.: HY-P2820A
Research Areas:  

Metabolic Disease

β-Phosphoglucomutase, Lactococcus sp. (EC 5.4.2.6), belongs to the isomerase family and catalyzes the conversion of β-D-glucose-1-phosphate to β-D-glucose-6-phosphate. β-Phosphoglucomutase is involved in the metabolism of starch and sucrose.
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Cat. No.: HY-P2820B
Research Areas:  

Metabolic Disease

β-Phosphoglucomutase, E. coli (EC 5.4.2.6), belongs to the isomerase family and catalyzes the conversion of β-D-glucose-1-phosphate to β-D-glucose-6-phosphate. β-Phosphoglucomutase is involved in the metabolism of starch and sucrose.
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Cat. No.: HY-E71162
Research Areas:  

Others

1,4-β-D-Xylan synthase (EC 2.4.2.24) belongs to the family of glycosyltransferases, specifically the pentosyltransferases. 1,4-β-D-Xylan synthase (EC 2.4.2.24) participates in starch and sucrose metabolism and nucleotide sugars metabolism.
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Cat. No.: HY-E71164
Research Areas:  

Others

1,5-Anhydro-D-fructose dehydratase (EC 4.2.1.111) catalyses one of the steps in the anhydrofructose pathway, which leads to the degradation of glycogen and starch via 1,5-Anhydro-D-fructose . Requires divalent (Ca2+ or Mg2+) or monovalent cations (Na+) for optimal activity.
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Cat. No.: HY-P703445
Purity:  ≥ 90%, as determined by reducing SDS-PAGE.
Synonyms: Glucan 1,4-alpha-glucosidase SusB; EC:3.2.1.3; Alpha-glucosidase SusB; Glucoamylase SusB; Starch-utilization system protein B; susB; BT_3703
Species:  
Others
Source:  
E. coli
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Cat. No.: HY-E70898
Target:  

Glycosidase

Research Areas:  

Metabolic Disease

Trehalose-6-phosphate hydrolase, Escherichia coli (EC 3.2.1.93), belongs to the hydrolase family and is a glycosidase that hydrolyzes O- and S-glycoside compounds. Trehalose-6-phosphate hydrolase participates in the metabolism of starch and sucrose. Its substrates are α,α'-trehalose-6-phosphate and water, and its products are D-glucose and D-glucose-6-phosphate.
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Cat. No.: HY-E70898A
Target:  

Glycosidase

Research Areas:  

Metabolic Disease

Trehalose-6-phosphate hydrolase, Bacillus subtilis (EC 3.2.1.93), belongs to the hydrolase family and is a glycosidase that hydrolyzes O- and S-glycoside compounds. Trehalose-6-phosphate hydrolase participates in the metabolism of starch and sucrose. Its substrates are α,α'-trehalose-6-phosphate and water, and its products are D-glucose and D-glucose-6-phosphate.
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Cat. No.: HY-P703446
Synonyms: Glucan 1,4-alpha-glucosidase SusB; EC:3.2.1.3; Alpha-glucosidase SusB; Glucoamylase SusB; Starch-utilization system protein B; susB; BT_3703
Species:  
Others
Source:  
E. coli
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Cat. No.: HY-W019938
CAS No.: 7785-84-4
Synonyms: Trisodium cyclo-triphosphate
Target:  

Others

Research Areas:  

Others

Sodium trimetaphosphate (Trisodium cyclo-triphosphate) is an orally active, multifunctional compound. Sodium trimetaphosphate serves as a buffer and chelating agent in cosmetics, a starch modifier in food, and can also act as a bone imaging agent. Sodium trimetaphosphate undergoes alkaline hydrolysis, with the rate-limiting first step producing sodium tripolyphosphate; the conversion rate is low when sodium carbonate or silicate is used. Sodium trimetaphosphate can be used in caries-related research .
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Cat. No.: HY-N18049
CAS No.: 20882-69-3
Decussatin is an α-Amylases inhibitor isolated from the Tibetan medicinal plant Swertia mussotii. By inhibiting the catalytic activity of α-Amylases, Decussatin reduces the hydrolysis of complex carbohydrates such as starch and the intestinal absorption of glucose, thereby lowering blood glucose levels in the body. Decussatin shows no significant in vitro antibacterial or antifungal activity. Decussatin can be used for the research of type 2 diabetes .
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Cat. No.: HY-DY1103
CAS No.: 60842-46-8
FITC-Dextran (MW 70000) (solution) is a compound belonging to the class of fluorescent dyes. It is commonly used in biomedical research as a tracer molecule to label and track cells or other biological matter. FITC-Dextran consists of fluorescein isothiocyanate (FITC) and dextran, a complex carbohydrate derived from starch. The combination of the two creates a stable fluorescent tracer that can be viewed under a microscope or quantified using specialized detection instruments.
Solvent and concentration: ddH2O: 1 mM
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Cat. No.: HY-128417AR
CAS No.: 14431-43-7
alpha-D-glucose (hydrate) (Standard) is the analytical standard of alpha-D-glucose (hydrate). This product is intended for research and analytical applications. alpha-D-glucose hydrate is a monosaccharide and the most common form of glucose. It is a monosaccharide, which means it cannot be broken down into simpler sugars. alpha-D-glucose plays a vital role in energy metabolism and is the primary source of energy for many cells in the body. It is also a building block of larger carbohydrates such as starch and glycogen. The "α" prefix refers to the orientation of the hydroxyl group attached to the first carbon atom. Alpha-D-glucose exists in solution as a hydrate, which means it is bound to water molecules.
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Cat. No.: HY-P11904
LADW is a tetrapeptide derived from the hydrolysate of tuna skeletal muscle myosin, with dual inhibitory activities against angiotensin-converting enzyme 1 (ACE1) and α-glucosidase. The IC50 value of LADW against ACE1 is 28.02 μM, while its IC50 value against Saccharomyces cerevisiae α-glucosidase is 4.40 mM. LADW binds competitively to the active site of ACE1, stabilizes the enzyme conformation, and blocks substrate binding. LADW binds to α-glucosidase to inhibit carbohydrate hydrolysis and can also alter starch structure. LADW can be used in studies related to hypertension and diabetes .
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Cat. No.: HY-178383
Target:  

Glycosidase

Research Areas:  

Metabolic Disease

α-Glucosidase-IN-98 is a potent orally active α-Glucosidase inhibitor with an IC50 of 18.1 μM. α-Glucosidase-IN-98 reversibly binds with α-Glucosidase via hydrogen bonds, electrostatic interactions and hydrophobic effects, which induces significant conformational alterations in the secondary structure of α-Glucosidase. α-Glucosidase-IN-98 decreases postprandial hyperglycemia in Starch (HY-B2225B)/Sucrose (HY-B1779)-challenged mice. α-Glucosidase-IN-98 can be used for type 2 diabetes mellitus (T2DM) research .
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