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Home > Food Additives > Enzyme (Find 52 items)

Enzyme

Explore a Vast Array of Enzymes! Find amylase, lipase, and protease enzymes with their CAS NO., properties, and SDS information. Source raw materials from certified suppliers, delving into the vital role of enzymes of protein digestion and their impact on cellular reactions. Discover why are enzymes important, and how enzymes, biological catalysts, change and influence living cells' processes.

Glucose oxidase

(9001-37-0)
Analytical reagent for the selective determination of glucose.Food additive for the removal of glucose during the preparation of dried egg products.Antioxidant in food and food wrappers.Stabilizer for ascorbic acid and vitamin B12.

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4-Phytase

(9001-89-2)
The main application of phytase is as a feed additive to improve the utilization of phosphorus and reduce the emission of phosphorus in the environment. As the demand for phytase continues to increase, European countries (Denmark, the Netherlands, etc.) have issued regulations requiring increased use of microbial phytase. Currently, phytase is being widely used in different fields of biotechnology.

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Xylanase

(37278-89-0)
Xylanase can improve the elasticity of the gluten network in the dough, improve the processing performance of the dough and the stability of the dough, and significantly improve the structure and volume of the finished product.

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Dextranase

(9025-70-1)
Dextranase can be used in preparation of dextran for clinical use. Enzyme. It is mainly used in the sugar industry to reduce the viscosity of sugarcane juice with increased glucan content caused by spoiled sugarcane, so as to increase the heating speed of cane juice and shorten the clarification and crystallization time. Usage: Add 30 international units of glucanase per liter of cane juice, and keep it at 40°C for 20 minutes to decompose 68% of glucan.

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Beta amylase

(9000-91-3)
Used for biochemical research, clinically used as digestive enzyme, for loss of appetite, indigestion, gastric mucositis, etc. Suitable for liquefaction of starch sugar, alcohol, beer, monosodium glutamate, fermentation industry, textile, printing and dyeing desizing, etc.

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Laccase

(80498-15-3)
Laccases are multicopper-oxidases (benzenediol:oxygen oxidoreductase, EC 1.10.3.2) that are able to oxidize phenolic substrates (e.g. 2,6-dimethoxy-phenol), aromatic amines (e.g. 1-hydroxybenzotriazole), or polycyclic aromatic hydrocarbons (e.g. anthracene) . The oxidation of the substrate occurs via a oneelectron reduction and is accompanied by a reduction of molecular oxygen to water.
Most laccases are of fungal origin, but they also occur in bacteria, insects, and plants. Due to the broa

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Urease

(9002-13-5)
Urease can prevent hepatic coma, and urease microcapsules and ion exchange resin microcapsule adsorbent form an artificial kidney. Used to reduce non-protein nitrogen in the blood. It is used in biochemical research and is often used as a diagnostic enzyme in clinical practice to determine urea in blood and urine. It is used to decompose remaining urea in wine and inhibit the formation of urethane. It is used for analysis to measure urea in blood and urine. Medicine, immunotherapy for hepatic co

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Soya lecithins

(8030-76-0)
highly water dispersible for oil-in water emulsions with a high HLB contains lecithin, ethoxylated monodiglycerides and propylene glycol store at 4oC

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L-Lactate dehydrogenase

(9001-60-9)
For biochemical research, pyruvate determination, leukemia and myocardial infarction diagnosis. Commonly used in the diagnosis of myocardial infarction and leukemia. Verification of pyruvate.

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Enzymes are made of animals, plants, fungi, etc., with or without the addition of auxiliary materials, and contain specific biological active ingredients (including polysaccharides, oligosaccharides, proteins and peptides, amino acids, vitamins) prepared by microbial fermentation The product. Its biologically active ingredients include various nutrients provided by plant raw materials and microorganisms and plant-based functional chemical ingredients in natural plants, as well as some physiologically active substances produced by fermentation, including amino acids, peptides, vitamins, polysaccharides, and polyphenols , Flavonoids, alcohols, esters, enzymes, mineral elements, organic acids and various probiotics. "Enzyme" on ECHEMI mainly supplies raw materials for enzymes.

More Information

Enzymes help a lot in food breakdown and digestion. These catalysts, such as amylase, lipase, and protease enzymes, are crucial for protein digestion and maintaining cellular functions.

Enzymes affect reactions in living cells by changing the rate at which these reactions occur. For example, digestive enzymes help break down food; yeast enzymes in the bread fermentation process assist the dough in rising.

 

Causes affecting enzymes:

● Temperature: excessive heat denatures enzymes, while extreme cold slows their function.

● pH: pH levels impact enzymes, affecting their efficiency and effectiveness.

● Food processing methods: Different methods used can either enhance or inhibit enzyme activity, which influences the quality and properties of food products.

Frequently Asked Questions

What is an enzyme and how does it function in biochemical reactions?

An enzyme is a biological catalyst—typically a protein—that accelerates chemical reactions in living organisms without being consumed in the process. Enzymes work by lowering the activation energy required for reactions, enabling processes like digestion, metabolism, and DNA replication to occur efficiently at physiological temperatures. Each enzyme is highly specific to its substrate, ensuring precision in biochemical pathways.

What are the common industrial applications of enzymes?

Enzymes are widely used across multiple industries due to their efficiency and specificity. Key applications include:1. Food & beverage: amylases in baking, proteases in cheese production, and pectinases in juice clarification.2. Detergents: proteases and lipases break down protein and fat stains.3. Pharmaceuticals: enzymes synthesize chiral drugs or act as therapeutic agents.4. Textiles and biofuels: cellulases improve fabric quality or convert biomass into ethanol.Their biodegradability and low environmental impact make enzymes a sustainable choice for industrial processes.

How do I choose a high-quality enzyme supplier for industrial use?

Selecting a reliable enzyme supplier involves evaluating several critical factors:1. Regulatory compliance: Ensure the supplier meets ISO, GMP, or FDA standards relevant to your industry.2. Product consistency: Look for documented batch-to-batch reproducibility and activity assays.3. Technical support: A reputable supplier offers application guidance, stability data, and formulation advice.4. Scalability: Confirm they can reliably supply bulk quantities without compromising quality.5. Certifications: Verify if they provide non-GMO, food-grade, or organic certifications if needed for your application.

What factors affect enzyme activity and stability?

Enzyme performance depends on several environmental and chemical factors:1. Temperature: Most enzymes have an optimal range; excessive heat causes denaturation.2. pH: Each enzyme functions best within a specific pH range (e.g., pepsin in acidic stomach conditions).3. Substrate concentration: Activity increases with substrate up to a saturation point (Vmax).4. Inhibitors or activators: Presence of metal ions, salts, or other molecules can enhance or reduce activity.5. Storage conditions: Lyophilized or liquid enzymes require proper temperature and moisture control to maintain shelf life.

Are enzymes safe for use in food and pharmaceutical products?

Yes, enzymes used in food and pharmaceutical applications are generally recognized as safe (GRAS) when sourced from approved microorganisms and produced under strict quality controls. Regulatory bodies like the FDA, EFSA, and WHO evaluate enzyme safety based on origin, purity, and intended use. Food-grade enzymes must comply with specifications in the Food Chemicals Codex (FCC), while pharmaceutical enzymes undergo rigorous validation for endotoxin levels, residual solvents, and microbial contamination to ensure patient safety.

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