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Home > Biochemical Engineering > Enzymes and Coenzymes Drugs (Find 116 items)

Enzymes and Coenzymes Drugs

Adenosine 5′-(trihydrogen diphosphate), 2′-(dihydrogen phosphate), P′→5′-ester with 3-(aminocarbonyl)-1-β-D-ribofuranosylpyridinium, inner salt, disodium salt

(24292-60-2)
Nicotinamide adenine dinucleotide phosphate (NADP) and NADPH form a redox pair. NADP / NADPH is a coenzyme that supports redox reactions via electron transport, especially anaerobic reactions such as lipid and nucleic acid synthesis. NADP/NADPH is a coenzyme, coupling various cytochrome P450 systems and oxidase/reductase reaction systems, such as the coenzyme of thioredoxin reductase/thioxoprotein system.

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Deoxyribonuclease

(9003-98-9)
Deoxyribonuclease I from bovine pancreas has been used in a study to investigate a two-dimensional zymogram analysis of nucleases in Bacillus subtilis. Deoxyribonuclease I from bovine pancreas has also been used in a study to investigate the effects of minor and major groove-binding drugs and intercalators on the DNA association of minor groove-binding proteins RecA and deoxyribonuclease I.

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Sodium NADP

(1184-16-3)
β-Nicotinamide adenine dinucleotide 2′-phosphate (NADP+) and β-Nicotinamide adenine dinucleotide 2′-phosphate, reduced (NADPH) comprise a coenzyme redox pair (NADP+:NADPH) involved in a wide range of enzyme catalyzed oxidation reduction reactions. The NAD

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Collagenase

(9001-12-1)
In investigation of the structure and biosynthesis of collagen; in dispersion of cells for tissue culture studies.

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Adenosine deaminase

(9026-93-1)
Adenosine deaminase is an enzyme that catalyzes the irreversible deamination of adenosine and 2'-deoxyadenosine to inosine and 2'-deoxyinosine, respectively.

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Pepstatin

(26305-03-3)
Can be used in conjunction with E64-d and Leupeptin A to inhibit the degradation of autophagic cargo inside autophagosomes. For this application, the working concentration is typically between 1-10 μM.

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Aspergillopepsin I

(9025-49-4)
Properties: Brown or gray powder, made by fermentation and refining of Aspergillus niger, easily soluble in water Uses: biochemical research. Hydrolyzed protein, with strong ability to hydrolyze, can hydrolyze macromolecular protein into amino acid and other products

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Creatine kinase

(9001-15-4)
Commonly used diagnostic enzymes to determine creatine and creatine phosphate.

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As a kind of biological catalyst, enzyme has catalytic characteristics such as mild conditions, high catalytic efficiency, high specificity, and adjustable enzyme activity. Coenzymes are a general term for a large class of organic cofactors and are essential factors for enzymes to catalyze redox reactions, group transfers, and isomerization reactions. Coenzymes (coenzymes) are a type of small organic molecules that can transfer chemical groups from one enzyme to another. They are loosely combined with enzymes and are necessary for the activity of specific enzymes. There are many vitamins and their derivatives, such as riboflavin, thiamine, and folic acid, which are coenzymes.

Frequently Asked Questions

What are Enzymes and Coenzymes Drugs used for in medicine?

Enzymes and coenzymes drugs play critical roles in therapeutic applications by facilitating or regulating biochemical reactions in the body. Enzyme-based drugs are commonly used in treatments for digestive disorders (e.g., pancreatic enzyme replacements), thrombolytic therapy (e.g., streptokinase for dissolving blood clots), and enzyme replacement therapy for genetic metabolic diseases like Gaucher’s disease. Coenzymes—such as Coenzyme Q10 or NAD+—support cellular energy production and antioxidant functions, and are often used as supplements or adjunct therapies in cardiovascular, neurological, and mitochondrial disorders.

How do enzyme drugs differ from coenzyme drugs?

Enzyme drugs are typically proteins that catalyze specific biochemical reactions and are used directly as therapeutics—for example, asparaginase in leukemia treatment or lactase for lactose intolerance. In contrast, coenzyme drugs are small organic molecules that assist enzymes in their catalytic function but are not active on their own. Common coenzymes include vitamins like B-complex derivatives (e.g., thiamine pyrophosphate) or compounds like CoQ10. While enzyme drugs act as the primary therapeutic agent, coenzymes usually serve supportive or nutritional roles to enhance enzymatic activity or cellular metabolism.

What factors should buyers consider when sourcing Enzymes and Coenzymes Drugs?

When sourcing enzymes and coenzymes drugs, buyers should evaluate:1. Regulatory compliance—ensure products meet FDA, EMA, or other relevant pharmacopeial standards.2. Purity and activity levels—verified through certificates of analysis (CoA) and bioassays.3. Manufacturing practices—prefer suppliers adhering to cGMP (current Good Manufacturing Practice) guidelines.4. Stability and storage requirements—some enzymes are temperature-sensitive and require cold-chain logistics.5. Supplier reliability—including batch consistency, scalability, and technical support. These criteria help ensure product efficacy, safety, and supply chain integrity.

Are Enzymes and Coenzymes Drugs safe for long-term use?

Most enzyme and coenzyme drugs approved for medical use are considered safe for long-term administration when used under medical supervision and according to prescribed dosages. For instance, pancreatic enzyme replacement therapy (PERT) is routinely used for life in patients with cystic fibrosis or chronic pancreatitis. Coenzyme Q10 is widely tolerated as a dietary supplement over extended periods. However, potential side effects—such as allergic reactions to protein-based enzymes or gastrointestinal discomfort—should be monitored. Always consult healthcare professionals before initiating or continuing long-term use.

What are common quality control tests for Enzymes and Coenzymes Drugs?

Quality control for enzymes and coenzymes drugs involves several standardized tests:1. Potency assays to measure enzymatic activity (e.g., units per milligram).2. Purity assessments via HPLC or electrophoresis to detect impurities or degradation products.3. Microbiological testing to ensure sterility or absence of endotoxins, especially for injectables.4. Identity confirmation using mass spectrometry or NMR.5. Stability studies under ICH guidelines to determine shelf life and storage conditions. These tests are essential to guarantee safety, consistency, and regulatory compliance in pharmaceutical applications.

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