β-Nicotinamide Adenine Dinucleotide Disodium Salt (Reduced) (β-NADH.Na2, DPNH.Na2) For Cell Culture, 98% | 10581 | SRL Chem

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β-Nicotinamide Adenine Dinucleotide Disodium Salt (Reduced) (β-NADH.Na2, DPNH.Na2) For Cell Culture, 98% | 10581 | SRL Chem

High-purity β-NADH disodium salt (98%) for cell culture applications. Essential coenzyme for metabolic studies and biochemical assays.

2,010.00

Description

Specifications Table

Product Nameβ-Nicotinamide Adenine Dinucleotide Disodium Salt (Reduced)
Quantity/Pack Size100 Mg
FormPowder
GradeFor Cell Culture
ApplicationCell culture, biochemical assays, metabolic studies

Product Description

β-Nicotinamide Adenine Dinucleotide Disodium Salt (β-NADH.Na2) is a critical coenzyme in cellular metabolism, widely used in cell culture and biochemical research. This high-purity (98%) reduced form of NADH is essential for energy transfer reactions, making it indispensable in enzymatic assays and metabolic pathway studies.

Whether you’re a student conducting experiments or a researcher exploring cellular respiration, this β-NADH disodium salt ensures reliable results. Its stability and purity make it ideal for sensitive applications where consistency matters.

At eqipped, we understand the importance of quality reagents in scientific work. That’s why we source this product from trusted manufacturers like SRL Chem, ensuring you get the best for your lab.

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The reduced form of NADH plays a pivotal role in redox reactions, acting as an electron donor in various biochemical processes. Researchers often use it to study mitochondrial function, glycolysis, and other metabolic pathways. Its disodium salt form enhances solubility, making it easier to work with in aqueous solutions.

For educators demonstrating enzymatic reactions in classrooms, this product provides a clear example of coenzyme function. Students can observe firsthand how NADH participates in energy metabolism, reinforcing theoretical concepts with practical experiments.

When handling β-NADH disodium salt, proper storage is crucial. Keep it in a cool, dry place away from direct light to maintain its stability. Always follow standard lab safety protocols when working with biochemical reagents.

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The applications of this product extend beyond basic research. In biotechnology, it’s used in enzyme-linked assays and biosensor development. Pharmaceutical researchers rely on it for drug metabolism studies, while food scientists may use it to analyze nutritional components.

What sets this β-NADH disodium salt apart is its consistent performance across different experimental conditions. Whether you’re working with mammalian cell lines or microbial cultures, you can trust this reagent to deliver reproducible results every time.

For those new to working with NADH, it’s important to note that this reduced form is light-sensitive. Always prepare fresh solutions when possible and avoid prolonged exposure to air, which can lead to oxidation.

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FAQs

What is β-NADH disodium salt used for?

It’s primarily used as a coenzyme in cell culture, biochemical assays, and metabolic studies. Researchers use it to study energy transfer reactions and enzymatic processes.

How should I store β-NADH disodium salt?

Store in a cool, dry place protected from light. For long-term storage, keep at -20°C. Always use airtight containers to prevent oxidation.

What’s the difference between NADH and NAD+?

NADH is the reduced form that carries electrons, while NAD+ is the oxidized form. They interconvert during metabolic reactions, with NADH donating electrons in cellular respiration.

Can I use this for student lab experiments?

Yes, this product is suitable for educational purposes. Its high purity makes it ideal for demonstrating enzymatic reactions and metabolic pathways in classroom settings.

What’s the typical working concentration for cell culture?

Working concentrations typically range from 0.1 to 1 mM, but always follow your specific protocol requirements. Prepare fresh solutions for best results.

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