NADP Sodium Salt CAS 1184-16-3: Applications in Metabolic Pathways & Enzymatic Assays
NADP Sodium Salt, identified by its CAS number 1184-16-3, is a cornerstone molecule in cellular biology, widely recognized for its indispensable functions in metabolic pathways and as a cofactor in numerous enzymatic assays. Understanding its biochemical significance is key for researchers and formulators seeking high-quality materials for their work. This article explores the multifaceted roles of NADP Sodium Salt and the importance of sourcing it from reliable manufacturers.
The Biochemical Role of NADP Sodium Salt
Nicotinamide Adenine Dinucleotide Phosphate Sodium Salt (NADP-Na) is a vital coenzyme derived from Vitamin B3. In its oxidized form, NADP+, it acts as an electron acceptor in a multitude of biochemical reactions. Its reduced form, NADPH, serves as a primary reducing agent in anabolic processes, including the synthesis of lipids, nucleotides, and steroids. Key pathways where NADP Sodium Salt plays a crucial role include:
- The Pentose Phosphate Pathway (PPP): This pathway is a primary source of NADPH, essential for cellular reductive biosynthesis and for protecting cells against oxidative stress. NADP+ is the substrate that is reduced to NADPH here.
- Anabolic Biosynthesis: NADP+ is required for enzymes that carry out reductive biosynthesis, converting small molecules into larger, more complex ones necessary for cell growth and repair.
- Detoxification: NADPH is critical for enzymatic systems that detoxify harmful substances and reactive oxygen species, protecting cellular integrity.
NADP Sodium Salt in Enzymatic Assays
In laboratory settings, NADP Sodium Salt is frequently employed as a substrate or cofactor in enzymatic assays. Researchers utilize these assays to study enzyme kinetics, measure enzyme activity, or screen for enzyme inhibitors. The accuracy of such assays is highly dependent on the purity and consistent activity of the NADP Sodium Salt used. Therefore, when you need to buy NADP Sodium Salt for your assays, prioritizing high purity from a trusted manufacturer is essential for obtaining reliable and reproducible results.
Sourcing High-Purity NADP Sodium Salt
The quality of NADP Sodium Salt can vary significantly between suppliers. For critical applications such as metabolic studies or sensitive enzymatic assays, researchers must procure material with guaranteed high purity, often exceeding 95% or even 99.5%. When looking to purchase NADP Sodium Salt, especially from international markets like China, it is advisable to:
- Verify Purity Specifications: Always check the product's Certificate of Analysis (CoA) for detailed purity information and the presence of any contaminants.
- Assess Supplier Reliability: Partner with established chemical manufacturers and suppliers known for their quality control and consistent product delivery.
- Consider Application-Specific Needs: For research-grade applications, ensure the NADP Sodium Salt is suitable for biochemical analysis and enzymatic reactions.
As a dedicated manufacturer and supplier of biochemicals, we understand the critical nature of high-purity NADP Sodium Salt. We offer reliable sourcing options for CAS 1184-16-3, ensuring consistent quality for your metabolic pathway research and enzymatic assay needs. Contact us to inquire about our NADP Sodium Salt price and availability, and secure a dependable partner for your laboratory supplies.
Perspectives & Insights
Quantum Pioneer 24
“Key pathways where NADP Sodium Salt plays a crucial role include:The Pentose Phosphate Pathway (PPP): This pathway is a primary source of NADPH, essential for cellular reductive biosynthesis and for protecting cells against oxidative stress.”
Bio Explorer X
“Anabolic Biosynthesis: NADP+ is required for enzymes that carry out reductive biosynthesis, converting small molecules into larger, more complex ones necessary for cell growth and repair.”
Nano Catalyst AI
“Detoxification: NADPH is critical for enzymatic systems that detoxify harmful substances and reactive oxygen species, protecting cellular integrity.”