Description
At GLP1 Peptides, we provide the scientific community with high-fidelity research tools. NAD+ 100mg serves as a critical electron carrier in redox reactions, existing in two forms: NAD+ (oxidized) and NADH (reduced). In laboratory settings, it is a primary compound for studying the fundamental mechanisms of biological energy production.
The 100mg vial format is specifically tailored for researchers requiring a stable, high-purity source for large-scale longitudinal studies or in-vitro assays. Researchers utilize NAD+ to investigate:
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Mitochondrial Biogenesis: Studying the role of NAD+ in the electron transport chain and ATP production.
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Sirtuin Regulation: Researching the activation of SIRT1–SIRT7 enzymes, which are vital for cellular health and aging pathways.
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PARP Activation: Investigating the role of NAD+ as a substrate for Poly (ADP-ribose) polymerases in DNA damage repair.
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Circadian Rhythm Modulation: Researching the interplay between cellular NAD+ levels and the biological clock.
The GLP1 Peptides Quality Standard
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Verified 99% Purity: Every batch of NAD+ 100mg is verified through HPLC and Mass Spectrometry to ensure a purity rating of 99% or higher.
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Superior Lyophilization: Our professional freeze-drying process ensures the stability of the coenzyme, protecting it from moisture and heat during shipping to maintain experimental integrity.
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Analytical Transparency: We provide a batch-specific Certificate of Analysis (COA) with every order, delivering the technical documentation required for high-level scientific validation.
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Biological Consistency: Our synthesis focus ensures a consistent pH and solubility profile, allowing for predictable results in diverse research environments.
Technical Product Specifications:
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Compound Name: Nicotinamide Adenine Dinucleotide (Oxidized Form)
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Vial Concentration: 100mg Single Compound
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Molecular Formula: $C_{21}H_{27}N_{7}O_{14}P_{2}$
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Molecular Weight: 663.43 g/mol
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Purity Rating: >99%
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Format: White Lyophilized Powder
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Storage Requirements: Store at -20°C for optimal long-term stability and potency.





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