NAD+ 250mg
€89.99
NAD+ (Beta-Nicotinamide Adenine Dinucleotide) – 250mg Research Grade – EliteBiogenix.com
This high-purity, laboratory-grade NAD+ is an essential coenzyme for advanced in-vitro research. It is a critical tool for studies focused on cellular energy metabolism, sirtuin signaling pathways, DNA repair mechanisms, and the fundamental biology of aging.
Key Research Applications:
Mitochondrial Function & Biogenesis
Sirtuin Activation & Epigenetic Regulation
PARP-Mediated DNA Repair
Neuroprotection & Metabolic Studies
Intended for laboratory use only by qualified researchers. This product is strictly not for human or veterinary consumption.
Purity: ≥98% (HPLC Verified)
Storage: Store at -20°C or below.
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NAD+ 250mg vials provide a critical coenzyme for studying cellular redox and energy metabolism. Secure high-purity research materials for your lab now.
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A Cornerstone of Cellular Biochemistry
Furthermore, EliteBiogenix provides this 250mg vial as a high-purity, research-grade compound. It remains essential for investigations into aging, metabolism, and DNA repair. Researchers utilize NAD+ as a foundational redox coenzyme and a critical substrate for signaling enzymes. Therefore, this product serves as a primary tool for guiding experimental designs in neuropharmacology and mitochondrial function.
Redox Reactions and Energy Metabolism
Specifically, NAD+ functions as a crucial electron carrier during the catabolic breakdown of nutrients. It shuttles electrons primarily within the mitochondrial electron transport chain. This process is fundamental for the generation of adenosine triphosphate (ATP). Consequently, the NAD/NADH ratio serves as a critical indicator of a cell’s metabolic state. Thus, researchers can better understand cellular energy production and oxidative stress through precise ratio analysis.
Substrate for Signaling Enzymes
Moreover, NAD+ serves as an essential substrate for sirtuins and poly (ADP-ribose) polymerases (PARPs). Sirtuins influence gene expression and stress resistance, while PARPs facilitate critical DNA repair mechanisms. Therefore, understanding NAD+ availability is vital in studies of genotoxic stress. Consequently, the decline of NAD+ bioavailability remains a central hypothesis in modern biogerontology and mitochondrial dysfunction research.
Mitochondrial Health and Biogenesis
Furthermore, mitochondrial health is synonymous with cellular vitality. NAD+ activates SIRT1 and SIRT3, which then deacetylate key transcription factors like PGC-1α. Specifically, this master regulator controls mitochondrial biogenesis. Therefore, researchers can use pure NAD+ to test impacts on mitochondrial density and oxygen consumption rates. Consequently, this approach bypasses the need for precursor conversion, allowing for a more direct assessment.
DNA Repair and Genomic Stability
Additionally, genomic instability represents a key hallmark of cellular aging. PARP enzymes consume large quantities of NAD+ to flag sites of DNA damage and recruit repair machinery. Specifically, boosting NAD+ levels allows researchers to measure PARP activity and DNA damage markers like γH2AX. Thus, our pure NAD+ provides a clear model to test how direct administration influences vital repair pathways.
Neuroprotection and Cognitive Research
Moreover, the brain is highly metabolically active and susceptible to NAD+ fluctuations. Research links a decline in this coenzyme to various neurodegenerative conditions. Therefore, scientists utilize NAD+ in neuronal cell cultures to study tau pathology and synaptic plasticity. Consequently, our high-purity product is critical for these sensitive cellular models. Finally, the 250mg size allows for extensive experimentation across multiple cell lines.
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