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We provide a variety of cells containing NAD+ probes, so that research institutions can conduct their own research on NAD+ distribution and metabolism in subcellular structures, find new intervention pathways and targets, and screen new drug molecules with high throughput. NAD+ (nicotinamide adenine dinucleotide, referred to as coenzyme I) is an important redox coenzyme that is widely present in all biological cells and directly participates in hundreds of important biochemical reactions, includ
Nadical® NAD+ Metabolism Experiment Cells utilizes fully genetically encoded probes with independent intellectual property rights to construct various cell lines that stably express NAD+ and NMN probes, which can achieve real-time characterization of NAD+ and NMN metabolism in living cells:
Measure the rate and kinetics of entry of different NAD+ precursors, dosage forms, and compound combinations into cells;
Calculate the baseline, effective concentration, half-life, and platform value of NAD+ and NMN supplementation in living cells;
Measure the ability of active ingredients to regulate the concentration of NAD+ and NMN molecules in living cells;
Measure the targeting selectivity of active ingredients to NAD+ and NMN in different tissue cells;

At the same time, we have developed a series of NAD+ metabolic probe cell lines targeting different subcellular structures to help observe the subcellular regulatory ability of active ingredients and develop safer and more effective aging intervention solutions:
Cells without targeted probes
Mitochondrial probe cells
Nuclear probe cells
Golgi probe cells
Endoplasmic reticulum probe cell
NAD+ regulation is effective in anti-aging health management and auxiliary treatment of aging-related diseases, but the existing main NAD+ precursors lack patent protection, the responsiveness of people to supplementation varies greatly, and its metabolic pathways and effects cannot meet the differentiated needs of different organs or different diseases. Therefore, the research and development of new molecules and new ingredients for NAD+ metabolic regulation has broad prospects.

Nadical® NAD+ Metabolism Experimental Cells can be used to conduct high-throughput rapid screening of NAD+-regulated active ingredients in living cells. The NAD+ distribution data in subcellular structures can help discover new metabolic pathways and new targets. It is a powerful assistant and tool for researchers to develop new molecules and new ingredients for NAD+ regulation with strong patent protection.
Nadical® NAD+ Metabolism Experiment Cells can also be used to analyze the absorption and metabolic processes of existing formula products at the cellular level, evaluate and optimize the formula, help improve the effectiveness of the product, reduce the risk of side effects, and provide a basis for personalized and precise supplementation.

For detailed product information and usage, please contact us for free training and materials.

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NAD+ Analyzer
The world's first NAD+ analyzer uses Nadical® bioluminescent protein probes to complete the detection of NAD+ concentration in biological samples within minutes, helping research institutions and health management institutions to establish their own on-site detection capabilities. NAD+ (nicotinamide adenine dinucleotide, referred to as coenzyme I) is an important redox coenzyme that is widely present in all biological cells and directly participates in hundreds of important biochemical react
NAD+ Cell Lines
We provide a variety of cells containing NAD+ probes, so that research institutions can conduct their own research on NAD+ distribution and metabolism in subcellular structures, find new intervention pathways and targets, and screen new drug molecules with high throughput. NAD+ (nicotinamide adenine dinucleotide, referred to as coenzyme I) is an important redox coenzyme that is widely present in all biological cells and directly participates in hundreds of important biochemical reactions, includ
NAD+ Detection Reagents
Nadical Bioluminescent Protein Probe Kit can be directly applied to dual-wavelength microplate readers, enabling anti-aging research and service agencies to quickly detect NAD+, making large-scale anti-aging research possible. NAD+ (nicotinamide adenine dinucleotide, referred to as coenzyme I) is an important redox coenzyme that is widely present in all biological cells and directly participates in hundreds of important biochemical reactions, including energy metabolism, gene repair, anti-oxidat