NAD+
$55.00
NAD⁺ is a naturally occurring coenzyme involved in cellular redox reactions and metabolic pathways. It has gained attention within the scientific community for its potential role in preclinical research models focused on cellular energy regulation, enzymatic activity, and intracellular signaling mechanisms.
4 in stock (can be backordered)
Description
NAD+
NAD⁺ is a naturally occurring coenzyme involved in cellular redox reactions and metabolic pathways. It has gained attention within the scientific community for its potential role in preclinical research models focused on cellular energy regulation, enzymatic activity, and intracellular signaling mechanisms.
Product Info
NAD⁺ is a naturally occurring coenzyme involved in cellular redox reactions and metabolic pathways. It has gained attention within the scientific community for its potential role in preclinical research models focused on cellular energy regulation, enzymatic activity, and intracellular signaling mechanisms.
In laboratory settings, NAD⁺ has been studied for:
- Supporting cellular metabolic pathways and redox balance in in vitro models
- Investigating interactions with enzymes involved in energy production and signaling
- Exploring its role in cellular maintenance and metabolic research systems
- Evaluating stability, solubility, and compatibility with other compounds in controlled laboratory experiments
Researchers have explored NAD⁺’s effects within cellular and metabolic systems to better understand its potential mechanisms in preclinical research applications.
Product Details:
- High-purity lyophilized coenzyme
- Intended for in vitro laboratory research and analytical purposes only
- Supplied in sterile, sealed vials
- Manufactured under strict quality control standards
Important Notice: This product is intended strictly for laboratory research use only. It is not for human or veterinary use, not for diagnostic or therapeutic purposes, and not approved by the U.S. Food and Drug Administration. All purchasers are required to be qualified professionals and agree to use this product in compliance with applicable laws and regulations.
Research Use Only Disclaimer
All products sold by JM Precision Labs are intended strictly for research, laboratory, and analytical purposes only.
These compounds are not intended for human or animal consumption, medical use, or for diagnostic, therapeutic, or clinical applications of any kind.
By purchasing from JM Precision Labs, you acknowledge and agree that:
- You are a qualified researcher or purchasing on behalf of a qualified research entity
- You understand the products are for in vitro research use only
- You will not use these products for human consumption, veterinary use, or any prohibited applications
- You will comply with all applicable laws and regulations regarding the purchase, handling, and use of these materials
JM Precision Labs makes no representations or warranties, express or implied, regarding the suitability of these products for any purpose other than research use.
The buyer assumes all responsibility and liability for the proper handling, storage, and use of these products.
Effective Date: 4/7/2026
We accept returns of unused, unopened products within 14 days of the original delivery date. To initiate a return, please contact us at hello@JMPrecisionLabs.com for instructions.
Refund Details:
- Refunds will be issued after we receive the returned package
- Refund amount will be the purchase price minus shipping costs and a 10% restocking fee
- Refunds will be processed via the original payment method
Important Notes:
- Products must be unused and unopened to qualify for a return
- Return shipping is the responsibility of the customer
- Products used, opened, or damaged will not be eligible for a refund
For questions or assistance with a return, please contact: hello@JMPrecisionLabs.com
Additional information
| NAD+ (Research Compound) – Research Use | NAD+ (Nicotinamide Adenine Dinucleotide) is a coenzyme studied in preclinical settings for its role in cellular energy metabolism and redox reactions. It is commonly used in laboratory models to explore biochemical pathways related to cellular processes, signaling mechanisms, and metabolic regulation under controlled experimental conditions. |
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