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Vitamin E-[d3] (R,R,R)

General Information
Catalog: BLP-008181
Molecular Formula: C29H47D3O2
Molecular Weight: 433.72
Chemical Structure
Vitamin E-[d3] (R,R,R)
Description An isotope labelled form of Vitamin E. Vitamin E has many biological functions, including its role as a fat-soluble antioxidant.
Synonyms (R)-2,5,7-trimethyl-8-trideuteromethyl-2-((4R,8R)-4,8,12-trimethyltridecyl)chroman-6-ol; (2R,4'R,8'R)-alpha-Tocopherol-D3
Related CAS 59-02-9 (unlabelled)
Purity 98% by HPLC; 98% atom D

Vitamin E-[d3] (R,R,R) is a form of vitamin E labeled with deuterium, widely used in various scientific and health applications. Here are some key applications of Vitamin E-[d3] (R,R,R):

Nutritional Research: Vitamin E-[d3] (R,R,R) is utilized in studies to track the metabolism and bioavailability of vitamin E in the human body. By using the deuterium-labeled variant, researchers can accurately measure absorption rates and understand how vitamin E is processed in different populations. This information is vital for optimizing dietary recommendations and supplementation strategies.

Antioxidant Studies: Due to its antioxidative properties, Vitamin E-[d3] (R,R,R) is employed in research investigating oxidative stress and its impact on health. By examining how this labeled antioxidant interacts with free radicals and oxidative processes, scientists can develop new strategies to combat oxidative damage linked to aging and chronic diseases. This contributes to the creation of more effective antioxidant therapies and dietary supplements.

Pharmacokinetics: The deuterium labeling of Vitamin E-[d3] (R,R,R) makes it an excellent tool for pharmacokinetic studies. Researchers can track the exact distribution, metabolism, and excretion of vitamin E in the body, providing detailed insights into its pharmacological behavior. These findings are crucial for developing vitamin E-based therapeutics and determining proper dosage regimens.

Lipid Research: Vitamin E-[d3] (R,R,R) is used to explore the role of vitamin E in lipid metabolism and membrane biology. By incorporating the labeled vitamin into lipid bilayers or lipoproteins, scientists can study its protective effects on cell membranes and its influence on lipid peroxidation. This research is important for understanding the molecular mechanisms behind vitamin E’s role in cardiovascular health and disease prevention.

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