D-Aspartic acid α-benzyl ester
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D-Aspartic acid α-benzyl ester

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Category
β−Amino Acids
Catalog number
BAT-004231
CAS number
6367-42-6
Molecular Formula
C11H13NO4
Molecular Weight
223.20
D-Aspartic acid α-benzyl ester
Synonyms
D-Asp-OBzl
Appearance
White powder
Purity
≥ 99% (HPLC)
Melting Point
155-165 °C
Storage
Store at 2-8°C

D-Aspartic acid α-benzyl ester is a chemical compound derived from aspartic acid, an important amino acid found in various living organisms. This ester form is generated by modifying the carboxylic acid group of aspartic acid into an ester via benzyl alcohol. The main significance of such a modification is to enhance the chemical stability and lipophilicity, thereby potentially altering the pharmacokinetic properties of the parent compound. D-Aspartic acid itself plays critical roles in neuroendocrine functions and is crucial for maintaining the body’s neurochemical balance. As a derivative, D-Aspartic acid α-benzyl ester holds promise for various applications in biological and chemical studies, primarily because of its ability to mimic or enhance the activities associated with aspartic acid.

One of the key applications of D-Aspartic acid α-benzyl ester is in the field of pharmaceuticals. Its enhanced stability and solubility make it a valuable candidate in drug design and development, particularly for medications aimed at neurological and hormonal therapies. By targeting the endocrine system, compounds derived from D-Aspartic acid can help regulate testosterone and other hormone levels, which may benefit treatments for conditions like hypogonadism and infertility. The increased lipophilicity of the ester form allows for better penetration and interaction within biological membranes, potentially improving drug efficacy and delivery.

Another important application area is in biochemical research, where D-Aspartic acid α-benzyl ester serves as a tool for probing enzyme function and protein interactions. Researchers utilize this compound to study the mechanisms of aspartate metabolizing enzymes, allowing for better understanding and manipulation of metabolic pathways. Its role as a substrate or inhibitor in enzymatic reactions helps elucidate enzyme specificity and activity, facilitating the development of novel biochemical assays and experimental methodologies. The compound’s structural attributes aid in identifying binding sites and fostering molecular docking studies.

In the realm of nutritional supplements, D-Aspartic acid α-benzyl ester can be employed for its potential role in enhancing athletic performance and muscle growth. As an esterified form of D-Aspartic acid, it may offer improved absorption and utilization within the body, thus serving as a more effective supplement. It acts by stimulating the release of hormones such as luteinizing hormone and growth hormone, which are vital for muscle development and recovery. Athletes and bodybuilders may benefit from its use to optimize hormonal levels naturally, without resorting to synthetic anabolic steroids, thereby aiding in safer performance enhancement strategies.

Lastly, D-Aspartic acid α-benzyl ester finds application in synthetic organic chemistry as an intermediate or starting material for complex chemical syntheses. Its unique structure and reactivity enable chemists to construct specialized molecules, which can then be used in the creation of pharmaceuticals, agrochemicals, and various industrial chemicals. The esterification not only enhances the compound’s stability during chemical reactions but also provides a versatile platform for further chemical modifications. This makes it indispensable for researchers focused on developing new synthetic pathways and materials.

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