D-Aspartic acid α,β-diethyl ester hydrochloride
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D-Aspartic acid α,β-diethyl ester hydrochloride

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Category
β−Amino Acids
Catalog number
BAT-005831
CAS number
112018-26-5
Molecular Formula
C8H16ClNO4
Molecular Weight
225.67
D-Aspartic acid α,β-diethyl ester hydrochloride
IUPAC Name
diethyl (2R)-2-aminobutanedioate;hydrochloride
Synonyms
H-D-Asp(OEt)-OEt HCl
Purity
95%
InChI
InChI=1S/C8H15NO4.ClH/c1-3-12-7(10)5-6(9)8(11)13-4-2;/h6H,3-5,9H2,1-2H3;1H/t6-;/m1./s1
InChI Key
AJOXZAAREAYBQR-FYZOBXCZSA-N
Canonical SMILES
CCOC(=O)CC(C(=O)OCC)N.Cl

D-Aspartic acid α,β-diethyl ester hydrochloride, commonly abbreviated as D-AADE, is a chemical compound derived from D-Aspartic acid. This esterified form is modified to enhance its bioavailability and effectiveness in various applications. D-Aspartic acid itself is an amino acid that plays a crucial role in the biosynthesis of certain hormones and neurochemicals, and by converting it into its α,β-diethyl ester hydrochloride form, the compound becomes more potent and versatile. The hydrochloride part of the compound enhances its solubility in water, which can facilitate its absorption and utilization in biological systems.

One of the key applications of D-Aspartic acid α,β-diethyl ester hydrochloride is in the field of sports nutrition and bodybuilding. It is often included in supplements aimed at boosting testosterone levels. Higher testosterone levels are associated with increased muscle mass, strength, and endurance. D-AADE is thought to stimulate the release of hormones such as luteinizing hormone (LH) and follicle-stimulating hormone (FSH), which in turn can increase the production of testosterone. This makes it a popular choice for athletes looking to enhance their performance and muscle-building capacity.

Another significant application area for D-AADE is in neurological health. D-Aspartic acid is known to participate in neurogenesis and synaptic plasticity, potentially offering cognitive benefits. The α,β-diethyl ester form of the compound might provide more efficient delivery into the brain, suggesting it could be used in the development of treatments for neurodegenerative diseases or cognitive enhancement products. Research is ongoing to determine the full scope of its effects on the brain and how it might be leveraged for therapeutic purposes.

D-Aspartic acid α,β-diethyl ester hydrochloride also finds application in the pharmaceutical industry as an intermediate in drug synthesis. Its modified structure can serve as a starting point for the synthesis of more complex chemical compounds. This versatility makes it valuable not only in developing new medications but also in the optimization of existing drug formulations. In particular, it may be used to create prodrugs—compounds that metabolize into an active pharmaceutical ingredient—thereby improving the delivery and effectiveness of certain medications.

Finally, D-AADE is utilized in research contexts, particularly in studies exploring amino acid functions and hormone modulation. Researchers make use of this compound to investigate how modifications of D-Aspartic acid influence biological pathways and physiological outcomes. This research can lead to a better understanding of amino acid biology, the development of new therapeutic agents, and potentially new strategies for treating hormone-related disorders. Overall, D-Aspartic acid α,β-diethyl ester hydrochloride is a versatile compound with significant applicability in sports nutrition, neurological health, pharmaceuticals, and scientific research.

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