Epithalon 10mg
From: $45.00 / month
Epithalon, a peptide known for its potential in research, is becoming increasingly popular in scientific studies. With a purity of 99%, it offers researchers a high-quality option for various applications, particularly in the fields of anti-aging and cellular regeneration.
Weight | .04 lbs |
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Dimensions | 2 × 1 × 1 in |
Bundle & Save! | ||
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BUY | 1 - 4 | 0% $45.00 |
BUY | 5 - 9 | 10% $40.50 |
BUY | 10 + | 15% $38.25 |
Molecular Composition of Epithalon 10mg
Epithalon, a synthetic peptide, is composed of a specific sequence of four amino acids: alanine, glutamic acid, aspartic acid, and glycine. This unique configuration, denoted as Ala-Glu-Asp-Gly, plays a critical role in the peptide’s biological activity and effectiveness in various research applications. Each amino acid contributes distinct characteristics that enhance the overall properties of Epithalon.
Alanine is known for its simplicity and stability, serving as a fundamental building block that supports other amino acids in the sequence. Glutamic acid acts as a neurotransmitter and plays a crucial role in various metabolic processes. The inclusion of aspartic acid further increases the peptide’s functional versatility, participating in the synthesis of other vital biomolecules. Finally, glycine contributes to the structural integrity and flexibility of the peptide, allowing it to adopt the necessary conformations for biological activity.
The synthesis of Epithalon involves a solid-phase peptide synthesis method, which enables precise control over the formation of the peptide bond between each amino acid. This method not only ensures that the sequence remains intact but also contributes to the stability and purity of the resulting compound. The quality of the synthesis process directly influences the final composition and effectiveness of Epithalon, making it imperative for researchers to utilize high-quality production techniques.
Understanding the molecular composition of Epithalon 10mg is essential for appreciating its application in scientific research. The specific arrangement of its amino acids, along with the meticulous synthesis process, contributes to the peptide’s potential functionality and stability. As researchers continue to explore its properties and applications, the intricate interplay of these components will remain central to the ongoing study of this intriguing peptide.
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