





MOTS-C 10mg
$42.00 $37.80
Mots-c is an innovative peptide designed for research purposes. With a 99% purity level, it offers researchers a reliable option for their studies. This peptide’s unique properties contribute to a variety of research areas, providing substantial insights.
Weight | .04 lbs |
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Dimensions | 2 × 1 × 1 in |
Bundle & Save! | ||
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BUY | 1 - 4 | 0% $37.80 |
BUY | 5 - 9 | 10% $34.02 |
BUY | 10 + | 15% $32.13 |
Molecular Composition of Mots-c 10mg
Mots-c, a mitochondrial-derived peptide, has garnered significant attention in the realm of scientific research due to its unique molecular structure and formulation. The molecular composition of Mots-c 10mg is characterized by its specific sequence of amino acids, which plays a crucial role in its biological activity and therapeutic potential. This peptide is succinctly composed of a chain of 16 amino acids, arranged in a particular order that is critical for its peptide function and interactions within biological systems.
The emphasis on Mots-c’s 99% purity level is paramount in research settings, as such purity ensures that experimental results are both reliable and replicable. Purity is a key indicator of quality in peptides, and Mots-c’s high purity minimizes the presence of impurities, which can adversely affect research outcomes. In the context of molecular research, a pure peptide allows for more accurate interpretations of data, as variations due to contaminants are significantly reduced. This purity level is not merely a number; it is a representation of the rigor applied during peptide synthesis and purification processes.
Moreover, Mots-c exhibits several unique molecular features that enhance its appeal in scientific investigations. For instance, the cyclic nature of certain peptides, such as Mots-c, can contribute to structural stability and biological efficacy. Its molecular composition may facilitate various cellular processes, including metabolism regulation and mitochondrial function enhancement, indicating its potential therapeutic applications. As research continues to explore the implications of Mots-c, understanding its molecular architecture becomes increasingly vital, offering insights that may lead to novel interventions in health and disease management.
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