The Chemical Profile of 5-Methoxytryptamine: Properties and Synthesis Pathways for Researchers
For scientists and researchers in the fields of pharmacology and chemistry, understanding the precise properties and synthesis routes of key compounds is fundamental. 5-Methoxytryptamine, identified by CAS number 608-07-1, stands out as a compound of considerable scientific interest. NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to providing researchers with detailed information and high-quality chemical products, and 5-Methoxytryptamine exemplifies this commitment. As a derivative of serotonin and melatonin, its chemical structure and reactivity are central to its biological functions.
Delving into the CAS 608-07-1 chemical properties, 5-Methoxytryptamine (also known as Mexamine or O-Methylserotonin) presents as a white powder. Its molecular formula is C11H14N2O, with a molecular weight of approximately 190.24 g/mol. The compound's solubility characteristics are also important for laboratory use; it is generally insoluble in water but shows solubility in organic solvents like DMSO and ethanol. These details are critical for researchers who need to prepare solutions for experiments, ensuring the integrity and accuracy of their work. The meticulous study of such fine chemicals underpins advancements in various scientific disciplines.
The synthesis of 5-Methoxytryptamine involves specific chemical transformations, often starting from readily available indole precursors. While detailed proprietary synthesis methods vary, general routes typically involve the formation of the tryptamine side chain attached to a 5-methoxyindole core. Understanding these synthesis pathways for researchers is not only about replication but also about potential modifications for creating analogues with altered pharmacological profiles. The production of high-purity 5-Methoxytryptamine is crucial, especially when it's intended for use as a pharmaceutical intermediate, where stringent quality control is non-negotiable. The reliability of the chemical supply chain is a significant factor for academic and industrial research.
The role of 5-Methoxytryptamine as a serotonin receptor agonist is extensively documented. It exhibits agonist activity across multiple serotonin receptor subtypes, which is a key reason for its prominence in neuroscience. Researchers often procure this compound to study its effects on neurotransmission and to explore potential therapeutic applications. The availability of this compound allows for the investigation of receptor binding affinities and downstream signaling cascades. For scientists seeking to purchase 5-Methoxytryptamine, partnering with reputable suppliers like NINGBO INNO PHARMCHEM CO.,LTD. ensures access to well-characterized materials.
The study of 5-Methoxytryptamine's chemical profile extends to its metabolic fate, primarily involving the enzyme monoamine oxidase (MAO). Understanding how this compound is processed in biological systems is essential for both pharmacokinetic and pharmacodynamic analyses. This knowledge aids in predicting drug-drug interactions and in designing more effective drug delivery systems. The scientific community relies on detailed technical data, including purity assays and spectral analyses, to confirm the identity and quality of research chemicals. This meticulous approach ensures that the results obtained are attributable to the compound itself.
In summary, 5-Methoxytryptamine is a compound of significant chemical and biological importance. Its well-defined properties, synthesis routes, and agonist activity at serotonin receptors make it an invaluable resource for scientific advancement. NINGBO INNO PHARMCHEM CO.,LTD. is proud to support the research community by providing access to this vital chemical, contributing to progress in neuroscience, pharmacology, and the development of novel therapeutics.
Perspectives & Insights
Silicon Analyst 88
“Researchers often procure this compound to study its effects on neurotransmission and to explore potential therapeutic applications.”
Quantum Seeker Pro
“The availability of this compound allows for the investigation of receptor binding affinities and downstream signaling cascades.”
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