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Updated: 2026-08-02

Overview

Ervatamine, also known as dog tooth flower alkaloid, is a naturally occurring indole alkaloid derived from plants of the genus Ervatamia. It is recognized for its bioactive properties and has been studied for potential pharmacological applications. The compound is commonly isolated from the leaves and stems of these plants and is of interest in both traditional medicine and modern pharmaceutical research. Ervatamine belongs to a class of alkaloids known for their complex structures and diverse biological activities. Its discovery and study have contributed to the understanding of plant-derived compounds and their potential therapeutic benefits. Researchers continue to explore its mechanisms of action and possible uses in drug development.

Physical and Chemical Properties

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Ervatamine is a white to off-white crystalline powder with a molecular weight of 354.45 g/mol. It has a melting point of approximately 180-182°C and is soluble in organic solvents such as ethanol and methanol, though it is only slightly soluble in water. These properties make it suitable for extraction and purification processes in laboratory settings. The compound's stability under normal storage conditions allows for long-term preservation when kept in a cool, dry environment away from light and moisture. Its solubility profile is a key factor in its application in pharmacological studies, where it is often dissolved in organic solvents for experimental use.

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Main Applications

Ervatamine is primarily used in pharmaceutical research due to its bioactive properties. It has been investigated for its potential effects on the central nervous system and other biological targets. Traditional medicine systems have also utilized plants containing ervatamine for their purported therapeutic benefits. In addition to its pharmacological potential, ervatamine is studied in the context of natural product chemistry. Researchers analyze its structure and activity to better understand its role in plant defense mechanisms and its possible applications in drug discovery. The compound's unique properties make it a subject of ongoing scientific interest.

Safety and Storage

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Ervatamine should be handled with care to avoid inhalation or direct contact with skin and eyes. Laboratory personnel should use appropriate protective equipment, including gloves and goggles, when working with the compound. Proper ventilation is recommended to minimize exposure to airborne particles. Storage conditions are critical for maintaining the stability of ervatamine. It should be kept in a tightly sealed container in a cool, dry place, away from light and moisture. These precautions help preserve its chemical integrity and ensure its suitability for research and experimental use over time.

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B2B Procurement Guide

When procuring ervatamine for B2B purposes, it is essential to verify the purity and quality of the compound. Reputable suppliers should provide certificates of analysis (CoA) to confirm the product's specifications. Buyers should also inquire about the sourcing and extraction methods to ensure ethical and sustainable practices. Price ranges for ervatamine can vary significantly depending on purity levels and supplier credentials. It is advisable to compare offerings from multiple vendors and consider factors such as shipping conditions and lead times. Establishing long-term relationships with trusted suppliers can help ensure consistent quality and reliable delivery.

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