Overview
Echinochrome A is a naturally occurring pigment primarily extracted from sea urchins (Echinoidea). As a hydroxy-naphthoquinone derivative, it exhibits distinctive redox properties that contribute to its biological activities. First isolated in the mid-20th century, this compound has gained attention in biomedical research due to its unique molecular structure combining phenolic and quinoid moieties. The compound's name derives from its source (echinoderms) and chromophore characteristics. In nature, it functions as part of the sea urchin's immune defense system. Commercial production typically involves extraction from sea urchin shells or chemical synthesis for higher purity grades required in pharmaceutical applications.
Physical and Chemical Properties
Echinochrome A presents as a dark red crystalline solid with characteristic absorption maxima in the 270-480 nm range. Its molecular structure features multiple hydroxyl groups adjacent to quinone functionality, making it both a potent antioxidant and pro-oxidant depending on environmental conditions. The compound undergoes reversible redox cycling between quinone and hydroquinone forms. Key chemical behaviors include pH-dependent solubility (better in alkaline solutions) and sensitivity to light/oxygen. It forms stable complexes with transition metals, particularly iron and copper, which influences its biological activities. Thermal analysis shows decomposition before melting, requiring careful handling during processing.
Main Applications
In medical research, Echinochrome A is investigated for cardioprotective effects, particularly in ischemia-reperfusion injury models. Its antioxidant properties show promise for neurodegenerative disease research and as an adjunct in chemotherapy regimens. Russian clinical studies have explored its use in ophthalmic solutions for corneal repair. The cosmetic industry utilizes Echinochrome A in premium anti-aging formulations for its ability to neutralize free radicals and stimulate collagen production. Some marine-derived skincare products feature it as a key active ingredient. In biochemical research, it serves as a reference compound for studying quinone chemistry and marine natural products.
Safety and Storage
As a bioactive quinone, Echinochrome A requires careful handling. Laboratory studies indicate low acute toxicity (LD50 >2000 mg/kg in rodents), but chronic exposure risks are not fully characterized. Always use appropriate PPE including nitrile gloves and eye protection when handling the powder form. For long-term storage, maintain the compound in amber glass vials under argon or nitrogen atmosphere at -20°C. Lyophilized forms demonstrate better stability than solutions. Monitor for color changes (darkening indicates degradation) and perform regular purity checks if stored beyond 12 months. Incompatible with strong oxidizers and heavy metal salts.
B2B Procurement Guide
When sourcing Echinochrome A, prioritize suppliers providing comprehensive analytical certificates including HPLC purity (≥95% for research applications), residual solvent data, and heavy metal content. For clinical-grade material, demand GMP compliance documentation and batch-to-batch consistency reports. Consider minimum order quantities (MOQs) carefully - small-scale researchers may find 1-5 gram quantities sufficient, while cosmetic manufacturers typically order 100g+ batches. Lead times vary significantly between synthetic (4-8 weeks) and natural-extracted (12+ weeks) products. For international shipments, verify that the supplier uses temperature-controlled logistics with moisture-proof packaging.
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