Overview
Quercitrin is a naturally occurring flavonoid glycoside, chemically known as quercetin-3-rhamnoside. It is derived from plants such as oak bark (Quercus spp.), onions, and tea leaves. As a bioactive compound, it has garnered attention in pharmaceutical and nutraceutical industries for its potential health benefits, including antioxidant and anti-inflammatory effects. In laboratory settings, quercitrin is commonly used as a reference standard or reagent in biochemical assays. Its glycosidic structure enhances solubility compared to its aglycone counterpart, quercetin, making it suitable for various experimental applications.
Physical and Chemical Properties
Quercitrin appears as a yellow crystalline powder with a melting point range of 168-170°C (with decomposition). It is soluble in polar organic solvents like methanol and ethanol but has limited solubility in water. The compound exhibits strong UV absorption, making it useful in spectrophotometric analyses. Its molecular structure includes a rhamnose sugar moiety attached to the quercetin backbone, which influences its bioavailability and metabolic pathways. The presence of multiple hydroxyl groups contributes to its antioxidant capacity by scavenging free radicals.
Main Applications
In pharmaceuticals, quercitrin is studied for its potential role in managing oxidative stress-related diseases, such as cardiovascular disorders and diabetes. It is also used as an intermediate in synthesizing other bioactive compounds. The cosmetic industry incorporates quercitrin into anti-aging formulations due to its UV-protective and collagen-stabilizing properties. Additionally, it serves as a natural food additive to enhance shelf life and nutritional value in functional foods and beverages.
Safety and Storage
Quercitrin is generally considered low-toxicity but requires proper handling to avoid irritation. Use gloves and goggles when handling the powder, and ensure adequate ventilation. Prolonged exposure to light or moisture may degrade the compound. Storage should be in airtight containers under cool (below 25°C), dry conditions, preferably with desiccants. For long-term preservation, refrigeration is recommended, though the compound is stable at room temperature for short periods.
B2B Procurement Guide
When sourcing quercitrin, prioritize suppliers with ISO certification and batch-specific COAs (Certificates of Analysis) confirming purity (typically ≥98% by HPLC). Bulk purchases (100g+) may qualify for discounted rates, but verify lead times for customized quantities. For research-grade applications, opt for vendors specializing in phytochemicals, while industrial-scale buyers should assess GMP compliance. Consider testing solubility and stability under intended use conditions to ensure compatibility with your processes.
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