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Liquiritin Apioside

    • Product Name Liquiritin Apioside
    • Alias (-)-isoliquiritin apioside
    • Einecs 1202257-74-0
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    Specifications

    HS Code

    581770

    Productname Liquiritin Apioside
    Casnumber 113924-87-1
    Molecularformula C26H32O14
    Molecularweight 568.52 g/mol
    Appearance Yellowish powder
    Purity ≥98% (HPLC)
    Solubility Soluble in DMSO, methanol, ethanol
    Storagetemperature -20°C, keep dry and protected from light
    Source Glycyrrhiza uralensis (Licorice root)
    Synonyms Liquiritin-4'-apioside
    Chemicalclass Flavonoid glycoside
    Intendeduse For research use only
    Canonicalsmiles C1=CC(=C(C=C1OC2C(C(C(OC2OC3C(C(C(OC3O)CO)O)O)CO)O)O)O)C4=CC(=O)C=CC4=O

    As an accredited Liquiritin Apioside factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Liquiritin Apioside is supplied in a 10mg amber glass vial, sealed with a tamper-evident cap, labeled with product and safety details.
    Shipping Liquiritin Apioside is shipped in tightly sealed, chemical-resistant containers to ensure product integrity during transit. It is handled as a research chemical, with necessary documentation and labeling for safe transportation. Shipping conditions typically maintain controlled temperature, avoiding exposure to heat, moisture, and direct sunlight. Complies with relevant chemical shipping regulations.
    Storage Liquiritin Apioside should be stored in a cool, dry, and well-ventilated area, away from direct sunlight and moisture. Keep the container tightly sealed to prevent contamination and degradation. Recommended storage temperature is 2–8°C (refrigerator). Ensure the substance is clearly labeled and kept away from incompatible materials, following appropriate safety and chemical handling guidelines.
    Application of Liquiritin Apioside

    Purity 98%: Liquiritin Apioside with 98% purity is used in pharmaceutical intermediate synthesis, where high chemical purity ensures consistent batch-to-batch reproducibility.

    Molecular Weight 418.4 g/mol: Liquiritin Apioside with a molecular weight of 418.4 g/mol is used in pharmacokinetic studies, where accurate dosing facilitates precise metabolic profiling.

    Particle Size <10 μm: Liquiritin Apioside with particle size below 10 μm is used in oral dosage formulations, where fine granularity enhances dissolution rates.

    Stability Temperature 25°C: Liquiritin Apioside stable at 25°C is used in long-term storage applications, where ambient stability maintains bioactivity throughout shelf life.

    HPLC Assay ≥99%: Liquiritin Apioside with an HPLC assay of at least 99% is used in analytical reference standard applications, where high assay value supports reliable calibration.

    Melting Point 242°C: Liquiritin Apioside with a melting point of 242°C is used in thermal processing for drug manufacturing, where high thermal stability prevents degradation during formulation.

    Water Solubility 0.5 mg/mL: Liquiritin Apioside with water solubility of 0.5 mg/mL is used in aqueous extraction protocols, where moderate solubility enables efficient recovery.

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    Certification & Compliance
    More Introduction

    Liquiritin Apioside: An Insider’s Perspective on a Vital Phytochemical

    Looking Beyond the Lab: The Real Work in Producing Liquiritin Apioside

    We craft Liquiritin Apioside with the same hands-on approach we use for all our plant-derived compounds. This isn’t a bulk commodity. For years, we’ve watched this flavonoid glycoside draw attention, not just from researchers but also from innovators in several fields: natural health, pharmaceuticals, cosmetics, and food. Sourcing robust, mature licorice roots—its primary source—and steering them through each stage of extraction, isolation, and purification has taught us lessons you won’t find in a textbook.

    Liquiritin Apioside bears the CAS number 551-15-5. Its molecular formula is C26H30O13, and it carries a molar mass of 550.51 g/mol. We use high-performance liquid chromatography (HPLC) to verify purity, routinely exceeding 98%. Years of refining our process have allowed us to get past hurdles such as inconsistent yield, and we now deliver this compound reliably in crystalline powder form. Rare is the day we encounter doubts about origin, as every batch flows from licorice roots we manage from field through extraction. Those roots pass through careful handling and quality checks, buffering against variability from environment, harvest timing, or post-harvest storage. Storage conditions matter. Heat and humidity can degrade flavonoids quickly unless the supply chain includes dry, cool, low-light storage from field through final shipment. We use airtight, lightproof drums and vacuum-sealed bags to keep batch integrity through transport.

    Where Liquiritin Apioside Stands Out

    Producing plant actives can turn into an exercise in managing expectations if you treat every extract as interchangeable. Liquiritin Apioside often gets compared to liquiritin and isoliquiritin—the more common congeners within the licorice flavonoids suite. Our experience shows they behave differently in both extraction and application. Apioside’s structural backbone features an apiose sugar moiety in place of the usual glucose; this changes solubility, stability, and the way it interacts with solvents or other carriers.

    A crude extract may deliver several related compounds, but anyone aiming for high-quality research or advanced formulations needs reliable identification and quantification. We focus on robust fractionation protocols: column chromatography defines the backbone of our workflow, followed by repeated HPLC verification. In our hands, Apioside exhibits a distinct UV absorption spectrum compared to its cousins, which helps us isolate it without significant co-elution from unwanted glycosides.

    Unlike liquiritin, Apioside shows greater stability against hydrolysis under acidic conditions. This matters for certain pharmaceutical uses and gives formulators more latitude when developing products where pH may fluctuate. Stability data come from real-time and accelerated aging tests running for more than 18 months in our facility. Lots pulled for random testing keep our process from drifting over time.

    Applications: Where We’ve Seen Developers Get It Right (and Wrong)

    Customers approach us with a spectrum of goals. Most have done some homework but often lump apioside with “liquorice flavonoids” out of habit. We urge a deeper approach. Liquiritin Apioside draws unique interest because of documented antioxidant and anti-inflammatory effects. Researchers studying cellular pathways turn to it when they want a molecule that goes beyond general ROS scavenging and interacts more selectively with specific cytokines.

    Pharmaceutical teams use it in both oral and topical routes. Water solubility is higher versus some isomers, which helps in solution-based products. In cosmetics, formulators reach for our material in experiments targeting skin tone evening or anti-redness blends. We’ve also seen beverage innovators mix sub-milligram levels into clear drinks, owing to its relatively mild flavor and high solubility. In those types of projects, our HPLC-pure, dust-free microcrystalline powder carries through without precipitation.

    We’ve learned not every project using Apioside delivers. One early-stage company tried heat-driven emulsification without compensation for the compound’s modest heat sensitivity—result: pronounced degradation and poor sensory quality. We invested time supporting their turnaround, swapping in alternate carriers and lower processing temperatures. When real-world R&D shops ask for process advice, we share this and other stories freely. Transparent feedback prevents wasted cycles.

    Why NOT Just Use a Total Licorice Extract?

    Total licorice extracts remain popular, especially for cost-driven applications. As the actual manufacturer, we see big differences when you isolate targeted components. Bulk extracts can hold varied and sometimes unfavorable ratios: more isoliquiritin, minor unknowns, or even contaminants you’d rather avoid. With Apioside, precise isolation means tighter batch-to-batch consistency and traces that register on both HPLC and mass spectrometry are reliably low.

    There’s prestige in purity: when drug manufacturers or personal-care labs need to show regulators what’s in their product, they have to deliver more than a glossy brochure. Our in-house analytics, backed by decades of validated purification, make detailed Certificate of Analysis (CoA) records not marketing fluff but the backbone of reproducible research and development.

    How We Make Sure Every Order Meets the Right Standard

    We frame quality controls around more than just checklists. Process controls start in the fields, as we vet the dried roots for any sign of molds or environmental residues. A lot can go wrong before extraction even begins. We install batch-level record-keeping during grinding and extraction, noting everything from field of origin to humidity in storage facilities. Running twin HPLC and TLC analyses on routine production keeps our team alert for unexpected fingerprints.

    Blending and homogenization steps involve human oversight. You can’t automate your way to consistent color, purity, and solubility. Trained eyes and hands guide batch finalization. Over months and years, this attention to detail tightens our product specifications—in the real world, labs that scramble for repeatable results reward this consistency with repeat business. That’s the feedback loop we care about.

    What the Market Gets Wrong about Liquiritin Apioside

    Traders sometimes conflate liquiritin and apioside without understanding their real-world differences. We’ve seen paperwork that lists only total glycosides by percentage, skipping over meaningful identities. From a producer’s standpoint, accuracy is non-negotiable. Early in the business, labs seeking cheaper supply have brought us “high-purity” specs that collapse under NMR or LC-MS scrutiny. We reject or reprocess those batches instead of shipping questionable quality. Those hard decisions keep our relationships strong with downstream researchers and manufacturers whose own reputation depends on us.

    Global supply chains for licorice derivatives often run opaque. Some buyers have no idea if their ingredient started as farm-grown root or as a co-product of unrelated agriculture. Several years ago, cross-contamination from field residues in a third-party sample triggered a costly product recall. Raw root origin tracking and relationship management with growers became top priorities in response. Sourced right, processed right, and tested with full-spectrum tools, authentic apioside stands apart from many “mixed flavonoid” materials in the chemical market—this pays dividends far beyond a price-point spreadsheet.

    Choosing the Right Specifications: What Actually Matters

    Customers new to Liquiritin Apioside often ask about typical concentration ranges or limits on related substances. Our standard model delivers a minimum of 98% purity by HPLC. Water content usually stays below 1.5% as determined by Karl Fischer analysis, protecting against clumping and breakdown over time. Appearance matters for real-world handling: our powder is fine and near-white, free from visible agglomerates or plant debris. These attributes make for cleaner handling, faster dissolution, and reduced risk of microbial hotspots.

    Companies with unique application needs lean on us for custom granulometry or blending. We maintain a scale flexible enough for kilos or hundreds of kilos, avoiding the pitfalls of over-promising on lead times or skipping essential quality checks. Internally, we favor a modular process: one team is responsible start-to-finish for each lot, ensuring every shipment stands up to scrutiny.

    Real-World Handling and Compatibility

    Liquiritin Apioside dissolves best in water and methanol, less so in straight ethanol or oils. This shapes our guidance to formulators: match the vehicle to the compound for maximum uptake and minimal waste. Our trials with beverage and supplement clients have shown best results when Apioside is blended at room temperature with moderate stirring, then filtered prior to final filling. Years ago, a partner tried aggressive ultrasonic emulsification without solvent pairing, leading to rapid clouding and loss of potency; controlled blending solved the issue.

    For solid oral dosage or bulk powder use, compaction pressure matters a great deal: too much transforms the powder and slows subsequent dissolution; too little causes dusting. We keep moisture below 1.5%, which lets our clients blend directly into capsules without pre-drying. For topical use, Apioside gels form quickly using water-miscible bases, avoiding the annoying “grit” you sometimes see with less-refined extracts.

    Establishing Traceability and Trust

    Traceability doesn’t begin with a sticker on a drum—it starts with the grower. We contract directly with licorice farmers, tracking each harvest through GPS-logged field records, residue tests, and photographic samples. Actual boots on the ground keep the input stream clean and pure. Facility audits and surprise spot testing by independent labs round out our internal protocols. With each lot, we provide full certificates outlining every test run on that batch, from heavy metals and pesticides to active content and loss on drying.

    Today’s research institutions and consumer product makers face rising regulatory pressure over traceability and full ingredient transparency. Being able to trace each shipment back to a specific region, field, and season gives a buffer against any market or legal shocks. Years of investment in direct relationships, testing hardware, and compliant recordkeeping keep our products up to code.

    Meeting the Challenges of a Changing Marketplace

    During shortages or pop-up demand spikes, market prices for licorice derivatives swing erratically. Some players cut corners, rebrand mid-grade extracts, or inflate specs with unsupported claims. We resist the urge to stretch supply past what careful cultivation and processing can actually deliver. If we run short on roots of the right age, we limit output instead of diluting quality. Partners recognize the difference: orders delivered on time and to spec, with transparency in both origin and analytics.

    Balancing scale and quality remains an ongoing challenge. Large buyers sometimes try to push down cost or speed up shipments by tolerating looser specs—after nearly two decades, we understand the risks: trust built over hundreds of lots can unravel if a single batch doesn’t meet expectations. As markets evolve, we’re expanding partnerships with farms committed to sustainable practices, reducing reliance on chemical pesticides, and investing in new extraction equipment to boost both yield and reproducibility.

    What Sets Our Approach Apart

    Years in this field have taught us that shortcuts cost more in the end. While the broader market sometimes focuses only on cost, our approach values continuity. We invest in upstream relationships, run repeated lab trials, and invite third-party audits. Actual results—not marketing—drive our specifications and batch acceptance criteria. Every lot that carries our name stands behind years of know-how. We’re ready to share that with both old hands and first-time formulators.

    Liquiritin Apioside may look like “just another licorice chemical” to outsiders, but to developers, integrators, and scientists who understand what goes into sourcing, purifying, and applying this molecule, the difference becomes clear. In our experience, investing in traceability and data-driven quality is not a marketing mantra; it’s the only way to ensure both reputational and technical success.