Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing admin@sinochem-nanjing.com 3389378665@qq.com
Follow us:

Vitexin Rhamnoside

    • Product Name Vitexin Rhamnoside
    • Alias Isovitexin 7-O-glucoside
    • Einecs 607-643-5
    • 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
    VTB
    Specifications

    HS Code

    702261

    CAS_number 64820-99-1
    Molecular_formula C27H30O15
    Molecular_weight 594.52 g/mol
    Appearance Yellow powder
    Solubility Soluble in methanol and ethanol
    Purity ≥98% (HPLC)
    Melting_point 250-255°C
    Storage_conditions Store at 2-8°C, protected from light and moisture
    Source Extracted from hawthorn and other plants
    Synonyms Apigenin-8-C-beta-D-glucopyranoside-7-O-alpha-L-rhamnoside
    Chemical_structure_type Flavone glycoside

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

    Packing & Storage
    Packing Vitexin Rhamnoside is packaged in a sealed amber glass vial, labeled, and contains 50 mg of fine yellow powder.
    Shipping Vitexin Rhamnoside is securely packaged in sealed, leak-proof containers to ensure stability and prevent contamination during transit. The chemical is shipped via reputable carriers under controlled conditions, complying with regulatory guidelines. Temperature-sensitive options and safety documentation are provided to guarantee integrity and customer safety upon delivery.
    Storage Vitexin Rhamnoside should be stored in a tightly sealed container, protected from light, moisture, and air to maintain stability. Keep it in a cool, dry place, ideally at 2–8 °C (refrigerator conditions). Avoid exposure to heat and humidity. If supplied as a powder, keep desiccated; if in solution, store at the recommended temperature and avoid repeated freeze-thaw cycles.
    Application of Vitexin Rhamnoside
    Purity 98%: Vitexin Rhamnoside with purity 98% is used in pharmaceutical formulations, where it ensures consistent bioactivity and reliable therapeutic outcomes. Particle Size <100 μm: Vitexin Rhamnoside with particle size below 100 μm is used in oral tablet production, where it enables rapid dissolution and increased bioavailability. Stability at 40°C: Vitexin Rhamnoside stable at 40°C is used in nutraceutical products, where it maintains potency during prolonged storage under accelerated conditions. HPLC Assay ≥98%: Vitexin Rhamnoside validated by HPLC assay ≥98% is used in quality-controlled supplements, where it supports compliance with regulatory standards for purity. Water Solubility 50 mg/mL: Vitexin Rhamnoside with water solubility of 50 mg/mL is used in injectable solutions, where it enables homogeneous dispersion and efficient systemic absorption. Melting Point 265°C: Vitexin Rhamnoside with a melting point of 265°C is used in thermally-processed food additives, where it ensures structural integrity during manufacturing. UV Absorbance λmax 335 nm: Vitexin Rhamnoside with UV absorbance maximum at 335 nm is used in analytical research, where it enables precise quantification by spectrophotometry. Residual Solvent <0.1%: Vitexin Rhamnoside with residual solvent below 0.1% is used in high-purity cosmetic formulations, where it guarantees safety and minimizes toxicological risk. Ash Content ≤0.5%: Vitexin Rhamnoside with ash content not exceeding 0.5% is used in herbal extract preparations, where it ensures minimal inorganic contamination and product consistency. Specific Optical Rotation +47°: Vitexin Rhamnoside with specific optical rotation of +47° is used in chirality-dependent pharmaceutical synthesis, where it confirms enantiomeric purity for optimized biological activity.
    Free Quote

    Competitive Vitexin Rhamnoside prices that fit your budget—flexible terms and customized quotes for every order.

    For samples, pricing, or more information, please call us at +8615371019725 or mail to admin@sinochem-nanjing.com.

    We will respond to you as soon as possible.

    Tel: +8615371019725

    Email: admin@sinochem-nanjing.com

    Get Free Quote of Sinochem Nanjing Corporation

    Flexible payment, competitive price, premium service - Inquire now!

    Certification & Compliance
    More Introduction

    Introducing Vitexin Rhamnoside: Real Insights from the Manufacturer

    The chemical industry evolves with discoveries that make a substantial difference, both in research and in product development. Vitexin Rhamnoside stands out as one of those advances that earned its place after years of dedication on the production floor. We talk from the experience of daily synthesis, not from trading desks or middlemen’s catalogues.

    What Sets Our Vitexin Rhamnoside Apart?

    Our team has spent years fine-tuning the production of Vitexin Rhamnoside. This glycoside, known by the model name VTR-987, goes through a stringent refinement process that we have developed in our own labs. The result is a product that consistently reaches a high purity level, with the main specification set at ≥98% by HPLC. There’s no shortcut to reaching this mark—it demands meticulous batch monitoring, careful temperature controls, and using only carefully selected plant sources.

    Many have tried to source Vitexin Rhamnoside from resellers looking for quick margins, but those never match the product that rolls directly out of our reactors. We test each lot in-house, starting from raw material and ending with a re-test before packing. We take these steps because we have seen firsthand how small impurities can ruin an application or send an entire production line off schedule.

    The powder appears pale yellow and fine, with a consistent mesh size between 80–120, ensuring it dissolves well in ethanol and DMSO. This matters everywhere from the analytical bench to the large-scale reactor. Our clients find the predictable solubility helps them cut down time lost to process adjustments.

    How Are Manufacturers Using Vitexin Rhamnoside?

    Researchers and developers choose this compound for its versatility. The primary use lands in pharmaceutical research, with interest focusing on the study of natural plant flavonoids. Vitexin Rhamnoside brings antioxidant properties to the table, which leads to active investigation in anti-inflammatory and anti-cancer applications. Developers often look for this ingredient as a control in flavonoid mechanism studies. The quality they expect comes only from well-tracked batches, which is something we have committed to delivering, having seen the results of corner-cutting by less rigorous suppliers.

    Food science teams also work with Vitexin Rhamnoside for its bioactive potential. Our experience with flavor supplement companies has shown that trace-level consistency makes or breaks food-enhancement projects. They look for a flavone glycoside that can keep up with regulatory requirements and health standards, so we keep contaminants and residual solvents far below the thresholds, with all documentation ready for regulatory review. Our technical staff handles these inquiries directly because we know what documentation is necessary and how tough regulatory inspections can be.

    Meet the Details: Specifications and Quality Control

    Daily manufacturing at scale exposes challenges the market rarely sees. For example, reliable particle size distribution does not come from wishful thinking; it comes from using sieves and laser-scattering analyzers every single batch. We set the minimum size at 80 mesh and never let oversize batches slip out. Moisture matters, too. High moisture not only threatens shelf life but also triggers microbial growth. Our teams dry the final product below 5% moisture, then seal it in triple-lined containers, ensuring it holds up in humid climates or long-term storage. The melting point, recorded between 242–247°C, signals proper structure and purity—values we measure with a digital melting-point apparatus in each cycle. The distinctive chemical structure, C_27H_30O_15, is confirmed through both NMR and mass spectrometry.

    No batch leaves the plant without a complete certificate of analysis and spectral data. Equipment calibration and documentation are part of our everyday work. We invite partners to audit these procedures anytime; nothing compares to witnessing the process in person. Some clients have caught mistakes even we missed during a visit. After that, we switched certain control steps from manual records to automated logs, closing gaps and preventing human error.

    The Human Side: Lessons Learned in Manufacturing

    Our journey producing Vitexin Rhamnoside brought lessons we could only gather on the ground. For instance, plant-derived products depend on harvest cycles, which makes sourcing unpredictable. In one tough year, a freeze hit our main crop. We ran out of raw material. Some resellers immediately raised prices and mixed in off-spec powder. We refused to do so; our choice costs us in lost business that season, but our regular customers came back the next year. They told us they’d rather wait than risk their research to unreliable supplies.

    Switching to semi-synthetic routes saved us in the long-term. Paying attention to extraction solvents and residue testing made our production more resilient to bad harvests and reduced agricultural waste. We started working more closely with the farmers supplying our raw material. By analyzing their soil with our own team of chemists, we learned how trace minerals or pesticides echoed through the final chemical profile. Now, some of our best raw material comes from family-run farms using near-organic practices. It’s not cheaper for us, but the difference in downstream analytics—both for us and for our clients—is obvious.

    Another problem with bulk production is product degradation during transport. Vitexin Rhamnoside doesn’t like extremes. The compound begins breaking down past 30°C, especially in moist conditions. Early in our manufacturing, we let some shipments travel in regular containers. Some of it landed clumped and slightly browned—a disaster for product researchers. Today, we always ship in insulated, moisture-tight barrels, with cold packs for summer deliveries, and never by a carrier who leaves it uncared for in a dock warehouse over the weekend. Those lessons came at a price, but they protect our clients’ investments.

    Why Vitexin Rhamnoside Matters for Research and Industry

    Demand for plant flavones surges as researchers search for safer bioactive ingredients and more sustainable processes. It’s not just about following trends—our own collaborations with academic labs and biotech startups show that Vitexin Rhamnoside opens options that synthetic analogues struggle to match. The glycoside structure confers solubility and stability advantages over aglycones. In cytology work, our customers often report cleaner dose-response curves when using this standard. This helps streamline manuscript submissions and speeds up regulatory review for new functional ingredients.

    We have noticed that, compared to apigenin or vitexin alone, rhamnosylation changes both pharmacokinetics and cell uptake profiles. Researchers regularly ask for side-by-side samples, and the contrasts help them pinpoint functional differences. Pure plant extracts with undetermined content fail to deliver the same certainty—quantitative analysis gets noisy, and reproducibility suffers. Our teams have worked with OEM partners in both Europe and Japan, accepting their critical approach to documentation, which has sharpened our own traceability standards.

    Not every research group needs kilo quantities, and some don’t even require high-purity grades. We offer small sizes for method development, and our technical team can discuss what grade actually fits an application. By sharing analytical procedures and retention-data sheets, we help ensure each group gets only what supports their work, never more or less.

    We learned that product authenticity means more than a test report. Too many clients showed us “Vitexin Rhamnoside” samples that failed identity checks, sourced from generic bulk brokers. HPLC overlays told the truth—missing peaks, or adulterants tucked in to bring up assay numbers. This problem taught us to brand-mark our inner liners and supplement shipments with NMR and MS fingerprints. It’s an added step, but the trust we’ve built makes it worth our effort.

    Comparing Vitexin Rhamnoside to Similar Compounds

    Vitexin Rhamnoside forms a trio with vitexin and isovitexin, but its rhamnose sugar moiety tailors its properties. Vitexin, as an aglycone, offers a well-documented antioxidant profile but suffers from poor aqueous solubility. Isovitexin improves on this point but still trails behind in bioavailability metrics. Adding rhamnose boosts water solubility and stability under mild acid or base.

    Our R&D partners ran biological assays that showed uptake levels for Vitexin Rhamnoside often outperform its relatives in certain cellular models. Enzyme inhibition studies also show slightly better activity, depending on the pathway. Pharmaceutical groups use these differences to decide which form best fits their pipeline targets. We maintain a broad panel of standards in-house, so when new findings arise, we can replicate results quickly for verification.

    Other vendors might offer “mixed” plant extract, but we hold ourselves to a pure compound standard. Our Vitexin Rhamnoside is not just one more name in a phytochemical library; it’s a thoroughly characterized molecule built for reliable performance and traceable from the initial leaf to the final vial.

    Some developmental labs tried substituting lower grades in food or supplement products to save on cost. Our technical staff received feedback weeks later about color instability or failing purity tests during external audits. Such experiments with margin-shaving rarely lead to long-term savings. We’ve seen how even small batch-to-batch variation brings unexpected regulatory headaches. For us, it’s better to invest in purity and documentation upfront than navigate damage control later.

    Beyond the Standards: Sustainability and Worker Safety in Production

    Running a chemical manufacturing facility means more than batch optimization and order filling. It also means being stewards of environmental responsibility and workplace health. Every kilo of Vitexin Rhamnoside starts with agricultural supply lines, and we know the people cultivating, harvesting, and shipping the plant sources. We forged agreements to avoid hazardous pesticides banned internationally and phase out solvents with problematic disposal profiles.

    Handling plant extracts and solvents can turn risky, especially with older ventilation systems. Years ago, some workers developed rashes from trace plant allergens or solvent vapors. We overhauled our extraction rooms, improved air exchange, and added redundant personal protective gear for all hands in the process areas. Health monitoring and training cuts into budgets, but these changes protected the most critical asset—our people. Worker safety isn’t a slogan where we produce; it’s policy, logged, and enforced.

    Sustainability conversations aren’t marketing fluff here. We have engaged in multi-year assessments to lower energy input per kilo and reduce organic solvent use. Our decision to reclaim and purify ethanol on-site cuts both cost and environmental load. Used material from the extraction phase is composted and returned to fields, closing the loop and limiting landfill waste. We have seen how local communities assess manufacturing plants, and those who neglect stewardship quickly lose both sourcing and staff.

    Addressing Common Challenges and Moving Forward

    Every product faces challenges in production, distribution, and market trust. For Vitexin Rhamnoside, those challenges show up as raw material variability, the need for detailed identity documentation, and increasing regulation of plant extracts in every market segment. Bringing these challenges to light has shaped our internal processes.

    Unknowns in harvest quality remain the single largest risk. By building relationships with growers and teaching them how mixture profiles affect downstream chemistry, we minimize this uncertainty. Testing raw plant batches on-site, before shipment, saves us—and our customers—from costly surprises after arrival.

    Regulatory complexity increases every year, especially in pharmaceuticals and food supplements. Every new audit brings new rules on agricultural residue, processing aids, and documentation. We staff regulators on retainer and send our people for updated compliance training. We learned not to underestimate how a missing paper or failed analysis can block entire shipments at customs or ruin client submissions. The investment in compliance streamlines our global sales and keeps our product in the hands of those who rely on quality at every step.

    Consumer scrutiny is rising as well. Brands now ask for traceability all the way back to the farm field. By maintaining records and inviting outside audits, we support their transparency claims with facts instead of slogans. Genuine traceability is tough work, but we see it retaining loyal partners.

    Finally, as new demand spikes and supply lines strain, the chemical industry faces the choice between volume-driven expansion and responsible growth. This moment calls for openness—admitting past failures, sharing best practices, and maintaining dialogue with every link in the chain. We encourage partners and clients to see us not only as a supplier, but as a resource for technical questions, regulatory guidance, and real-world manufacturing insights gained from daily practice.

    Looking to the Future with Vitexin Rhamnoside

    The significance of Vitexin Rhamnoside grows as more research comes to light and as regulatory frameworks mature. We stay committed to chemical quality, operational transparency, and long-term relationships—attributes not always available from catalog-driven outlets or quick-trade suppliers. Our process is built on years of hands-on manufacturing, tested by regulatory shocks, raw material shortages, and feedback from meticulous research teams around the world.

    Researchers, formulators, and commercial developers all look for dependability and straight answers. We provide both, backed by extensive track records in plant-based compound manufacturing. The lessons learned manufacturing and supporting Vitexin Rhamnoside echo through every batch, every audit, and every technical consultation we host. Anyone interested in true quality, traceable supply, and a partner who understands the pressures of modern research and product launch cycles can count on us to deliver what matters most.