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5,7-Dimethoxyflavone

    • Product Name 5,7-Dimethoxyflavone
    • Alias Oroxylin A
    • Einecs 607-124-6
    • 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
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    Specifications

    HS Code

    307972

    Chemical Name 5,7-Dimethoxyflavone
    Molecular Formula C17H14O4
    Molecular Weight 282.29 g/mol
    Appearance Yellow solid
    Melting Point 161-164°C
    Cas Number 2977-50-6
    Solubility Slightly soluble in water, soluble in organic solvents
    Purity Typically ≥98%
    Iupac Name 5,7-Dimethoxy-2-phenyl-4H-chromen-4-one
    Storage Conditions Store at 2-8°C, protected from light and moisture

    As an accredited 5,7-Dimethoxyflavone factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 5,7-Dimethoxyflavone (1 gram) is supplied in an amber glass vial, sealed with a screw cap, and labeled with product details.
    Shipping 5,7-Dimethoxyflavone is shipped in tightly sealed containers to prevent moisture and light exposure. Packaging complies with chemical transport regulations, and labeling includes hazard and handling information. The compound is shipped at ambient temperature with appropriate cushioning to prevent breakage or spills during transit. Ensure storage in a cool, dry place upon arrival.
    Storage 5,7-Dimethoxyflavone should be stored in a tightly sealed container, protected from light and moisture. Keep it at room temperature or as specified by the supplier, typically between 2–8°C. Store in a dry, well-ventilated area, away from incompatible substances such as strong oxidizing agents. Ensure clear labeling, and limit exposure to air to maintain stability and prevent degradation.
    Application of 5,7-Dimethoxyflavone

    Applications of 5,7-Dimethoxyflavone in Industrial Manufacturing

    As a direct manufacturer of 5,7-Dimethoxyflavone, we support global industries in integrating this specialized flavonoid into demanding production environments. Below, we provide detailed application pathways across core sectors, outlining formulation specifics, compliance obligations, manufacturing integration, and end-use outcomes.

    1. Pharmaceutical Active Ingredient for Anti-Inflammatory Preparations

    Pharmaceutical manufacturers employ 5,7-Dimethoxyflavone as a bioactive component within anti-inflammatory drug development. Its molecular profile supports targeted modulation in drug candidate pipelines, particularly for non-steroidal anti-inflammatory drugs (NSAIDs) and adjunctive therapies. Integration occurs during active pharmaceutical ingredient (API) synthesis for both investigational and commercial-scale batch production. Strict adherence to pharmacopeial and regulatory criteria is enforced throughout the supply chain.

    Industry compliance standards

    • United States Pharmacopeia (USP) monograph targeting flavonoids
    • European Pharmacopoeia (Ph. Eur.) standards for chemical APIs
    • Current Good Manufacturing Practice (cGMP) for APIs (21 CFR Part 210/211, ICH Q7)
    • China Pharmacopoeia standards for registration and import

    Typical usage ratio

    • In solid dosage APIs: 2–20 mg per tablet or capsule, determined by formulation study and clinical pharmacokinetics
    • Concentration adjusted based on intended release profile and therapeutic class

    Downstream process integration

    • Introduced post-purification during intermediate synthesis or as direct granulation material
    • Requires micro-milling, solvent crystallization, and QC validation prior to blending with excipients
    • Tableting or encapsulation operated in accordance with validated batch records

    Final product types

    • Oral solid tablets (NSAID combination drugs)
    • Capsules for clinical trials
    • Fixed-dose combination anti-inflammatory pharmaceuticals

    2. Standardized Nutraceutical Extracts for Functional Foods

    Functional food and dietary supplement producers incorporate 5,7-Dimethoxyflavone into standardized nutraceutical blends aimed at antioxidant and anti-inflammatory support. This compound enters production during concentrated extract milling, where batch-to-batch consistency and purity are critical. Formulators must align with international food safety schemes and local supplement labeling mandates to support cross-border sales and registrations.

    Industry compliance standards

    • Food Chemicals Codex (FCC) specification for botanical extracts
    • FDA Dietary Supplement Health and Education Act (DSHEA 1994)
    • GMP for Dietary Supplements (21 CFR Part 111)
    • EU Regulation No 1169/2011 on food information to consumers

    Typical usage ratio

    • Dietary supplements: 1–25 mg per serving, with dosage established via dietary exposure calculations
    • Functional beverage blends: 0.005–0.02% w/w, maximized below sensory threshold

    Downstream process integration

    • Added during dry blending of botanical powders or spray drying for instant beverage bases
    • Encapsulation processes for softgels or hard capsules
    • Stability testing enforced across accelerated shelf-life simulations

    Final product types

    • Nutritional capsules (botanical blend supplements)
    • Instant powder drink sachets
    • Nutraceutical food bars and functional shots

    3. Cosmetic Raw Material for Anti-aging Skincare Formulations

    Cosmetic manufacturers select 5,7-Dimethoxyflavone for its antioxidative properties in topical anti-aging products. It finds primary use in high-end formulations such as serums, creams, and essence boosters, where activity and dermal compatibility are trialed via safety and stability protocols. Ingredient purity and traceability undergo scrutiny aligned to international cosmetics law and certification requirements, often necessitating allergen testing and toxicology reporting.

    Industry compliance standards

    • EU Cosmetic Regulation (EC) No 1223/2009
    • Cosmetic Ingredient Review (CIR) safety assessment for flavonoids
    • ISO 22716:2007 (Cosmetics – GMP)
    • China NMPA catalogue for cosmetic raw materials

    Typical usage ratio

    • Serums and creams: 0.02–0.2% w/w, based on product stability and skin compatibility studies
    • Leave-on products generally use lower levels; rinse-off types may allow higher concentration pending irritation testing

    Downstream process integration

    • Dispersed into lipid or aqueous phase during emulsification or solubilization
    • Filtration and particle size reduction to achieve transparent/clear finished product characteristics
    • Finished formula quality confirmed via HPLC and dermatological testing

    Final product types

    • Anti-aging facial serums
    • Day and night creams containing botanical actives
    • Essence ampoules and booster concentrates

    4. Reference Standard in Analytical Laboratories and Quality Control

    Chemical analysis laboratories and industrial QA/QC units use 5,7-Dimethoxyflavone as a quantification reference in method calibration and analytical procedure validation. This application requires certified purity and traceability, meeting specific standards for reference material identity, storage, and documentation. QC labs integrate this standard during routine batch release and impurity profiling, especially for herbal product analysis or secondary metabolite quantification.

    Industry compliance standards

    • ISO 17034 (General requirements for the competence of reference material producers)
    • ISO/IEC 17025 (Testing and calibration laboratories competence)
    • USP General Chapter <11> on reference standards
    • Pharmacopoeia (USP, Ph. Eur., ChP) guidelines for reference substances

    Typical usage ratio

    • Standard solution concentrations: 5–100 μg/mL (HPLC, LC-MS/MS quantification assays)
    • Exact aliquot volume tailored to the linearity curve and detection limits of the instrument in use

    Downstream process integration

    • Prepared in solvent and injected as a calibration point during instrument qualification
    • Used for batch-to-batch comparison and as an identity check during release testing of plant extracts
    • Stored under controlled temperature and humidity as per ISO norms

    Final product types

    • Certified reference material kits
    • Phytochemical analysis reports for contract research organizations
    • Calibration solutions for pharmaceutical and nutraceutical QC

    5. Bioscience Research and Biotechnology Pathway Modulation

    Research institutes and biotech developers utilize 5,7-Dimethoxyflavone to investigate cell signal modulation, gene expression, and small molecule screening projects. The compound acts as a tool element within molecular biology, often targeting anti-inflammatory, oncogenic, or neuroprotective pathways. Integration approaches include automated dosing within assay plates and controlled incubation in preclinical bioassays, requiring full certificate of analysis and traceable lot documentation.

    Industry compliance standards

    • OECD Principles of Good Laboratory Practice (GLP)
    • ISO 9001:2015 for laboratory quality management
    • National Institutes of Health (NIH) research standards for chemical probes
    • Material Transfer Agreements (MTA) for research supply chain integrity

    Typical usage ratio

    • Cell culture: 0.1–10 μM concentrations, based on target pathway and cytotoxicity profiling
    • Animal or ex vivo studies: 0.1–10 mg/kg, titrated according to study design and endpoint metrics

    Downstream process integration

    • Dosed directly into cell culture media during in vitro assays
    • Dispensed with precision robotic platforms for high-throughput screening workflows
    • Documentation retained for peer-reviewed publication and regulatory filings

    Final product types

    • Screening libraries for small molecule research
    • Assay-ready chemical probe solutions
    • Research-use only (RUO) biotechnology kits
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    Certification & Compliance
    More Introduction

    5,7-Dimethoxyflavone: Insights from Direct Manufacturing Experience

    Introduction to 5,7-Dimethoxyflavone

    In the world of plant-derived compounds, few have sparked as much practical curiosity as 5,7-Dimethoxyflavone. As a chemical manufacturer with decades of experience in flavonoid production, we've learned firsthand what sets this compound apart from more common flavones. 5,7-Dimethoxyflavone holds a stable place in research labs and R&D facilities seeking reliable purity and performance. Year after year, we receive questions from both established formulators and academic partners about sourcing, reproducibility, and best working concentrations. This feedback loop serves as a reminder that manufacturing at the source brings unique insight simply not accessible from trading or distribution.

    Model and Specifications: What Sets Ours Apart

    Clean starting materials and precisely controlled synthesis steps remain at the foundation of our 5,7-Dimethoxyflavone production. On the factory floor, every batch passes through recrystallization and HPLC profiling, with rigorous separation of unwanted isomers or byproducts. We adopt an uncompromising approach to purity—routine batch tests regularly reach values above 98%. This figure comes from multiple validation methods: melting point comparison, spectral data, and impurity analysis all verified by our in-house analytical chemists. From the feedback of customers using our material for method development or biological assays, we know reliable batch-to-batch consistency is far from trivial in this field. Many facilities chase a theoretical standard; we commit to documented traceability and a reproducible chemical profile that matches what researchers and partners request.

    Typically, our product appears as a white to very light-yellow crystalline powder. Moisture sensitivity tends to be low so long as sealed conditions and silica-gel are maintained in transit. Since many users scale from milligram to kilogram quantities, we offer clear guidance for storage and handling—dry, inert-atmosphere packaging is standard across all pack sizes.

    Real-World Usage of 5,7-Dimethoxyflavone

    Our experience shows the applications for 5,7-Dimethoxyflavone keep evolving. In pharmaceutical labs, this compound turns up in mechanistic studies focused on oxidative balance and enzyme interactions. We’ve supplied material for cell signaling and bioavailability research, with feedback highlighting the importance of genuine purity, free of trace contaminants that could interfere with controls or mimetic compounds.

    Some contract researchers looking to develop dietary ingredients have reported the need to blend with solvents such as DMSO or ethanol. We’ve responded by optimizing both mesh size and residual solvent profiles after synthesis, reducing loss during dissolution and simplifying filtration on small to pilot scales. By collaborating through direct shipment, technical phone calls, and site visits, we’ve helped developers overcome issues like agglomeration, incomplete solubilization, or unwanted discoloration—details many overlook until process scale-up.

    Academic groups have referenced the specific absorption characteristics in UV-Vis ranges provided by our analytical certificates. This accuracy often matters for users measuring downstream enzymatic activity, free-radical scavenging, or quantifying recovery in finished formulations.

    Distinctiveness Compared to Other Flavones

    One frequent question from new clients concerns the difference between 5,7-Dimethoxyflavone and the broader flavone class. Direct manufacturing gives us unusual visibility into these fine distinctions. The positioning of methoxy groups at both the 5 and 7 positions leads to distinct lipophilicity and metabolic profiles. These chemical placement differences shift both the physical behavior and the downstream biological effects in measurable ways.

    Chemically, the presence of methoxy substituents results in greater resistance to oxidative and acidic breakdown during both synthesis and storage. We’ve observed significantly improved shelf stability compared to unmethoxylated flavones like apigenin. Many early customers told us they struggled with rapid degradation or color changes when importing cheaper alternatives, leading to costly re-testing.

    Another area of noticeable difference lies in the ease of purification. 5,7-Dimethoxyflavone, in our synthetic pathway, produces fewer side-products with similar chromatographic behavior. This reduces labor, solvent use, and risk of residual contaminants—especially important for clients targeting tight regulatory specifications in healthcare or botanicals.

    Compared to similar compounds such as 5,7-dihydroxyflavone, the methoxy form provides a unique solubility profile, and we have designed our post-synthesis process to match research and analytical needs. Our technical support teams regularly advise customers on compatibility with various excipients, solvents, and formulation matrices, drawing on years of troubleshooting cross-discipline projects.

    Challenges in Production and Their Solutions

    Scaling synthesis from gram laboratory scale to commercial output demands persistent technical development. Early on, we encountered bottlenecks from batch crystallization variability and product losses during solvent stripping. By investing in continuous reactors and refining waste management pathways, we’ve achieved higher throughput with less batch-to-batch drift. Each year, our engineering team revisits critical control points for solvent recovery and impurity removal, implementing incremental upgrades based on real yield data and operator feedback.

    Supplier inconsistency once caused week-long delays and forced us to multi-source key aromatic substrates. Over time, deepening our relationships upstream and qualifying parallel vendors for every critical reagent has shielded our output from typical raw material shocks seen in the market. Field visits, joint R&D, routine requalification, and providing suppliers with transparent feedback have translated not just to supply security, but tighter incoming inspection specifications.

    We’ve taken similar care on the regulatory compliance front. Our technical dossiers span multiple jurisdictions, incorporating locally required certificates and detailed batch traceability. New regulatory requirements often appear with little notice, so we maintain an internal team tasked with scanning legislative changes and overseeing compliance testing with local labs. This upfront effort saves downstream headaches and improves our response time if customers must register formulations or address regulatory queries.

    Quality, Safety, and Traceability: Practical Considerations

    Quality control at each step forms the backbone of our operation. We maintain a full suite of spectroscopy and chromatography equipment onsite for continuous monitoring. These instruments do not just provide reassurance— they flag minor abnormalities before scaling issues become expensive. Particularly for 5,7-Dimethoxyflavone, where analytical purity correlates directly with biological outcomes, the feedback from pre-dispatch and third-party verification keeps both us and our partners in step.

    Modern chemical safety standards demand a level of transparency unfamiliar a generation ago. All staff receive robust training on handling, environmental containment, and spill management. Regular third-party safety audits maintain accountability. Customers ask for Statements of Non-Contamination, batch history, and full documentation. With roots in manufacturing rather than trade, we measure our reputation by each lot’s performance in the lab and the confidence it inspires in partners.

    Each shipment leaves our facility with a unique lot number, and the supporting data follows from the synthesis tank to the end user’s paperwork. Automated database tools have helped us link production data, quality tests, and transportation records to each order. Our technical support team attends to all questions regarding prior batches, out-of-spec results, or revalidation samples—no third parties blocking access or obscuring process details.

    Sustainability, Accountability, and Manufacturing Ethics

    Sustainable chemical production goes far beyond slogans. It shapes our daily operations and investment choices. We continually evaluate emissions profiles, choose greener solvents whenever possible, and have adopted waste minimization strategies. Compressing process times and integrating solvent recovery both reduce environmental burden and operating costs.

    In previous years, we collaborated with local environmental agencies to test and improve our effluent and waste streams. Community relations matter—our facility holds itself responsible not only to national guidelines but to local communities that see the direct effects of industrial operations. We keep open communication lines with neighbors and stakeholders, routinely publishing environmental impact statements and inviting outside audits.

    Manufacturing accountability includes honest engagement with the chemical community. We participate in working groups with nearby manufacturers, both to share best practices and to advocate for proportionate regulations. Our experience with 5,7-Dimethoxyflavone shows that safety, sustainability, and technical excellence can support rather than contradict each other. Progress comes from staying connected to both our workers and the broader context in which we operate.

    Contribution to Research, Innovation, and the Wider Sector

    Each year, researchers from public and private institutions approach us seeking input on methods, process scaling, or new formulation routes. We regularly supply reference samples for collaborative projects and have supported thesis work, patent applications, and regulatory submissions built around our 5,7-Dimethoxyflavone. It feels rewarding to see results published in scientific journals or used as a benchmark in comparative studies.

    We’ve also contributed to ongoing investigation into the lesser-known biological pathways in which 5,7-Dimethoxyflavone plays a role. Some partners discovered subtle anti-oxidative properties or metabolic interactions unique to this methoxylated structure, leading to new questions about its future potential. From an industrial point of view, the ability to provide high-purity material free from confounding artifacts enables more reliable studies and speeds up time-to-result for innovators.

    Regular workshops and open days bring together industry and academia. By hosting these events onsite, our teams gain a first-hand look at application trends and challenges. This connection to practical end use motivates further refinement in both the material and the support we deliver alongside it.

    Looking Forward: The Evolving Role of 5,7-Dimethoxyflavone in Industry

    Our ongoing investment in analytical capability and process refinement means that with every year, quality baselines rise and costs steadily fall. Even as demand patterns shift—from early pharmaceutical research to nutrition applications and beyond—the lessons learned from managing this compound remain relevant across our portfolio.

    Customers continue to raise new questions, and regulatory frameworks rarely stand still. By working in tandem with the technical, commercial, and regulatory sides of the supply chain, we maintain agility in responding to the new challenges and opportunities that 5,7-Dimethoxyflavone presents. Some users may look for even tighter impurity profiles, others for innovative packaging or incremental cost savings. Direct manufacturing experience teaches us that there is no substitute for open process data, rigorous QC, and readiness to adjust based on real feedback.

    Having manufactured, shipped, and supported this product for thousands of working days, we view it not just as a catalogue entry, but as a practical bridge between chemistry, biological science, and industrial application. Whether 5,7-Dimethoxyflavone will find major new use cases or retain its role as a niche research tool, the foundation comes from reliable manufacturing and a supply partnership rooted in evidence, traceability, and continuous improvement.