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Brassicasterol

    • Product Name Brassicasterol
    • Alias 24-methylcholest-5-en-3β-ol
    • Einecs 206-682-2
    • 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

    553329

    name Brassicasterol
    chemical_formula C28H46O
    molecular_weight 398.67 g/mol
    CAS_number 474-67-9
    melting_point 164-166 °C
    appearance White crystalline powder
    solubility Insoluble in water, soluble in organic solvents
    source Marine algae, some higher plants
    IUPAC_name (22E)-Ergosta-5,22-dien-3β-ol
    PubChem_CID 5281328
    synonyms Ergosta-5,22-dien-3β-ol, 24-Methylcholest-5,22-dien-3β-ol
    odor Odorless
    stability Stable under normal conditions
    storage_conditions Store in a cool, dry place

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

    Packing & Storage
    Packing Brassicasterol is packaged in a 100 mg amber glass vial, securely sealed with a screw cap and labeled with product information.
    Shipping Brassicasterol is shipped in secure, airtight containers to prevent contamination and degradation. The chemical is typically packaged according to safety regulations, including appropriate hazard labeling. It is transported under controlled temperature and protected from direct sunlight and moisture. All shipping complies with local and international chemical transport guidelines to ensure safe delivery.
    Storage Brassicasterol should be stored in a tightly sealed container, protected from light, moisture, and air. It is best kept at a cool temperature, ideally below 4°C (refrigerator conditions). Avoid exposure to direct sunlight and oxidizing agents. Ensure storage in a dry, well-ventilated area, and follow all relevant safety guidelines to preserve its stability and prevent degradation.
    Application of Brassicasterol

    Applications of Brassicasterol in Industrial Manufacturing

    As an experienced manufacturer, we recognize Brassicasterol as a high-purity plant-derived sterol with unique functional roles in several industrial sectors. Below, we detail its major downstream applications, highlighting precise compliance frameworks, industrial usage levels, key process points, and specific end-product categories for each sector.

    1. Pharmaceutical Steroid Intermediates

    Brassicasterol supports pharmaceutical companies as a key intermediate in synthesizing bioactive steroids, especially in the semi-synthesis of corticosteroids and hormone analogs. Its plant origin and defined purity profile facilitate process validation and regulatory acceptance. Midstream processors use it for partial hydrogenation or side-chain modification in multi-step steroid production chains, where consistent performance directly impacts the yield and quality of active pharmaceutical ingredients.

    Industry compliance standards

    • USP (United States Pharmacopeia) specifications for steroid hormone APIs
    • ICH Q7 GMP guidelines for active pharmaceutical ingredient manufacturing
    • European Pharmacopoeia monographs for plant sterol intermediates
    • Chinese Pharmacopoeia standards for pharmaceutical excipients and intermediates

    Typical usage ratio

    • 5–15% by weight in total sterol extract; adjusted based on downstream reaction yield and desired purity of specific steroid products

    Downstream process integration

    • Introduced during the initial isolation and purification phase, followed by chemical transformation (oxidation, reduction, or side-chain cleavage) before target steroid core assembly

    Final product types

    • Corticosteroid intermediates (e.g., prednisolone base)
    • Progestin intermediates
    • Androgen and estrogen precursor compounds
    • Finished pharmaceutical APIs after further synthesis and purification

    2. Cholesterol-Lowering Food Additives

    In the functional foods industry, Brassicasterol provides a clinically validated approach to cholesterol management as a plant sterol additive. Food manufacturers incorporate it into spreads, formulated dairy products, and nutritional supplement tablets. Careful dosing enables products to meet both technical requirements for cholesterol reduction and international food additive regulations governing labeling and health claims.

    Industry compliance standards

    • EU Regulation (EC) No 1925/2006 - Addition of Plant Sterols to Foods
    • FDA GRAS notice for phytosterols in food applications
    • CODEX STAN 107-1981 – General Standard for the Labeling of Prepackaged Foods
    • China National Food Safety Standard (GB 2760) for permitted food additives

    Typical usage ratio

    • 0.3–2.0% by weight in food matrices; based on product type and regulatory intake limits for daily sterol consumption

    Downstream process integration

    • Introduced during late-stage blending of edible oils or fat phases; or homogenized into powder premixes for direct compression in functional food tablets

    Final product types

    • Cholesterol-lowering margarine and spreads
    • Functional yogurt drinks
    • Food supplement tablets or capsules
    • Enriched dairy analog beverages

    3. Cosmetic Emollient and Stabilizer Applications

    Personal care manufacturers utilize Brassicasterol as a natural-origin emollient and stabilizer in skin creams, lotions, and sunscreen formulas. Its compatibility with a variety of lipid phases helps stabilize emulsions, enhance skin-feel, and contribute to barrier function. Control over both grade and concentration is critical for meeting cosmetic purity and safety standards, especially for sensitive skin or hypoallergenic products.

    Industry compliance standards

    • EU Regulation (EC) No 1223/2009 for cosmetic products
    • ISO 22716 Cosmetics — Good Manufacturing Practices
    • China Safety and Technical Standards for Cosmetics (STSC)
    • IFRA (International Fragrance Association) guidelines for cosmetic ingredient safety

    Typical usage ratio

    • 0.1–5% by weight in emulsions and ointments; tailored for viscosity, skin absorption, and product sensory target

    Downstream process integration

    • Melted with the oil phase during initial compounding and before emulsification; also dispersed in pre-mixes for anhydrous formulations

    Final product types

    • Moisturizing creams and lotions
    • Sun protection emulsions
    • Hypoallergenic ointments
    • Multi-functional balm sticks

    4. Veterinary Formulations (Feed Additives)

    Animal nutrition brands include Brassicasterol in feed premixes and oral compounds to support healthy lipid metabolism in livestock and poultry. Differentiated by high purity and batch-to-batch consistency, our material integrates cleanly into industrial-size blending systems to produce standardized feeds, where regulatory authorities closely monitor both ingredient origin and sterol content limits.

    Industry compliance standards

    • Directive 2002/32/EC (EU undesired substances in animal feed)
    • AAFCO Official Publication for feed ingredient definitions
    • China Feed Additive Quality Standard (GB/T 1886.231)
    • ISO 22000 Food Safety Management System for animal feed manufacturing

    Typical usage ratio

    • 0.05–0.5% by feed weight; varies with species, feed type, and regulatory maximum for plant sterols in animal diets

    Downstream process integration

    • Directly blended into vitamin-mineral premixes or mixed during secondary compounding before pelleting or extruding feed

    Final product types

    • Complete formula feeds for poultry
    • Speciality supplement blocks for ruminants
    • Growth and health-promoting feed for swine
    • Pet nutrition kibbles with enhanced lipid profiles

    5. Analytical and Diagnostic Reagents

    Diagnostic reagent manufacturers rely on Brassicasterol as a reference compound or matrix component in biochemical test kits and laboratory standard reserves. Its defined sterol structure allows assay developers to calibrate sterol quantification methods, validate analytical equipment performance, and create multi-sterol panels for clinical and research use in lipid metabolism testing.

    Industry compliance standards

    • ISO 13485 Quality management systems for medical devices and reagents
    • WHO guidelines on in vitro diagnostic product quality
    • CLSI (Clinical and Laboratory Standards Institute) reference material standards

    Typical usage ratio

    • 0.01–1.0% by assay volume; adjusted for calibration or detection limits in the analytical method

    Downstream process integration

    • Dissolved in organic solvent or immobilized onto solid matrices during reagent kit formulation; integrated at the calibration, control, or test standard preparation stage

    Final product types

    • Sterol quantification assay kits
    • Clinical diagnostic lipid panels
    • Reference powders for laboratory validation
    • Analytical calibration standards
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    Certification & Compliance
    More Introduction

    Brassicasterol: A Closer Look at Manufacturing, Applications, and Product Distinction

    A Manufacturer's Perspective on Brassicasterol

    Brassicasterol stands out among phytosterols for its unique chemical structure and traceability, which originates in natural sources including marine algae and select plants. Our facility has worked directly with raw botanical inputs that yield this compound in reliable concentrations. Unlike synthetic imitations or mixed sterol blends from secondary suppliers, our brassicasterol comes through extraction processes that preserve its purity and natural ratio. Our plant leverages decades of solid-phase chromatography experience, ensuring each batch meets customer requirements across pharmaceutical, biochemical, and food science research sectors.

    Specifications that Matter in Brassicasterol Production

    The brassicasterol we produce is offered in crystalline powder form, with a standard minimum assay exceeding 95%. This requirement originates from routine independent batch analysis with HPLC and GC-MS. Impurities, including other phytosterols like campesterol and stigmasterol, stay well below the tolerances recognized for research or industrial use. Our in-house teams handle micronization as needed for specialized formulations, ensuring the product remains stable during transit and storage. The melting point consistently tests between 147 and 154°C, a sign of uniform molecular structure. Customers who specify solvent residue limits or particle size distribution can trace those parameters back to our production logs—a level of transparency not always matched by importers or volume traders.

    Application-Driven Manufacturing Practices

    End uses for brassicasterol range from cholesterol metabolism modeling in university laboratories to ingredient development in advanced food processing and cosmetics. Our pharmaceutical partners reference recent studies confirming brassicasterol's role in metabolic pathway analysis—especially in cholesterol-lowering research and biosynthetic enzyme assays. Food technologists incorporate it to understand and monitor sterol profiles in edible oils, margarine, and alternative dairy products. Cosmetic chemists utilize its mild emollient properties for specialty product lines. Since the functionality of each application depends on the product batch's sterol fingerprint, we run annual proficiency testing via third-party labs to reinforce the datasets shared with research partners.

    Brassicasterol Versus Other Phytosterols

    The composition of brassicasterol creates advantages over widely available sitosterol and campesterol. Its additional double bond and methylation pattern offer milder taste and improved emulsification in edible fat systems. We have received reports from collaborating food companies confirming that brassicasterol-enriched spreads maintain a neutral flavor and a consistent texture profile, compared with blended sitosterol preparations that sometimes turn grainy at low temperatures. These differences emerge from careful control of process conditions—not just raw material selection. Nutritionists cite that plant sterols show different absorption rates and metabolic effects, so tracking the sterol type in their product suites continues to shape research and labeling debates. Our technical department shares stability studies with partners eager to tailor sterol content to meet emerging nutritional guidelines.

    Pursuing Transparency and Traceability in Sterol Manufacturing

    We believe that the chain of custody for botanical extracts deserves as much attention as the analysis of the finished compounds. Years ago, many sterol ingredients on the market suffered from incomplete source documentation or noncompliance with quality standards. By investing in digital inventory tracking, raw material verification in the field, and regular supplier audits, our plant draws a clear line from harvest to packaged batch. We partner with growers committed to sustainable practices, review every shipment for naturally occurring co-contaminants, and log extraction solvents for residue reporting. Laboratories and purchasing managers working with pharmaceutical-grade sterols demand this level of detail now that regulatory scrutiny has picked up. The sterol market once ran on trust alone, but incoming customers increasingly expect chain-of-custody details to verify the integrity of experimental results.

    Solving Sector-Specific Challenges with Brassicasterol

    Our most consistent feedback about brassicasterol comes from food engineers and research scientists juggling ingredient standardization and regulatory hurdles. Specialized research projects rely on accurate input to draw meaningful conclusions, particularly in clinical cholesterol absorption studies or plant-derived therapeutic design. Years ago, researchers sometimes struggled to find batches with sterol profiles that matched their published protocols. By calibrating our extraction and purification lines to achieve reproducibility above 95%, our batches enable direct comparison across projects and repeatable results. On the industrial side, manufacturers value the shelf stability and consistent solubility of our powder, which plays a vital role in batch mixing for nutraceutical capsules and topical creams. Technical support teams work directly with R&D partners during ingredient qualification trials, gathering feedback and adapting to precise needs without unnecessary delays.

    Monitoring Global Standards and Regulatory Expectations

    Active participation in international working groups helps us keep brassicasterol quality ahead of tightening regulatory requirements. Emerging blend limits for residual solvents, pesticide markers, and heavy metals push our process design and batch testing forward every year. We also align with pharmacopeia updates, including recent European Pharmacopoeia guidelines—sometimes triggering procedural reviews on in-process controls and retest intervals. Export regulations for sterol-containing products have become stricter, especially in regions like North America, the EU, and some parts of Asia. We submit documentation in advance and regularly revalidate analytical methods, preventing uncertified cargo holds or customs delays. This approach addresses not only compliance but also builds credibility with formula developers who count on batch-to-batch reproducibility and timely delivery.

    Market Evolution and the Role of Data Transparency

    Interest in minor sterols such as brassicasterol continues to grow as new research uncovers nuanced effects on health biomarkers and product texture. Our customer interactions show that ‘minor’ no longer means niche: consumers and scientists alike look for specific sterol types in ingredient lists and medical studies. As market expectations shift, data transparency earns the trust of partners and enables us to adapt quickly. Laboratory requests now often include digitized certificates of analysis and archival chromatograms, both of which remain accessible through our customer portal for quick project reference. Buyers and researchers who used to rely on generalized supplier data now ask for origin certification, batch consistency statistics, and chemical fingerprinting for every purchase order.

    Supply and Demand Factors Impacting Brassicasterol Manufacturing

    Like many naturally derived molecules, supply chain disruptions in one region can ripple through global ingredient markets. Recent fluctuations in algae harvest yields—largely due to shifting oceanic temperatures and unpredictable weather—present one of the main input risks for brassicasterol sourcing. To avoid gaps in delivery or quality dips, we expanded our sourcing network and implemented inventory controls that balance seasonal changes. Bulk buyers benefit from transparent communication about inventory status and lead times, reducing surprises during project rollouts. Continuous market intelligence from our procurement teams allows us to respond rapidly to shortages or quality incidents, keeping our production lines running without relying on stockpiling or speculative purchasing.

    Supporting Sustainability Throughout the Brassicasterol Lifecycle

    Sustainable manufacturing matters. We take steps to minimize ecological impacts by vetting each new plant-based input for responsible agricultural practices and minimizing waste through solvent recycling and by-product management. As some companies still chase price over sustainability, we commit to long-term relationships with growers and cooperatives whose stewardship leaves local environments intact. In the laboratory, circular resource strategies reduce solvent usage per kilogram of product, and ongoing pilot projects explore algae cultivation partnerships that use less land and energy than terrestrial crops. While traceability and purity draw the most attention on certification forms, we see rising demand from companies building sustainability metrics into procurement policies. Chemical manufacturing, often painted as a risk-heavy business, here benefits from its proximity to regenerative agriculture and scientific stewardship.

    Harnessing Process Innovation for Quality and Safety

    Not all brassicasterol meets the same quality threshold. The distinction shows best when examining process innovation over the past five years. High-pressure liquid chromatography systems, onsite labs, and skill development for analytical staff have improved accuracy and speed of sterol identification. We record and trend batch attributes, catching out-of-spec phenomena early. Automated cleaning systems for reactors and separation columns ensure that no cross-contamination occurs with other phytosterol compounds or previous process batches. The era of one-size-fits-all phytosterol blends fades as customers seek highly resolved sterols with specialized performance characteristics. This culture of continuous improvement has its roots in direct experience, learning from feedback and rapidly shifting research priorities.

    Health and Nutrition Developments in Brassicasterol Research

    The search for natural compounds that impact health outcomes drives much of the demand for pure brassicasterol. Universities and clinical research groups explore its effect on cholesterol transport, cellular membrane dynamics, and interaction with other biomolecules. Some of our longest-term partners have contributed to studies published in major journals, underscoring the credibility of well-characterized sterol inputs. Medical researchers report that differences in sterol composition influence assay precision and biological outcomes, especially in sensitive cell culture models. As interest grows around sterols as potential agents for human and veterinary nutrition, we orient our quality management system to respond rapidly to evidence-based shifts in best practices. We see more project proposals that cite our process data and reference previous batch fingerprints, which signals the changing role of chemical manufacturers from inert ingredient providers to scientific collaborators.

    Advantages of Close Partnership With Chemical Manufacturers

    Direct manufacturer relationships facilitate technical dialogue and fast troubleshooting when an unexpected challenge arises. We have solved solubility issues in emulsified beverages, prevented separation failures in nutritional supplements, and improved sterol bioavailability through granular specification review—all through direct collaboration. Unlike traders who deal in undifferentiated bulk lots, primary manufacturers leverage both process data and real-world feedback to adapt material properties to suit the latest formulation science. Formula developers gain unique access to process history and analytical support, making their work smoother in regulatory meetings and research audits. Companies that value innovation increasingly select their ingredient partners based on capacity for open communication rather than commodity price alone.

    Ensuring Longevity in Competitive Ingredient Markets

    Long-term business sustainability depends on anticipating customer shifts before they reach the mainstream. We observe more purchasing directors and heads of R&D gravitating toward functional ingredients with traceable supply and documented safety. Phytosterol blends will always have a role, but brassicasterol sets itself apart by delivering typicity and known performance data that stand up under scrutiny. New entrants in the functional foods and biotechnology sectors often ask for tailored sterol profiles, reaching out to source-specific lots and documentation that begin at the extraction line. Our long-range planning includes investments in digital process control, employee skill development, and supply chain analytics, not just to meet current guidelines but to exceed them before competitors catch up.

    Challenges and Opportunities in Ongoing Brassicasterol Supply

    Raw material volatility, shifting regulatory frameworks, and the growing complexity of recipe development sharpen the need for resilient suppliers. We meet these challenges by building backup networks and participating in research consortia that improve extraction efficiency and product yield. Listening sessions with procurement leaders and researchers produce insights that guide future capital investments—such as in downstream purification steps or analytical instrumentation tailored for sterol subclass identification. Rather than treating quality assurance as a check-box exercise, our laboratory professionals document and validate every stage, engaging with customers in transparent discussion when questions or edge cases arise.

    Technology, Expertise, and Practical Impact: Making Brassicasterol Work

    Process efficiency and product performance go hand in hand in the manufacturing of brassicasterol. Plant engineers monitor each extraction and isolation batch for solvent use, recovery rates, and energy load. Routine in-process checks gather actionable information that adjusts parameters on the fly, maximizing sterol yield and minimizing side product formation. These details often translate into practical benefits for downstream users—such as increased clarity in oil-based finished products or control over sterol profile in functional food projects. We noticed that as product innovation cycles accelerate, technical support becomes an everyday expectation rather than an afterthought.

    Demystifying the Price-Quality Relationship

    Price discussions often overshadow the deeper story of why batch consistency and origin tracking create value for project managers and researchers. Cheap, untraceable sterols linger in the open market, but these options rarely satisfy regulatory, scientific, or brand expectations over the full project lifecycle. Buyer feedback consistently reveals that even small deviations in material quality or purity lead to reformulation work, additional testing, and bottle-necked commercialization timelines. By offering clearly documented specifications, open process audits, and ongoing technical dialogue, manufacturers like us help reduce downstream costs and keep projects moving forward. Customers who transition from commodity traders to primary-source suppliers report fewer batch adjustments and a higher success rate for end-product registration.

    Looking Ahead: Emerging Roles for Brassicasterol

    End-market applications look set to expand as the nutritional supplement, plant-based food, and specialty cosmetic industries reach for more nuanced molecular profiles. Formulators expect near-immediate access to product data and direct engagement with manufacturing partners to adjust inputs and solve new technical problems. To keep pace, we prioritize investment in process informatics, agile batch release, and ongoing laboratory training. The trend toward documenting every step, from field to finished product, only gains speed as transparency demands become the new competitive standard. We see this as an opportunity: reliable batch statistics, digital archives, and sustained personal relationships transform sterol chemistry from a transaction into a source of competitive advantage.

    Building on a Foundation of Experience and Adaptation

    Brassicasterol manufacturing draws on both established techniques and openness to adaptation. Extraction, purification, and analytical characterization only reach their full potential when informed by feedback from users who understand the critical significance of reliable sterols in their work. Our track record, built through open communication, consistent output, and regular participation in scientific and supplier audits, stands as proof that chemical manufacturing evolves through steady, experience-driven refinement. We look forward to ongoing dialogue and collaboration with laboratories, food developers, and technical buyers intent on leveraging the benefits of a consistently pure, traceable brassicasterol product in the next generation of functional ingredients.