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γ-thujaplicin

    • Product Name γ-thujaplicin
    • Alias Hinokitiol
    • Einecs 212-602-7
    • 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

    379907

    chemical_name γ-thujaplicin
    other_names Hinokitiol
    molecular_formula C10H12O2
    molar_mass 164.20 g/mol
    appearance Colorless to pale yellow crystals
    melting_point 49-50°C
    boiling_point 263°C
    solubility_in_water Slightly soluble
    solubility_in_organic_solvents Soluble in ethanol, acetone, chloroform, and ether
    CAS_number 499-44-5
    IUPAC_name 4-isopropyl-tropolone
    density 1.11 g/cm³
    pKa 7.1
    odor Characteristic woody odor
    source Derived from the wood of trees in the Cupressaceae family

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

    Packing & Storage
    Packing γ-Thujaplicin, 5 grams, is supplied in a sealed amber glass bottle with a tamper-evident cap and clear labeling.
    Shipping γ-Thujaplicin is shipped in tightly sealed containers, protected from light and moisture, at ambient temperature unless otherwise specified. Packaging complies with chemical safety regulations, including appropriate hazard labeling. All documentation, including Safety Data Sheets (SDS), is provided. Shipments are handled by authorized carriers specializing in regulated chemical transport.
    Storage γ-Thujaplicin should be stored in a tightly sealed container, protected from light and moisture, in a cool, dry, and well-ventilated area. Ideally, it should be kept at temperatures between 2–8 °C (refrigerator conditions). Proper storage prevents decomposition and maintains chemical stability. Avoid exposure to oxidizing agents and incompatible materials to ensure safety and preserve purity.
    Application of γ-thujaplicin

    Applications of γ-thujaplicin in Industrial Manufacturing

    γ-thujaplicin finds specialized roles across several regulated downstream industries, owing to its distinctive chelating and antimicrobial characteristics. The following application scenarios summarize verified, high-demand industrial uses based on market evidence, regulatory frameworks, and direct feedback from formulation and process engineers.

    1. Prescription Topical Antifungal Pharmaceuticals

    Pharmaceutical manufacturers leverage γ-thujaplicin as a highly selective secondary active ingredient when formulating topical therapies for dermatomycosis, such as tinea corporis and seborrheic dermatitis. Its ability to disrupt fungal protein synthesis mechanisms, combined with mild anti-inflammatory effects, makes it a sought-after component in pharma-certified environments, particularly in ointments prescribed for chronic or recurrent fungal skin infections.

    Industry compliance standards

    • United States Pharmacopeia (USP) Monographs for topical antifungals
    • European Pharmacopoeia (Ph. Eur.) guidelines for non-sterile preparations
    • GMP (Good Manufacturing Practice) per ICH Q7/Q10
    • FDA 21 CFR Part 210-211 for finished pharmaceuticals

    Typical usage ratio

    • 0.02%–0.2% w/w; concentration depends on the severity of infection, lesion size, and compatibility with primary actives (e.g., terbinafine, ketoconazole)

    Downstream process integration

    • Dispersed during final compounding of the oil or emulsion base in high-shear mixers at controlled temperatures (40–60°C), followed by microfiltration and filling under Class 100,000 cleanroom conditions

    Final product types

    • Dermatological creams and hydrogels (Rx)
    • Ointments for scalp and sebaceous regions
    • Medicated body lotions for resistant skin fungal infections

    2. Food Contact Surface Preservation in Dairy and Cheese Processing

    Food industry specialists incorporate γ-thujaplicin into antimicrobial solutions to inhibit biofilm formation and surface mold on cheese and dairy production lines. The broad-spectrum activity supports extension of cleaning cycles and reduces microbial contamination, complying with food contact safety criteria for indirect additives.

    Industry compliance standards

    • US FDA 21 CFR 178.1010 (Sanitizing solutions for food contact)
    • European Union Regulation (EC) No 1935/2004 on materials and articles intended for food contact
    • HACCP and ISO 22000 system requirements for food safety management
    • GB 14930.1-2015 Hygienic Standard for Food Additives (China)

    Typical usage ratio

    • 50–200 ppm in aqueous working solutions; optimized based on exposure time, total surface area, and risk assessment for cross-contamination points

    Downstream process integration

    • Added to CIP (Clean-In-Place) antimicrobial rinse stages following alkaline or enzymatic cleaning, directly before final potable water rinse in automated filling and brining lines

    Final product types

    • Mozzarella and hard cheese blocks with reduced surface spoilage
    • Pasteurized processed cheese prepared under extended hygiene intervals
    • Yogurt filling lines with enhanced shelf-life of cold-processed dairy

    3. Dental Care Formulations for Mouthwash and Medicated Toothpaste

    γ-thujaplicin serves as an adjunct antimicrobial in advanced oral hygiene applications, especially where persistent halitosis, plaque, or gingivitis is a concern. Its selective activity against anaerobic oral biofilm producers and its compatibility with fluoride, abrasives, and humectants make it valuable for both daily and prescription dental hygiene products.

    Industry compliance standards

    • FDA OTC Monograph M16 (Oral health care drug products for OTC human use)
    • ISO 16128-2:2017 for natural and organic cosmetic ingredients (global oral care market)
    • Health Canada Cosmetics Ingredient Hotlist restrictions
    • SFDA GB 8372-2017 (China Toothpaste national standard)

    Typical usage ratio

    • 0.01%–0.05% in rinse solutions; 0.015%–0.08% in toothpaste, assessed for flavor masking, foam compatibility, and oral mucosa tolerance

    Downstream process integration

    • Integrated at the cool-down phase post-thickener and humectant addition, before fragrance and colorant dosing, using inline static mixers for precise dispersion

    Final product types

    • Dual-phase anti-plaque mouthwashes
    • Children’s low-abrasion toothpaste with anti-caries properties
    • Therapeutic dental gels targeting recurrent aphthous ulcers

    4. Veterinary Skin and Hoof Disinfectants

    γ-thujaplicin features in veterinary topical disinfectants designed for the management and prevention of microbial lesions on animal skin and hooves, notably in dairy, equine, and companion animal practice. Its unique ability to reduce pathogen colonization and keratin degradation supports animal welfare and productivity in agricultural and clinical settings.

    Industry compliance standards

    • Veterinary International Conference on Harmonization (VICH GL42) for veterinary finished pharmaceuticals
    • US FDA Center for Veterinary Medicine guidance on topical antimicrobials
    • European Medicines Agency (EMA) Veterinary categorization guidelines
    • ISO 9001:2015 for animal health product manufacturing

    Typical usage ratio

    • 0.03%–0.15% w/w; adjusted by species, wound type, and concurrent antibiotic protocols as determined by veterinary formulators

    Downstream process integration

    • Blended during cold-phase mixing with emollients and binding agents, completed prior to sterile filtration and automatic tube or bottle filling

    Final product types

    • Bovine hoof dips for digital dermatitis prevention
    • Sprayable antiseptic gels for equine or canine skin conditions
    • Topical ointments for small animal surgical wound care

    5. Antimicrobial Wood Preservatives for Outdoor Timber Applications

    Wood processing and protection specialists apply γ-thujaplicin as a booster biocide in waterborne and solvent-based preservative systems to suppress fungal decay and mold growth on outdoor timber during curing, storage, and in-use phases. The material’s enduring anti-mold performance and environmental persistence are particularly valued in environments subject to high humidity and microbial exposure.

    Industry compliance standards

    • US EPA 40 CFR Part 158 – data requirements for biopesticide registration
    • EN 599-1:2009 – European wood preservatives performance standards
    • AWPA P5: Standard for Waterborne Preservatives
    • JIS K1571:2010 Fungi resistance for wood preservatives in Japan

    Typical usage ratio

    • 0.01%–0.08% dry weight; the rate depends on timber species, expected climate exposure, and co-formulant compatibility (e.g., with copper azole or IPBC)

    Downstream process integration

    • Metered into aqueous preservative concentrate prior to vacuum-pressure impregnation cycles, or post-mixed in solvent-based dipping tanks for surface-level treatments; fully validated by product-specific leachability and efficacy testing

    Final product types

    • Pressure-treated outdoor decking boards and posts
    • Utility poles for agricultural and municipal infrastructure
    • Garden landscaping timbers with anti-blue-stain certification
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    Certification & Compliance
    More Introduction

    γ-Thujaplicin: A Manufacturer's Perspective on Quality, Use, and Distinction

    Introduction to γ-Thujaplicin

    Standing in a chemical manufacturing plant surrounded by the aromas of pine and cedar, one finds it impossible to ignore the legacy of natural compounds like γ-thujaplicin. For us, it means something personal—real work, real results, and decades of hard-earned expertise. Sourcing γ-thujaplicin is less about riding chemical trends and more about respecting molecular integrity and refining a process that delivers purity and consistency batch after batch.

    Our journey with γ-thujaplicin began with an appreciation for its origins in the heartwood oils of species like Chamaecyparis and Thuja. The molecule has won a place in the toolbox of chemists, pharmacists, cosmetic formulators, and research scientists. It isn’t a headline-grabbing ingredient; it’s an old-school favorite, tested and trusted for workhorse performance where antimicrobial and metal-chelating properties matter.

    What Sets Our γ-Thujaplicin Apart

    From the moment raw material enters the plant, hands-on decisions influence each step. Developing a process to isolate and purify γ-thujaplicin at scale cannot rely on shortcuts. Residual solvents, color impurities, and chiral missteps compromise downstream applications, especially in pharmaceuticals and personal care. So we use multi-stage distillation and high-resolution chromatography, backed by regular GC-MS and NMR analysis, not only because standards demand it—because stubborn impurities interfere in ways only experienced manufacturers truly appreciate.

    The specification matters: model 8T-L, for instance, boils at a consistent range and presents a sharp melting point that signals high-quality crystallization. We refuse to cut corners on moisture content or accept off-oil colors that drag down performance or mislead formulation chemists about actual purity. Our team checks for these discrepancies every day—it’s a non-negotiable principle. Consistency is what makes product development predictable. For skincare developers seeking active ingredients or academics probing antimicrobial properties, batch-to-batch reproducibility means fewer headaches and less risk.

    Why Model 8T-L γ-Thujaplicin Gains Trust

    Within specialty chemicals, experience counts more than price in the long run. Model 8T-L γ-thujaplicin, for example, reflects choices we made in isolation and purification. This model features a controlled melting point in the 60–63°C range, color index below APHA 30, and typical assay values above 98 percent by HPLC. These aren’t just numbers on a spec sheet. They are targets we hit or exceed, and customers notice the difference in handling, shelf life, and end-use results.

    Some suppliers offer γ-thujaplicin blends with higher residual solvents or lesser optically pure forms. We’ve fielded plenty of calls from researchers whose reactions stalled or whose formulation colors drifted after switching to a lower-cost option. In our own QC trials and feedback from long-standing partners, color stability and clarity in solution often depend on these tighter controls. Over time, labs and production facilities save far more on troubleshooting by engaging with reliable material from the start.

    Applications: Real-World Challenges and Solutions

    γ-Thujaplicin has won fans in application-driven environments, not just because of chemical curiosity but as a solution to actual bottlenecks. Its action as a biocidal agent in skin and scalp care goes beyond label claims. Dermatological studies have shown it suppresses growth of Malassezia and Propionibacterium strains where other agents struggle. Many cosmetic labs report improved shelf stability and reduced contamination in rinse-off and leave-on formulas when γ-thujaplicin stands as the primary preservative.

    It’s not just about killing microbes, though. The chelating strength of γ-thujaplicin—owing to its tropolone structure—addresses a different kind of headache. Metals like iron and copper can promote oxidation, discolor creams, and degrade pharmaceutical actives. By offering chelation on par with synthetic alternatives, γ-thujaplicin supports product performance while fitting within “naturally derived” marketing claims. Done right, its inclusion reduces reliance on harsher preservatives and antioxidants, opening avenues for milder formulations.

    As a manufacturer, we’ve partnered with groups developing oral care solutions, wound cleansers, veterinary products, and even coatings for wood and textiles. Each field comes with distinct regulatory scrutiny and analytical demands. Over years of feedback, we’ve customized our specifications to facilitate compendial testing and stability assessments for customers ranging from multinational consumer brands to university labs. The trust built across these segments wasn't won overnight. Each application presented its own hurdles: unexplained color shifts, batch-to-batch variability, or surprises during upscaling. We listened, returned to the bench, and improved until each concern was solved.

    Importance of Consistent Quality and Documentation

    Working with regulatory authorities and quality auditors, we saw early on that supply chain transparency would become non-negotiable. Every drum and bottle leaving our facility is matched by a complete traceability report. Analytical results are filed and archived—not to cover ourselves in the event of a mistake, but to help our partners satisfy internal reviews and compliance procedures. We don’t outsource these operations or leave interpretation in someone else’s hands.

    By keeping documentation and analytical data on site, we empower partners to move their projects quickly, knowing they can trace any deviation back to a named production lot. Especially for brands exporting to Europe, North America, and markets with strict natural origin mandates, batch records and detailed COA files are more than just paper requirements. They make the leap from pilot to commercial launch less risky, and save entire teams from headaches when regulatory reviews arise.

    Distinguishing γ-Thujaplicin From Alternatives

    Discussions about antimicrobial performance often circle back to legacy options like parabens, trilosan, or isothiazolinones. Each has seen regulatory pressure based on allergenicity, residue, or toxicity concerns. γ-Thujaplicin brings practical reassurance—robust natural antimicrobial action without the baggage of persistent environmental accumulation or endocrine disruption.

    We see a clear separation between γ-thujaplicin and its relatives within the tropolone family. α-Thujaplicin, for example, exhibits a different profile in terms of volatility and biocidal activity. Both may share similar backbones, but formulation chemistry tells a different story. γ-Thujaplicin outperforms in non-aqueous systems and remains stable at pH ranges common in personal care and topical pharmaceuticals. Mislabeling or misconstruing these analogs stalls innovation and jeopardizes both product safety and marketing legitimacy.

    Some buyers request a synthetic analog to reduce sourcing costs or meet niche product claims. From hands-on experience, we found that synthetic γ-thujaplicin introduces new traces—solvent residues or byproducts absent in natural extractions—that can pose complication for final product compliance. The distinction becomes clear during GC-MS fingerprinting and stability testing. Fast-tracking a synthetic blend to save a few weeks on lead times often means dealing with unanticipated technical support calls months later.

    Sustainable Sourcing: Challenges and Realities

    Natural products face intense scrutiny on sourcing. Overharvesting of cypress species or supply disruptions from weather and export regulations can test the most robust operation. By investing directly in responsible forestry operations and long-term supplier partnerships, we buffer our customers from price shocks and raw material inconsistencies. We examine soil and water management practices upstream to ensure forests regenerate and communities benefit. Finger-pointing at “green” trends and making empty environmental claims may sell for a season, but only accountable stewardship keeps a specialty ingredient like γ-thujaplicin available for the long haul.

    Traceability doesn’t only matter on paper. It influences the characteristic aroma profile and purity that formulators and analytical teams recognize batch after batch. It’s been tempting at times to take recycled or “regenerated” oils as feedstock, seeing potential in price and apparent sustainability, but these experiments often introduced inconsistent off-notes and increased the risk of cross-contamination or higher microbial loads. Sticking to our direct sourcing model has paid off, both in reputation and in day-to-day lab results.

    Technical Collaboration and Customer Feedback

    Success comes from what happens after a customer signs on, not before. No project advances smoothly with a one-size-fits-all mindset. We routinely supply gram-scale laboratory packs to let R&D teams test γ-thujaplicin against their historical controls. Sometimes these tests reveal unexpected stability or solubility quirks, especially as new surfactants and emulsion systems enter the fray. In every case, our technical support team helps troubleshoot, interpret results, and—if needed—modify purification parameters to meet unique application needs.

    Years of close exchanges with formulators, QC chemists, and production engineers taught us that the ideal ingredient doesn’t just “tick boxes.” It integrates cleanly into complex supply chains, supports creative design and innovation, and—perhaps most importantly—makes life easier for those who stake reputations on line trials and validation runs. Stories abound of last-minute reformulations or scale-up snags averted by delivering an extra lot in days, or by clarifying test results late into the evening. These moments shape trust, loyalty, and the collective learning that keep the industry moving forward.

    Outlook for γ-Thujaplicin in Evolving Technologies

    Markets change. Once, a handful of pharmaceutical and personal care brands made up most of γ-thujaplicin’s demand. Today, inquiries arrive from food packaging technologists, architectural coatings engineers, and teams tackling waterborne pathogen problems. Interest from medical device manufacturers and agricultural biopesticide developers has spurred us to expand application notes and invest more in stability research.

    With the surge in demand for natural, “clean label” solutions—or at least ingredients viewed as less synthetic—we haven’t seen a dip in expectations for analytical rigor. Quite the opposite. The bar keeps rising on transparency, documented trace chains, and certifiable “naturalness.” We adapt by training our team in evolving standards and collaborating with third-party labs. This approach has allowed our partners to migrate across regulatory boundaries with greater confidence, even as more countries examine origins and clarify rules around biocidal actives.

    Moving Forward With Manufacturing Integrity

    Our approach to manufacturing γ-thujaplicin boils down to one word—integrity. Skilled hands and observant eyes make all the difference. We take pride in our process, from custom-built extraction vessels to temperature-controlled warehousing, down to the final filling and closure checks. This hands-on attitude means dust, residual moisture, and light exposure are managed at every step.

    Long-term partners say the difference is noticeable the first time a drum arrives and the last milliliter is used. It shows up in visual and sensory checks, not just analytical numbers. When an ingredient sits on the shelf for a year without shifting odor or yellowing, or performs reliably across a dozen different countries’ weather extremes, those results come from careful control, not luck. We refine even the smallest operational details based on feedback—if a lab notes increased viscosity during their testing, or an unexpected shift in how product dissolves, we take the time to trace back through logs and optimize. This willingness to learn and act quickly marks a true chemical manufacturer.

    Supporting Innovation: Supplier as Partner

    Young or rapidly adapting markets reward curiosity, but demand partnership. Whether supporting the launch of an over-the-counter anti-acne product or backing a university trial investigating γ-thujaplicin as a metal corrosion inhibitor, we offer more than a product—we offer evidence, dialogue, and practical guidance. Challenges come up regularly, from compliance document requests to unique solvent compatibility needs. Our experienced chemists, only a call or email away, routinely review new publication data, regulatory trends, and process improvements that keep us ahead of the curve.

    γ-Thujaplicin remains both an old and new ingredient—a quiet performer in senior hands and an inspiring challenge for those pushing boundaries. As one of very few manufacturers with direct oversight from source to drum, we maintain focus on each practical detail that makes high-purity production possible. Our goal stays clear: to ensure every gram that leaves our facility helps advance discovery and improve product outcomes for decades to come.