Products

Pyridoxine Trihexadecanoate

    • Product Name: Pyridoxine Trihexadecanoate
    • Alias: Vitamin B6 Palmitate
    • Einecs: 603-520-3
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications
    HS Code 238865
    Productname Pyridoxine Trihexadecanoate
    Casnumber 72616-71-0
    Molecularformula C51H95NO6
    Molecularweight 822.27 g/mol
    Appearance White to off-white solid
    Solubility Soluble in organic solvents; insoluble in water
    Chemicalclass Fatty acid ester of Vitamin B6 (pyridoxine)
    Functionaluse Potential prodrug or lipophilic derivative of Pyridoxine
    Storageconditions Store in a cool, dry place, away from light and moisture
    Stability Stable under recommended storage conditions
    Synonyms Pyridoxine tripalmitate
    Pubchemcid 13039946
    Structuralformula Pyridoxine esterified with three hexadecanoic (palmitic) acid chains

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

    Packing & Storage
    Packing Pyridoxine Trihexadecanoate, 100g, supplied in a sealed amber glass bottle with tamper-evident cap and clear labeling for identification.
    Shipping Pyridoxine Trihexadecanoate is shipped in tightly sealed containers to prevent moisture and air exposure. It is transported at ambient temperature, away from direct sunlight and incompatible substances. All shipments comply with relevant safety regulations, including labeling and documentation, ensuring secure and compliant delivery for laboratory or industrial use.
    Storage Pyridoxine Trihexadecanoate should be stored in a tightly sealed container, in a cool, dry, and well-ventilated area away from direct sunlight, heat sources, and moisture. Avoid exposure to strong oxidizing agents. For laboratory use, storage at room temperature (15–25°C) is generally recommended. Ensure proper labeling, and keep out of reach of incompatible substances and unauthorized personnel.
    Application of Pyridoxine Trihexadecanoate

    Applications of Pyridoxine Trihexadecanoate in Industrial Manufacturing

    Pyridoxine Trihexadecanoate serves as a specialized lipid-soluble vitamin B6 derivative utilized across several advanced manufacturing sectors. Its stabilized structure and efficient delivery profile allow for targeted functional applications, primarily where enhanced metabolic, nutritional, or skin-conditioning properties are required. Below we detail the main downstream industrial application areas, focusing on genuine use cases within their respective sectors.

    1. Nutritional Fortification in Clinical Enteral Nutrition Formulas

    Clinical nutrition formulators employ Pyridoxine Trihexadecanoate to improve vitamin B6 lipid solubility and stability in enteral emulsions designed for patients requiring tube feeding. This esterified form resists degradation during autoclave sterilization and extended storage, delivering sustained-release characteristics suited for metabolic disorder diets and critical care feeding regimens. The ingredient integrates efficiently alongside other lipid-soluble micronutrients, maintaining homogeneity even in high-fat concentration blends.

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    2. Lipid-Based Oral Nutraceuticals

    Pyridoxine Trihexadecanoate supports formulation of soft-gel and liquid nutraceuticals, providing a fat-soluble vitamin B6 source suitable for co-formulation with medium-chain triglycerides and Omega-3/6 blends. Its lipophilic properties improve absorption, especially in specialized delivery systems targeting populations with malabsorption or increased metabolic demands. The ingredient remains stable throughout encapsulation, storage, and gastrointestinal delivery.

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    3. Functional Cosmetics—Skin Conditioning Ingredients

    Cosmetic manufacturers rely on Pyridoxine Trihexadecanoate for its emollient and skin-barrier reinforcing properties in advanced personal care products. Its fat-soluble profile enables deep stratum corneum delivery and sustained time-release, notably in anti-aging, skin repair, and sensitive skin formulations. The esterified molecule demonstrates significant heat and shear stability during blending, providing consistent performance through bulk production and long-term shelfing.

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    4. Veterinary Nutrition—Pet Lipid Micronutrient Premixes

    Pyridoxine Trihexadecanoate finds use in specialized veterinary nutrition—particularly in premium lipid-based premixes for canine and feline diets formulated for sensitive or high-performance animals. The ingredient supports improved bioavailability of vitamin B6, integrating with high-energy fat blends and enabling precise micronutrient delivery, especially in extruded dry foods and semi-moist treats where traditional hydrophilic vitamins degrade rapidly.

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    5. Parenteral Nutrition Lipid Emulsions

    Within intravenous nutrition, Pyridoxine Trihexadecanoate provides a stabilized, fat-soluble source of vitamin B6 for adult and pediatric parenteral formulations. Its molecular structure circumvents oxidation and precipitation seen with free pyridoxine hydrochloride, ensuring sustained release over infusion periods. The raw material integrates with MCT-rich emulsions and remains stable through autoclaving and sterile filtration, maintaining nutrient bioavailability during extended administration.

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    Free Quote

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

    For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.

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    Tel: +8615365186327

    Email: admin@ascent-chem.com

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    Certification & Compliance
    More Introduction

    Pyridoxine Trihexadecanoate: An Advanced B6 Derivative from an Experienced Manufacturer

    A Closer Look at Pyridoxine Trihexadecanoate

    Our team has long focused on the modification of core vitamin molecules to boost their stability, solubility, and application flexibility. Pyridoxine Trihexadecanoate, a triple-esterified derivative of vitamin B6 (pyridoxine), reflects insights gained from hands-on work with both water- and lipid-soluble B6 analogues. This molecule has seen more interest recently from research teams in pharmaceuticals, fortified foods, and animal nutrition—especially where delivery, shelf life, or fat-solubility present a limitation.

    What Sets the Model Apart

    After years in chemical synthesis and purification, we understand that not all B6 derivatives behave the same under storage, processing, or blending. Our Pyridoxine Trihexadecanoate—manufactured at over 99% purity—offers a high degree of batch-to-batch consistency. The fatty acid side-chains make a marked difference in how this compound dissolves in oily and non-aqueous carriers versus common pyridoxine hydrochloride. In our experience, this opens doors for novel formulations.

    Making a Fat-Soluble Solution Real, Not Theoretical

    Traditional pyridoxine salts excel in water-based applications but fall short in systems where moisture triggers unwanted degradation, clumping, or loss of potency. Years of feedback from food technologists and supplement developers have reinforced one lesson: fat-soluble forms matter in certain applications. Incorporating Trihexadecanoate fixes pyridoxine into lipids, so our colleagues in dietary supplementation report much more predictable release in fat-matrix systems, chewable forms, or soft gels. In livestock feed, the stability in oil-rich premixes holds up in external storage conditions that water-soluble forms would not tolerate.

    Specifications Shaped by Practical Realities

    Through our R&D work, we know small changes in esterification can swing the chemical profile in surprising ways. Our standard Pyridoxine Trihexadecanoate carries three fully saturated hexadecanoate (palmitate) chains, confirmed through GC-MS and NMR. This structure avoids short-chain volatility and the hydrolytic instability seen with more reactive or unsaturated esters. Our batches consistently provide material as a white to off-white, odorless, crystalline powder, flowing uniformly through both manual and fully automated feeders. Moisture below 0.5% and residual solvents meet strict internal protocols shaped by years of feedback from direct users who measure quality with every run.

    Real-World Applications: From Lab Scale to Industrial Use

    In nutrient fortification, this derivative truly shines in oil-based systems where legacy vitamin B6 forms struggle with solubility or precipitate out of suspension over time. Many food scientists come to us after fighting with flavor drift or cloudiness in microencapsulated vitamins in dairy analogues, meal replacements, and spreads. With Trihexadecanoate, the fat-soluble backbone assures even distribution, letting other functional oils, emulsifiers, or actives play their part undisturbed. High sheer blending or mild heating causes no breakdown, giving product developers control instead of headaches.

    On the pharmaceutical side, our experience with pilot line customers shows pronounced advantages in soft gel, sustained release, or specialized oral liquid vehicles. Pharmacists working in compounding report reduced reprocessing when switching from pyridoxine HCl to the trihexadecanoate, especially in preparations designed for slow, steady nutrient delivery. Patients sensitive to excipients like sodium or chloride see an added advantage since the backbone replaces water-soluble counterions with a bio-friendly, long chain fatty acid.

    In animal nutrition, the derivative plays a role in fat-rich feeds, supplements, and blocks where hydration or clumping is a concern from warehouse to field. Animals—particularly ruminants—benefit when B6 is delivered in a protected, slow-release format that resists breakdown in harsh digestive tracts. Some feed formulators have told us they can drop mold inhibitors or anti-caking agents once they switch to Trihexadecanoate, because moisture-driven spoilage recedes when the B6 is locked into a fat matrix.

    Key Differences: Pyridoxine Trihexadecanoate Versus Classical B6 Forms

    Years of hands-on formulation offer a practical picture of why someone chooses this version over the cheaper, more familiar B6 alternatives. Off-the-shelf pyridoxine hydrochloride, long known for its ease in water, can quickly limit conversion options for anyone designing fat-based products. Making a water-soluble powder work in a fat emulsion often invites solubility clashes, phase separation, or poor nutrient recovery after processing. Trihexadecanoate’s three palmitate chains firmly anchor the molecule in the non-polar phase, maintaining its integrity through most physical and thermal stressors encountered in mixing, pasteurization, or extrusion. This gives consistent nutrient delivery even under less-than-ideal storage or production conditions.

    Our observations show that this derivative resists hydrolysis, oxidation, and photodegradation better than more reactive, short-chain or unsaturated B6 esters. In laboratory stress tests, we see less than 2% loss in the active molecule after six months in a sealed, room-temperature environment. Classical forms, by contrast, can lose over 10% in comparable storage when held in a non-aqueous matrix. The extra stability keeps finished goods within specification, lowers waste, and helps dosing accuracy—critical for both regulatory filings and end-user confidence.

    On the topic of bioavailability, researchers working with us report slower but steadier uptake of B6 from trihexadecanoate in animal and cell models, mimicking natural lipid digestion and absorption. This contrasts with the sharp spike and rapid decline typical when dosing with straight pyridoxine salts. Practically, this influences how supplements, medical foods, and animal feeds are designed to release nutrients gradually instead of all at once.

    Production Process Grounded in Experience

    Manufacturing any esterified vitamin derivative at consistent scale brings real challenges. Our process grew from the hands-on expertise of chemists who have dealt with batch variability, catalyst residues, and unwanted side reactions. We use food- and pharma-grade pyridoxine as starting material, carefully controlling reagent addition, temperature, and reaction timing. Post-reaction, we run repeated purification cycles—column chromatography and recrystallization—to achieve a high standard of purity without sacrificing batch yield. In-house QC methods, backed by third-party validation, guard against contamination, off-spec batches, or leftover reactants.

    From materials handling to shipping, our staff pay close attention to environmental controls. Pyridoxine Trihexadecanoate, though robust in finished blends, still deserves correct temperature and humidity treatment during packing and storage. Our standard drums and vacuum-sealed liners reflect feedback from downstream blenders who shared data on caking, migration, or interaction with iron-based fortificants. We have overhauled handling protocols several times in response to these field insights, shrinking loss rates and lowering customer complaints.

    Safety and Regulatory Considerations in Real-World Use

    In our experience, manufacturers upgrading from legacy B6 salts rarely encounter unexpected side effects when working with Pyridoxine Trihexadecanoate. Standard vitamin B6 toxicology and exposure burden studies serve as a reliable baseline, even for the esterified derivatives. Fat-soluble forms deliver B6 more slowly but do not alter its metabolism or safety margin in finished feeds, foods, or supplements—assuming dosing reflects the molecular weight difference. Our technical staff support compliance documentation for regulatory and customer audits, translating years of internal batch records and certificates into user-friendly data.

    We do recommend staff handling this compound observe general best practice for mixing fine powders and lipophilic substances: gloves, glasses, and controlled dusting or venting. Storage in sealed, light-proof containers keeps degradation at bay. Our operations team shares real-world lessons with customers, including common sense solutions for mixing or cleaning up spills in a high-turnover production facility.

    Environmental Responsibility in Sourcing and Waste Management

    Colleagues in both animal and human nutrition increasingly ask about environmental impact alongside technical performance. Our facilities work with validated, regionally sourced starting materials wherever supply security and traceability permit. Long chain fatty acids—palmitic acid for trihexadecanoate—arrive from suppliers who meet both regulatory and sustainability standards. Our team knows waste handling for esters demands more than neutralization; it requires dedicated solvent recovery, energy conservation, and safe disposal of non-recoverable residues. Years of internal tracking and field audits have shown us that responsible production means more than just meeting code—it supports customer trust when they report to their own end users or sustainability offices.

    We remain engaged with researchers studying the fate of fortified, fat-soluble B6 products in food and feed chains. The ester linkages of trihexadecanoate persist through standard manufacturing but break down into vitamin B6 and fatty acids during digestion. These breakdown products fit within normal metabolic cycles and do not contribute to persistent pollution, which we see as a critical point for large-volume users in regulated industries.

    Practical Solutions for Blending and Production

    Every production team faces mixing, dusting, and dosing issues at some point—especially with new fat-soluble nutrients. Our experience shows that Trihexadecanoate’s physical properties—stable crystals, minimal odor, and moderate bulk density—simplify inclusion into powdered premixes or direct oil blending. We offer guidance on mixer selection, pre-wetting, and feed rate controls based on customer feedback and in-house piloting. Teams mixing by hand or using automated feeders find little difference in performance compared to bulkier, stickier vitamins. We’ve taken many calls from partners who struggled with earlier, clump-prone B6 esters and now run steady lines with our product.

    For high-speed bottling or single-dose sachets, we recommend process tweaks learned from our own production floor: static control, low-shear augers, and cooling measures during filling. Repeat customers often share that real productivity gains occur less from theoretical advantages and more from simple, robust powder characteristics—something borne of years refining both synthesis and post-synthesis handling.

    Supporting Customer Success: Insights from Our Technical Staff

    Longevity in chemical manufacturing brings benefits—and responsibilities. Our technical support team has collected a range of field experience from direct-users adapting new forms of B6 to suit their processing realities. When someone raises an issue with dissolving Trihexadecanoate in a multi-oil base or reports inconsistent distribution in extruded snacks, we draw from a broad toolkit of batch records, mixing notes, and process data to suggest work-arounds.

    We rely on both bench chemistry and user-driven adjustments. Early feedback pushed us to trial multiple crystal habits and particle sizes; the insights from feeding trials motivated reformulation for improved flow in automatic dosing systems. This cycle of continuous improvement means our Pyridoxine Trihexadecanoate offers field-tested, not theoretical, advantages.

    Technology transfer matters as much as product. We work alongside R&D chemists, plant supervisors, and QA teams in real settings to resolve bottlenecks—from pilot-scale blending in test kitchens to full-scale extrusion for livestock feed. We keep the lines of communication open, and we never bury customer questions under empty technical language.

    Future Outlook for Pyridoxine Trihexadecanoate

    The nutrient fortification world keeps shifting, with more demand for fat-soluble, shelf-stable, and process-friendly vitamin systems. Thanks to new trial data and customer feedback, we expect broader adoption in plant-based foods, specialized nutrition (such as medical meal replacement), and next-generation animal feeds. We keep revising manufacturing and QC protocols, implementing staff suggestions drawn from years spent addressing real problems in both lab and plant. Upgrades in containment, environmental controls, and analytics all trace their roots to unforeseen needs voiced by direct users.

    Continued research on the health impacts, absorption, and stability of pyridoxine esters promises new applications. For us, translating these gains from research benchtop to scalable, cost-controlled production stands central to our mission. Direct engagement with end users, regulatory authorities, and environmental review teams shapes every major product upgrade in our facility.

    Conclusion: Perspective from the Manufacturer

    Supplying Pyridoxine Trihexadecanoate goes beyond simply meeting industry demand for a new vitamin B6 form—it means taking responsibility for continuous improvement, environmental care, and customer support based on real-world results. Years spent refining process chemistry, scaling purification, and directly helping customers troubleshoot means we stand behind every kilogram shipped. The needs of formulators—whether in food, pharma, or feed—continue to guide our priorities, from sourcing and safety protocols to technical service.

    Pyridoxine Trihexadecanoate may never outpace the pure volume of older B6 salts, but for fat-rich systems, demanding storage conditions, or applications desiring slow-release bioactivity, its strengths come straight from hands-on experience and responsive manufacturing practices. That approach, shaped and refined over countless production runs and conversations with end users, keeps us at the forefront of functional vitamin technology.

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