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Taurochenodeoxycholic Acid Sodium Salt

    • Product Name Taurochenodeoxycholic Acid Sodium Salt
    • Alias TCDCA
    • Einecs 242-980-5
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
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    Specifications

    HS Code

    793789

    Productname Taurochenodeoxycholic Acid Sodium Salt
    Casnumber 5956-67-4
    Molecularformula C26H44NNaO7S
    Molecularweight 551.68 g/mol
    Appearance White to off-white powder
    Solubility Soluble in water
    Storagetemperature 2-8°C
    Ph 6.5-8.5 (1% solution in water)
    Purity ≥98% (HPLC)
    Synonyms Sodium taurochenodeoxycholate, TCDCA sodium salt
    Meltingpoint 215-218°C (decomposes)
    Chemicalclass Bile acid salt
    Inchikey FTBBFYLFOIXZLM-QVLKJYFUSA-M
    Ecnumber 209-858-2

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

    Packing & Storage
    Packing The Taurochenodeoxycholic Acid Sodium Salt is packaged in a 100 mg amber glass vial with secure, tamper-evident cap and clear labeling.
    Shipping Taurochenodeoxycholic Acid Sodium Salt is shipped in tightly sealed containers under controlled, cool, and dry conditions. Packaging ensures protection from moisture and light. The chemical is handled following all relevant safety and regulatory guidelines, and transit typically uses express or priority services to maintain product integrity and prevent degradation during shipment.
    Storage Taurochenodeoxycholic Acid Sodium Salt should be stored at -20°C in a tightly sealed container, protected from light and moisture. The compound should be kept in a dry, well-ventilated area, away from incompatible substances. Proper storage ensures chemical stability and minimizes degradation, making it suitable for long-term use in biochemical and laboratory applications. Always follow specific manufacturer instructions for safe handling and storage.
    Application of Taurochenodeoxycholic Acid Sodium Salt

    Applications of Taurochenodeoxycholic Acid Sodium Salt in Industrial Manufacturing

    We supply Taurochenodeoxycholic Acid Sodium Salt as an advanced raw material to major manufacturing industries. Its critical function as a specialized bile salt drives innovation in bioprocessing, pharmaceutical formulation, advanced diagnostics, and animal nutrition. Each industrial application described below is grounded in direct downstream use, with precise handling requirements and stringent specification criteria.

    1. Pharmaceutical Synthesis of Ursodeoxycholic Acid

    Our material is used in the semi-synthetic production of ursodeoxycholic acid (UDCA), a key active pharmaceutical ingredient (API) for the treatment of various cholestatic liver diseases. Taurochenodeoxycholic Acid Sodium Salt provides a structurally accurate substrate in multi-step organocatalytic and enzymatic conversion processes. Downstream processors rely on consistent purity and traceability to satisfy GMP and pharmacopoeia requirements. Process engineers control reaction conditions tightly to achieve high yields and minimize by-products, leveraging our high assay and batch consistency.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice for APIs
    • US Pharmacopeia (USP) Monographs for bile acids
    • European Pharmacopoeia (Ph. Eur.) 10.0
    • Chinese Pharmacopoeia (ChP) API requirements
    • FDA cGMP 21 CFR Parts 210/211

    Typical usage ratio

    • Substrate load: 1.0-1.2 molar equivalents per batch, adjusting for reaction scale and downstream conversion efficiency

    Downstream process integration

    • Enters the early substrate dissolution and pre-catalysis step with careful pH control
    • Subjected to enzymatic/treatment with isomerase or oxidase enzymes under specific temperature profiles
    • Purification via chromatography or crystallization before downstream formulation

    Final product types

    • Ursodeoxycholic acid bulk API
    • UDCA oral tablets and capsules
    • UDCA injection-grade intermediates

    2. Component in Clinical Biochemistry Enzyme Assay Reagents

    Medical diagnostics companies incorporate our material into proprietary reagent sets for liver function testing, specifically in the quantification of total and conjugated bile acids in human serum. The sodium salt form ensures easy solubilization and stable assay performance, essential for automation in high-throughput clinical analyzers. Biochemical formulators demand consistent surfactant properties and absence of interfering residues to guarantee sensitivity and reproducibility in enzymatic cycling assays.

    Industry compliance standards

    • ISO 13485 Medical Devices Quality Management System
    • CLSI C56A—Serum Bile Acids Evaluation Guidelines
    • IVD Directive 98/79/EC for EU market
    • CE Marking compliance for clinical use

    Typical usage ratio

    • 0.5-2.5 mmol/L concentration in assay buffer, adjusted for analyzer sensitivity and detection range

    Downstream process integration

    • Added to the reagent formulation tank during the pre-mixing stage
    • Processed through filtration and aseptic filling into diagnostic reagent vials or cartridges
    • Tested for stability over the claimed shelf life under IVD storage conditions

    Final product types

    • Bile acid enzyme cycling reagent kits
    • Ready-to-use serum bile acid assay cartridges
    • Automated analyzer liquid reagents

    3. Solubilizing Agent in Oral Drug Formulation

    Pharmaceutical formulators utilize our product as a bile acid-based solubilizer to enhance the dissolution and bioavailability of poorly soluble drugs in oral solid and liquid dosage forms. The compound serves a dual role in promoting micelle formation and stabilizing lipid-based delivery systems, allowing a wider range of drugs to meet bioequivalence requirements. Our material passes strict batch-release testing to assure absence of pyrogens or residual solvents, critical for compliance in regulated oral drug production environments.

    Industry compliance standards

    • US FDA Inactive Ingredient Database (IID)
    • Pharmacopeial excipient monographs (USP/NF, Ph. Eur.)
    • GMP Annex 13—Manufacture of Investigational Medicinal Products
    • ICH Q3C Guideline for Residual Solvents

    Typical usage ratio

    • 0.1%–1.0% w/w in tablet or suspension matrix, based on solubility and dosage form requirements

    Downstream process integration

    • Added during granulation or suspension compounding
    • Subject to in-process checks for micellar clarity and particle stability
    • Directly impacts final product dissolution profile and quality control release

    Final product types

    • Enhanced-bioavailability oral tablets
    • Oral suspensions for pediatric or geriatric use
    • Lipid-based soft gelatin capsules

    4. Feed Additive for Aquaculture and Livestock Nutrition

    The feed industry incorporates our sodium salt in the formulation of specialized animal nutrition products, including aquaculture feed for fish and shrimp and supplemental feed for young livestock. The compound acts as an emulsification aid, facilitating efficient absorption of dietary lipids and fat-soluble vitamins. Our material meets feed-grade purity requirements and is provided with full traceability and batch certification to support regulatory compliance in exported feed products.

    Industry compliance standards

    • FAMI-QS Code of Practice for Specialty Feed Ingredients
    • China GB/T 5749 Animal Feed Additive Regulation
    • EU Regulation (EC) No 1831/2003 on feed additives
    • US FDA 21 CFR 573—Food Additives Permitted in Feed

    Typical usage ratio

    • 10–100 mg/kg feed, modified based on animal species, developmental stage, and diet composition

    Downstream process integration

    • Directly premixed into microingredients before pelleting or extrusion
    • Withstands standard feed mill thermal processing
    • Monitored for stability during feed storage and shipment

    Final product types

    • Starter feeds for aquaculture (fish, shrimp, crab)
    • Milk replacer formulas for calves and piglets
    • High-quality specialty feeds for export markets

    5. Biotechnological Cell Culture Media Optimization

    We supply this bile salt sodium salt to biotech companies developing advanced cell culture media for mammalian and hepatic cell lines. Its role includes modulating cellular membrane fluidity and promoting lipid uptake pathways necessary for accurate in vitro disease modeling and drug screening. Manufacturers require highly defined, contaminant-free lots to maintain reproducibility across bioprocess and research applications, with each batch supported by analytical documentation for regulatory filings in research reagent supply.

    Industry compliance standards

    • ISO 9001-certified quality systems for research reagents
    • USP Chapter <1043> for Ancillary Materials in Cell, Gene, and Tissue-engineered Products
    • NIH guidelines for biological reagent quality
    • REACH Annex V for research use compliance (EU)

    Typical usage ratio

    • 0.1–1.0 mM in basal medium, tailored by cell line sensitivity and target application

    Downstream process integration

    • Added to basal or serum-free media during base formulation
    • Filtered and sterilized before aliquoting into media bottles or pre-filled plates
    • Quality controlled for absence of endotoxins and mycoplasma

    Final product types

    • Specialized hepatocyte growth media
    • Serum-free media for drug transport studies
    • Media supplement kits for academic and industrial R&D
    Free Quote

    Competitive Taurochenodeoxycholic Acid Sodium Salt prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    Taurochenodeoxycholic Acid Sodium Salt: Knowledge From the Manufacturer’s Floor

    The Journey of Crafting Pure Taurochenodeoxycholic Acid Sodium Salt

    People rarely see the effort behind each gram of Taurochenodeoxycholic Acid Sodium Salt before it reaches the hands of research labs, formulation teams, or technologists working on diagnostics. Our plant doesn’t just process molecules—we build consistent, high-purity compounds batch after batch, always guided by clear results and the feedback we have gathered from our partners over years. For us, producing Taurochenodeoxycholic Acid Sodium Salt isn’t about ticking chemical boxes or chasing spec sheets. Each step in the process represents experience: control over temperature curves during synthesis, the way light passes through a finished sample, the humidity levels in storage rooms. No part is automated just for its own sake. Highly trained technicians keep an eye on the crystallization stages, knowing how changes in solvent composition will impact the final salt’s solubility and stability.

    What Sets Our Sodium Salt Apart

    Taurochenodeoxycholic Acid Sodium Salt doesn’t behave like the more common taurocholic acid sodium salt or other bile acids we produce. Its structure gives it a different binding profile, which comes into play in cell model research, studies of bile salt transporters, and investigations of lipid digestion. Not every production line can manage its specific requirements, especially when the target is for analytical work rather than just bulk supplement grade. We build each batch on dedicated equipment—rinsed and checked beyond industry minimums—since trace cross-contamination from similar acids can show up in ultra-sensitive diagnostic work.

    Our batches consistently show purity levels above 98%. This didn’t happen by accident. Over the years, we’ve seen how every impurity—no matter how small—distorts HPLC traces, leading researchers to ask us about that “very faint” shoulder peak that can turn up with some suppliers. We’ve tracked down every source, sometimes over long weekends, sometimes over repeated runs with different grades of sodium hydroxide, to drive down unknowns. Such detail makes a difference: customers tell us our product runs smoothly for precise in vitro assays, where off-target effects can ruin a conclusion.

    Beyond Spec Sheets: How Usage Shapes Manufacturing

    Taurochenodeoxycholic Acid Sodium Salt finds its place in work that ranges from basic science to clinical diagnostics and even early-stage therapeutics research. People rely on its hydrophilic-lipophilic balance to challenge transport proteins, guide the design of synthetic analogs, and as a tool in controlled drug delivery studies. We have seen research shift over time: the product once sat mainly in the background of liver function panels; now, teams use it to dissect microbiome interactions and gut health indices.

    Formulators and method developers have shared their observations with us. For example, the sodium salt form makes dissolution in aqueous buffers faster than the free acid or potassium salt alternatives. This comes straight from the lab benches—no need to mix for hours, heat to high temperatures, or risk precipitation during dilution. That saves time and removes one more source of error. When a researcher calls, asking for advice to dissolve 100 mg in a few milliliters of PBS, we can confidently guide them from memory, not by quoting a manual, but from the experience of doing it ourselves during validation.

    Bile acids like Taurochenodeoxycholic Acid are subtle tools in the hands of scientists. Their amphipathic nature lets them solubilize cholesterol, emulsify fats, and test biological barriers. Yet differences in side chains and taurine conjugation shift the balance—some provoke tight junction opening, others settle for gentle surfactant action at low micromolar levels. The sodium salt’s predictability, compared to crude extracts or less refined powders, spares researchers the pain of batch-to-batch guesswork.

    Why Purity and Stability Aren’t the Same For All Bile Acids

    Taurochenodeoxycholic Acid Sodium Salt stands apart from its siblings not just by molecular identity but by how it acts under storage and handling. Over the years, we’ve seen storage mishaps—from exposure to room air for days to accidental cycles through deep freeze and thaw. The sodium salt’s stability defies most humidity changes and resists clumping better than the free acid. Still, real world conditions matter: lab freezers fluctuate, containers stand open longer than planned, transport runs into delays. We package in light-resistant, airtight bottles, and advise users to avoid repeated transfers—less chance for atmospheric moisture or contamination.

    We’ve evaluated shelf life at ranges of temperature and humidity, sometimes stress-testing samples to predict what happens over multi-year projects. The findings help us support long-term studies, sending stability data along with each new contract. This sort of information doesn’t always fit on a technical data sheet, but it makes a difference to a formulator designing a diagnostic kit expected to remain valid for months. After all, reproducibility starts in the supply chain, not just at the point of use.

    The Real Differences: Not All Bile Acids Tell the Same Story

    Researchers who have handled cholate, deoxycholate, taurocholate, and other sodium salts know each brings its own quirks. Our technical team often hears from customers trying to substitute Taurochenodeoxycholic Acid for others. The results don’t always translate. For example, this product’s two hydroxyl groups—markedly different in orientation from cholic or deoxycholic acids—influence binding to specific protein domains and impact the way mixed micelles form. In transporter assays, these small differences can mean success or failure depending on model sensitivity.

    In solubility studies, we’ve compared side by side how Taurochenodeoxycholic Acid Sodium Salt goes into solution next to chenodeoxycholic acid sodium salt and taurocholic acid sodium salt. Its behavior falls somewhere in between—offering relatively rapid dissolution but a slight tendency for supersaturation under certain pH conditions. We found this matters in high throughput screens, where precipitation leads to misleading signals or instrument warnings. In feedback from formulation chemists, our sodium salt demonstrates fewer problems with filterability, an advantage when preparing standards or dosing solutions for animal studies.

    People sometimes ask if they can swap this sodium salt for the potassium, calcium, or magnesium versions in their work. The answer depends on intended use. From our own experience, the sodium salt form delivers consistent results in most enzymatic and cell-based applications; alternative counter-ions introduce new variables—sometimes helpful, usually unwelcome. The potassium version shows markedly different solubility and tends to clump over time in open air. The calcium and magnesium salts can bring in new issues, especially with complexation affecting effective concentrations.

    Supporting Independent Verification and Traceability

    Modern labs expect rigorous traceability. Over multiple audits and repeat projects, we’ve supported teams who want more than just a certificate of analysis. Our processes run under controlled lot records, with each jar traceable back to a synthesis batch, purification sequence, and full analytical history. Reference standards and archival samples are kept years after initial production. Research teams working on clinical diagnostic products or multi-center studies require full transparency—we’ve learned how to deliver all supporting documentation, including impurity profiles and stability summaries on request.

    Trust gets built when customers can verify claims themselves. For this reason, we encourage new partners to analyze a working sample before placing a bulk order. We send out certificates with not only purity and identity data but also residual solvent profiles, heavy metal testing, and microbial limits—even if the regulatory environment doesn’t strictly mandate these for research or diagnostic intermediates. From our point of view, sooner or later, someone will ask, and it’s always easier to answer before a question becomes a critical issue.

    Feedback Loops: Listening to Users, Improving Outcomes

    Years in this business have given us a thick binder of emails, phone logs, and lab notes documenting the issues people encounter. Sometimes a customer in Europe calls to ask why their buffer looks cloudier than usual. Other times it’s a formulator in the US struggling to replicate a dissolution protocol from an old publication. These questions lead us to refine not just our analytical controls but our advice: whether to warm up the solution, how to check pH stability, or when to switch buffers.

    No batch leaves the door without a final round of QC, including visual inspection, moisture content, and identity by both NMR and mass spec. We review every deviation, no matter how minor, comparing previous results, and use each case to build up our guidance for future users. We don’t just ship chemicals. We solve problems and stay available for questions even after delivery, because our product ends up in critical workflows.

    Responsible Production: Meeting Research and Regulatory Expectations

    Taurochenodeoxycholic Acid Sodium Salt—but really any high-grade biochemical—benefits from close adherence to safety, environmental, and regulatory standards. Our facility carries out every step with containment and ventilation to minimize airborne exposure and chemical waste. Rather than rely on generic protocols, we adapt our waste handling and cleaning to the compound in use, so we prevent accidental cross-contamination with other bile acid derivatives.

    Meeting evolving expectations from authorities means documenting each change in raw material supplier, purification method, or packaging. We don’t shortcut these steps, since a recall or findings of off-spec material would erode trust with clients who depend on reliable results. Teams who need compliance for GLP, GMP, or other certifications often engage us during audits. Our documentation and process readiness come directly from lessons learned on the plant floor, not just from compliance manuals.

    Why Price Isn’t the Only Difference

    Inquiries often focus on price—but behind cost differences stand choices in raw material selection, controls, and batch size. Lower cost options from traders sometimes come with wide batch variability or incomplete documentation. We keep our process transparent, knowing customers value long-term reliability over one-time discounts. Getting a cheaper product that requires troubleshooting or repeat trials burns more hours and swallows the initial savings.

    We’ve worked with both academic labs hunting for a few grams and industrial partners requiring kilos for kit production. In either case, expectations run high. They trust us to flag any process change in advance, not just to ship “the same as last time.” That relationship lets us invest in facility improvements—finer particle size options, improved packaging, and more robust cold-chain logistics. In some cases, customers have even asked for co-developed validation protocols, because they want a partner, not just a vendor.

    Looking Forward: Building Confidence for the Next Generation of Research

    New discoveries in bile acid biology, gut-liver axis, and drug absorption will keep Taurochenodeoxycholic Acid Sodium Salt in demand as a research tool and analytical standard. Trends suggest higher purity demands, better physical properties, and stronger documentation supporting new diagnostic and therapeutic platforms. We’re investing in process upgrades to further tighten batch consistency and exploring greener synthesis routes that minimize hazardous byproducts. Such steps aren’t marketing points—they respond directly to the needs and feedback of end users.

    We’ve shared protocol notes with university projects, collaborated with biotech companies working on next-generation diagnostic kits, and fixed tricky solubility issues with a handful of startups. The product at the end isn’t just Taurochenodeoxycholic Acid Sodium Salt—it’s the story of continuous feedback, accumulated knowledge, and the daily effort to meet genuine practical needs on lab benches around the world.

    Final Thoughts from Manufacturing

    Taurochenodeoxycholic Acid Sodium Salt deserves the attention given to other major bile acids but should not be mistaken as a routine commodity. Years spent watching powders form under vacuum or logging pH tests in production have proven to us that reliable supply, honest communication, and technical acumen matter more than any sales pitch. As standards rise and research pushes forward, we carry these lessons into every batch—so what ends up in your lab stands up to the highest expectations, whatever your next experiment demands.