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HS Code |
156390 |
| Chemical Name | Sodium Tauroglycocholate |
| Molecular Formula | C26H42N2NaO7S |
| Molecular Weight | 548.67 g/mol |
| Appearance | White to off-white powder |
| Solubility | Soluble in water |
| Storage Conditions | Store at 2-8°C |
| Cas Number | 96969-99-4 |
| Ph Value | Approximately 7.0 (1% solution in water) |
| Usage | Biochemical research, bile salt component |
| Synonyms | Sodium tauroglycocholate hydrate |
| Boiling Point | Decomposes before boiling |
| Stability | Stable under recommended storage conditions |
As an accredited Sodium Tauroglycocholate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Sodium Tauroglycocholate is supplied in a 25g amber glass bottle, tightly sealed with a screw cap, featuring clear labeling. |
| Shipping | Sodium Tauroglycocholate is shipped in tightly sealed containers under cool, dry conditions to prevent moisture absorption and degradation. It is classified as non-hazardous for standard transport, but should be handled with appropriate safety precautions. Proper labeling and documentation are included to ensure safe and compliant delivery according to regulatory guidelines. |
| Storage | Sodium Tauroglycocholate should be stored in a tightly sealed container, protected from light and moisture. Keep it in a cool, dry place at room temperature, typically between 15–25°C (59–77°F). Avoid exposure to sources of heat and incompatible substances. Ensure proper labelling and segregate from strong acids or oxidizing agents. Follow all standard laboratory safety and chemical storage protocols. |
Applications of Sodium Tauroglycocholate in Industrial ManufacturingAs the original manufacturer of Sodium Tauroglycocholate, we supply this bile salt for specialized use in several advanced industrial sectors. Our focus is the support of downstream partners requiring high-quality raw materials for regulated, high-performance formulations and processes. 1. Pharmaceutical Microbiology—Bile Salt Media for Enteric Pathogen CulturingIn pharmaceutical microbiology laboratories and industrial testing, Sodium Tauroglycocholate acts as an inhibitory and selective agent for culturing enteric bacteria. It is routinely formulated in bile salt-containing agar and broth media to enable accurate detection of pathogens such as Salmonella and Shigella while suppressing non-target organisms. Sensitive downstream testing protocols depend on repeatable lot-to-lot quality and precise raw material proportions described in official pharmacopeial recipes. Our quality control ensures batch suitability for microbial diagnostics that underpin pharmaceutical product release. Industry compliance standards
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2. In Vitro Diagnostic (IVD) Enzyme Substrate Testing—Cholestatic MarkersSodium Tauroglycocholate is essential in specific in vitro diagnostic kits for clinical laboratories, especially for detection of cholestatic liver markers. Diagnostic device manufacturers require reproducibly pure bile salt substrates to measure activity of enzymes such as alkaline phosphatase, γ-glutamyltransferase, or bile salt hydrolase in human serum. Our controlled process delivers consistent material meeting biochemistry kit manufacturer requirements for reagent-grade purity and performance in enzyme colorimetric or fluorometric reaction components. Industry compliance standards
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3. Food Laboratory Analysis — Selective Chromogenic Media for Food SafetyFood testing laboratories utilize Sodium Tauroglycocholate in the formulation of specialized chromogenic and selective agars crucial for detecting enteric pathogens in milk, ready-to-eat meals, and other foods. The bile salt selectively inhibits background flora, improving detection of organisms such as E. coli O157:H7 and Salmonella species. Stringent lot qualification and traceability underpin its use, meeting required performance for accredited food safety laboratories processing global trade shipments. Industry compliance standards
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4. Pharmaceutical Research — Simulated Bile Solution for Drug Absorption and SolubilityResearchers and formulation scientists prepare simulated intestinal fluids using Sodium Tauroglycocholate as a critical bile component to test pharmaceutical active ingredient solubilization and permeability in vitro. Accurate simulation of human intestinal bile environment is necessary in drug discovery, bioequivalence, and generic drug studies to predict oral bioavailability. Manufacturers providing this raw material must guarantee molecule-specific purity and lot consistency suitable for regulatory submissions and robust pharmaceutical R&D method development. Industry compliance standards
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At our facility, we put years of chemical manufacturing experience behind every unit of Sodium Tauroglycocholate we produce. As chemists, we’ve learned that this compound is a unique hybrid derivative of both taurocholic and glycocholic acids, binding sodium with dual bile acid functionalities. Our team relies on precision synthesis routes using carefully sourced precursors, honed over dozens of trial runs, to ensure that each batch delivers consistent quality. Our model meets research and pharmaceutical requirements, with tight control on purity and impurity profiles. Our standard production yields a fine, free-flowing white to off-white powder, with moisture content, sodium proportion, and acid conjugate balance precisely tested before release.
As active manufacturers, we understand subtle differences between sodium-based bile acid conjugates. Taurocholate and glycocholate salts each display distinct amphipathic behavior depending on the context. By combining both, sodium tauroglycocholate exhibits nuanced solubility, micellization, and surface activity profiles. Our technical teams regularly test each lot for critical micelle concentration, clarity in buffer, and consistency in rehydration. Customers from life sciences, analytical chemistry, and formulation research report that the hybrid salt improves predictability and stability in mixed micelle systems where pure tauro or glyco variants can underperform.
Most scientists working with us need more than a generic product description. They want substances that deliver reproducible results—whether studying intestinal absorption, cholesterol transport, or membrane protein solubilization. We’ve seen how small shifts in sodium tauroglycocholate composition can change the outcome in cell culture, simulated digestion models, or protein extraction techniques. For this reason, each production batch runs through our in-house QC, with HPLC and mass spectrometry checking for unintended byproducts, and our team regularly communicates with end users for troubleshooting or optimization support.
Bile acid salts serve as cornerstone reagents in both basic research and bioprocessing. Our sodium tauroglycocholate often finds its way into dissolution testing, lipid metabolism models, and specialized enzyme assays. Over the years, we observed that dual-conjugated salts provide improved performance during mixed micelle formation, especially at near-physiological pH and ionic strength. Application protocols for nutrient uptake studies in simulated small intestine, and separation of membrane-bound proteins from eukaryotic cells, consistently call for reliable, highly soluble preparations—where our process consistently delivers reliable results.
From our vantage point as producers, lot-to-lot variation remains more than an abstract concern—it directly affects research outcomes. Minute differences in precursor purity or reaction run time can shift the end balance of sodium, tauro, or glyco components. We address this with extended purification steps and by using fresh, high-grade raw materials for every batch. In-process monitoring checks not only for sodium content, but also for consistent ratios between tauroglycocholate and unreacted starting acids, protecting users from unaccounted-for surfactant effects. This hands-on approach delivers product uniformity over multi-year runs, simplifying customers’ validation and batch control needs.
Through direct feedback from laboratories, we’ve compared sodium tauroglycocholate head-to-head with sodium taurocholate and sodium glycocholate. In protein reconstitution and transport models, composite salts often preserve enzyme activity and protein integrity more effectively, especially under variable buffer conditions. Laboratories working with detergent-sensitive proteins or in screening of gut permeability find the blend less disruptive, avoiding spikes in aggregation or precipitation. Our research partners use these observations to refine methods for digestive simulation, emulsification, and pharmaceutical formulation, often switching to the hybrid to address gaps left by traditional single-conjugated salts.
The chemistry behind sodium tauroglycocholate rewards attention to detail at every stage. Sourcing, storage, synthesis, and packaging fall under strict standard operating procedures. Sample retention helps us track and resolve any field issues, as feedback loops between our technical staff and our users have led to important process upgrades in past years. For example, introducing additional filtration steps led to measurable reductions in particulate content, improving results in high-sensitivity analytical methods. We run stability checks at elevated temperature and humidity, logging shelf-life trends that feed back into our recommendations for laboratory storage scheduling. These controls allow us to guarantee longer shelf stability and fewer surprises during repeat experiments.
Sodium tauroglycocholate’s two-pronged derivation supports complex applications that challenge other bile acid salts. Analytical facilities use it as a surfactant modulator in chromatographic separations, where improved peak shape or retention behavior indicates effective micelle formation. In pharmaceutical compounding, our customers incorporate our product into oral or injectable model systems to mimic human bile composition, producing better predictive data for solubilization and bioavailability. We’ve tracked improvements in dissolution tests for poorly water-soluble APIs and provided technical support tailoring buffer systems for maximum performance. Because we run our own pilot studies, our product recommendations come from direct bench-scale trials, not just catalogs or literature reviews.
Solubility profiles drive use cases in both bioscience and industrial settings. Over the years supplying sodium tauroglycocholate, we’ve observed shortfalls with less rigorously prepared salts, such as persistent undissolved residues or clouding at working concentrations. We choose time-consuming but effective drying steps and post-synthesis filtration to avoid these problems, resulting in easy, rapid solubilization at common experimental concentrations. Users conducting time-sensitive uptake experiments or throughput assays appreciate these practical details—the product dissolves cleanly with gentle stirring or brief vortexing even in buffered solutions rich in divalent cations.
As manufacturers with longevity, regulatory compliance matters to us and our partners. Each lot comes with full traceability documentation—process logs, analytical certificates, and impurity profiles—generated on-site and updated with every change in raw material sourcing. Pharmaceutical and diagnostic companies, in particular, need comprehensive support with technical files, and our regulatory staff maintain direct lines with quality assurance contacts at customer sites to expedite reviews or address evolving compliance criteria. This direct channel reduces downtime and compliance rework, especially where documentation forms part of regulatory filings or product registrations.
Our role doesn’t end after shipping. Our chemists work with lab teams at universities, contract research organizations, and industry partners to resolve difficult technical issues. Whether troubleshooting unexpected precipitation or optimizing extraction protocols, access to people with hands-on manufacturing and application experience often makes the difference. By running our own parallel experiments, we ground suggestions in direct data. Over calendar years, this drive for real-world improvement has led to product refinements and, in some cases, the evolution of new hybrid salts for specialized use cases.
End-users often face inconsistencies when relying on multiple rounds of repackaging or intermediaries with little insight into upstream production. As the original producer, we control input variables, processing conditions, and release criteria. With our own team overseeing every step, we can answer nuanced technical questions about batch differences, storage stability, or compatibility with related reagents quickly and with transparency. Our factory-centric approach guarantees continuity in both supply and technical support, supporting consistent workflow scaling or regulatory submissions without delay.
Having scaled from pilot lots to regular commercial quantities, we understand how manufacturing scale impacts reliability, supply continuity, and project budgeting. We’ve optimized unit operations for yield and reproducibility, leveraging in-house analytics to minimize waste and preempt deviations. Our ability to forecast and maintain inventory for stable high-volume delivery means few disruptions, even during periods of unexpected demand. Clients requiring bulk supply for long-term studies or multi-site operations benefit from both cost containment and process traceability, supporting streamlined logistics and easier forecasting for procurement and finance teams.
Green chemistry and safety protocols are not only regulatory imperatives, but reflect the way we work. All spent solutions and nonconforming products run through validated disposal or recycling channels. Our plant managers continually review solvent use, optimizing approaches to recovery and energy use. Regular safety training and documented handling protocols keep onsite hazards minimal and protect both the production staff and the environment. By following through with detailed logs and third-party audits, we assure our partners that the product they receive hasn’t only passed technical muster, but also meets ethical and safety obligations from start to finish.
Working daily with sodium tauroglycocholate and related compounds positions us to spot new needs as scientific practice evolves. Emergent trends in targeted delivery, advanced solubilization systems, and biomimetic model design keep pushing technical boundaries. Our research collaborations have driven us to experiment with alternative conjugation chemistries and enhanced purification systems, investing profits back into exploratory work. By maintaining formal links with research consortia, our R&D chemists get early visibility into novel model systems or analytical constraints, letting us adjust processes proactively. This cycle of feedback supports continuous product improvement and keeps us responsive to changes in biochemistry, pharma, and regulatory landscapes.
As direct producers, we’ve accumulated a book of field notes on sodium tauroglycocholate in actual experiments and pilot production settings. Many users seek out our support not just for supply, but for methods to overcome batch inconsistencies or procedure-specific issues. We track reported outcomes, run controlled parallel tests, and document best practices on dissolution, storage, and compatibility with sensitive proteins or antibodies. Our technical support extends from sample reconstitution to long-term stability, sharing guidance informed by our experience handling kilograms of material, not just sample packs or academic protocols. Engineers and scientists relying on our product receive not just a bottle but a partnership, underwritten by firsthand troubleshooting knowledge and up-to-date technical reference data.
Our ethos values transparency, reliability, and direct accountability. This comes from years on the front line of production, troubleshooting synthesis or packaging issues hands-on. By owning each outcome—good or bad—we have a real incentive to get basics right every time: accurate raw material measurement, thorough documentation, vigilant contamination control, and ongoing skills training. Every batch of sodium tauroglycocholate reflects this approach, balancing technical advancement with practical reproducibility, and informed by feedback from the people actually running the experiments or producing the medicine.
Supplying sodium tauroglycocholate directly connects us to every echelon of the scientific and product development ecosystem. Listening to a customer’s challenge around protein stability, seeing a university’s need for sharper analytical separation, or supporting a pharmaceutical team’s quest for better absorption models drives our ongoing investment. We take pride in manufacturing to a standard upheld by stringent process control, open dialogue with the scientific community, and ongoing investment in people and technology. By making compounds with care, and supporting those who use them, we build not only better products but ongoing relationships—delivering not just chemistry, but consistent progress for all involved.