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Benzoylcholine Chloride

    • Product Name Benzoylcholine Chloride
    • Alias Benzoylcholine
    • Einecs 211-579-8
    • 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

    813143

    Productname Benzoylcholine Chloride
    Casnumber 61-96-1
    Molecularformula C9H12NO2.Cl
    Molecularweight 201.65 g/mol
    Appearance White to off-white powder
    Solubility Soluble in water
    Meltingpoint 183-185°C
    Purity Typically ≥98%
    Storagetemperature 2-8°C
    Synonyms Benzoylcholine chloride; Benzoic acid choline ester chloride
    Ecnumber 200-523-6
    Iupacname 2-(Benzoyloxy)-N,N,N-trimethylethanaminium chloride

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

    Packing & Storage
    Packing Benzoylcholine Chloride, 25g, supplied in a sealed amber glass bottle with tamper-evident cap and detailed hazard labeling.
    Shipping Benzoylcholine Chloride should be shipped in tightly sealed containers, away from moisture and light, and stored at room temperature. It must be handled according to standard chemical safety protocols, with proper labeling and documentation. During transport, ensure packaging is secure to prevent spillage or exposure to incompatible substances.
    Storage Benzoylcholine Chloride should be stored in a tightly sealed container, protected from moisture and light. It is best kept at 2-8°C (refrigerated) in a well-ventilated, dry area, away from incompatible substances such as strong oxidizers. Ensure proper labeling and handle with appropriate personal protective equipment to prevent accidental exposure.
    Application of Benzoylcholine Chloride

    Applications of Benzoylcholine Chloride in Industrial Manufacturing

    Benzoylcholine chloride finds specialized use in several chemical and pharmaceutical processes, where reliable quality and consistent properties support the demands of regulated downstream production. The following industrial application scenarios reflect real-world usage within focused manufacturing segments.

    1. Pharmaceutical Intermediate for Cholinergic Agent Synthesis

    Producers use benzoylcholine chloride as an intermediate in the synthesis of quaternary ammonium cholinergic drugs, especially for manufacturing benzoylcholine-based analogues and reference compounds in central nervous system research. Its purity and strict QC allow precise conversion during quaternisation, impacting the pharmacological properties of the resulting active ingredient. Chemical engineers adjust process temperature and solvent ratios to optimize nucleophilic substitution, minimizing impurity profiles in accordance with pharmacopeial requirements.

    Industry compliance standards

    • ICH Q7: Good Manufacturing Practice for Active Pharmaceutical Ingredients
    • European Pharmacopoeia (Ph. Eur.) monographs where applicable
    • 21 CFR Part 211: cGMP for Finished Pharmaceuticals (US FDA)
    • Chinese Pharmacopeia (ChP) for supply to China

    Typical usage ratio

    • Stoichiometric ratios range from 0.98:1.00 to 1.05:1.00 with respect to core amine substrate
    • Adjustment based on impurity control and reaction completion (monitored by HPLC/GC)

    Downstream process integration

    • Direct feeding into batch reactor for quaternisation step
    • Integrated QC sampling after initial dissolution
    • Reacted in closed vessel to control moisture and air exposure

    Final product types

    • CNS cholinergic agonist APIs (clinical trial or reference standard grade)
    • Laboratory reference compounds for drug discovery
    • Research-grade analytical standards for biological studies

    2. Research Chemical for Enzyme Substrate Preparation

    Benzoylcholine chloride supports enzyme kinetics laboratories as a synthetic substrate for cholinesterase assays and mechanistic studies. Scientists formulate solutions using precise mass balances to determine acetylcholinesterase and pseudocholinesterase activity in various sample matrices. The compound’s consistent salt form enables reproducible results and calibration curves. Labs require certificate of analysis (CoA), traceable lot numbers, and detailed impurity profile documentation to comply with international laboratory/testing standards.

    Industry compliance standards

    • ISO/IEC 17025 for testing and calibration laboratories
    • OECD Guidelines for the Testing of Chemicals (biochemical assays)
    • GLP (Good Laboratory Practice) for regulated preclinical testing

    Typical usage ratio

    • Final substrate concentrations: 0.05–1 mmol/L in assay buffer
    • Weighing accuracy required: ±1% of theoretical mass, dilution in buffered aqueous media

    Downstream process integration

    • Dissolved directly as substrate in biochemical assay media
    • Used in high-throughput and manual microplate formats
    • Frequently aliquoted, filtered, and stored in temperature-controlled conditions

    Final product types

    • Diagnostic enzyme assay kits (laboratory use, non-IVD)
    • Validated reference standards for kinetic studies
    • Academic and industrial biochemical research reagents

    3. Analytical Reagent for Instrument Calibration

    Laboratory supply chains include benzoylcholine chloride as a traceable analytical reagent for calibrating analytical instruments, including LC-MS and HPLC detectors, when quantifying quaternary ammonium substances. Instrument manufacturers and reference labs require controlled impurity specifications, validated solubility, and batch homogeneity. The material enters precise calibration solution blending, and strict handling prevents cross-contamination or loss of chloride counterion during solution preparation and storage.

    Industry compliance standards

    • ISO 17034:2016 – General requirements for the competence of reference material producers
    • USP General Chapter <1058> Analytical Instrument Qualification (AIQ)
    • ISO/IEC 17025 laboratory accreditation

    Typical usage ratio

    • Calibration standards typically at 1–50 µg/mL, blended by serial dilution
    • Higher concentrations in stock solutions up to 500 mg/L for multi-instrument calibration

    Downstream process integration

    • Weighing and dissolving in certified solvents under nitrogen or argon (to prevent oxidation)
    • Filtered solutions dispensed into calibration sample vessels
    • Integration with automated pipetting or gravimetric blending for high-precision requirements

    Final product types

    • Primary analytical standards for LC, LC-MS, and related analytical batches
    • Certified reference materials for method validation
    • Instrument manufacturer’s test and calibration sets

    4. Chemical Building Block for Specialty Organic Synthesis

    Synthetic chemistry labs and pilot-scale production facilities use benzoylcholine chloride as a starting material to build specialized nitrogen-containing heterocycles and designer quaternary ammonium salts for academic, industrial, and fine chemicals development. Chemical process engineers tailor reaction molarity and solvent selection around the compound’s solubility and reactivity profiles. Quality assurance teams validate the incoming batch for specific identity and chirometric purity before incorporation to ensure traceable downstream synthesis.

    Industry compliance standards

    • ISO 9001:2015 Quality Management System for chemical production
    • REACH (EC 1907/2006) for safe chemical handling and registration in European markets
    • Applicable SDS/GHS compliance for safe transport and storage

    Typical usage ratio

    • Used at 1 to 1.5 molar equivalents against target electrophile (amine, alcohol, etc.)
    • Reactant ratio varies by desired degree of quaternisation and by-product minimization

    Downstream process integration

    • Added to glass or stainless steel reactors under chilled or ambient conditions
    • Dissolved in polar aprotic solvents (e.g., acetonitrile, DMSO) for nucleophilic displacement
    • Precession dosing with monitoring by TLC, NMR, or LC-MS during reaction course

    Final product types

    • Functionalized heterocyclic intermediates
    • Designer quaternary ammonium salts for custom synthesis projects
    • Specialty building blocks for R&D, lead optimization, or scale-up experiments
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    Certification & Compliance
    More Introduction

    Meet Benzoylcholine Chloride From the Perspective of Its Manufacturer

    Building On Experience: Benzoylcholine Chloride’s Place in Chemical Manufacturing

    Years of handling quaternary ammonium compounds have taught us a lot about the subtle differences that shape their usefulness. Benzoylcholine Chloride stands apart in a lineup of related compounds because of its benzoyl group, which shifts its character not just in reaction pathways but in real-world application. This product isn’t a byproduct or a sideline— it’s the result of an optimized synthesis, deliberately guided step by step to achieve the kind of purity that seasoned chemists demand. Over years of batch runs, process tweaks, reagent supply challenges, and feedback from researchers and formulators, we’ve refined our methods. At each turn, the aim has been to keep impurity profiles low and offer a consistency that experienced labs rely on.

    What Sets the Model and Specifications Apart

    Our Benzoylcholine Chloride (C9H12ClNO2) emerges as a white to off-white crystalline powder under properly-controlled manufacturing routes. Each lot reaches the target specification for assay, generally greater than 98% by HPLC. Moisture, residual solvents, and related benzoyl analogs are minimized through proven purification protocols. This isn’t about following an abstract standard; it’s about preventing batch-to-batch drift and avoiding rework costs that every plant manager dreads. Chemists at the production line monitor not just the final assay, but trace levels of potential byproducts using techniques honed over many runs, so results in university and industrial labs stay reproducible.

    What that means for a customer is simple: analytical reliability, even as machinery wears and minor seasonal changes try to creep in. Every kilogram we ship matches the last, because quality isn’t achieved with end-point testing—it’s enforced through every step, from raw material ordering to drum packing. This hands-on reality shapes not only the data on a certificate, but the actual day-to-day trust that users build with us.

    The Uncommon Versatility of Benzoylcholine Chloride

    You don’t see Benzoylcholine Chloride in as many catalogs as tetraalkyl analogs, yet it fills an irreplaceable niche in biochemical and pharmaceutical research. In academic and industrial pharmacology, it often serves as a reference substrate when probing cholinesterase activity. Other choline esters can suffer from instability or rapid hydrolysis, wrecking the foundation of properly controlled kinetic assays. The benzoyl ester, by comparison, strikes a meaningful compromise between reactivity and manageability. During synthesis, the benzoyl group introduces opportunities for distinct reactivity in enzymatic studies, which matters to those establishing enzyme inhibition patterns or screening for cholinesterase activity in the lab.

    Several research teams rely on Benzoylcholine Chloride for the development and validation of new enzyme assays, especially in the context of neurological disease modeling. Over the years, we’ve fielded questions from labs experimenting with acetylcholine analogs, only to find the acetyl variant too prone to decomposition under their conditions. Consistent feedback points to Benzoylcholine’s superior handling and storage characteristics. It retains stability across broader pH ranges and manages longer shelf-life, so less goes to waste while storage rooms fluctuate between seasons.

    Direct Feedback and Real-World Usage

    Having supplied Benzoylcholine Chloride across dozens of projects, we’ve come to appreciate the practical hurdles downstream users face. Lyophilization steps that cause caking in some batches won’t sideline our product, because the hydroscopicity profile has been tuned through physical process controls. As someone who has stood over vacuum ovens and watched for color changes signaling over-drying, I can say that consistent product texture isn’t just a minor feature—it keeps workflow interruptions to a minimum.

    Several university labs have used our Benzoylcholine Chloride to calibrate spectrophotometric and fluorometric systems, finding that its defined UV absorbance characteristics (near 228 nm) provide a stable baseline. Others rely on its manageable solubility in both water and organic solvents to enable quick stock solution preparation, particularly at the bench where time and accuracy are at a premium.

    Users often compare their experiences with ours against other suppliers’ “similar” products. Differences may seem minor on paper, but even slight variations in impurity profiles, particle sizing, or residual moisture content disrupt sensitive instrument calibration and kinetic measurements. Unlike more mass-market bulk chemicals, the feedback loop between our plant and real-world lab protocols shapes an improved product cycle. Where batches falter— perhaps due to shipping delays or temperature swings— we implement real adjustments, learning from every recall or performance complaint, so the next run gives predictable results. A product’s story doesn’t end at the loading dock.

    Comparison With Other Choline Esters

    Compared with acetylcholine chloride or other choline-based esters, Benzoylcholine Chloride carries a more robust aromatic ring, offering both steric and electronic effects appreciated in enzyme specificity studies. Researchers running comparative enzyme inhibition trials often choose this product for its structurally unique configuration, which highlights subtle differences in substrate reactivity.

    Acetylcholine, being a natural neurotransmitter, hydrolyzes fast and rarely stays stable in standard storage conditions. Benzoylcholine lingers longer without significant hydrolysis. This quality gives assay developers time to make careful dilutions and readings, which plays out in fewer data anomalies and less costly reruns. Even in organic chemistry, pharmaceutical developers employ Benzoylcholine as a versatile synthon for more exotic derivatives, including agents targeting neurological or cardiovascular pathways.

    Some newer choline esters appear on the market now, but most bring lingering issues of rapid decay or require stabilizing agents that add cost and complexity. Benzoylcholine Chloride’s resilience against hydrolysis means storage, transportation, and handling can be more forgiving— a key benefit for those transferring chemicals outside temperature-controlled environments. Formulators working in less-than-ideal facilities appreciate that the compound’s shelf-life stretches significantly, outpacing its competitors and making order scheduling less of a recurrent headache.

    Practical Solutions to Lab and Scale Production Challenges

    Formulation reliability doesn’t come down to a single factor. Our process engineers and QA teams pay particular attention to granular issues that customers mention, ranging from clumping and non-homogeneity in formulation tanks, to subtle pH drift when stored in glass versus plastic. We listen for pain points, like slow dissolution or formation of micro-precipitates, then tinker with crystal morphology or opt for different drying methods to solve them. There have been times when a product turned up at a client’s site with an unexpected color or off-odor; full batch traceability and responsive technical support allowed us to resolve those events without runaway downtime.

    When it comes to custom formulations, our plant floors feature flexible synthesis and purification lines. This means we’re able to tweak choline ester ratios or introduce stabilizing micro-additives for specific research needs, based on ongoing dialogue with institution scientists. We maintain strong links to reagent supply partners— an upstream necessity, given the fluctuations that global chemical logistics now face. This focus ensures we don’t cut corners with precursor grading or sacrifice purity for expediency, even when supply chains tighten.

    We recognize that not every research group or manufacturer requires multi-kilogram quantities, so our facility prepares Benzoylcholine Chloride in both small research vials and larger commercial containers. Batch filling occurs under conditions that reduce airborne contamination and moisture uptake, essential for a compound that draws in humidity if left unprotected. Clients frequently ask us about custom packaging— anti-static liners, amber vials, or nitrogen fills for extended storage— and we have experience accommodating these requests, giving customers practical tools to sustain product quality from the first use to the last.

    Safety, Handling, and Regulatory Touchpoints

    Handling Benzoylcholine Chloride on the manufacturing floor and in the warehouse shares lessons with managing other synthetic intermediates. Powdered compounds need robust dust management; even a few grams can drift, leading to cross-contamination and air quality complaints. Long learning curves taught us the value of localized extraction and the use of proper PPE, since skin and eye irritation can arise from even minor exposures. For all orders, safety data sheets support safe handling from the moment material is opened.

    On the regulatory front, Benzoylcholine Chloride doesn’t fall under restrictive international conventions, but that hasn’t led us to become lax about documentation or batch traceability. Our plant records capture each run, analytic batch numbers, and outgoing shipment ID, so customers remain confident about supply chain transparency. Over time, we’ve worked with regulatory consultants to ensure documentation supports academic, GMP, or ISO requirements as needed, lowering barriers for clients navigating different legal environments.

    Additional scrutiny comes both from growing concerns around environmental impact and good manufacturing practice. Our process design recaptures solvents where feasible, and we manage waste by recycling or disposing through approved routes. While not all clients see these upstream choices, they shape our day-to-day reputation and stand as proof that manufacturers can balance performance with stewardship.

    Supporting Responsible and Effective Chemical Use

    One thing that’s become clear is the importance of communication between manufacturer and end user. Regular check-ins, honest dialogue about changing regulatory or scientific standards, and an openness to adapt production as new information emerges keep quality up and costs predictable. Over the years, this open approach has helped us assist customers adjusting protocols, whether to improve shelf-life or to deal with lab-scale issues like precipitation or color drift.

    The importance of stability, purity, and reliable supply stays at the front of our mind. New scientists come into user groups every year, sometimes unaware of the quirks that define particular choline esters. We supply documentation and technical support, not as a marketing add-on, but as a way to keep partnerships productive. Experience tells us that troubleshooting with clients— on the phone or through digital channels— turns one-off orders into long-term trust built on shared success.

    Adapting to Shifting Needs in Research and Industry

    Applications for Benzoylcholine Chloride change as science moves forward. Biotech innovation has spurred the compound’s use beyond traditional enzymology, reaching into new screening methods and as a reference material for instrument calibration. Each new direction prompts us to revisit synthesis pathways, purification routines, and QA protocols. This steady background effort helps us catch small drift before it impacts research outcomes, keeping our product robust across shifting parameters.

    During supply pinches or demand spikes, we manage inventory and plan production in a way that avoids backorders. Scheduled preventive maintenance, alternative sourcing plans, and flexible labor pools make sure we keep promises to both big industry clients and academic labs. Customer feedback— whether delivered by email, after a conference talk, or a quick phone call late into the night— has shaped packaging sizes, delivery turnaround, and even which technical documents we provide.

    What Experience Has Taught Us About Benzoylcholine Chloride

    Supplying Benzoylcholine Chloride over the years, we’ve learned that even specialty chemicals follow the same core rules as more common reagents— pay attention to process integrity, never get comfortable with “good enough,” and harness user feedback as a driver of manufacturing improvement. Direct insights from researchers who push the boundaries of neurochemical study or method validation keep us sharp. This hands-on approach closes the gap between what chemistry textbooks describe and what happens in working labs.

    If you’re investing time and money into advanced enzyme assays, receptor screening, or fine-chemical synthesis, batch reliability isn’t an abstract promise. It’s a factor that shapes real budgets, labor costs, and project timelines. The underlying stability and defined purity of our Benzoylcholine Chloride doesn’t come from a lucky process—it results from decades spent seeking out where failures start and systematically tightening every weak link.

    Clients tell us the product makes their calibration routines more predictable, gives them more confidence in long-term method development, and reduces the rate of experimental error. That feedback justifies the close attention we pay to every detail, from vacuum oven settings to packaging climate. Our team stands ready to discuss modifications, troubleshoot, or simply listen— because the journey from manufacturing floor to research bench shapes both our shared progress and our business future.