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Ethyl N-Benzoyl-L-Argininate Hydrochloride

    • Product Name Ethyl N-Benzoyl-L-Argininate Hydrochloride
    • Alias Bz-Arg-OEt·HCl
    • Einecs 252-791-6
    • 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
    VTB
    Specifications

    HS Code

    532708

    Productname Ethyl N-Benzoyl-L-Argininate Hydrochloride
    Casnumber 88941-31-1
    Molecularformula C14H22ClN5O3
    Molecularweight 343.81
    Appearance White to off-white powder
    Solubility Soluble in water
    Purity Typically ≥98%
    Storagetemperature 2-8°C
    Synonyms Ethyl N-benzoyl-L-argininate HCl
    Chemicalstructure Contains benzoyl and argininate ethyl ester groups
    Application Used in enzymatic assays and biochemical research

    As an accredited Ethyl N-Benzoyl-L-Argininate Hydrochloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing White, tamper-evident plastic bottle containing 25 grams of Ethyl N-Benzoyl-L-Argininate Hydrochloride, labeled with hazard symbols and product details.
    Shipping Ethyl N-Benzoyl-L-Argininate Hydrochloride is shipped in sealed, airtight containers to protect it from moisture and contamination. It is packed according to hazardous chemical regulations, typically in cool, dry conditions, and labeled for laboratory use. Appropriate documentation and handling instructions are included to ensure safe and compliant transportation.
    Storage Ethyl N-Benzoyl-L-Argininate Hydrochloride should be stored in a tightly sealed container, protected from light and moisture. Keep it in a cool, dry place, preferably at 2–8°C (refrigerated) unless otherwise specified by the manufacturer. Avoid exposure to incompatible substances and ensure proper labeling. Handle under a chemical fume hood if there is any risk of airborne exposure.
    Application of Ethyl N-Benzoyl-L-Argininate Hydrochloride

    Applications of Ethyl N-Benzoyl-L-Argininate Hydrochloride in Industrial Manufacturing

    Ethyl N-Benzoyl-L-Argininate Hydrochloride serves as a key functional additive and intermediate in select industrial sectors, where its specific molecular structure supports precise formulation objectives, safety compliance, and process efficiency. Our manufacturing standards ensure each batch meets high-purity requirements, catering to niche applications across fine chemicals, pharmaceuticals, food processing, and specialty personal care production environments.

    1. Peptide-Based API Synthesis for Pharmaceuticals

    This compound acts as a protected arginine derivative in solid-phase peptide synthesis (SPPS) protocols adopted by peptide API manufacturers. Its introduction minimizes racemization and side reactions, facilitating high-purity oligopeptide production at scale. Operators introduce it during the automated coupling-deprotection cycles for stepwise peptide elongation, directly impacting yield and batch consistency demanded by regulatory frameworks.

    Industry compliance standards

    • ICH Q7 Good Manufacturing Practice (GMP) for Active Pharmaceutical Ingredients
    • USP–NF and Ph. Eur. requirements for peptide synthesis intermediates
    • 21 CFR Part 211 – US FDA Current Good Manufacturing Practice

    Typical usage ratio

    • 0.9–1.2 molar equivalents per peptide elongation step, relative to Fmoc/t-Boc protected amino acid residues; ratio adjusted by chain length and process optimization yields

    Downstream process integration

    • Dosed during early solid-phase loading or as a mid-chain arginine source, coupled following resin activation. Deprotection and peptide cleavage proceed under controlled conditions to prevent byproduct formation.

    Final product types

    • Pharmaceutical-grade peptide actives (e.g., hormone analogs, antimicrobial peptides)
    • Diagnostic peptide reference standards
    • Research-use APIs and peptide intermediates

    2. Enzyme Stabilizer for Protein Formulations

    Ethyl N-Benzoyl-L-Argininate Hydrochloride is incorporated into protein-based downstream formulations aimed at extending enzyme stability and modulating solubility. Bioprocessing facilities introduce it during buffer preparation or direct formulation steps, resulting in enhanced shelf life and reduced aggregation in sensitive biotherapeutic and reagent compositions.

    Industry compliance standards

    • ISO 13485:2016 for medical device and diagnostic reagent manufacturing
    • US Pharmacopeia General Chapters <1043> Ancillary Materials for Cell, Gene, and Tissue-Engineered Products
    • EMA/CHMP/BWP/272/2012 for excipients in biopharmaceutical formulations

    Typical usage ratio

    • 0.05–0.5% w/v, with the precise level dictated by protein/enzyme sensitivity, storage duration, and pH/ionic strength constraints of the formulation matrix

    Downstream process integration

    • Added as a solubilizer and stabilizer during final formulation, either before sterile filtration or directly into packaging. Compatibility validated in pilot scale to final fill/finish line.

    Final product types

    • Diagnostic enzyme reagents (e.g., PCR mixes, immunoassay kits)
    • Biotherapeutic protein solutions and lyophilized powder vials
    • Research protein standards and CRM (Certified Reference Materials)

    3. Food Enzyme Processing Aids

    In food enzyme manufacturing plants, Ethyl N-Benzoyl-L-Argininate Hydrochloride is used as a protective and activity-modifying additive during proteolytic enzyme formulation, optimizing functional performance in end-use applications such as baking and dairy modification. Operators add it to enzyme concentrates for tailored substrate specificity and reduced off-flavor generation. All applications adhere to international food additive regulations governing enzyme aid substances.

    Industry compliance standards

    • FAO/WHO Codex Alimentarius General Standard for Food Additives (GSFA)
    • EC No. 1333/2008 – European Food Additives Regulation
    • FCC (Food Chemicals Codex) specifications for enzyme aids
    • HACCP and ISO 22000:2018 food safety management systems

    Typical usage ratio

    • 30–200 ppm in the final formulated enzyme concentrate; optimized via pilot studies based on enzyme type, desired activity retention, and downstream process stressors

    Downstream process integration

    • Incorporated into aqueous enzyme concentrates during formulation blending, either pre-microfiltration or prior to spray- or freeze-drying for powdered forms. Ensures batch homogeneity and compliance with residue thresholds.

    Final product types

    • Baking enzyme blends (e.g., glutaminase, protease complexes)
    • Dairy protease preparations for cheese maturing
    • Multienzyme food processing aids

    4. Ingredient for Oral Care Product Formulations

    Formulators in the personal care industry utilize Ethyl N-Benzoyl-L-Argininate Hydrochloride as a cationic agent to deliver targeted antibacterial properties in high-performance oral care solutions. Its inclusion in dental pastes, mouth rinses, and professional cleaning preparations supports claims related to bacterial control and gum health, subject to regionally specific cosmetic and oral hygiene ingredient regulations.

    Industry compliance standards

    • EU Cosmetics Regulation (EC) No 1223/2009 for oral hygiene ingredients
    • US FDA Monograph for OTC Oral Care Drug Products
    • ISO 22716:2007 GMP for cosmetic product manufacturers
    • Local regulatory guidance on antibacterial agents in oral hygiene

    Typical usage ratio

    • 0.1–1.0% w/w in finished formulation, with the exact proportion adjusted based on antibacterial efficacy studies, synergistic flavor performance, and user safety assessments

    Downstream process integration

    • Dispersed in aqueous or hydroalcoholic base during the blending phase, prior to addition of abrasives, flavorings, and preservatives. Monitored for clarity, homogeneity, and shelf stability before filling and packaging.

    Final product types

    • Therapeutic toothpastes targeting dental biofilm
    • Mouthwashes with targeted antibacterial function
    • Professional dental gels and pastes for clinical use
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    Certification & Compliance
    More Introduction

    Ethyl N-Benzoyl-L-Argininate Hydrochloride: Purpose, Distinctions, and Practical Applications

    A Practical View from Production: Our Journey with Ethyl N-Benzoyl-L-Argininate Hydrochloride

    Ethyl N-Benzoyl-L-Argininate Hydrochloride takes shape through years of focused development in our plant. Making this compound isn’t about following a recipe from a textbook. It demands careful attention to the specific reactions that define the N-acylated arginine class. From raw material to finished batch, we examine every step for purity and process consistency. Many manufacturers overlook the day-to-day challenges: controlling hydrolysis, avoiding over-esterification, maintaining solubility, and preventing light sensitivity. Our process balances precision with scalability because lab-scale samples don’t always behave like production-scale batches.

    Understanding Its Identity: Model, Forms, and Quality Assurance

    Our Ethyl N-Benzoyl-L-Argininate Hydrochloride goes by the internal reference ENBA-HCl. It reflects our latest improvements, drawn from feedback and analytical reviews. As a crystalline powder, its appearance signals successful integration of the ethyl and benzoyl groups on the L-arginine backbone. We target a purity exceeding 99%, with moisture and chloride content measured batch-wise using standard titration and spectroscopy methods. Rigorous checks determine the content of trace enantiomeric impurities, since chiral purity affects downstream reactivity and customer satisfaction.

    We never lean on generic specifications published online. Instead, our benchmarks rise from experience across multiple industries and direct collaboration with formulation scientists. Each kilogram ships with a curated data sheet—matching real world analytics, not just theoretical targets.

    Where Chemistry Gets Practical: Uses and Value Across Markets

    Ethyl N-Benzoyl-L-Argininate Hydrochloride first drew attention as a specialty modifier for protease inhibition in biomedical research. Its arginine core supports bioactive interactions, while the N-benzoyl group impacts selectivity in enzyme inhibition. Our customers build on academic findings by incorporating ENBA-HCl into screening libraries. Some go further, using the compound in preclinical assay systems for they find salt form stability and improved aqueous compatibility compared to less soluble derivatives.

    Pharmaceutical pilot teams appreciate predictable performance from ENBA-HCl, favoring it over analogues like benzoyl-L-arginine ethyl ester. In peptide research, users lean on our consistent lot-to-lot purity. Working directly with several medicinal chemistry divisions, we’ve witnessed how subtle crystal traits—habit, particle size, bulk density—influence research outcomes. Using mixed-solvent milling, we help tailor these features at scale instead of offering a “one powder fits all” approach.

    In personal care, formulators regard ENBA-HCl as a safe, multifunctional ingredient. Its low toxicity profile and established metabolic breakdown reassure regulatory teams. Some customers build it into toothpaste prototypes, leveraging arginine’s buffering power to support enamel, or into antimicrobial mouthwash blends. The ethyl and benzoyl groups offer useful hydrophobicity, altering the rate that formulation systems release active agents. Food chemists trial it in flavor-precursor pathways, especially when wanting to boost umami without residual synthetic aftertaste.

    In analytical chemistry, several separation scientists use ENBA-HCl as an internal standard for amino acid and protease assays. The unique side chain pattern allows clean detection, supporting accurate qualitative and quantitative work. Teams working under GLP request detailed batch histories and supply consistent handling protocols; through years of supply, we’ve refined how we document this journey, and it boosts trust both ways.

    Distinctive Features: Comparing ENBA-HCl to Related Compounds

    Our ENBA-HCl differs from older benzoyl-arginine derivatives, where subtle modifications shift the physical profile significantly. Consider benzoyl-L-arginine ethyl ester hydrochloride (BAEE-HCl), a more common compound with similar roots. BAEE-HCl often shows lower aqueous solubility in our direct comparison tests and can clump when exposed to air with moderate humidity. ENBA-HCl maintains a free-flowing powder texture over weeks of controlled storage, reducing headaches for lab and production staff.

    Enzymatic assays distinguish ENBA-HCl from basic arginine or other N-acyl-arginine compounds. Substituting the ethyl group on the arginine carboxyl shifts substrate recognition in trypsin inhibitor screens. Several labs have shared direct findings where ENBA-HCl delivers sharper selectivity as an experimental variable. In side-by-side runs with BAEE-HCl, ENBA-HCl sometimes outperforms in peak clarity and reproducibility, though differences can depend on the specific protein target.

    Shelf stability marks another critical distinction. Under accelerated aging, ENBA-HCl shows less isomerization than free arginine, especially in mixed excipient systems. We routinely test packs at 40°C and 75% humidity, logging weight change, purity, and odor over monthly intervals. Results so far support a longer shelf life in both raw and formulated states, an advantage in pharma and food pilot testing.

    Handling matters too. With our ENBA-HCl, technicians find the powder’s static index is noticeably lower. It pours more cleanly, and bottles seldom stick together in long-term storage. Granular BAEE-HCl, in contrast, can form dense cakes that resist scooping. These production realities seldom show up in spec sheets, so we add this feedback to ongoing process tweaks.

    Solving Challenges in Real Manufacturing

    Bringing ENBA-HCl to consistent quality at scale demands more than good intentions. Minor changes in upstream benzoylation can swing yields and create unwanted byproducts. Through hands-on observation, our process engineers have worked out optimal solvent ratios and stirring protocols, reducing foaming and heat spikes. Routine lot sampling confirms product integrity, with on-site liquid chromatography identifying minute impurities.

    Dust management wasn’t trivial. Early batches sent clouds drifting above our stations, raising both waste and risk. Small changes such as adjusting airflow, upgrading containment, and using antistatic packaging made a big difference. It cuts down on loss, brings cleaner workplace air, and smooths downstream transfers. These details drive value, because nobody wants to see raw material losses or rework steps eat into a project’s budget.

    Water content forms another key focus. Ingredients can draw in moisture, especially during humid months, skewing dosing in sensitive pharmaceutical or food applications. We check Karl Fischer data on dry-run and actual product, limiting variance and flagging deviations early. Customer teams have told us directly that this practice means fewer stability problems for them—better shelf predictability, less regulatory headache, and lower insurance claims.

    We support customers with technical advice drawn from field experience. Process engineers, analytical chemists, and R&D staff share patterns they encounter. Their feedback: weighing speeds up, secondary reactions drop, and fewer “mystery peaks” pop up in downstream analytical work. The best solutions often come from the factory floor and the customer’s workbench, not just management reviews.

    Enabling Innovation: Where ENBA-HCl Adds Value

    Laboratories working in early-phase drug discovery see ENBA-HCl as more than an exotic reagent. Its clear reactivity profile lets teams design custom prodrugs. Compared to generic arginine derivatives, our product’s tight purity spec and low residual moisture broaden its application window. A team from a European research institute recently used it in a structure-activity relationship study, noting improved reproducibility of results and easier downstream purification.

    In peptide synthesis, selectivity issues can eat into project timelines. ENBA-HCl acts as a reliable tool to cap unwanted side reactions, producing cleaner sequences. Peptide shops and CROs have told us their batch clean-up ran faster, because fewer side products lurked in their HPLC traces. Our experience says direct support, coupled with prompt response to unusual observations, often solves problems faster than “tickets” pushed through distant helpdesks.

    The personal care sector values consistent quality for regulatory filings. One dental product developer noted that ENBA-HCl’s buffering gave their formulation longer shelf presence, skipping crystallization on storage that had appeared with other arginine sources. The shift in properties comes straight from the distinctive ethyl and benzoyl substitutions—choices made with guidance from upstream chemistry, not mere chance.

    Customers also cite trusted logistics as a practical benefit. Each batch arrives with mapped batch histories, and our team follows up after delivery to ensure smooth integration. This reduces project delays, especially in food trials and regulated pilot lines where ingredient traceability reduces the risk of recalls.

    Why the Difference Matters: Lessons from Manufacturing

    From daily experience, small deviations at the process level grow into big headaches at the customer stage. Making ENBA-HCl has taught us vigilance: keeping batch records accessible, writing up every anomaly, and being transparent if a shipment doesn’t hit the target. Customers grow wary if product properties shift unexpectedly; that uneasy gray zone breeds wasted hours in troubleshooting. For us, clear communication—grounded in facts and careful routine—supports long-term trust.

    We avoid temptation to bulk blend off-spec batches or mask problems with technical jargon. Instead, fielding real-world issues brings collaboration. If a solvent swap pushes solubility up or down, we say so. If a run throws a new impurity, we hunt it down and fix it, not just write an apology note. This feedback loop shaped the current ENBA-HCl process, trimming steps that spark dust or invite water uptake.

    What we’ve seen is this: laboratories and factories relying on ENBA-HCl benefit from received predictability. Less downtime, smoother BMP compliance checks, and faster audits mean the product’s real world track record becomes its certification. The chemistry matters, but so does keeping promises made batch after batch. As a manufacturer, we know the stakes; unplanned hiccups on our line ripple into production delays on someone else’s. Our team builds quality into every drum, not as a marketing label, but as the outcome of day-in, day-out vigilance and learning.

    Progress and Next Steps: Continuous Improvement from Direct Experience

    Scaling up from kilograms to hundreds of kilograms per month means upgrades in everything from filtration to bagging. Each time we tweak the reactor or install firmer containment, we stretch yield and add consistency. Working with regular customer feedback, we’ve optimized particle size to fit most automated and manual dispensing systems. Field tests now show less caking, fewer oversized clumps, and tidy dissolution even at low water content.

    We partner with logistics teams to minimize risk in transit. ENBA-HCl reacts sensitively to both excess heat and high humidity. We spent months trialing insulated shippers, fine-tuning desiccant placements, and tracing chemical exposure during sea freight. In shipping to both subtropical and cold climates, batches have held their specification without degradation or off-odor reporting. That learning continually filters back into how we pack, store, and deliver.

    In customer partnerships, we stand ready to adjust product formats for special projects. Requests come in for specific sieve cuts, granule blends, or customized moisture targets. Using flexible, small-batch reactors alongside our main facility, we can trial changes quickly and feed direct results into the next regular run. The ability to innovate and iterate with real chemistry in hand sets us apart from traders or generic suppliers.

    Direct Communication Builds Trust and Performance

    Questions never stay unanswered for long. Every inquiry about ENBA-HCl—odd color, unexpected trace ion, or solubility blip—gets routed straight to the bench or plant engineer responsible for the batch. No generic ticketing, no hiding behind empty technical emails. Clear, accountable responses drive our reputation forward with users, from R&D all the way to manufacturing scale.

    Customers rely on thorough explanations, not just generic assurances. Our most frequent support topics include: batch-to-batch property questions, unique blending guidance, and troubleshooting of analytical artifacts. The drive to master these stems from firsthand observation in our plant. Common challenges—slippery bulk transfers, dust formation, moisture tracking, unexpected odor events—linger fresh in our minds, so the advice isn’t pulled from a manual, but from actual problem-solving.

    We document every pivotal change, packaging revision, and property tweak in revision-controlled records. This habit means customers don’t chase moving targets. Building trusted relationships starts with open data, continues with steady performance, and closes with real answers when questions rise.

    Looking Ahead: Meeting New Demands with Experience-Driven Manufacturing

    Future markets will want even tighter property controls, finer traceability, and lower carbon footprints. Keeping ENBA-HCl at the forefront means running ongoing process reviews, working shoulder-to-shoulder with both in-house teams and customers worldwide. The expertise we’ve built by producing and shipping this compound fills every interaction—each data sheet verified, every shipment tracked to the end user.

    Advances don’t flow from generic promises or empty marketing language. They grow as manufacturers learn from what works and what slips. Whether you’re a peptide innovator, a personal care pioneer, or a food technology specialist, the results of careful process, clear communication, and trusted technical backing touch every gram of Ethyl N-Benzoyl-L-Argininate Hydrochloride we supply.

    Each day’s run shapes the next. As a manufacturer rooted in hands-on chemical production, we stand ready to solve problems, scale success, and support the most demanding research and application projects—grounded not in abstract ideas, but in real production, real usage, and practical, ongoing improvement.