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Benzoyl-Glycyl-Glycine

    • Product Name Benzoyl-Glycyl-Glycine
    • Alias Glycylglycylbenzoyl
    • Einecs 629-755-7
    • 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

    143579

    Chemical Name Benzoyl-Glycyl-Glycine
    Molecular Formula C11H12N2O4
    Molecular Weight 236.23 g/mol
    Cas Number 2567-74-4
    Appearance White to off-white powder
    Solubility Soluble in water
    Purity Typically ≥98%
    Storage Temperature 2-8°C
    Iupac Name benzoyl-glycyl-glycine
    Synonyms N-Benzoylglycylglycine
    Usage Peptide synthesis, biochemical research
    Melting Point 170-174°C
    Ph Range Neutral to slightly acidic in solution
    Stability Stable under recommended storage conditions
    Smiles C1=CC=C(C=C1)C(=O)NCC(=O)NCC(=O)O

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

    Packing & Storage
    Packing White, opaque plastic bottle labeled "Benzoyl-Glycyl-Glycine, 25g." Features hazard symbols, lot number, and storage instructions on the label.
    Shipping Benzoyl-Glycyl-Glycine is shipped in tightly sealed containers to prevent contamination and moisture absorption. It is typically packed in chemical-resistant packaging, labeled according to regulatory requirements. Shipping is conducted at ambient temperature unless specified otherwise. Handle with appropriate protective measures and comply with all safety, handling, and transport regulations for chemical substances.
    Storage **Benzoyl-Glycyl-Glycine** should be stored in a tightly sealed container, protected from light and moisture, at 2–8°C (refrigerator temperature). Keep in a well-ventilated, dry area, away from incompatible substances such as strong oxidizing agents. Ensure proper labeling and avoid prolonged exposure to air. Follow standard laboratory safety protocols during storage and handling.
    Application of Benzoyl-Glycyl-Glycine

    Applications of Benzoyl-Glycyl-Glycine in Industrial Manufacturing

    Benzoyl-Glycyl-Glycine finds specialized industrial applications as a high-purity peptide intermediate, supporting a range of production sectors that demand strict compositional control and reliable performance. Our manufacturing integration ensures every batch meets the precise requirements for these downstream scenarios. The following sections detail real-world industrial utilization, including compliance systems, process positioning, recommended dosing, and output products.

    1. Active Pharmaceutical Ingredient (API) Intermediate Synthesis

    Benzoyl-Glycyl-Glycine serves as a dedicated peptide fragment for API production, particularly in custom synthesis for peptidomimetic drugs. Contract manufacturing organizations (CMOs) utilize this dipeptide during stepwise peptide elongation under solid-phase or solution-phase conditions, with purity and assay directly impacting final product specifications. Sourcing pharmaceutical-grade material ensures reliable integration into multi-stage syntheses, affecting impurity profiles and regulatory submissions.

    Industry compliance standards

    • Current Good Manufacturing Practice (cGMP, ICH Q7)
    • United States Pharmacopeia (USP) standards for peptide intermediates (where applicable)
    • European Pharmacopoeia (Ph. Eur.) guidance for starting materials
    • FDA DMF (Drug Master File) referencing where part of regulated APIs

    Typical usage ratio

    • 10–45 mol% relative to the limiting amino acid or other peptide derivative, adjusted for step integration and downstream chain length

    Downstream process integration

    • Pegged as a building block in automated solid-phase peptide synthesis (SPPS) reactors
    • Used during coupling cycles with carbodiimide or HATU reagents for amide bond formation
    • Entered in solution-phase fragment coupling for larger peptide assembly after deprotection steps

    Final product types

    • Regulated APIs incorporating short or medium peptide chains (e.g., peptidomimetic anti-infectives, endocrine therapeutics)
    • Process-validation reference standards for pharmaceutical R&D
    • Peptide generic APIs for global export

    2. Peptide-Based Cosmetic Ingredient Manufacturing

    Personal care manufacturers apply Benzoyl-Glycyl-Glycine in functional ingredient synthesis for anti-aging, firming, or bioactive skin care complexes. Its use as a defined tri-peptide moiety ensures batch-to-batch reproducibility for cosmetic actives, supporting stringent documentation for import/export and finished product launch in regulated markets. Quality peptide ingredients maintain molecular weight distribution and meet purity limits set by authorities in the cosmetic sector.

    Industry compliance standards

    • ISO 22716:2007 Good Manufacturing Practices for cosmetics
    • EU Regulation (EC) No 1223/2009 on Cosmetic Products
    • China NMPA guidelines for new cosmetic ingredients
    • INCI (International Nomenclature of Cosmetic Ingredients) designation for raw material transparency

    Typical usage ratio

    • 0.5–5% w/w in cosmetic peptide concentrate formulations, adjusted by activity or product positioning (e.g., eye serum vs. masks)

    Downstream process integration

    • Solubilized in water/glycerol or buffer before encapsulation or direct addition to emulsified systems
    • Filtered through 0.2 μm for microbial control before bulk blending
    • Combined with other actives or carrier ingredients as part of concentrated premix batches

    Final product types

    • Firming and anti-wrinkle serums
    • Sheet mask peptide concentrates
    • Lotions and cream boosters for luxury and clinical skin care

    3. Analytical Reference Standards for Peptide Analytics

    Laboratories engaged in method validation, QC, and release testing for peptide products require high-purity Benzoyl-Glycyl-Glycine as a calibration and comparison standard for chromatographic analysis. Its structural fidelity and quantifiable content make it invaluable for peptide mapping, retention time benchmarking, and impurity profiling. Quality control labs in pharmaceutical and biotech companies use verified standards to meet audit and registration obligations.

    Industry compliance standards

    • USP General Chapters <621> Chromatography and <11> Reference Standards
    • ICH Q2 (R1) Validation of Analytical Procedures
    • ISO/IEC 17025:2017 for laboratory competence
    • Individual pharmacopeial monographs that reference supporting standards

    Typical usage ratio

    • Injected or dissolved at 0.01–0.5 mg/mL in assay solvents, with precise mass weighed by microbalance for traceability

    Downstream process integration

    • Prepared as analytical reference sample for HPLC, LC-MS, or electrophoresis system calibration
    • Used for establishing retention factor or recovery rates during peptide QC
    • Cofiled with method validation reports for regulatory dossiers

    Final product types

    • Analytical QC kits
    • Calibration standards for peptide production
    • Peptide reference panels for official release and regulatory testing

    4. Specialty Peptide Research for Life Science Reagents

    Benzoyl-Glycyl-Glycine forms a foundational scaffold in the custom synthesis of library peptides, enzyme substrates, or peptide probes used in academic and commercial life sciences. Precise amino acid order, protected or unprotected carboxyl/end group forms, and traceable synthetic history make it suitable for demanding research environments. Life science reagent companies require full material documentation and batch analytics to support reproducibility in sensitive biological assays.

    Industry compliance standards

    • ISO 9001:2015 Quality Management for laboratory reagents
    • GLP (Good Laboratory Practice) where required for reagent production
    • REACH registration (EU) for importation where volume triggers apply
    • Material traceability records for academic publication and grant reporting

    Typical usage ratio

    • 0.05–2 mmol per synthesis batch, scaled based on target peptide length and downstream enzymatic or binding assay needs

    Downstream process integration

    • Coupled as a starting block in segmental or stepwise peptide synthesis for reagent kit production
    • Modified for labeling or attachment to affinity tags in custom probe projects
    • Purified and QC-tested before consolidation with buffer systems for kit assembly

    Final product types

    • Custom substrate libraries for protease activity screening
    • Fluorogenic or affinity-tagged peptide probes
    • Chemically-defined peptide standards for academic and pharmaceutical research
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    Certification & Compliance
    More Introduction

    Benzoyl-Glycyl-Glycine: A Closer Look at the Product and Its Unique Role in Modern Chemistry

    Getting to Know Benzoyl-Glycyl-Glycine

    For anyone working with specialty peptides or peptide derivatives, Benzoyl-Glycyl-Glycine often comes up as an essential intermediate. Our experience making this compound has given us more than just technical insight—it has given us an appreciation for its distinctive role in research and manufacturing. Benzoyl-Glycyl-Glycine stands out as a specialty dipeptide, combining the structural advantages of a benzoyl-protected glycine with a terminal free glycyl residue. This gives a rare blend of both protection and reactivity, supporting straightforward downstream functionalization.

    Our facility produces Benzoyl-Glycyl-Glycine under controlled, documented processes. Over the years, requests for this product have mainly come from labs working on peptide synthesis, pharmaceutical development, and academic institutions focusing on enzyme studies. Unlike simple dipeptides, our product incorporates a benzoyl group, delivering stability against proteolytic cleavage while keeping the synthetic handle accessible. We routinely monitor each batch using HPLC, NMR, and mass spectrometry—and every sample receives a thorough visual and chemical inspection before it leaves our site.

    Specifications That Shape Real-World Performance

    For Benzoyl-Glycyl-Glycine, consistency ties directly to practical results. Standard purity for research-grade material consistently tracks above 98%, controlled at each production stage. We take pride in producing material with minimal water content and reliably low residual solvents. In peptide chemistry, even a slight increase in unreacted starting material can compromise a lengthy synthesis; we address this by employing a proprietary crystallization method. Our team regularly reviews and adjusts parameters in response to direct feedback—the kind you only receive after years of close collaboration with process chemists and end-users.

    Each batch comes with practical, up-to-date information on solubility and storage. Having handled the compound through every scale-up step, we stress the importance of dry, cool storage conditions, since moisture and excessive heat tend to trigger unwanted hydrolysis. Users handling Benzoyl-Glycyl-Glycine for the first time often ask about handling—based on almost a decade of practical use, we strongly recommend keeping the powder tightly sealed and minimizing exposure to air. Our packaging reflects this need, having evolved as clients brought us stories and suggestions from real-world labs.

    Applications That Go Beyond Textbook Descriptions

    Many people look at the structure of Benzoyl-Glycyl-Glycine and see just another chemical intermediate. In practice, it fills a precise need in peptide synthesis where selectivity and mild reactivity matter. By capping the glycine with a benzoyl group, the molecule becomes resistant to non-specific side reactions—a quality that matters for solid-phase synthesis and fragment coupling. Enzyme researchers sometimes refer to it as a “probe” molecule, using the dipeptide as a mimic or substrate for protease and peptidase activity studies.

    Some of our partners in pharmaceutical R&D specifically select this product to explore the mechanisms of peptide transport or to create reference standards for chromatography. Having supported both start-up and established labs, we recognize the practical benefit of a protected glycine—especially when the alternative is to work with fragile, quickly degraded sequences. Clients in materials science have tested Benzoyl-Glycyl-Glycine as a template or a linker in surface modification projects, often reporting that its unique protection pattern leads to more robust functionalization.

    Differences That Matter—A View From the Manufacturer's Floor

    It takes more than raw purity to distinguish Benzoyl-Glycyl-Glycine from other peptide intermediates. The experience of synthesizing and scaling this molecule provides a window into what separates it from unprotected dipeptides and other N-protected glycine derivatives. As opposed to acetylated or formylated glycine peptides, the benzoyl group brings increased lipophilicity and greater electron delocalization, which affects reactivity in coupling reactions. During many pilot runs, our team has observed that these features produce cleaner byproduct profiles and more predictable yields, compared to smaller acyl groups.

    Where some might cut corners and offer technical-grade goods, we commit to strict traceability from raw materials up. Many competitors supply bulk “near-fit” compounds that may not hold up under analytical scrutiny. In our process, every kilogram we send out retains defined particle morphology and matching analytical spectra to ensure direct comparability across orders, which helps our partners reduce troubleshooting later. Clients have commented, especially in academia and biotech, that a lack of batch-to-batch uniformity can quickly derail their workflow—something we take to heart in every batch we produce.

    Navigating the Complexities of Peptide Synthesis

    If you have ever worked up a peptide synthesis from bench scale to pilot scale, you know the subtle interplay between reliable building blocks and overall yields. Benzoyl-Glycyl-Glycine offers a practical solution for research programs needing both selectivity and cost management. Compared to custom dipeptide derivatives, our product frequently arrives on bench-tops at a better cost-per-gram, largely due to process optimizations and smart sourcing of benzoyl chloride and amino acid precursors. This has allowed several of our industrial partners to run extended campaigns that would be otherwise cost-prohibitive.

    The decision to incorporate Benzoyl-Glycyl-Glycine into a synthetic plan often reflects years of incremental progress—both in chemistry and in risk management. Our technical support includes guidance not just on reaction conditions, but on how to clean up after coupling steps, recover unused starting material, or recycle solvents. Taking responsibility for downstream outcomes means more than meeting a certificate of analysis—it means standing by our approach every time a project introduces new demands.

    Real-World Challenges in Manufacturing

    Making Benzoyl-Glycyl-Glycine in volume presents challenges that don’t show up in laboratory-scale syntheses. Achieving high conversion rates while managing side reaction pathways requires both thoughtful reactor design and attention to reagent quality. On full-scale production batches, temperature fluctuations can provoke benzoyl migration or hydrolysis, sometimes leading to formation of tri-peptide contaminants. As manufacturers, we’ve invested in validated control loops and monitored addition protocols, with senior operators on-hand to make real-time adjustments.

    We have faced issues with delayed shipments of raw glycine and fluctuating pricing of benzoyl chloride, driving us to build strong relationships with primary suppliers. During the global disruptions of recent years, this investment in supply continuity paid off. Even during the most strained months, we continued to deliver uninterrupted product flows to essential academic and pharmaceutical customers.

    Waste minimization forms another core part of our commitment. Benzoylation creates acidic and organic waste streams, which we treat on-site to meet local environmental standards. We believe the best way to support chemists is to provide not just molecules, but a supply chain and manufacturing footprint they can take pride in.

    How Consistent Supply Enables Innovation

    Feedback from our longest-term customers shows a direct link between steady supply and breakthroughs in peptide science. A university research group shared that reliable Benzoyl-Glycyl-Glycine deliveries let them focus on novel ligation strategies instead of troubleshooting raw material lots every semester. In another instance, a pharmaceutical development team tied new process efficiencies to the absence of unaccounted-for impurities in our dipeptide shipments. Having experienced both sides—supplier and user—we see that consistency is not just a luxury, but often the difference between published work and abandoned projects.

    As requests for custom modifications increase, we continue to invest in communications between our production chemists and partner labs. Many successful scale-ups in peptide drug synthesis have relied on our willingness to adapt batch sizes and tweak purification steps in direct response to problems encountered during pilot production.

    Supporting Safer Work and Better Research

    Direct communication with users informs every decision we make regarding Benzoyl-Glycyl-Glycine. Over the years, research groups have described unexpected handling difficulties or suggested changes to labeling and documentation, which we have adopted to improve both safety and workflow. We offer practical advice drawn from hands-on use—for instance, only open the container under a fume hood, and dissolve with careful stirring to avoid local flooding and caking.

    Researchers handling biologically active or reactive peptides appreciate clear guidance on stability and storage, and we keep a close eye on current literature reporting on long-term Benzoyl-Glycyl-Glycine stability under various conditions. Because changes in environmental controls or storage setup sometimes affect reactivity, we track and share this information with purchasers and technical teams. This has allowed several clients to design new experiment protocols that reduce waste or improve safety margins.

    Looking Forward in Specialty Peptide Chemistry

    With more labs turning to complex peptide drugs and functionalized materials, demand for specialty intermediates like Benzoyl-Glycyl-Glycine continues to climb. We keep refining production methods in direct response to market needs—from larger, faster lots for industrial scale to precisely controlled, high-purity grades for academic and pharmaceutical research. Every new project brings its own set of technical questions and operational puzzles, from solvent compatibility to waste stream management.

    We work with new requests every month—sometimes for modified versions of Benzoyl-Glycyl-Glycine, sometimes for related building blocks. The close communication with scientists enables us to adjust timelines, processing steps, and batch sizes far more quickly than anonymous distributors or brokers. Several research partners have used our direct technical support to design entirely new synthetic pathways, with our Benzoyl-Glycyl-Glycine as a backbone.

    Why Manufacturing Experience Makes a Real Difference

    What sets Benzoyl-Glycyl-Glycine apart is not only its chemical properties but the practical know-how and iterative improvements that come from daily production. Operators on our crew often notice subtle color or texture shifts as signs of process drift, well before analytical controls flag them. We depend on their training and experience to maintain the level of quality that demanding work in peptide chemistry requires.

    Any complex synthesis project faces setbacks: stalled reactions, unexplained chromatography peaks, or late-stage contamination risks. Access to a steady, high-quality supply of Benzoyl-Glycyl-Glycine smooths at least one part of that journey. Our willingness to make changes—sometimes on the fly, sometimes through planned process reviews—stems from firsthand understanding of the pressures and stakes in modern chemistry labs. We have watched projects accelerate when researchers don’t have to pause for purity testing or re-source material mid-stream.

    Fact-Based Solutions for Today’s Challenges

    Every improvement we make to Benzoyl-Glycyl-Glycine synthesis and packaging begins with data, not theory. Monthly batch reviews look at reaction yields, impurity profiles, pack-down times, and shelf-life performance. Years of these reviews have shaped how we select raw materials, tune solvent mixtures, and set storage parameters. Where past practice relied on simple vacuum desiccation, we now use a hybrid approach, including inert-atmosphere finishing to minimize moisture and oxidation risk.

    Our in-house analytics lab allows quick feedback on experimental modifications, whether the adjustment concerns a change in crystallization solvent or a tweak to drying cycles. The result is no guesswork between pilot and commercial batch runs. We are committed to transparency, sharing both successes and process limitations with our customers to encourage the kind of open discussion that leads to progress across the industry.

    Conclusion: Expertise and Accountability Set the Standard

    Producing Benzoyl-Glycyl-Glycine means more than mixing chemicals and boxing up powder. Our manufacturing crew, having spent years working at the synthesis, brings expertise to every batch. Every order reflects hard-learned lessons about what the compound can and cannot do, and each shipment leaves our site with traceable, batch-by-batch documentation. Calls and emails from chemists in the field often drive our next round of improvements, and it’s that ongoing, real-world conversation that keeps our Benzoyl-Glycyl-Glycine relevant, reliable, and ready for new challenges. For anyone ready to push the boundaries of peptide chemistry, a strong sourcing relationship, backed by real manufacturing experience, makes all the difference.