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HS Code |
529374 |
| Product Name | H-D-Arg-Ome 2HCl |
| Chemical Formula | C7H17N5O2 · 2HCl |
| Molecular Weight | 292.17 g/mol |
| Purity | Typically ≥98% |
| Appearance | White to off-white powder |
| Solubility | Soluble in water |
| Storage Conditions | Store at 2-8°C |
| Cas Number | 198340-03-1 |
| Synonyms | Nα-(Aminoiminomethyl)-D-arginine methyl ester dihydrochloride |
| Peptide Sequence | D-Arginine methyl ester |
| Usage | Peptide synthesis intermediate |
| Stability | Stable under recommended storage conditions |
| Smiles | CNC(=O)[C@H](N)CCCNC(=N)N.Cl.Cl |
| Inchi Key | VZMDFYREDFXGQH-BBWSBICLSA-N |
As an accredited H-D-Arg-Ome 2Hcl factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | H-D-Arg-Ome 2HCl is supplied in a 1g amber glass vial, sealed with a screw cap, and labeled for laboratory use. |
| Shipping | **Shipping Description for H-D-Arg-Ome 2HCl:** H-D-Arg-Ome 2HCl is shipped in tightly sealed containers, protected from moisture and light. Temperature-controlled packaging is recommended to maintain chemical stability. The product is labeled as laboratory-use only and handled according to safety regulations, with necessary documentation and compliance with local, national, and international shipping guidelines for chemicals. |
| Storage | H-D-Arg-Ome 2HCl should be stored in a cool, dry, and well-ventilated area, away from direct sunlight and moisture. Keep it tightly sealed in its original container to protect it from air and contamination. Store at 2-8°C (refrigerator) unless otherwise specified by the manufacturer. Handle under inert atmosphere if advised, and avoid sources of ignition or incompatible substances. |
Applications of H-D-Arg-Ome 2Hcl in Industrial ManufacturingH-D-Arg-Ome 2Hcl, as a protected arginine derivative, finds critical roles in multiple downstream sectors due to its precise reactivity, high purity, and compatibility with regulated manufacturing environments. The following industrial scenarios represent the current primary uses of this raw material, with application-specific standards, dosage guidance, integration stages, and finished products clearly detailed. 1. Peptide Pharmaceutical SynthesisInnovators in peptide drug manufacturing use H-D-Arg-Ome 2Hcl as a key protected amino acid during solid-phase peptide synthesis. Its functional group protection ensures selective coupling, reducing racemization and side reactions during automated synthesis cycles. This material is essential for active pharmaceutical ingredient (API) production meeting global regulatory criteria, particularly for complex peptide-based drugs targeting cardiovascular, metabolic, and oncological disorders. Industry compliance standards
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2. Biomedical Diagnostic ReagentsProducers of in vitro diagnostics and immunochemistry kits use this material as a protected arginine source in peptide antigen synthesis for antibody generation and assay calibration. The functional group protection allows controlled deprotection, minimizing byproducts and signal noise in diagnostic reagents, which is critical for sensitivity and reproducibility. Industry compliance standards
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3. Cosmetic Peptide Ingredient ManufacturingManufacturers formulate advanced skincare actives by incorporating this protected arginine derivative in bioactive peptide assembly for cosmetic applications. The precise molecular control helps create consistent and high-purity peptides, which the industry demands for anti-aging, skin repair, and brightening formulations. Its controlled use mitigates residual impurity risks and ensures compliance with cosmetic safety regulations. Industry compliance standards
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4. Research-Grade Peptide Libraries and ScreeningPeptide synthesis laboratories and contract research organizations apply this protected raw material for generating combinatorial libraries used in drug discovery and target screening. The stable protection of the guanidine side chain safeguards critical interactions during iterative sequence development, allowing rapid and accurate evaluation of bioactive leads against protein targets. Industry compliance standards
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Every product we synthesize carries years of experience from the lab bench to the final packaging line. H-D-Arg-Ome 2HCl has grown into a staple for our clients who demand dependability, clarity, and true quality from their sourcing partners. Chemists trust it as a core building block in peptide synthesis, and for good reason: the chemical profile stands up to the scrutiny of rigorous analysis.
Quality doesn’t come down to buzzwords or empty claims; it comes from consistency across batches, transparency about what’s inside every drum or bag, and genuine collaboration with customers. As chemical makers, we stake our reputation on what comes out of our reactors and how every downstream step preserves that. With H-D-Arg-Ome 2HCl, the journey to the final product starts with high-purity raw materials. We source only well-characterized L-Arginine and process each stage with constant attention to minimizing byproducts and racemization. The result is a crystalline, white solid that dissolves clean in aqueous media, giving researchers and formulators the confidence to take the next step in development.
This product features the hydrochloride salt of Nα-benzyloxycarbonyl-omega-methyl ester-L-arginine (or H-D-Arg-Ome 2HCl). The protected structure gives it strong value for peptide chemists, where selective deprotection matters more than almost anything else. In peptide assembly, the preservation of stereochemistry and the protection of functional side groups can mean the difference between a successful synthesis and endless troubleshooting. Here, omitting side reactions is not just a marketing line but a real, lived priority in our plant. Operators monitor pH, temperature, and time at each step to keep our product exactly where it needs to be, so it’s not just a theoretical specification—it is reflected in practice with every batch shipped.
Peptide production demands H-D-Arg-Ome 2HCl for coupling and elongation steps, particularly where the guanidino group of arginine must be protected during chain assembly. Our regular clients include pharmaceutical developers, academic researchers, and specialty laboratories who build custom sequences for antibiotics, hormone analogues, and enzyme inhibitors. Over the years, researchers have returned to us with feedback that our crystalline H-D-Arg-Ome 2HCl dissolves smoothly, integrates cleanly into acylation reactions, and does not introduce unexpected impurities.
In scale-up work, we see concerns shift from laboratory precision to manufacturing robustness. Clients working on larger peptide lots highlight the importance of avoiding batch-to-batch drift. Any trace impurity, whether inorganic salt or trace solvent, can stall purification and derail validation runs. We have engineered our process with end-point analytics—including NMR, HPLC, and mass spectrometry—so each customer receives a precisely characterized product with no surprises. This level of transparency helps minimize costly troubleshooting downstream, which is why so many partners have relied on us through the years.
H-D-Arg-Ome 2HCl also has a role in diagnostics, especially where site-specific labeling of peptides is needed for fluorescent tags or biotin. Precision in protecting both the alpha-amino and guanidino side chains gives assay developers greater flexibility, and the ready deprotection in standard conditions makes workflows more predictable. Every new field application brings its own challenges; our technical team keeps pace with customer innovations, sharing experience on solvent compatibility, storage, and custom packaging to make sure H-D-Arg-Ome 2HCl fits the task instead of the other way around.
There’s nothing abstract about running a large-scale peptide synthesis operation. Contaminants don’t just appear in test reports; they show up as clogs in filters, hazes in product solutions, and extra purification steps that slow customers down. Our teams have spent years refining each stage of H-D-Arg-Ome 2HCl production so that the route avoids sources of chloride contamination, traces of base-catalyzed side reactions, and unwanted methylation byproducts. This might sound academic, but the payoff is felt in every drum we load onto a truck—batch to batch, the same reliable outcome.
We take great care during crystallization and solvent handling. Moisture content can make or break storage stability, so drying protocols go beyond what standard product data sheets dictate. We use glass-lined reactors, routinely replace filters, and track shelf-lives through direct measurement. Real production knowledge comes from responding to issues in real time—a spike in particulate count triggers root-cause analysis, not just a one-off fix. Over the years, we’ve created a detailed log of yield, purity, and impurity profiles for this and similar arginine derivatives so customers aren’t caught off-guard by process variability. The accumulated know-how helps partners avoid headaches and shortens their project timelines.
Each peptide synthesis route calls for specific protecting groups and salt forms depending on downstream chemistry, regulatory needs, and storage preferences. Some derivatives substitute the methyl ester with t-butyl or benzyl groups, or they use different counterions like trifluoroacetate. Over twenty years, we’ve manufactured a range of arginine derivatives, testing different side-chain protections and ester forms for coupling compatibility and deprotection ease.
The methyl ester group in H-D-Arg-Ome 2HCl balances stability during chain assembly with manageable removal under mild hydrolysis. This gives it an edge in automated solid-phase synthesis, where time and temperature matter more than theoretical ease. Some other arginine derivatives, especially those with bulky protecting groups, can slow coupling or lead to inconsistent deprotection, particularly on longer peptides. Peptide chemists point out that H-D-Arg-Ome 2HCl’s two hydrochloride salts minimize cross-contamination and simplify handling, compared to some alternative salts that show hygroscopicity or unpredictable solubility. In the plant, we’ve seen firsthand that this translates to more stable lots and a smoother path from coupling to final purification.
We’ve tested every version against tight internal controls, measuring loss on drying, residual solvents, and optical rotation. The data show the same conclusion: H-D-Arg-Ome 2HCl outperforms older alternatives on reproducibility, especially for long or complex peptide chains where side reactions can sneak in. We advise some customers to stick with traditional forms—like the t-butyl ester derivatives—if they plan very harsh deprotection conditions, but for most workflows, the methyl ester form offers a better stability-to-reactivity ratio, particularly at commercial scale. Each project brings its own trade-offs, and our technical support group routinely discusses routes and reagents so clients aren’t left guessing or repeating failed experiments.
Everyone in the industry talks about safety, but for us it’s a lived value. We track solvent consumption and off-gas emissions in real time, giving our operators a live picture of each step. This has led us to reduce process waste, recycle solvents at a higher rate, and design safer purification protocols for H-D-Arg-Ome 2HCl. Each time we ship product, we provide clear documentation about crystallization solvents and potential trace contaminants—empowering customers to meet their own regulatory requirements without hunting for missing details. Some larger buyers run their own audits at our plant, and we welcome every inspection, having built compliance and trace monitoring directly into our workflow.
Worker safety comes first on the floor. We invest in fresh PPE, continuous training, and prompt replacement of aging gear. Chemical manufacturing often means exposure to corrosive agents or strong bases, so our teams benefit from double-contained transfer lines, dust extraction, and automations that handle the riskiest steps. Direct feedback from operators has directly shaped our batch records and process modifications, linking health, safety, and quality as one set of priorities.
H-D-Arg-Ome 2HCl stands as more than a raw material to us and our partners. We provide analytical support, from spectral assignment to impurity tracking, for every kilo that leaves our site. Our team has worked in research and on plant lines, so we don’t send mere numbers: every certificate tells a story about how that batch was produced, how it was stored, and how it performed against our long-term trend lines. Clients sometimes face unexpected process upsets—anomalous NMR peak, a stubborn impurity cutoff in a complex peptide. We welcome those calls, because walking alongside customers to identify sources of variation and troubleshoot real problems makes every batch better, not just for them but for our entire network.
Over time, we’ve even been invited to participate in process development trials, especially where regulatory filings demand full traceability. Batch genealogy, impurity fate analysis, and validation support have become second nature, because it matters to customers whose reputations—and patients’ safety—depend on certainty. Each experience feeds back into tighter process windows, more useful analytics, and better documentation, making us a more informed and reliable partner for H-D-Arg-Ome 2HCl. There’s satisfaction in seeing a new drug candidate advance or a diagnostic kit launch, knowing our material played a steady part in that progress.
Price stability often gets overlooked in product-focused conversations, but for our partners, large and small, predictable cost is almost as important as purity. Our purchasing and production teams hold regular reviews to forecast raw material flows, track energy and transportation costs, and negotiate transparent contracts with upstream vendors. H-D-Arg-Ome 2HCl supplies ride on the back of these internal controls, so customers aren’t hit with supply shocks or downward pressure on quality to chase a lower price.
Lead times and storage conditions get special attention. This product ships in heavy-gauge, lined drums or sealed pails for kilo-to-metric ton orders. We train logistics teams to anticipate customs holdups and temperature excursions, using data loggers on every shipment in warm climates. Years spent tracking these variables have taught us how quickly mishandling in transit can undo good work upstream—so we specify real temperature and humidity limits, not just recommendations, based on what we’ve seen in global transit. Customers gain not just a high-quality batch, but confidence that the material they receive matches the quality we sent out.
We keep finished inventory on hand, balancing just-in-time flexibility with a buffer sized to handle supply shocks. Some clients require staggered delivery over quarters, and we maintain production records to ensure continuity from one shipment to the next. These practical steps keep our promises grounded in day-to-day deliverability, not just optimistic forecasts.
Each batch of H-D-Arg-Ome 2HCl that leaves our doors carries the weight of our plant’s history, the skill of our chemical engineering teams, and the trust of our clients. Quality and reliability emerge not from slogans but from thousands of analytical results, daily shift meetings, and customer check-ins. Our approach has always favored open discussion over generic claims: we show our methods, open our records, and invite direct feedback on every process.
Our clients in biotech, pharma, and diagnostics are advancing front-line science, seeking materials that empower their own breakthroughs. H-D-Arg-Ome 2HCl reflects the best of the traditions and the current realities of chemical manufacturing: focus, transparency, and a shared commitment to progress from raw ingredient through to finished medicine or test kit. We see every kilo as a handshake—a promise that what’s inside matches every expectation set by years of experience, not just by paperwork.
The story of H-D-Arg-Ome 2HCl continues to be written each day, in every new project, every repeat order, and each technical challenge that comes through our door. We take pride in standing behind our work, supporting every customer and every application. Whether your journey with this chemistry is just starting or three decades old, we’re here to make it easier, more predictable, and more successful—one carefully crafted batch at a time.