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HS Code |
284985 |
| Product Name | Harmine Hydrochloride |
| Cas Number | 343-27-1 |
| Molecular Formula | C13H13ClN2O |
| Molecular Weight | 248.71 g/mol |
| Appearance | White to off-white powder |
| Solubility | Soluble in water and DMSO |
| Purity | ≥98% |
| Storage Temperature | Store at -20°C |
| Synonyms | 7-Methoxy-1-methyl-9H-pyrido[3,4-b]indole hydrochloride |
| Canonical Smiles | CN1C=C(C2=CNC3=CC=CC(OC)=C3C2=C1)Cl |
As an accredited Harmine Hydrochloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Harmine Hydrochloride, 1g, is packaged in a sealed amber glass vial with a clear label showing product name, purity, and hazard symbols. |
| Shipping | Harmine Hydrochloride is shipped in secure, airtight containers to prevent contamination and moisture absorption. Packaging complies with safety regulations for chemical transport. Containers are clearly labeled with hazard and handling information. Shipments include necessary documentation and are typically sent via certified couriers specializing in chemical logistics to ensure safety and compliance. |
| Storage | Harmine Hydrochloride should be stored in a tightly sealed container, protected from light, moisture, and air. Keep it at room temperature, away from heat sources and incompatible substances such as strong acids or oxidizers. Store in a well-ventilated, dry area designated for chemicals, ensuring clear, accurate labeling to prevent accidental exposure or contamination. Keep out of reach of unauthorized personnel. |
Applications of Harmine Hydrochloride in Industrial ManufacturingHarmine Hydrochloride serves as a specialized chemical intermediate in several industrial domains. As a direct manufacturer, we support diverse sectors requiring precision synthesis and stringent quality control. Below we outline relevant downstream applications, highlighting compliance, formulation, integration, and final use cases based on industrial practices. 1. API Synthesis for Neuropharmacological CompoundsPharmaceutical companies utilize Harmine Hydrochloride as a key intermediate in the synthesis of neuropharmacological active ingredients. The material participates in the formation of β-carboline scaffolds, supporting targeted central nervous system drug development. High purity and traceability enable manufacturers to meet regulatory screening and pharmacopoeial testing throughout production scale-up and batch release. Formulators adjust concentration profiles based on the required API activity and pharmacokinetic objectives, maintaining consistent batch-to-batch yields. Industry compliance standards
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2. Dye and Pigment ManufacturingDye and specialty pigment producers adopt Harmine Hydrochloride for coloration agents in research and development, vintage textile restoration, and analytical stains. Its unique chromophore properties allow controlled modification for specific shades and light-fastness in laboratory and commercial pigment blends. The strictly defined synthesis protocols ensure color consistency, and process technicians finetune inclusion levels to balance vividness versus stability in the end formulation. Industry compliance standards
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3. Botanical Extraction and Analytical Reference StandardsAnalytical laboratories and phytochemical producers deploy Harmine Hydrochloride as a reference compound for botanical extract qualification. Its structure benchmarks assay calibration for β-carboline content in medicinal plant extracts, ensuring data reliability for research and regulatory submissions. Standard solutions are prepared in tightly controlled concentrations, supporting accurate HPLC, TLC, and mass spectrometry calibrations for quality assurance and trace residue analysis. Industry compliance standards
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4. Biological Research ReagentsResearch institutions and biochemical reagent manufacturers integrate Harmine Hydrochloride into assay kits, enzyme inhibitor screens, and mechanistic cell culture studies. The material’s clean spectral profile and bioactivity support studies of neurochemical pathways, kinase modulation, and cell proliferation regulation. Process specialists optimize concentrations according to the sensitivity of investigative protocols, maximizing reproducibility and minimizing off-target interactions in customized reagent preparations. Industry compliance standards
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As a seasoned manufacturer in the specialty chemicals sector, observing the evolving interest in beta-carbolines has been both rewarding and challenging. Harmine Hydrochloride stands out among these compounds. Our production facilities handle the extraction and synthesis processes with care, because every molecule of harmine hydrochloride holds significance for R&D teams focused on neurobiology, oncology, plant physiology, and beyond. Working on this compound for many years, it's clear that harmine hydrochloride has a distinctive role that’s shaped by its structure, purity, and stability.
We offer Harmine Hydrochloride under the model code HMN-HCL-98, signifying a minimum purity of 98 percent. Across years of batch production, quality assurance relies on analytical techniques including HPLC and NMR, verifying that the specs support reproducibility and robust research outcomes. Every run faces a rigorous in-house evaluation before packaging leaves the facility, making sure each order meets the requirements of demanding labs and institutions.
Harmine Hydrochloride appears as a yellowish to pale crystalline powder, an unmistakable fingerprint when you’ve handled as many batches as we have. Moisture content and residual solvent analysis support a product that resists caking and degradation during transit. Our technical group pays close attention to batch consistency, as teams running high-throughput experiments base much of their data confidence on the stability of raw materials from our factory.
Handling Harmine Hydrochloride as a manufacturer offers insights that don’t show up in simple product descriptions. Over the years, shipments have gone out to academic research, pharmaceutical project teams, and diagnostics groups. In the lab, researchers often select harmine hydrochloride as a reversible inhibitor of monoamine oxidase A (MAO-A) or a modulator of specific signaling pathways—one reason demand recently increased as interest in neuro-degenerative models and cancer biology grows.
In-vitro teams dissolve harmine hydrochloride in aqueous buffers or culture media, noting its high degree of solubility thanks to the hydrochloride salt form. This solubility enhances both experimental precision and minimizes light scatter, allowing for more accurate spectrophotometry readings—facts researchers share during technical calls. As a manufacturer, we sometimes get urgent requests for documentation on excipient compatibility, and being able to speak directly to our in-house data helps partners avoid aggregate formation or pH instability during protocol design.
Some partners leverage harmine hydrochloride’s fluorescent properties for imaging studies. In this setting, quality of raw material takes on greater weight, as trace impurities can obscure fluorescence or yield ambiguous signals. Maintaining consistent spectral purity is a point of pride forged by time spent troubleshooting lots in our QC suite.
After three decades in chemical manufacturing, subtle differences between two ostensibly similar products never get overlooked. Tradition and know-how combine to give our harmine hydrochloride its consistent performance. Compared to harmine base—a free alkaloid form seen on the market—the hydrochloride version offers reliable aqueous solubility. Directly dissolving in neutral or slightly acidic buffers makes lab preparation faster and avoids solvent-induced artifact formation.
Generic versions often come with higher moisture content or wider impurity range. Those differences seem small at first, but our clients have seen how subpar materials can throw off cell-based assays or chromatography runs. Reports come back to us about competitive samples recalcifying in solution or causing unexpected background fluorescence. As the original material producer, direct feedback from researchers drives continual refinement of crystallization and purification protocols. Removing routes to degradation products demands patience and repeated HPLC runs, but the result is a compound that fits with delicate cell cultures or the teardown requirements of animal studies.
We’ve also noticed research shift toward screening harmine analogs and related beta-carbolines, but substitution isn’t as simple as swapping one powder for another. Each variant brings its own solubility profile, safety risk, and experimental quirks. Our production group recognized, after supporting a long-term neuropharmacology study, that certain downstream targets responded only to the hydrochloride salt—repurposing harmine base added confounding effects the research team hadn’t anticipated.
Supply interruptions can derail months of experimental planning. As the primary source for harmine hydrochloride in multiple research consortia, we’re routinely asked to accommodate shifting order sizes as grant funding and project timelines change. Past supply chain shortages during pandemic periods highlighted how critical a stable production partner becomes when discovery work hits full stride.
We also see turnover among lab techs and project leads, which often means revisiting handling and storage guidance. Our technical support team speaks daily with researchers about day-to-day protocol adjustments: using desiccators for open storage, confirming resuspension in cold versus ambient conditions, or troubleshooting unexpected color change from oxidative degradation. While regulatory registration remains a separate concern, our familiarity with compliance around controlled precursors and international shipping smooths what many teams report as surprise bottlenecks. Addressing these practical details isn’t optional; it supports uninterrupted progress.
Research boundaries expand every year. Early in our experience, harmine hydrochloride shipments largely supported basic MAO-A inhibition assays. Since then, the scope grew. Longitudinal cell imaging, receptor-ligand mapping, and enzyme kinetics studies now make up a large proportion of our client base. This evolution pushes our QC processes. Documentation demands grew too, with requests for batch-to-batch CoA transparency and traceability. Packaging specs have shifted alongside, as researchers move from high-volume animal studies to more specialized, minute-scale microfluidics projects.
Not every supplier keeps pace with requests for microbatches or specialty packaging that avoids static cling or particulate contamination. On our floor, switching between production runs no longer means shutting a line down for hours; we’ve engineered modular cleaning systems and retrained staff to prevent cross-contamination between harmine hydrochloride and other beta-carbolines.
Environmental factors get more scrutiny too. Downstream researchers want to know about heavy metal content, residual solvents, or biosynthetic feedstocks. Our documentation addresses these questions not because it’s a checkbox, but because we’ve encountered researchers correcting for background lead or nickel in highly sensitive biological systems.
Product validation has matured. Topics like process impurities and polymorphic transitions move from regulatory filings to daily conversation among our clients. Early batches, in the late 1990s, carried the risk of undetected side products. Now, our analytical suite includes LC-MS, FTIR, and chiral purity panels—systems installed directly because a research partner flagged an outlier result in transgenic animal work five years ago.
We audit for silicate and organic contaminants because even a fraction of a percent error can invalidate months of effort if left unchecked. We discovered one bottleneck: environmental humidity. Switching to controlled atmosphere crystallization not only improved product performance in the lab, but also cut down on shipping losses due to caking—a hard lesson learned after a summer’s worth of deliveries required emergency reprocessing.
Packaging options now range from 100 mg vials to kilogram-scale drums. Each comes with a tamper-evident seal and moisture barrier. Some research groups require double-bagging with inert gas flush; our packaging team delivers those specs, trained through decades of fielding emergency requests in sensitive research timelines.
Among all harmine derivatives, hydrochloride salt consistently earns top marks from repeat clients for its purity, shelf life, and ease of handling. Harmine base forms, and the wide array of generics, frequently register more rapid degradation under light or fluctuating humidity. Direct client trials reinforce these findings: the hydrochloride variant, as produced in our facility, maintains clarity and full reactivity over months in cold storage, without detectable formation of colored byproducts or sedimentation seen in substitutes.
After fielding a dozen technical calls on protocol troubleshooting, one hard-won insight emerged. Without consistently low residual moisture and tight control of trace organic contaminants, researchers can witness unexpected cytotoxicity or altered activity, confounding reproducibility. Our internal studies highlighted batch-specific anomalies tied to environmental swings and transport conditions. Adjusting process points—dry room isolation, strict pH control during neutralization, and reinforced QA review—dramatically reduced these categories of problem.
In the research world, trust grows with each interaction. Project directors unfamiliar with our process frequently ask what sets our harmine hydrochloride apart when compared with less expensive listings. For us, the answer traces back to investment in both people and equipment. The hands-on experience of senior operators, some with twenty years handling raw extracts, yields a product line shaped over hundreds of iterative improvements. Reviewing progress over time reveals how training, not just equipment upgrades, matters: documenting and troubleshooting an anomaly in a single batch can lead to a permanent refining of process parameters.
The complexity of research with beta-carbolines creates a steep learning curve for first-time users. Newcomers benefit from handling guidance, including tips on minimizing photo-degradation, selecting compatible solvents, or troubleshooting insolubility. Each year, a fresh group of graduate students and lab techs leans on both written and on-demand technical support; our direct production experience strengthens that support, as we know firsthand the pitfalls of using a less-refined product.
Reputation is built on reliability. Too many researchers share stories of switching brands in hopes of saving budget, only to face repeated failures or shifts in experimental outcomes. Our mission since establishing our current facility over twenty years ago remains unchanged: refine every process to deliver a harmine hydrochloride batch ready for the rigors of modern science.
On the surface, harmine derivatives often appear interchangeable. From a production standpoint, the differences stand out sharply. Harmine base, a free alkaloid, presents solubility obstacles in neutral and basic media; technicians waste precious time dissolving and filtering, risking variable yield. Substituted beta-carbolines, while intriguing for target-specific studies, tend to come with less historical data and a more complicated hazard and handling profile—details especially pressing for high-throughput screening teams managing significant compound libraries.
With the hydrochloride salt, one key advantage is straightforward solution prep. A true, reliable aqueous solubility—confirmed by our QC and shared in our documentation—means less time fighting with solubilizers or resorting to less compatible co-solvents. Clients using our harmine hydrochloride report higher consistency in their MAOI protocols and fewer incidents of precipitation during storage. Quick redissolution, in particular, cuts workflow bottlenecks for larger labs.
The impurity profile is another area of divergence. Producing harmine hydrochloride directly at scale creates opportunities for process optimization that traders or third-party repackagers rarely address. Each time we analyze competitor samples, their impurity spectra show higher aromatic byproducts and residual solvents—markers of abbreviated purification steps or old technique. Developing a controlled synthetic process, alongside tailored purification, prevents these flaws and translates to fewer failed QC checks for partner labs.
Stability merits attention. While all harmine derivatives exhibit some sensitivity to light and oxygen, our hydrochloride variant displays reduced yellowing and caking under even sub-optimal storage. These differences matter; in longitudinal imaging studies and multi-well assay platforms, consistency and clarity have a direct bearing on interpretation. It takes ongoing post-market follow-up and open dialogue with user labs to uncover and address each issue as it arises.
Reflecting on the past several years, it’s clear that sustaining high-quality harmine hydrochloride means pursuing incremental improvement and careful listenership. Some lessons emerged from outside the lab: seasonal humidity swings, raw material variability, and the realities of air shipment all shaped our production routines. It’s not about having the flashiest equipment, but about rigorous process mapping, experienced staff, and the willingness to answer the same technical call a hundred different ways.
Building trust requires more than a simple standard. Every client’s needs shift as their science moves forward, and anticipating these changes—by adjusting batch size, exploring new handling formats, or refining analytical benchmarks—keeps our production team engaged. Direct manufacturer experience sets a reliable foundation, as each batch of harmine hydrochloride carries the expertise of chemists and operators who see its journey from start to finish.
Harmine hydrochloride isn’t just another compound on our product list. Years of hands-on chemical manufacturing show that attention to purity, solubility, and stability makes the difference between reliable scientific progress and frustrating setbacks. Every improvement comes from real-world user feedback, careful in-lab observation, and the lessons drawn from thousands of kilograms produced and shipped over decades.
Our involvement doesn’t end at the factory gate or the packing bench. Supporting the scientific community means staying accessible for trouble-shooting, collaborating with researchers on new directions for harmine research, and adapting quickly to unexpected needs in the field. By focusing only on quality, supporting robust research goals, and learning from every batch, we continue to supply harmine hydrochloride that stands up to the demands of modern biology and chemistry, with reliability and value that reflect the dedication of the original manufacturer at every stage.