| HS Code | 351229 |
| Cas Number | 123246-29-7 |
| Molecular Formula | C15H24N2O2 |
| Molecular Weight | 264.36 g/mol |
| Appearance | White to off-white powder |
| Purity | ≥98% |
| Melting Point | 207-210°C |
| Solubility | Slightly soluble in water |
| Storage Temperature | 2-8°C |
| Synonyms | Sophoridine N-oxide |
| Iupac Name | (1S,9S,10R,12R,13S)-10-ethyl-9,13-dimethyl-16-oxa-3,7-diazabicyclo[8.3.0]trideca-2,6,11-trien-5-one |
| Chemical Class | Quinolizidine alkaloid derivative |
As an accredited Sophoridine Oxide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The packaging for Sophoridine Oxide (5g) features an amber glass bottle with a tight-sealed cap, labeled with hazard and product details. |
| Shipping | Sophoridine Oxide is shipped in tightly sealed, chemically resistant containers to prevent contamination and degradation. Packaging complies with relevant safety regulations for hazardous materials. Transport is conducted under ambient conditions, avoiding exposure to excessive heat or direct sunlight. Ensure handling by trained personnel, with shipment documentation including safety data sheets (SDS). |
| Storage | Sophoridine Oxide should be stored in a tightly sealed container, protected from light, moisture, and air. Keep it in a cool, dry, and well-ventilated area, ideally at 2–8°C (refrigerated conditions). Ensure storage away from incompatible substances, such as strong oxidizers. Proper labeling and secure placement are essential to prevent accidental exposure or contamination. |
Competitive Sophoridine Oxide prices that fit your budget—flexible terms and customized quotes for every order.
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Sophoridine Oxide has gained prominence in both research and industrial sectors for its unique bioactive properties. Over the years, we have dedicated significant resources to refining and optimizing its production process, not to follow trends but to meet the precise expectations of scientists and manufacturers worldwide. Those who have worked closely with alkaloid derivatives recognize the unique value that Sophoridine Oxide brings to the table, especially given its role in contemporary pharmaceutical and biological research.
This compound, structurally derived from the natural alkaloid sophoridine, has proven to behave reliably in a variety of synthesis protocols. Its molecular configuration is distinct, offering an oxidative analog that presents researchers with a stable foundation for downstream chemical modifications and pharmacological evaluation. In terms of physical properties, careful purification yields a high-purity solid suitable for demanding applications, and each step of the production process is designed to maintain this quality standard.
Production of Sophoridine Oxide in our facility does not revolve around generic purity claims or vague guarantees. Every batch undergoes comprehensive chromatographic and spectroscopic analysis, including NMR and HPLC verification. We place heavy emphasis on impurity profiling during synthesis, and this focus has resulted in consistent delivery of material with purities exceeding 98%. Such attention provides research chemists and formulation teams with the confidence they need during method development, reducing the risk of surprising variables and unexplained assay drift.
Particle size may not always come up in technical conversations, but anyone who attempts scaling-up processes or formulating injectable suspensions soon learns the importance of predictable and controllable powder characteristics. In our facility, batch drying and milling are closely monitored to ensure a reproducible particle distribution, optimizing both handling and downstream dissolution.
Our customers span from academic labs searching for new anti-tumor agents to pharmaceutical process chemists looking to streamline the scale-up of API intermediates. Sophoridine Oxide has generated particular interest as a scaffold for new pharmacological agents. Its oxidized bridge offers differentiated biological activity compared to parent sophoridine. Teams working on antitumor compounds focus on modifications around the oxidized nitrogen, while other groups examine its interaction with neurological targets.
In the chemical industry, the stability of our product creates reliable starting conditions for subsequent synthetic transformations. Hydrogenation, further oxidation, and derivative salt formation deliver high conversions thanks to well-defined material characteristics. In one recent project, a client leveraged our Sophoridine Oxide to build out a lead series of nitrogen-containing heterocycles; they reported high yield and clean separation during purification, avoiding the bottlenecks that plagued early development with less rigorously characterized sources from bulk traders.
Our plant team learned early that the trickiest aspect of Sophoridine Oxide manufacturing lies in process reproducibility. Sourcing base sophoridine with the right isomeric composition remains critical. Over dozens of campaign runs, we revised steps to minimize undesirable byproducts, such as over-oxidized moieties and aldol-type condensation side reactions. Unlike other sophisticated alkaloids, which can become unstable when exposed to air or aqueous solvents, properly processed Sophoridine Oxide resists oxidation and hydrolysis, holding its quality profile for extended storage.
We discovered that atmospheric control during oxidation pays big dividends in final stability. Small tweaks to our oxidant concentration and reaction timing drastically improved the purity, which now consistently surpasses benchmarks set by pharmacopoeia monographs for related alkaloids. Projects that demand gram-scale to multi-kilogram quantities receive the same diligence: our control systems monitor residual solvent, temperature, and pressure with a focus on batch-to-batch consistency.
Having dealt extensively with both starting alkaloids and their oxidized derivatives, we notice immediate distinctions in physical and chemical handling. Sophoridine, as a base, carries different solubility and reactivity profiles—a subtlety that shows up midway through purification when a change in solvent causes unexpected crystallization issues. By contrast, Sophoridine Oxide features greater solubility in certain polar solvents and avoids the foaming and emulsification that often disrupts rotary evaporation with reduced alkaloids.
Some customers explore semi-synthetic analogs such as oxysophocarpine or matrine oxide, but these show less pharmacological diversity and require more handling steps to achieve clean conversion. Our assessment sees Sophoridine Oxide holding a middle ground: it offers a clean starting point for advanced medicinal chemistry without the stubborn chromatographic tails observed in broader-spectrum plant extracts. This creates a tangible advantage by saving weeks in purification design.
Those launching into new synthetic or pharmacological projects discover quickly that documentation and analytical transparency from the manufacturer make or break timelines. Every shipment of Sophoridine Oxide comes with fully traceable analytical reports, mapping from lot entry through to final QC. This approach gives researchers the context they need to troubleshoot, rather than losing time correlating results with poorly annotated third-party materials.
Many research groups overlook the impact of storage and transportation on labile alkaloids. Our packaging approach relies on moisture barrier materials that proved resilient in summer heat and winter humidity, without creating the static charge that ruins powder flow. Retention samples stored in parallel ensure rapid troubleshooting if any anomaly arises on the user end, cutting down on unnecessary waste and repetition.
Over years in the industry, we prioritized practical problem-solving. One recurring challenge has been regulatory compliance for international shipments. Sophoridine Oxide, with its defined chemical structure, clears most customs checks without being entangled in controlled substances regimes, a challenge that haunts many other plant-derived compounds. Accurate documentation and laboratory data attached to each shipment prevent holdups and provide peace of mind for researchers on tight project deadlines.
People sometimes ask why direct-from-manufacturer sourcing matters. As a plant-derived compound, Sophoridine Oxide suffers in quality if handled through generic trading channels that scramble powder on and off trucks, ship in low-grade containers, or mix batches to hit target weights. We focus on single-lot production for each batch, sticking to the philosophy that traceability builds real confidence in end use.
Product adulteration presents another risk. Counterfeiters or careless resellers occasionally swap in lower-value alkaloids or introduce bulking agents that slip through superficial inspections. Our facility employs dedicated alkaloid instrumentation that rapidly screens for such contamination, tracing not just the major ingredient but related family members—essential for customers producing regulated or investigational products.
Over the long haul, we see the biggest payoff in process reliability—not in chasing the lowest upfront price but in minimizing downstream scrap, product recalls, or failed registration batches. Research budgets stretch further when critical raw materials behave exactly as the literature and supplier say they will. When your project schedule rides on a consistent supply, the benefits go straight to the bottom line.
Having collaborated with both seasoned industry veterans and new investigators, we have watched the push towards higher-throughput screening and customized derivative synthesis upend old habits. Sophoridine Oxide’s core structure attracts interest as a stepping-stone towards next-generation therapeutic candidates, especially in oncology and neurochemistry.
Some groups modify the molecule to build entirely novel scaffolds. Others pursue analog design and digital screening to reveal possible enhancements in binding affinity or metabolic stability. We worked with one multinational pharmaceutical group to implement a continuous flow adaptation of their oxidation step, replacing batchwise additions with programmable dosing—yielding both higher throughput and reproducibility. This sort of collaboration moves the market as much as it accelerates science.
Analytical advances are opening new possibilities, too. Mass spectrometry and high-resolution NMR studies have revealed subtle process impurities invisible to prior generations of quality control, prompting us to tweak our purification methods accordingly. Customer feedback from advanced bioassay groups spurs ongoing changes to our protocols, ensuring our Sophoridine Oxide matches both current and anticipated user needs.
A key lesson from years in the chemical sector has been the importance of responsible sourcing and waste management. Sophoridine Oxide, in our operation, begins with plant-derived starting material. Our agricultural sourcing partners maintain transparency in their harvesting practices, cutting down on environmentally harmful over-farming. Managing residual solvents and minimizing chemical waste form the backbone of our day-to-day plant operations.
Recycling and solvent recapture programs help close the loop on production waste, tying environmental care directly to production reliability. With regulators sharpening their eyes on alkaloid extractions, our continuous upgrades to filtration and process water treatment anticipate many of the compliance issues that others scramble to resolve after the fact. Beyond paperwork, this translates to a cleaner, safer workspace for our staff and neighboring community—an often-overlooked benefit but one that shapes talent retention and community acceptance for years.
Having walked alongside diverse industry players—from niche biochemical startups to established generics manufacturers—we see that the best results grow from real partnership, not just transactional buying and selling. We take pride in offering insight that stretches beyond the product datasheet, such as tailored support during scale-up or problem-solving for tough analytical questions. Projects succeed or struggle based on unseen details; our experience gives us a clearer view of potential stumbling blocks and solutions.
Our commitment to continued learning keeps us updating protocols and adapting to the growing landscape of medicinal chemistry and biotechnology. Every engagement with a new client or research group leaves us sharper, more attuned to the real-world impact of what we deliver, and eager to build solutions that matter. Sophoridine Oxide stands as a product born not from marketing desires but out of decades of trial, learning, and response to field needs.
In producing Sophoridine Oxide, we do not rely on sales language or formulaic promises. What sets our offering apart is the accumulated knowledge of plant sourcing, the hard lessons of failed batches, frequent cross-disciplinary consulting, and the daily challenge of tuning a process to deliver exactly what each new scientific challenge requires. Our product reflects a continuing story—a commitment to the momentum of discovery, the rigor of safe and reliable manufacturing, and a readiness to be present as the field’s needs grow and change.
For researchers, manufacturers, and innovators exploring the potential of sophoridine chemistry, our experience as a primary manufacturer creates a genuine difference. Each processed lot carries the attention to detail and technical honesty that form the core of trustworthy scientific progress. We look forward to the new directions that Sophoridine Oxide will inspire, backed by real-world expertise and a focus on empowering our partners’ best work.