|
HS Code |
818829 |
| Product_Name | Chelidonine Chloride |
| CAS_Number | 6458-13-7 |
| Molecular_Formula | C20H19NO5·HCl |
| Molecular_Weight | 389.83 g/mol |
| Appearance | White to off-white powder |
| Solubility | Soluble in water, slightly soluble in ethanol |
| Purity | ≥98% (HPLC) |
| Storage_Temperature | 2-8°C (Refrigerated) |
| Synonyms | Chelidonine hydrochloride |
| Chemical_Class | Isoquinoline alkaloid |
| Merck_Index_Number | 2067 |
| Boiling_Point | Decomposes before boiling |
| pH_in_Water | 4.0-6.0 (1% solution) |
| Origin | Isolated from Chelidonium majus (greater celandine) |
| Usage | For research and laboratory use only |
As an accredited Chelidonine Chloride factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Chelidonine Chloride, 1g, is packaged in a sealed amber glass vial with a tamper-evident cap and clear identification labeling. |
| Shipping | Chelidonine Chloride is shipped in tightly sealed, corrosion-resistant containers to prevent moisture and air exposure. It is handled according to hazardous chemical regulations, usually classified under controlled or restricted shipping. Packaging includes proper labeling, cushioning materials, and appropriate documentation to ensure compliance with safety and international transport guidelines. |
| Storage | Chelidonine chloride should be stored in a tightly sealed container, protected from light and moisture. Keep it at room temperature, ideally between 2–8°C (refrigerated), and away from incompatible substances such as strong oxidizers. Ensure storage in a well-ventilated, dry area, with chemicals clearly labeled, and restrict access to qualified personnel to maintain safety and chemical integrity. |
| Purity 98%: Chelidonine Chloride with purity 98% is used in pharmaceutical research, where high purity ensures reliable bioactivity and consistent experimental results. Molecular Weight 354.84 g/mol: Chelidonine Chloride with molecular weight 354.84 g/mol is used in analytical standard preparation, where exact mass enables accurate quantification in HPLC and MS assays. Melting Point 248°C: Chelidonine Chloride with a melting point of 248°C is used in compound formulation development, where thermal stability supports high-temperature processing. Particle Size <10 μm: Chelidonine Chloride with particle size less than 10 μm is used in topical drug formulations, where fine particle distribution enhances solubility and skin absorption. Stability Temperature 25°C: Chelidonine Chloride with stability at 25°C is used in long-term biological storage, where maintained integrity allows extended shelf life in laboratory settings. Water Solubility 10 mg/mL: Chelidonine Chloride with water solubility of 10 mg/mL is used in injectable preparations, where high solubility facilitates rapid and efficient drug delivery. |
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Chelidonine Chloride brings together the expertise and attention to quality control that have driven chemical manufacturing for decades. This compound, derived from the isoquinoline alkaloid chelidonine, has carved out a place in research, biotechnology, and pharmaceutical projects for those who require specificity and purity. Our manufacturing experience gives us firsthand insight into what it takes to deliver a compound like this with unwavering consistency. Chelidonine Chloride is not commonplace, nor does every plant have the infrastructure or technical bench strength to create it in a reliable way. This specialized alkaloid salt draws on both advanced synthesis and rigorous purification. Reliability, we have learned the hard way, does not arrive by accident.
The difference with Chelidonine Chloride goes beyond just producing an active material. Anyone can sing the praises of purity, but unless one actually operates an industrial-scale crystallization or chromatography column in-house, words like “high grade” do not mean much. Chelidonine, a benzophenanthridine alkaloid originally extracted from Chelidonium majus, can bring surprises at every scale-up. The chloride salt, as we now manufacture it, follows a model honed by countless batches, extensive validation, and robust in-process controls. We bring to market a Chelidonine Chloride that supports serious researchers who want to design, test, and build on real data rather than gamble with off-spec or uncertain quality.
Over the years, we have found that analytical rigor makes or breaks the reputation of a specialty chemical. Each lot of Chelidonine Chloride gets characterized using HPLC, NMR, and high-resolution MS—tools that our analytical staff wields every day. Our routine method delivers a product with typical purity exceeding 98%. More importantly, side-product analysis and stability studies are documented for every production campaign. We have dialed in our drying and storage protocols after seeing what works under lab lighting and what survives the temperature swings in overseas transit. The compound lands in the customer’s hands for immediate use, not for more rounds of purification or troubleshooting.
Beyond the numbers, the look and feel of Chelidonine Chloride often surprise those used to less authentic producers. The salt reaches a crystalline form, dense, white, and free of fibrous or amorphous particulates. This is not only for show: trial-and-error has driven us to optimize filtration and recrystallization to eliminate microcontaminants that stubbornly resisted basic purification. We do not wait for customer feedback to handle impurities; internal pre-release checks with reference standards and spectral line libraries act as our silent watchdog.
Chelidonine Chloride sees most demand from university laboratories, pharmaceutical development groups, and specialty biotech ventures. It brings value in cell line studies, alkaloid metabolism research, and as a reference material in pharmacokinetic work. In our exchanges with scientific partners, they emphasize that the difference between reproducible results and statistical noise often comes down to chemical consistency. In the hands of a postdoc running hundreds of microdishes, or a team developing new analytical assays, having to question the identity of Chelidonine Chloride costs precious time and credibility.
Several times each year, we consult with groups aiming to investigate the enzyme inhibition or cytotoxic profiles of natural product derivatives. They attest that purchasing from a true manufacturer—rather than a reseller unfamiliar with the handling requirements—lets them focus on science, not the uncertainty of starting material identity. We see pride in emails detailing how their assays yielded clean, interpretable results, with no observable byproducts skewing their curves. In more ambitious applications, research teams leverage our Chelidonine Chloride to probe structure-activity relationships or confirm LC/MS transitions, confident the sample is genuine.
Decades earlier, most Chelidonine entered labs through labor-intensive extraction from plant sources. Those methods produced small lots and exposed buyers to variability and agricultural contaminants. Fungi and pesticide residues lingered, forcing scientists to invest extra hours on in-house purification—hardly a rational use of talent or research funds. Over time, our plant moved forward to controlled chemical synthesis. Each kilo of Chelidonine Chloride now flows from synthetic benches, monitored by chemists who track side reactions as a daily practice. The parent alkaloid is rigorously isolated, and then the chloride counterion is married to produce a stable, easily handled salt.
As a manufacturer, our priority sits with credibility: knowing that each bottle or drum contains what it claims. We methodically record every step, every solvent, and every critical temperature. Supply chain transparency stands at the core of our model. Anyone receiving Chelidonine Chloride from us can ask—and receive—a full batch history with reference spectra and chromatograms. These datasets help cross-check results at the customer site and close knowledge gaps if questions arise months after delivery.
Chelidonine Chloride does not share the conventional risk profile or volatility of many small-molecule reagents. The salt, as produced from our reactors, remains more stable under atmospheric exposure than many free bases or organic peroxides. That trait has real-world benefit for end-users who may store their library of compounds on open shelving or need to run multi-week studies through changing humidity and temperatures. The chloride counterion secures the compound’s crystalline state and improves its longevity through standard lab handling. While some related alkaloids oxidize or degrade easily, our Chelidonine Chloride, through validated preparation, shows low reactivity and stands up to storage needs better than the free base alternative.
As we scaled up from pilot to industrial batches, it became clear that controlling particle size and filtration caves in to automation. We do not settle for clumping, inconsistent particle morphology, or residual moisture. Computerized drying, calibrated vacuum ovens, and real-time moisture checks now define our daily manufacturing practice. The feedback loop from our QC analysts ensures the process remains in spec, regardless of shipping destination or batch size.
Some competitors focus on the lowest unit price or offer “research grade” material that fluctuates from order to order. We have heard the frustration from those burned by inconsistent suppliers. They received material with off-odors, discoloration, or borderline melting residues—results of inadequate purification or improper salt formation. Each complaint reinforces why we do not take shortcuts: returning product is expensive, but rebuilding trust costs far more in lost collaborations and damaged reputations.
Proper handling of Chelidonine Chloride begins before it leaves our facility. After several failed experiments with generic polyethylene bottles, we aligned packaging with expected storage and protection needs. Our team now employs pharmaceutical-grade amber glass and seals each container under inert atmosphere. Desiccant packs are included, not as an afterthought, but as an extension of decades-long learning. These measures extend shelf life, especially for researchers who might not revisit the compound for several months.
The dry salt form, with distinctive crystalline consistency, scoops easily and dissolves cleanly in organic solvents or water. We discourage makeshift weighing protocols and recommend researchers use calibrated microbalances—not because the compound is volatile, but to guarantee precision in downstream dilution. Newer users benefit from our handling guides and have shared that opening a fresh bottle brings none of the residual static or stubborn clumping encountered with lesser-made salts.
Labels carry detailed batch information, including actual manufacturing and packaging dates. Real-time temperature loggers in shipments to sensitive sites ensure that each batch of Chelidonine Chloride reaches users with its analyzed stability intact. Our logistics partner updates us through every handoff, and our own staff address customer questions directly, not through call centers or scripted replies.
Each year, a portion of batches goes directly to academic consortia or contract labs publishing foundational papers. Many projects would stumble if their Chelidonine Chloride supplies varied from one bottle to the next. Recently, a botanical pharmacology group showed that small changes in salt quality led to discrepancies in their results. Switching to our product locked in their controls and allowed their peer reviewers to repeat findings with confidence. The lesson is clear: time spent on substance verification detracts from time running critical experiments.
Our technical team regularly consults with groups setting up LC/MS calibration curves using Chelidonine Chloride as reference. We supply not only bulk salt but also traceable documentation and analytic certificates. Transparency builds the foundation for grant-funded projects, regulatory submissions, and publications. This allows our partners to address reviewers’ questions or internal quality audits using primary data directly from the manufacturer, not generic certificates or untraceable paperwork.
Scientific engagement works both ways—we receive feedback from users experiencing varied experimental conditions. Through these documented exchanges, we have improved our product packaging, selected better solvents for internal testing, and updated our recommended storage guidelines. Few manufacturers take the time to trace complications beyond the loading dock. For us, each shipment creates a new opportunity to gather real-world data, incrementally raising the bar season after season.
No batch runs perfectly on the first attempt. Early years forced us to troubleshoot solvent system selection, counterion equivalence, and byproduct solubility. Only through repeated campaigns did the optimal purification protocol emerge. Continuous improvement drives our daily work. Fresh analyses on aging samples prompted process adjustments, including fine-tuning crystallization rates and optimizing solvent selections. The patience to wait for full crystal formation, even if it slows throughput, pays off with better downstream filtration and improved storage characteristics.
Every upgrade in our plant followed hard data. A negative result, tracked through our statistical process control system, prompted a reevaluation of drying steps and handling routines for Chelidonine Chloride. Review of accumulated laboratory observations often uncovers minor flaws invisible over the short term. Our analytical chemists audit every stage—not through bureaucratic checklist, but hands-on, by running the same analyses as our clients. Building the process from feedback eliminates repeated errors and keeps quality on a steady ascent.
Researchers and process chemists have little tolerance for guesswork or variance in specialty chemicals. Chelidonine Chloride buyers face high expectations, often dictated by compliance and publication needs. The compound must deliver not only on structure, but also on validated purity and stability. Any deviation or unexplained residue prompts questions from funding agencies and journal reviewers. The strict controls in our plant address these needs directly. Each order comes from a validated batch, confirmed through both in-process and release tests, with full batch documentation retained for regulatory cross-checks.
Several pharmaceutical development partners depend on a predictable Chelidonine Chloride supply chain for their own internal validations. Any change in the salt—particle size, water content, or chloride level—could skew toxicology profiles or delay a new project. Our consistency underpins their timelines and allows direct benchmarking against archival lots. This reliability forms the backbone of repeat collaborations, and we view every delivered kilogram as both an achievement and a responsibility.
Academic partners, often working on tight schedules or collaborative funding, have shifted to manufacturers like us for peace of mind. Direct sourcing with us reduces costs linked to failed experiments and the headaches of post-hoc troubleshooting. Feedback loops allow principal investigators to plan with more certainty and document their protocols, confident in the chemical foundation.
Quality assurance is more than a slogan in our operations. It is an expectation built into every step, from raw material selection through labeling and customer support. Our team takes responsibility for each batch—testing, logging, and responding to customer feedback with direct, technical details. Analytical results become part of each batch’s identity and follow it from warehouse to bench.
A chemical like Chelidonine Chloride cannot accrue a strong reputation on price alone. The market has learned to recognize the difference between cut-rate, questionable imports and well-characterized, consistently pure lots. Each batch produced under our roof is a summation of validated process improvements and an open channel to the clients who depend on our standards. Customers want reliability, not excuses. We focus on the granular, hands-on details that keep every batch inside spec.
Chelidonine Chloride is not just a chemical formula for us—it is a case study in building trust batch by batch, overcoming practical hurdles, and learning directly from those who use it. Its journey from lab bench synthesis to consistent, industrial-scale production tracks with shifts across the specialty chemical field: less reliance on unpredictable botanicals, more attention to process control, transparency, and end-user support.
We see that stability, traceability, and user confidence go hand in hand. Maintaining that level of detail takes continuous vigilance. Maintaining a transparent, data-driven approach means others can validate, replicate, and apply Chelidonine Chloride to their own work, knowing what they are handling and where it came from. By carrying out every step ourselves—and answering for it—we keep the bar for this unique compound high and evolving alongside the science it supports.