Products

Chelidonine Chloride

    • Product Name: Chelidonine Chloride
    • Alias: Homochelidonine hydrochloride
    • Einecs: 630-856-3
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: admin@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
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    Specifications

    HS Code

    640838

    Chemical Name Chelidonine Chloride
    Cas Number 3605-46-3
    Molecular Formula C20H19NO4·HCl
    Molecular Weight 373.83 g/mol
    Appearance White to off-white powder
    Solubility Soluble in water and ethanol
    Purity Typically ≥98%
    Melting Point 183-185°C
    Storage Conditions Store at 2-8°C
    Synonyms Chelidonine hydrochloride
    Boiling Point Decomposes
    Application Pharmaceutical intermediate

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

    Packing & Storage
    Packing Chelidonine Chloride, 1g, is packaged in a sealed amber glass vial with clear labeling, batch number, and safety precautions.
    Shipping Chelidonine Chloride is shipped in tightly sealed containers under dry and cool conditions, protected from light and moisture. Packaging complies with all applicable hazardous material regulations. Handling and transport require appropriate labeling and documentation to ensure safety. Standard shipping methods include ground or air, depending on urgency and destination, following international chemical transport standards.
    Storage Chelidonine Chloride should be stored in a tightly sealed container, away from light, moisture, and incompatible substances. Keep in a cool, dry, and well-ventilated area, preferably at 2-8°C (refrigerator). Avoid exposure to heat and oxidizing agents. Label the container clearly and follow laboratory safety protocols. Ensure the storage area is secure and access is restricted to authorized personnel.
    Application of Chelidonine Chloride
    Purity 98%: Chelidonine Chloride with a purity of 98% is used in pharmaceutical research, where it ensures consistent bioactivity in drug development assays. Melting Point 220°C: Chelidonine Chloride with a melting point of 220°C is used in analytical chemistry laboratories, where it enables accurate thermal profiling during compound characterization. Particle Size <10 µm: Chelidonine Chloride with particle size under 10 µm is used in formulation science, where it promotes homogeneous dispersion in topical delivery systems. HPLC Assay ≥99%: Chelidonine Chloride with HPLC assay of at least 99% is used in standard reference materials, where it delivers high analytical precision for calibration. Moisture Content ≤1%: Chelidonine Chloride with moisture content not exceeding 1% is used in synthesis processes, where it reduces variability and potential hydrolytic degradation. Stability Temperature 25°C: Chelidonine Chloride stable at 25°C is used in controlled storage conditions, where it preserves chemical integrity for long-term inventory. Molecular Weight 367.89 g/mol: Chelidonine Chloride with a molecular weight of 367.89 g/mol is used in quantitative structure-activity relationship (QSAR) modeling, where it supports computational predictions of biological efficacy. Solubility in Water 50 mg/mL: Chelidonine Chloride with solubility in water of 50 mg/mL is used in biochemical assays, where it facilitates high-concentration stock solution preparation. UV Absorption Max 280 nm: Chelidonine Chloride with UV absorption maximum at 280 nm is used in spectrophotometric studies, where it allows sensitive detection and quantification. Residue on Ignition ≤0.5%: Chelidonine Chloride with residue on ignition no higher than 0.5% is used in injectable formulations, where it minimizes inorganic contaminants for patient safety.
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    Certification & Compliance
    More Introduction

    Chelidonine Chloride: Transparent Quality from the Manufacturer’s Viewpoint

    The Value of Chelidonine Chloride in Modern Applications

    As a chemical manufacturer with decades of practical experience working with plant-derived alkaloids, I’ve watched the increasing interest in specialty compounds like chelidonine chloride, particularly among researchers and pharmaceutical developers. Knowledge about product origins, relevant specifications, and points of differentiation can easily get lost in the supply chain, so here’s a direct look based on real production insight.

    Direct Sourcing: Why Manufacturing Matters for Chelidonine Chloride

    Chelidonine chloride stands out as a rare benzophenanthridine alkaloid mainly sourced from Chelidonium majus, sometimes referred to as greater celandine. Synthesis, purification, and salt formation techniques have come a long way, and as the producer, I see just how much the pathway from raw plant extract to finished hydrochloride salt impacts final product consistency. Many in the market rely on secondary sources or questionable extraction practices; credible manufacturers invest years in quality research and constant upgrades to ensure reliable supply. Care starts at the botanical sourcing stage—well-identified plants, controlled drying, and careful pre-processing boost yields and reduce trace alkaloid contamination deep into later steps.

    Pharmaceutical and laboratory users care about traceability, batch reproducibility, and valid analytical documentation. That expectation drives day-to-day plant handling, careful monitoring in extraction tanks, and routine high-performance liquid chromatography (HPLC) checks in our lab, not just on the finished salt but also on intermediates. Engaging directly with manufacturers means that the origin story is never lost, and buyers get real answers about the supply chain, compliance, and potential impurities.

    What Chelidonine Chloride Offers to R&D and Industry

    Researchers take a keen interest in chelidonine chloride for its roles in cancer biology, antispasmodic investigations, and the study of natural cytotoxic agents. Our customers often approach us to discuss purity standards and the adjustments possible in the manufacturing protocol. Chelidonine chloride’s appeal over similar alkaloids comes from its unique scaffolding and the growing literature supporting its biological activities, whether cytostatic or enzyme-targeting.

    The hydrochloride salt form offers distinct advantages in handling, stability, and solubility over base or acetate forms. From a production perspective, the formation of the hydrochloride reduces issues with hygroscopicity and batch-to-batch crystallinity and gives a firmer foothold for calibration in lab settings. The standardized, crystalline hydrochloride not only ships more safely but also handles more reliably by end users dealing with sensitive dosing.

    Meeting Rigorous Specifications: Honoring the Application

    Chelidonine chloride often arrives as a white-to-off-white crystalline powder. Our most common preparation achieves over 98% purity by HPLC, which aligns with requirements for advanced biological screening. Moisture content, residual solvent level, and the specific enantiomeric profile matter a great deal, especially for pharmacological and toxicological experiments. We keep active communication with research customers to refine the specification envelope, relying on mass spectrometry, NMR, and elemental analysis. This direct manufacturer-client feedback loop shapes in-process controls and sampling routines; only a hands-on producer can adjust process points and offer verified answers in real time.

    That’s one edge of working with a manufacturer: no waiting on distant trading offices for clarification or changes. Our technical team integrates process tweaks seamlessly—from adjusting the crystallization point to refining the solvent schedule—in response to large-scale customer usage. We also maintain long-term reference retentions per lot, allowing audits or re-examinations even years after initial delivery. Few intermediaries keep that commitment.

    Why Specifications Matter in Chelidonine Chloride

    Specifications anchor trust between producer and user. Some suppliers accept looser analytical data sheets, but high-end studies in biochemical and cell culture environments demand tight controls, especially where trace byproducts, unconverted precursors, or metal contaminants could skew research. As a manufacturer, we implement high sampling rates and cross-checking methods, balancing cost and scientific rigor to produce meaningful, trustworthy material.

    We have encountered requests to support custom purities or to search for especially low residual solvent traces, especially when the compound gets included in animal studies or clinical protocols. To serve these needs, it helps to control every production step, not simply repack and relabel. That upstream position lets us advise on storage, recommend re-testing intervals, and even develop new reference standards for laboratories that require robust validation controls. Off-the-shelf solutions only go so far.

    Manufacturing Chelidonine Chloride: No Substitute for Experience

    The hurdles to reproducible chelidonine chloride production start with agricultural conditions and the extraction method. Synthetic alternatives have not entirely replaced the need for careful botanical extraction because plant metabolites present high variability. We work with select growers, including in Eastern Europe where the plant traditionally grows, coaching on responsible harvest times and sustainable propagation. Even small weather changes can swing alkaloid concentrations, so we warehouse and blend batches to achieve predictable input loads.

    Solubilizing and purifying chelidonine from plant biomass draws on solvent extraction, filtration, precipitation, and chromatographic techniques, each step monitored by TLC and then HPLC. Conversion into the hydrochloride salt follows, using measured addition of hydrochloric acid under cooled, inert conditions. Wash and recrystallization parameters are validated to yield a crystalline, shelf-stable powder. Process yield, purity, and residual solvent figures get measured lot-by-lot; direct feedback from users helps us maintain and improve consistency, a cycle not possible in mere trading relationships.

    Differences from Other Alkaloid Products

    In the world of plant alkaloids, confusion easily sets in. Chelidonine shares structural similarity with chelerythrine, sanguinarine, or berberine, but each alkaloid shows unique physical and biological properties. For example, chelerythrine is sought after as a protein kinase C inhibitor, while berberine finds use in metabolic and antimicrobial applications. Chelidonine chloride offers a gentler profile in cell-based studies, and the hydrochloride form grants improved stability and water solubility compared to free alkaloid bases or other salt forms.

    From our vantage point, tracking lot consistency for related alkaloids highlights the importance of rigorous documentation and batch-segregated storage to prevent cross-contamination. We’ve fielded customer concerns about “mixed alkaloid” offers that arrive with incomplete testing or unknown ratios. Commitment to single-alkaloid isolation and salt formation frees customers from unexpected byproduct interference in their assays.

    Supporting Regulatory Compliance and Safe Handling

    Chelidonine chloride’s future likely lies with more in-depth pharmacological evaluation, supporting oncology research or serving as a scaffold for new drug candidates. Regulatory shifts, especially in global markets, have pressed manufacturers like us to improve transparency, expand safety documentation, and standardize against pharmacopeial benchmarks where possible. Many of our clients use chelidonine chloride in early-stage drug screening, requiring analytical support and traceable origin data. In practical terms, our team works with regulatory and quality compliance professionals to prepare information on solvent use, plant origin, and even spectroscopic comparison data for customs or import authorities.

    Direct supply also allows us to coach on safe storage—chelidonine chloride maintains best quality in airtight, light-shielded containers at cool temperatures—and to outline procedures for bench handling. Our in-house safety team keeps up with changing worker protection guidelines and makes SDS documentation available in multiple languages. This proactive approach minimizes workplace incidents, something that matters deeply when handling potent alkaloids, even in small amounts.

    Addressing Environmental and Ethical Sourcing Questions

    Ethical sourcing concerns come up more frequently today. As a manufacturer, keeping ties with the areas where Chelidonium majus thrives demands long-term commitment to local communities and sustainable wildcrafting standards. We source under traceable contracts that support fair wages and avoid overharvest. The drive toward environmental audits from both government and private certification bodies has only increased, leading us to invest in cleaner extraction routines and solvent recovery. Waste water gets tracked, and measures are in place to reduce the environmental load wherever possible.

    On the manufacturing floor, tracking yield per kilogram plant input helps optimize not only cost but also waste minimization. Process modifications based on feedback from environmental safety audits sometimes interrupt batch timelines, but these changes keep us ahead of regulatory expectations and support downstream customers concerned about their own environmental footprints.

    Fresh Insights for Researchers and Pharmacy Developers

    Demand for chelidonine chloride has grown, but large-scale commercial interest remains mostly in the research or preclinical stage. Producers able to handle custom syntheses and analytical support reach clients running cutting-edge screening platforms—clients who ask questions about minor impurities, seasonal variability, and even storage-induced degradation. For these in-depth customers, a transparent manufacturing story matters as much as a perfect analytical curve.

    We often field queries about stability under laboratory lighting, shelf life under various packaging regimes, and the impact of temperature cycling during shipping. Years of feedback inform every improvement: using light-blocking packaging, providing calibrated sample retention vials for re-testing, sharing spectroscopic data for independent verification. Pharmaceutical researchers report savings in both time and resources when they can trust the manufacturing story and gain personal support for protocol design or troubleshooting.

    Room for Improvement and Ongoing Challenges

    No product stays static—every batch and every production year brings a learning curve. Chelidonine chloride remains subject to supply chain limits, given the natural variability of plant raw materials. In some seasons, chelidonine concentrations drop; we then boost primary extraction runs or blend multiple harvests to deliver the same output. Rainfall changes or altered growing zones also call for increased compositional screening. Maintaining tight analytical specifications during these swings requires redundant testing and periodic review of analytical methods.

    As a manufacturer with the technical knowledge and practical experience, I see both immense opportunity and sometimes frustration with regulatory demands that shift with each market. Customs procedures, differing requirements on purity documents, or extra scrutiny at ports call for updated analytical certificates and faster turnaround. Keeping communication open with end users helps us anticipate new requirements, troubleshoot delays, and share known workarounds from other markets. Consistently, direct user feedback has proven more valuable than layers of indirect reselling.

    Real-World Manufacturing: Why Our Process Stands Out

    In manufacturing chelidonine chloride, direct accountability underpins everything. Knowing who grew each batch of Chelidonium majus, running real-time lab testing, and controlling finished product packaging allows trace-back and fast problem-solving. Our team doesn’t simply deliver a product—they give context and provide insight to research-grade buyers and large pharmaceutical development departments alike. This relationship, built on transparency and technical support, lays out a pathway for making chelidonine chloride an even more reliable tool for innovators.

    A direct manufacturing approach brings practical advantages. If a research team encounters solubility concerns or observes unexpected analytical results, we reproduce the concerns on-site and iterate process controls. Our lean organizational structure avoids bottlenecks, shortening response times and cutting through layers of bureaucracy that cloud answers from many suppliers.

    Innovation on the Factory Floor: What’s Next?

    Continuous improvement keeps us competitive and relevant as researchers push the applications of chelidonine chloride. Investment in automation, improved batch scheduling algorithms, and more refined monitoring systems pushes product quality forward even as demand for faster delivery and tighter specs grows. Collaborative projects with academic teams create valuable method comparisons, and routine customer calls teach us what works—and what needs rethinking—in real-world experiments.

    Emerging uses of chelidonine chloride, including as a potential payload for nanocarriers or as a starting compound for derivative synthesis, challenge manufacturers to rethink traditional scale and packaging. We now support micro-samples for lead discovery, offer bulk lots to pharmaceutical developers under on-request conditions, and maintain parallel analytical profiles for each client mission. Custom requests come with in-depth process confirmation, a flexibility only available at the manufacturer level.

    Why Direct Relationships Yield the Best Research Outcomes

    From farm to flask, every step in chelidonine chloride production benefits from personal experience and deep technical knowledge. Researchers ready to advance new therapies or probe natural product mechanisms succeed best when they gain clear insights on product origin, batch consistency, and analytical backup. Our manufacturing team remains ready to share, troubleshoot, and innovate around your scientific needs, based on real practice and continuous dialogue—not layers of secondary distribution.

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