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HS Code |
794687 |
| Product Name | Artemisinin Polysaccharide |
| Main Ingredient | Artemisinin |
| Other Component | Polysaccharide |
| Appearance | White to light yellow powder |
| Solubility | Soluble in water |
| Molecular Formula | C15H22O5 (artemisinin component) |
| Extraction Source | Artemisia annua plant |
| Purity | Typically above 98% |
| Application | Pharmaceutical and health supplements |
| Storage Condition | Cool, dry place away from light |
| Cas Number | 63968-64-9 (artemisinin component) |
| Function | Antimalarial and immunomodulatory |
| Delivery Form | Powder |
| Taste | Bitter |
| Stability | Stable under recommended storage conditions |
As an accredited Artemisinin Polysaccharide factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Artemisinin Polysaccharide is packaged in a sealed, 500g amber plastic bottle with clear labeling, ensuring protection from light and moisture. |
| Shipping | Artemisinin Polysaccharide is shipped in sealed, moisture-proof containers to preserve quality and stability. It is labeled per regulatory requirements and transported under cool, dry conditions. Packaging ensures protection from light and contamination, and expedited, trackable shipments are preferred to maintain product integrity throughout transit. |
| Storage | Artemisinin Polysaccharide should be stored in a tightly sealed container, protected from light, moisture, and heat. It is best kept in a cool, dry place at 2–8°C (refrigerator). Avoid exposure to high temperatures and humidity to maintain stability and prevent degradation. Proper storage ensures maximal shelf life and preserves the compound’s chemical integrity and biological activity. |
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Purity 98%: Artemisinin Polysaccharide with purity 98% is used in pharmaceutical formulations, where it ensures high bioactivity and enhanced therapeutic efficacy. Molecular Weight 120 kDa: Artemisinin Polysaccharide with molecular weight 120 kDa is used in drug delivery systems, where it provides optimal absorption and sustained release. Stability Temperature 60°C: Artemisinin Polysaccharide with stability temperature 60°C is used in heat-sterilized injectable solutions, where it maintains integrity and potency during processing. Particle Size <50 microns: Artemisinin Polysaccharide with particle size less than 50 microns is used in oral dispersible tablets, where it enables rapid dissolution and uniform bioavailability. Viscosity Grade 500 cps: Artemisinin Polysaccharide with viscosity grade 500 cps is used in topical gels, where it delivers controlled release and consistent dermal absorption. Water Solubility >95%: Artemisinin Polysaccharide with water solubility over 95% is used in beverage fortification, where it assures complete dispersion and consumer palatability. Endotoxin Level <0.1 EU/mg: Artemisinin Polysaccharide with endotoxin level below 0.1 EU/mg is used in sterile parenteral preparations, where it reduces the risk of pyrogenic reactions. Melting Point 180°C: Artemisinin Polysaccharide with melting point 180°C is used in high-temperature extrusion processes, where it provides stability and defect-free formulation. |
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Years of hands-on research and development has pointed us down the path of integrating nature’s chemistry with modern extraction methods. Artemisinin Polysaccharide emerges from the crossing of traditional botanical wisdom and technical know-how, with a focus on targeted applications in health and life sciences. Our production process always aims for purity and repeatability, built on knowledge gained from handling botanical actives at an industrial scale for long periods.
From the beginning, Artemisinin Polysaccharide has brought new energy to phytochemical development. As originators, we saw the challenge of bringing together two powerful plant-derived elements: the well-documented molecule artemisinin, long prized in traditional remedies, and a high-grade polysaccharide fraction. The process never followed an off-the-shelf route. Each batch has grown from raw, well-selected Artemisia annua leaves, cultivated under closely monitored conditions for optimal secondary metabolite yield. After harvest and drying, extraction relies on tailored solvents and filtration—avoiding harsh steps that can degrade the delicate chemical structures. Purification techniques, including membrane separation, further enrich the final product with an even ratio of the target compounds.
We noticed early in our pilot runs that artemisinin in isolation, though legendary as an anti-malarial, misses a host of synergistic effects locked in the broader plant matrix. Polysaccharides joined the story as both carriers and biological enhancers; polysaccharides from Artemisia annua support immune modulation, among other benefits. Pairing these with artemisinin results in a blend with properties not present in the single isolated constituents.
The fused extract taps into both chemical and physical synergies. Where artemisinin controls specific molecular pathways, the polysaccharides provide scaffolding and bioavailability support, bridging aqueous environments and extending the active’s reach. Industrial researchers have recognized this difference, showcasing improved bioactivity in applications like immunological studies and plant health products. Many users rely on this blend when pursuing alternatives to synthetic actives or monoculture extracts, seeking broader action without unwanted residues.
Every production step occurs under one roof, where our team tailors the operation to the needs of the compound, not some abstract standard. The starting material comes exclusively from plantations that meet our demands for soil profile, altitude, and pesticide practice, as even minor differences affect the artemisinin content. Our extraction lines run with food-grade equipment; nothing metal touches the product at high temperatures. With a philosophy grounded in traceability, we document every input, right down to harvest dates and solvent purity.
The model we supply today, XXXX-AP90, has become our workhorse formulation, known for its stable artemisinin-to-polysaccharide ratio. Specifications are confirmed every day by in-house chromatography: the content of artemisinin stays above 4 percent, with the rest of the blend made from carefully measured polysaccharides, all water-soluble and free from insoluble plant fiber. The particle size distribution, controlled via fine grinding and sieving, makes handling consistent for blending, encapsulation, or water suspension. Our technical team tests each batch for heavy metals and pesticide residues using international laboratory methods.
We refuse to treat extraction as a volume game. Doing so misses what matters most in botanical biochemistry: maintaining activity, not just hitting a purity target. The implications spread downstream where applied ingredient quality determines research results.
Looking around the global market, there’s no shortage of so-called “artemisinin compound” products. Most are simple artemisinin extracts, crystallized from solvents under high heat and stripped of the natural polymers we view as essential. We trace many of these back to isolated extraction lines with heavy solvent recycling, often leaving residues or non-native byproducts. Powder from these routes appears chalky and characterless, lacking the subtle plant odor and neutral hydrophilic flow that distinguishes a genuine botanical composition.
Our Artemisinin Polysaccharide keeps as close as possible to its botanical blueprint—something we learned only happens through process discipline, not brute force purification. We use non-denaturing extraction flows that protect the artemisinin core and the complex range of plant carbohydrates. The result is a product that disperses evenly in water, with a nutty herbal aroma and a mild taste. In our testing, such blends show lower allergenicity and better compatibility in both animal and cell-based studies than purified artemisinin, supporting applications in specialized feed, dietary supplements, and advanced therapeutics.
What sets our product apart—more than claims on a spec sheet—is the ability to serve unusual and demanding applications. We have shipped side batches with tailored artemisinin content for different regions, from aquaculture feed trials targeting parasite resistance, to horticultural formulas designed to give plants resilience against biotic stress. This kind of adaptability comes from knowing every part of the process, from cultivation guidance right to post-packaging storage. Our customers tell us no generic extract covers such a wide range without losing physical stability or consistency between shipments.
Manufacturers like us get regular feedback from R&D labs, formulators, and end-users who face the gritty realities of getting new actives to work in blends. A polysaccharide-enhanced artemisinin powder acts nothing like standard crystalline powder in dissolution protocols, mixing tests, and shelf-life assessments. We’ve invested in flow testing, moisture uptake curves, and compatibility studies to learn how the compound behaves in complex matrices.
Work with encapsulation machines highlighted a key insight: poorly regulated extracts clump, slow down dosing systems, and often react with encapsulant shells. On the shop floor, our fine-grained Artemisinin Polysaccharide shows stable throughput at various humidity settings, without caking or generating fines that contaminate machinery. Syrup and tablet formulations benefit from a blend that holds steady color and flow over months of storage.
The product fits into wide-ranging applications spanning supplements, veterinary medicine, and animal nutrition. For supplement makers, artemisinin’s bitter undertone often turns up in end products as a sour taste or off-odor; our blend brings this under control, thanks to the smoothing effect of the native plant polysaccharides on the overall sensory profile. Feed mixers appreciate solubility and stability, avoiding clogged lines or wasted product in water systems. Nutritionists have praised the product’s low residue content, confirmed using our in-house spectrophotometry and third-party mass spectrometric analysis.
Adaptability pushes development forward. Internal R&D teams launched projects with nuanced process adjustments—sometimes a change in extraction temperature, other times an adjustment to solvent ratios. Results for partner companies include high-dose blends for broiler growth studies and small-particle suspensions for water-dosed veterinary treatments. None of this comes from a commodity approach; responsiveness springs from understanding how each compound matters to the user right at the operational level.
One reality never changes: customers, university partners, and contract researchers always want transparency. We provide samples, batch documentation, and technical walkthroughs—not just marketing leaflets. Many research partners have come to our site, inspected cultivation zones, and walked through our production lines. We routinely share full chromatograph records for each lot. Every claim stands on years of logged process validation and external lab cross-checks.
Collaborative research projects have evaluated our Artemisinin Polysaccharide in pre-clinical safety trials, functional food prototypes, and disease vector controls. In one published veterinary case study, feed trials involving layer hens produced improved immune titers and lowered pathogen counts, attributed, in part, to the polysaccharide content’s support of gut microflora. Academic teams investigating antitumor prospects referenced our product in exploratory results and commented on its standardized secondary metabolite balance.
We also spend a portion of our process time supporting new project customization. Recently, custom-made fractions with specific minor polysaccharide types have begun leaving our lines, tailored for immunology departments and cancer research labs investigating polysaccharide’s impact on macrophage response. The goal is always knowledge exchange—our team sees itself as a participant in answering real-world application questions.
A manufacturing facility’s reputation holds only as long as every shipment matches what’s on the COA. Internal QC teams work from a checklist born out of many flawed batches seen across years—a held shipment isn’t a crisis, it’s a lesson. Our test suites go past basic artemisinin content. Enzyme-linked immunoassays check for micro-contaminants; environmental monitoring in raw material storage reduces fungal and pesticide exposure. Particle size, solubility, color, and odor—all get tracked and logged digitally.
Traceability threads through all suppliers and workstations; a deviation in drying temperature triggers root cause analysis and corrective action. By keeping everything in-house, we maintain direct oversight, which translates directly into end-user reliability. Past minor crises—like a spike in heavy metal readings from a new field—pushed us to impose stricter sourcing and batch release controls. The goal stays simple: nobody wants a call-back due to contamination or mismatched composition.
Our customers receive full test records with each shipment, allowing transparent input decisions for pilot plant trials or full production scale. As industry trends shift, we invest in greater automation of test lines while maintaining the expertise of staff who know how a real product should look, feel, and smell at every stage.
Botanical ingredient markets keep evolving as research, public standards, and regulatory rules change worldwide. Demand for clear labeling, verifiable claims, and sustainable sourcing grows with every year. As a producer, we commit to chemical traceability and honest ingredient descriptions. Shortcuts in extraction or raw material sourcing yield short-term gain but undermine long-term reputations. Keeping up with this reality requires more than compliance paperwork—it requires hard-won trust.
Our supply chain audits document field-to-batch movement, matching what appears on each COA. Export markets often send site inspectors or request digital lot tracking, so we keep all compliance documentation updated, and are ready to work with new standards as they emerge. Certifications for pesticide limitation, solvent residue, and process hygiene form part of every export package, not just for market access but because our team wants every user to trust what’s in each bag or canister.
Sustainability drives many changes. Our extraction and waste systems work to minimize solvent use and capture byproducts for recycling or secondary product streams. Regular staff education sessions keep everyone aware of potential regulatory changes, industry best practices, and environmental impacts of our operations.
Years spent producing artemisinin-related extracts inform every process step we employ. Many competitors operate with arms-length contract processors; we have walked our own lines, from raw material deliveries to packaging. That experience matters most when trouble hits or when a client needs a batch adjusted to meet a new research endpoint.
It’s one thing to sell based on documentation; it's another to solve problems directly on site. Our staff includes process chemists, botanists, and technicians who collaborate daily over real samples. We don’t rely on theory alone—each new application or customer request flows into new process trials, on-site modifications, and smaller verification runs. This hands-on approach helps us deliver innovation, not just ingredients.
Over the past decade, global demand for responsibly sourced and scientifically validated phyto-ingredients has grown. Artemisinin Polysaccharide embodies that push forward: not simply greater purity, but more targeted and effective blending of key botanical elements. This push aligns with direct user needs in research, manufacturing, and end consumption. We intend to keep expanding the possible uses by listening to industry partners and investing in smarter production lines.
Trust comes from ongoing effort and genuine expertise. Our Artemisinin Polysaccharide stands as the result of direct experience, careful process choice, and an ongoing partnership with science, the land, and our customers.