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HS Code |
402282 |
| Chemical Name | Kaempferol-3-O-Sophoroside |
| Molecular Formula | C27H30O16 |
| Molecular Weight | 610.52 g/mol |
| Cas Number | 60110-13-2 |
| Appearance | Yellow powder |
| Solubility | Soluble in water, methanol, and ethanol |
| Melting Point | Decomposes before melting |
| Iupac Name | 5,7-dihydroxy-2-(4-hydroxyphenyl)-4H-1-benzopyran-4-one 3-O-beta-D-glucopyranosyl-(1→2)-beta-D-glucopyranoside |
| Source | Found in various plant species, especially in kale and other Brassicaceae |
| Pubchem Id | 44249013 |
As an accredited Kaempferol-3-O-Sophoroside factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Kaempferol-3-O-Sophoroside, 50 mg, supplied in a sealed amber glass vial with tamper-evident cap and clear labeling for traceability. |
| Shipping | Kaempferol-3-O-Sophoroside is shipped in tightly sealed containers under ambient or refrigerated conditions, protected from light and moisture. Packaging complies with regulations for chemical transport to ensure safety and integrity. Accompanying documentation includes safety data and handling instructions. Delivery is typically arranged via certified chemical couriers for prompt and secure arrival. |
| Storage | Kaempferol-3-O-Sophoroside should be stored in a tightly sealed container, protected from light and moisture. Ideally, it should be kept at -20°C for long-term storage to prevent degradation. Avoid repeated freeze-thaw cycles. For solutions, use inert gas to displace air and minimize oxidation. It should be properly labeled and handled following standard laboratory safety protocols. |
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Purity 98%: Kaempferol-3-O-Sophoroside with Purity 98% is used in pharmaceutical formulation, where it ensures consistency in bioactive compound delivery. Molecular Weight 610.52 g/mol: Kaempferol-3-O-Sophoroside with Molecular Weight 610.52 g/mol is used in molecular biology research, where accurate dosing enhances experimental reproducibility. Stability Temperature 25°C: Kaempferol-3-O-Sophoroside with Stability Temperature 25°C is used in nutraceutical storage, where it preserves efficacy during shelf life. HPLC Grade: Kaempferol-3-O-Sophoroside of HPLC Grade is used in analytical chemistry, where it allows precise quantification in quality control assays. Particle Size <10 µm: Kaempferol-3-O-Sophoroside with Particle Size <10 µm is used in topical cosmetic formulations, where it improves absorption and uniformity in creams. Solubility in Water: Kaempferol-3-O-Sophoroside with Solubility in Water is used in beverage fortification, where it enables homogeneous dispersion and bioavailability. UV Absorbance 370 nm: Kaempferol-3-O-Sophoroside with UV Absorbance 370 nm is used in spectrophotometric analysis, where it facilitates accurate detection and quantification. Melting Point 235°C: Kaempferol-3-O-Sophoroside with Melting Point 235°C is used in solid dosage drug development, where it assures stability during manufacturing processes. Low Heavy Metal Content <10 ppm: Kaempferol-3-O-Sophoroside with Low Heavy Metal Content <10 ppm is used in dietary supplements, where it minimizes toxicological risk to end users. Optical Rotation -35° (c=1, H2O): Kaempferol-3-O-Sophoroside with Optical Rotation -35° (c=1, H2O) is used in stereochemical studies, where it confirms molecular authenticity and chirality. |
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Day in and day out, our teams work at the intersection of chemistry and nature’s complexity. Kaempferol-3-O-Sophoroside stands out because it reflects the results of that hands-on approach—starting in the lab and pressing forward until the material in our hands shows a reliable, repeatable structure. We have prepared Kaempferol-3-O-Sophoroside in batches that reflect high purity, with each run controlled from solvent extraction through to the last filtration step. Its CAS number and molecular formula matter, but what counts in daily work is proof: actual chromatograms and consistency in performance.
Unlike kaempferol aglycone or basic glycoside derivatives, the sophoroside group confers unique water solubility and stability features. Not every manufacturer willing to call a powder kaempferol-3-O-sophoroside guarantees the same mono-disperse state. Our batches target impurities below 0.5%, which translates to more robust outcomes during downstream screening—whether in antioxidant experiments, anti-inflammatory assays, or plant physiology studies. Every chemist knows the frustration when contaminant peaks interrupt your signals. We eliminate those headaches with extra process checkpoints.
We offer this flavonol as an off-yellow powder, with a moisture content kept below 1.5%. Spectroscopic data is published for every lot, not just a selected few, so you can compare your reference standards directly instead of tracking down raw reports. Microbial contamination is checked post-drying and post-packing. We have built our facilities around minimizing batch-to-batch variation since plant glycosides can degrade quickly in the wrong hands.
Particle size might seem secondary, but it shifts extraction times, especially for researchers relying on high-throughput platforms. Our product’s granulation profile skips the oversized particles that can clog or bias microplate assays. In practical terms, this means smooth automated pipetting and reliable wetting, without constant vortexing or pipette recalibration. The color can vary subtly based on the growing region of the source plant, so we document batch origins—something every veteran in natural product research learns to value over time.
Kaempferol-3-O-Sophoroside is most popular in in vitro and in vivo antioxidant testing. Over the years, pharmacology researchers have relied on our standardized product to measure SOD, CAT, and MDA modulation. Batch documentation includes stability studies under different storage conditions, since flavonol glycosides can hydrolyze if temperature control slips. For customers formulating anti-aging creams or functional teas, our technical support extends to solubility troubleshooting—some solutions behave differently in commercial matrices compared to lab buffers.
In the food additives industry, buyers demand anti-adulteration proof as much as they want active compounds. Our supply chain starts from controlled plant sources, with batch analysis of heavy metals and pesticides. No shortcut can replace years of cooperation with growers and processors who understand the sensitivity of plant glycoside production—especially for compounds like this that are sensitive to soil content and post-harvest drying. The margin for error is thin, but long-term results justify every auction, shipment, and field audit we carry out.
The main difference in our Kaempferol-3-O-Sophoroside compared to off-the-shelf options rests in separation technology and quality assurance. We have optimized our purification lines for higher throughputs without sacrificing fraction purity. Flash chromatography parameters are revisited every season, responding to changes in raw material phenolic content due to weather or harvest variation. Environmental factors matter at the plant level, but the chemist in the factory is who ensures that each batch can stand up to analytic scrutiny.
Thin-layer chromatography is only a starting point for us, not the finish line. Each lot undergoes HPLC-DAD and NMR verification. Our technical staff cross-checks against European Pharmacopeia and in-house standards, sharing certificates and raw curves with industrial clients on request. This data-driven process wins trust—and it has meant fewer product returns, fewer customer frustrations, and stronger long-term partnerships.
Our experience in the field shows that subtle quality differences in Kaempferol-3-O-Sophoroside have major impacts, especially for academic groups running multi-year bioactivity studies. Without strict control, background noise creeps in and weakens statistical power. Typical off-brand material comes from variable source plants, often handled without respect for storage time. These shortcuts show up later in misshapen dose-response curves.
Technicians in our facilities receive regular hands-on training in material handling, especially in regards to UV-light and moisture sensitivity. We store final product under controlled humidity and temperature. Every operator rotates through quality checkpoints, so no one loses touch with lab-scale realities. This approach shrinks the performance gap between research-only and GMP-grade material. Multinational pharmaceutical developers benefit when process validation, traceability, and documentation already meet higher standards, avoiding difficult recalibration once scale-up begins.
We spent years learning the hard way what counts in plant glycoside production—not just yield, not just price, but process reproducibility and supply stability. Our own failed runs taught us to revisit extraction solvents for fractionation, purge trace acids from storage tanks, and double check drying atmospheres. Direct feedback from academia and industry helped reshape our documentation protocols. Most important, we listened when partners reported outlier results, instead of dismissing data that challenged initial assumptions.
Sourcing the parent plant in bulk can suggest cost savings, but every skipped filtration step has a price on the back end—be it regulatory headaches, patent disputes, or loss of customer confidence. Over time, we have moved toward vertical integration, pairing growing operations with extraction and packing under the same roof wherever possible. Even when raw material comes from distant farms, we enforce documentation from the field to the drum. We learned early that short-term shortcuts turn into long-term liabilities, often traced back to inattentiveness during raw material inspection or the paperwork supporting farm practices.
Customers tell us that data reliability is the main selling point—not just the headline numbers, but access to the technical background behind each lot. We host site visits and virtual audits so third parties can watch processing in real time and review internal protocols. Some chemists need far more supporting data than others, depending on their publication or regulatory requirements. We keep our analytical methods available, updating them as technologies and standards evolve.
Feedback loops between the warehouse and lab have improved our lot release times and reduced backorders. With plant-derived actives like Kaempferol-3-O-Sophoroside, keeping meaningful transparency is more practical than drafting long-winded reassurances. Customers ask directly how extract methods or storage affect material, so we share actual timelines and storage records. No one who has spent time in pilot-scale or commercial production underestimates the impact that minor dehydration or light exposure can have on flavonoid profiles.
Environmental regulations and consumer demand shape our daily operations. For Kaempferol-3-O-Sophoroside to remain viable long-term, source plants must be grown without reckless use of agrochemicals. Years of outreach have given us a roster of farmers and suppliers who work with, not against, local conservation schemes. Trace levels of pesticides, heavy metals, or solvents get flagged at our incoming material checkpoint.
Internal investments in water recycling and waste reduction reduce both our environmental impact and energy costs. Batch sizes are matched to orders, not simply to maximize output, so as to minimize oxidized or expired lots. These measures keep costs in line for our customers while complying with current EU and North American guidelines, a balancing act that few resellers or aggregators can manage with any lasting reliability.
Across the years, repeat requests for academic samples swelled into regular inquiries about scale-up for commercial products. Moving from kilogram to multi-ton volumes means redesigning process steps for consistency and safety at larger scales. Shared feedback with engineers led us to redesign solvent recovery systems to prevent cross-batch contamination, and modify temperature controls for seasonal changes in raw material profiles.
Authentication remains a live concern for most buyers scrutinizing natural product claims. Spectral matching, chemical fingerprinting, and, where justified, DNA barcoding protect end-users from mislabeled goods. Where many distributors only carry paperwork, we supply tangible chemical evidence, running corroborative tests both pre- and post-shipment. Over time, this system has slashed false returns and claims against product authenticity, directly reducing friction down the supply chain.
Open-source collaboration has blossomed as researchers share their findings on the bioactivity of our batches with others. As synthetic biology groups chase new production methods, we keep them supplied with independently verified material for controls. Regulatory filings and clinical trial submissions often need years’ worth of analytical data and real-world performance, which only stable, direct relationships can provide in full.
Community-building goes beyond simple customer service, involving joint workshops and live-streamed product demonstrations. Photochemistry and pharmaceutical method validation have both benefited from direct dialogue with end-users. Collaboration often reveals shortcomings in standard extraction or assay protocols, prompting more tailored support and, at times, batch-by-batch customizations.
We chase technical improvement for practical reasons, not appearances. Upgrading lab analysis equipment cuts down on measurement drift and makes documentation more robust. New chromatographic resins help separate congener flavonoids during purification, raising the proportion of pure Kaempferol-3-O-Sophoroside per batch. These changes flow directly from internal troubleshooting and customer experiment review—not from chasing the latest trend for its own sake.
Trained plant chemists working on our lines know the variability that creeps into every harvest, and report changes as soon as they arise. Constant reinvestment in staff training yields more reliable troubleshooting, especially for flavonoid glycosides that challenge standard methods. Internal knowledge grows with every project, often surfacing in custom projects we develop in response to unique requests: from novel extraction solvent systems to proprietary drying protocols for client-specific research.
Regulators expect both transparency and proof of supply chain control. We stay ahead by tracking international guidance changes and updating our documentation as needed—no customer wants to be left behind because a single certification expired or changed unexpectedly. For applications in supplement and food sectors, we now provide supply chain audit support, pre-empting regular regulatory surprises. Proven documentation comes from process discipline, not guesswork.
All technical and quality questions can be traced back to people actually running the lines—not third-party agents, but real process chemists and plant managers who understand what’s at stake. Our clients trust that behind every shipment stands both traceable paperwork and accountable people who know both laboratory and plant operations in detail.
Unregulated market options tend to feature unpredictable content of Kaempferol-3-O-Sophoroside and possible mix-ups with structurally similar compounds. Such inconsistencies cause irreproducible results and wasted resources, especially for biotech and clinical applications. In contrast, our supply chain and material standards reduce ambiguity. We use both chemical verification and field traceability to maintain trust in every order.
Many years of feedback showed that what analytical chemists, dermatologists, and R&D teams appreciate most is direct problem solving—sharing details about potential batch complications before issues arise. We stand behind every shipment, and each deviation or anomaly is reported inside the same operational window, which has reduced surprises during audit or regulatory review.
Kaempferol-3-O-Sophoroside will remain a bedrock compound for antioxidant, anti-inflammatory, and related natural product research. Our continued progress depends on open channels—letting customers see, touch, and criticize actual product and process at every point. Each decision in the lab or field, each improvement in drying or testing, directly impacts results downstream.
Our commitment endures not just in what we ship, but in supporting generations of researchers and product developers with open records, honest feedback, and dedication to the real-world needs of scientific work.