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HS Code |
189135 |
| Product Name | Ursolic Acid Sodium |
| Chemical Formula | C30H47NaO3 |
| Molecular Weight | 478.68 g/mol |
| Appearance | White to off-white powder |
| Solubility | Soluble in water |
| Purity | ≥98% (HPLC) |
| Storage Conditions | Store at 2-8°C, protected from light |
| Cas Number | 77274-78-1 |
| Melting Point | 285-288°C |
| Ph Value | 7.0-8.0 (in aqueous solution) |
| Stability | Stable under recommended storage conditions |
| Synonyms | Sodium ursolate |
| Odor | Odorless |
| Usage | Used in pharmaceutical and cosmetic formulations |
As an accredited Ursolic Acid Sodium factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Ursolic Acid Sodium, 100g, securely packed in a sealed, amber HDPE bottle with tamper-evident cap and clear labeling. |
| Shipping | Ursolic Acid Sodium is shipped in tightly sealed, chemical-resistant containers to prevent contamination and moisture exposure. It is transported in accordance with relevant safety regulations, with clear labeling and cushioning to avoid breakage. Temperature and humidity controls are maintained where necessary to ensure product stability and quality during transit. |
| Storage | Ursolic Acid Sodium should be stored in a tightly sealed container, away from light and moisture, at room temperature (15–25°C). It should be kept in a dry, cool, and well-ventilated area, isolated from incompatible substances. Avoid exposure to air, and ensure the container is properly labeled. Handle under conditions that minimize dust generation and accumulation. |
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Purity 98%: Ursolic Acid Sodium with purity 98% is used in pharmaceutical formulations, where it ensures consistent bioactivity in anti-inflammatory therapies. Solubility Enhanced: Ursolic Acid Sodium with enhanced solubility is used in oral supplement production, where it improves gastrointestinal absorption rates. Particle Size <10 μm: Ursolic Acid Sodium with particle size <10 μm is used in topical cosmetic emulsions, where it enhances dermal penetration and efficacy. Stability Temperature 60°C: Ursolic Acid Sodium with stability up to 60°C is used in high-temperature extraction processes, where it maintains molecular integrity. Molecular Weight 478.53 g/mol: Ursolic Acid Sodium with molecular weight 478.53 g/mol is used in controlled drug delivery systems, where it allows precise dosage calculations. Low Endotoxin Level <0.5 EU/mg: Ursolic Acid Sodium with low endotoxin level <0.5 EU/mg is used in injectables manufacturing, where it meets stringent safety requirements. pH Stability Range 4-8: Ursolic Acid Sodium with pH stability range 4-8 is used in beverage fortification, where it ensures active component preservation during storage. High Water Solubility: Ursolic Acid Sodium with high water solubility is used in functional food enrichment, where it enables uniform distribution in aqueous matrices. Micronized Grade: Ursolic Acid Sodium micronized grade is used in nanoparticle drug carriers, where it enhances dispersibility and absorption. Low Heavy Metal Content <10 ppm: Ursolic Acid Sodium with low heavy metal content <10 ppm is used in nutraceutical manufacturing, where it complies with international purity standards. |
Competitive Ursolic Acid Sodium prices that fit your budget—flexible terms and customized quotes for every order.
For samples, pricing, or more information, please contact us at +8615365186327 or mail to admin@ascent-chem.com.
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Tel: +8615365186327
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Working every day in synthesis and purification, we see firsthand how chemical advances move out of the lab and into real-world applications. There are plenty of plant-based ingredients out there, yet the demand for effective, reliable, and consistent plant-derived actives only keeps growing. Ursolic Acid Sodium is one of those compounds that comes up often in industry talks and research queries. Through years of hands-on production, we’ve learned a lot about how to get this ingredient right, and what actually matters for industries adopting it—especially skincare, pharmaceuticals, and wellness supplements.
We chose to develop Ursolic Acid Sodium as a carefully balanced, water-soluble form. This decision didn’t come from chance. Most realize ursolic acid in its natural form resists dissolving in water, which can limit its application range in final products. Instead of struggling with the crude or semi-purified forms some traders move, we invested in optimizing sodium salt formation during synthesis. The result is a model, coded as UAS-Na-98, that suits downstream blending much more efficiently. This approach enables easier integration within water-based systems—lotions, solutions, and sprays—without the old worries about gritty texture or poor dispersibility.
With the sodium form, formulators can rely on a high-purity product, and more importantly, batch-to-batch consistency. Our typical assay comes out above 98% on HPLC, and we verify each lot against not only published monographs, but also internal benchmarks built from actual application feedback. Many partners express frustration with “supposedly standard” lots that still bring surprising odors or discolorations. Our process clears most unwanted plant residues through targeted extraction and multi-stage crystallization steps. It’s something we learned after scrapping plenty of material during the early years—each loss taught us how to get the fractions cleaner, more repeatable, and suited to diverse uses.
Every bag and drum leaving our dispatch meets commitment on content, and we share real data, not generic tables. The average water content stays below 2%, keeping stability up during storage. Particle size, a frequent afterthought, is held within a moderate range (main population under 150 microns) — large enough to avoid dust clouds in open handling, fine enough to dissolve or disperse quickly with standard mixing. We pay attention to clear, non-reactive packaging because we know from warehouse experience that air, light, and stray moisture can start degrading surface quality much sooner than lab protocols might predict.
Some buyers want guarantees about what isn’t included, too—heavy metals, agricultural residues, residual solvents. Regular production runs feature stringent filtration and final vacuum drying to remove even low levels of contaminants. All control samples undergo third-party analysis several times a year, particularly for regulated markets in Europe and North America. Our own staff have paused shipments before when irregularities turned up by surprise, a headache in the short term that built trust over time.
Plenty of operators source regular ursolic acid as a powder or microcrystalline solid, drawn from botanicals like rosemary or loquat leaves. While you can achieve a reasonably pure material this way, direct use often leaves headaches during formulation. Water repellence limits it to fats, oils, or strong solvent carriers—hardly ideal when making something like a hydrating serum, an oral preparation, or clear beverage additive. Some companies play with nanoparticles or modified encapsulations, which do help, but those techniques add costly extra processing.
By contrast, the sodium salt version—especially our UAS-Na-98—mixes into aqueous solutions without needing special equipment or high-shear blending. With this product, visible precipitation disappears in finished products that sit on shelves, avoiding familiar headaches like sediment in a bottle or nozzle blockage in sprays. This change matters in real factory settings because reprocessing a failed batch or cleaning fouled lines sets back schedules, and nobody likes costly downtime.
Chemical purity is another dividing line. Traditional extracts can bring along unknown plant metabolites that may trigger skin reactions or off-odors, even in apparently “natural” lines. Our sodium form, heavily refined and standardized, gives buyers a clean baseline for regulatory submissions and stability testing. If you’ve ever spent days tracking mysterious color shifts or sudden viscosity changes, a pure, well-characterized lot takes that off your list of production uncertainties.
Over the years, our customers in personal care, pharmaceuticals, functional foods, and supplements have told us where Ursolic Acid Sodium stands out. Formulators in skincare find it easier to combine with other actives and humectants, resulting in clear, appealing gels. In the supplement market, producers can enhance absorption potential thanks to water compatibility, making the bioactive easier for the body to access than simple extracts.
Some believe all bulk botanicals offer similar results, but we’ve measured clear differences in application testing. When comparing shelf life and phase stability in emulsified systems, the sodium salt stays dispersed much longer than agglomerated plant extracts. Supplement manufacturers notice capsule contents don’t clump or separate after a few weeks, cutting returns and rework. In food and beverage, it’s possible to deliver measurable actives in clear, flavored drinks without leaving a visible residue or an undesirable mouthfeel.
Not all differences are technical. Traceability remains a top concern for global brands. As a genuine manufacturer, we start at the botanical sourcing—selecting verified supply chains, applying targeted extraction solvents, and tracing every input through digital batch tags. Even when suppliers suggest cost cutbacks, we stick to defined protocols. This approach means any customer can match delivered product back to detailed records, not just a code or label.
Technical directors and operators often ask how to best add our product to theirs. Our own team uses standardized mixing trials for reference: dissolve the sodium salt form in room temperature water, then add to batch tanks. The powder disperses quickly, with minimal sticking or floating. In high-throughput lines, dosing systems drop it into inline mixers alongside other water-soluble actives. If adjusting pH or blending with heat-sensitive components, staff stagger additions so nothing degrades before packaging.
Ratio recommendations grow from end-use feedback, not just spreadsheets. In cosmetics, typical input ranges from 0.05% to 0.5%, delivering evidential activity without clouding the base. Health supplement makers often build up to 1% or slightly more, depending on desired claim levels and product matrix. Regulatory caps sometimes set the upper limit, so we provide application support to purchasers navigating region-specific standards.
One overlooked aspect is cleaning and maintenance. Because our Ursolic Acid Sodium contains low residuals and disperses cleanly, factory crews report less residue in piping and storage tanks. This saves hours each week, and over years, it matters for line efficiency—a reality not always discussed by specification sheets.
Any bulk plant-derived material brings its share of challenges. Early in our journey, customers saw problems with ordinary ursolic acid—persistent clumping, separation after storage, an unpredictable taste, or the odd plant smell carrying through to the finish. Our sodium conversion process directly tackled these. By fine-tuning reaction pH and using stepwise purification, the off-notes and persistent crystals that sabotaged earlier production runs no longer show up.
Another point came up in stability trials—standard triterpenoids often darken over weeks, which can ruin a product’s shelf appeal. Through controlled filtration and packaging under inert conditions, we reduce the risk of oxidative browning. Our staff checks batch stability under harsh conditions, including high heat and humidity, because we’ve seen how quickly problems appear in less controlled environments. Experience teaches you to address the weak points before customers ever see them.
Some promoted alternatives—microcapsules, freeze-dried powders—deliver appealing marketing claims but break down in actual production routines. We tested many ourselves, but for most mainstream applications, the additional cost and handling complexity outweigh the incremental gain. Our sodium salt form balances cost, ease of use, and broad applicability.
Modern industries demand chemical confidence, especially with product claims involving active health benefits or long-term use. As the manufacturer, we keep close ties with food and drug authorities, monitoring evolving guidance for plant extracts and their derivatives. All lots are screened through both in-house HPLC analysis and outside labs chosen for their reputation in triterpene quantification. We use these results both to certify outgoing lots and to feed back into our process improvements.
We also hear from end-users who value transparency. Some companies gloss over the labor and cost tied up in manufacturing from botanicals, skipping sourcing audits or lax on solvent removal. We chose a slower, more-controlled path: using certified suppliers, validated analytical methods, and continuous internal review. This policy answers not only buyer questions—it safeguards our reputation and helps set a higher baseline for trust in plant-derived ingredient claims.
Concerns about environmental risk and raw resource pressure weigh heavily on botanical ingredient markets. Our factory works alongside selected agriculture partners, auditing cultivation for sustainable practice. Unlike extractors who move between suppliers based on price alone, we help growers maintain targeted crop lines for repeatable yields, avoiding overharvest and supporting soil health. All collected material gets tested for identity and adulteration, and questionable lots never reach the processing line.
Energy consumption marks another hot spot in green chemistry. Over the past decade, we focused on minimizing solvent use and reclaiming carrier chemicals wherever possible, adding on closed-loop filtration and vapor recovery. These steps cost us more in equipment but cut emissions and reduce waste. Buyers benefit indirectly—lower hidden environmental impacts reduce long-term regulatory exposure.
Staff safety also features in every review meeting. Manual handling of bulk phytochemicals exposes teams to fine dusts, so we introduced higher-quality containment, anti-static packaging, and semi-automated bagging lines. Injury rates in blending and QC areas have dropped, and staff feedback supports our choice to reinvest in better workplace environment.
Not every upgrade begins on the drawing board; most improvements came from watching production in real time. We collect feedback from blend operators, QA techs, and maintenance crews who spot emerging issues well before they appear in a report. Early batches suffered from stubborn foaming during solution prep—by adjusting pH and agitation regime and introducing staged powder feeding, foam all but disappeared. These changes cut manual intervention, improved batch turnaround, and made scale-up to larger reactors more predictable.
Customers occasionally sought customizations: finer particle sizes, post-synthesis micronization, or special blends for rapid-dissolve systems. With larger orders, we worked in collaboration to optimize these features, trialing lots on simulation lines and capturing results for future improvements. Each successful customization brought in new information that fed back into our mainline production, raising all products in the process.
Nothing influences product evolution like technical demands from real market launches. For supplement powders, engineers requested minimal bulk density for easier filling and lower dusting risk. Our response: careful drying, adjusted sieving, and the introduction of anti-caking agents only as needed, confirmed through accelerated shelf studies.
Ursolic Acid Sodium, as we manufacture it, offers itself as a practical solution for innovators working with active plant compounds. Through every production batch, our understanding grows—not from sales pitches but from keeping machines running, meeting delivery schedules, and learning how each lot lands in actual use. We shape our product by listening not only to science, but also to what formulators and line staff say at every level.
Switching to the sodium salt has improved product handling, broadened formulation possibilities, and reduced failures in real-world production. Each improvement rests on small details that only daily manufacturing can uncover: from how the powder flows into tanks, to how it holds up in a finished batch two years down the line.
For our part, we will keep refining extraction, conversion, and QA, doing what we can to set the benchmark higher for quality, transparency, and reliability. We welcome curiosity and scrutiny alike—knowing that the best plant-derived ingredients have nothing to hide, and everything to offer forward-thinking industries.