Products

3,5-Dicaffeylquinic Acid

    • Product Name: 3,5-Dicaffeylquinic Acid
    • Alias: Isochlorogenic acid A
    • Einecs: 84626-14-0
    • Mininmum Order: 1 g
    • Factroy Site: Yudu County, Ganzhou, Jiangxi, China
    • Price Inquiry: sales3@ascent-chem.com
    • Manufacturer: Ascent Petrochem Holdings Co., Limited
    • CONTACT NOW
    Specifications

    HS Code

    991307

    Chemical Name 3,5-Dicaffeylquinic Acid
    Cas Number 2450-53-5
    Molecular Formula C25H24O12
    Molecular Weight 516.45 g/mol
    Appearance Yellowish powder
    Solubility Soluble in water, methanol, ethanol
    Purity Typically ≥98% (HPLC)
    Synonyms Isochlorogenic acid A
    Source Commonly found in coffee, artichoke, and other plants
    Storage Conditions Store at -20°C in a dry and dark place
    Uv Absorption Maximum 325 nm (in methanol)
    Stability Stable under recommended storage conditions
    Logp Estimated -0.7
    Pka Estimated 3.9

    As an accredited 3,5-Dicaffeylquinic Acid factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 3,5-Dicaffeylquinic Acid, 1g, packaged in a sealed amber glass vial with a screw cap, labeled for laboratory use.
    Shipping 3,5-Dicaffeylquinic Acid is shipped in sealed, light-resistant containers to maintain stability. Packaging complies with chemical safety regulations, preventing moisture and contamination. During transit, ambient temperature is maintained, with appropriate labeling and documentation for safe handling and quick identification upon arrival. All shipments adhere to international transport guidelines for laboratory chemicals.
    Storage 3,5-Dicaffeoylquinic Acid should be stored in a cool, dry, and well-ventilated place, away from light and moisture. Ideally, it should be kept in a tightly sealed container at -20°C or lower to maintain stability and prevent degradation. Avoid exposure to heat, oxidizing agents, and direct sunlight. Handle with care, using appropriate personal protective equipment.
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    Certification & Compliance
    More Introduction

    3,5-Dicaffeylquinic Acid: A Closer Look at a Unique Polyphenolic Acid

    Understanding the Core Value of 3,5-Dicaffeylquinic Acid

    Years in the lab and in the production facility have shown the natural world never stops surprising us with new phytochemicals, and among them, the caffeoylquinic acid family draws well-deserved attention. Out of all its siblings, 3,5-Dicaffeylquinic Acid often reveals benefits many overlook. Experience tells us this molecule stands out for its distinct arrangement of two caffeoyl groups on a quinic acid backbone, and this gives it qualities unattainable by its simpler relatives, such as mono-caffeoyl derivatives. With the scientific community delving deeper into polyphenols, we have seen requests grow from research institutions, pharmaceutical innovators, and cosmetic formulators.

    Our team has worked with a range of polyphenols, and year by year we encounter more research investigating the antioxidant potential of 3,5-Dicaffeylquinic Acid. Extracted in its purest crystalline form using carefully controlled chromatographic techniques, the compound comes with a molecular formula of C25H24O12. At our plant, we target a purity of at least 98%, since lower grades carry the risk of off-spec contaminants that affect both physical properties and bioactivity. No batch leaves our facility without rigorous HPLC analysis and spectral verification. Consistency matters where minute differences can alter scientific outcomes, whether in refining a cell culture media or developing a topical serum. Years of production have taught us that even minor deviations in water content can affect dissolution and shelf life, which is why we employ controlled drying and inert storage protocols.

    Why Model, Form, and Particle Size Matter

    We supply 3,5-Dicaffeylquinic Acid in both powder and crystalline forms, based on direct feedback from customers. Crystalline forms yield improvements in handling and stability for pharmaceutical compounding applications, while powders facilitate blending for nutraceuticals and foods. Over countless production cycles, we have learned that particle size distribution changes more than process convenience—it can determine whether a formulation succeeds or fails. Finer powders disperse more uniformly in solution but can present challenges with dusting or static. Customers in injectable research products often prefer the more stable, low-dust crystalline material.

    Real-world lessons have shaped our choice to package in inert gas-sealed containers and to include molecular sieves when humidity threatens product stability. We never rely solely on shelf tests but follow each batch with accelerated stability studies. From years of fielding technical support calls, our team can confirm that correct storage and rapid transfer into application platforms means the compound maintains its benefit profile all the way through its intended use.

    Sourcing and Identity: Lessons from the Field

    In conversations with academic partners, the most frequent question revolves around plant sources. 3,5-Dicaffeylquinic Acid occurs in several medicinal plants, perhaps most notably in Echinacea and artichoke. Our facility sources raw materials tested for botanical authenticity, and we routinely field test supplies to confirm not just the presence but also the profile of secondary polyphenols. There was a time our procurement team encountered admixture with structurally close analogs like 1,5-dicaffeylquinic acid—this prompted us to develop a multi-layered purity protocol, which now avoids ambiguity even with large-scale production lots.

    Field experts raise another frequent issue: product degradation during extraction and purification. Oxidation or isomerization can produce byproducts that diminish potency, or worse, compromise the end product’s safety. Our experience has shown the importance of immediate stabilization techniques, from cold extraction chambers to carefully controlled pH adjustment. Every processing choice reflects our commitment to maintaining molecular integrity from plant harvest through to customer delivery.

    Key Differences: Not Just a “Class Representative”

    3,5-Dicaffeylquinic Acid often gets lumped under generic “chlorogenic acids,” but working in manufacturing makes clear the practical differences inherent in its structure. Its two caffeoyl groups occupy specific positions on the quinic acid core, which gives it antioxidant capabilities exceeding those of mono-caffeoyl analogs. Our in-house comparative assays routinely show stronger DPPH and ABTS radical scavenging activity, which matters for customers developing products aimed at oxidative stress modulation. Functional differences don’t end at free radical interactions: we’ve seen that its inhibitory effect on key enzymes—including α-amylase and lipoxygenase—diverges sharply from other quinic acids. Time and again, academic groups visit our facility to run head-to-head tests, confirming a higher baseline of activity in cell-based antioxidant or anti-inflammatory screens.

    Our production logs record wide variation in demand between the different dicaffeoylquinic acid isomers. The 3,5-position confers higher solubility in organic solvents and water, which influences downstream processing in both research and product manufacturing. Experience tells us that blending with carrier agents—a common requirement in cosmetic matrices—goes more smoothly, reducing loss during homogenization or spray drying steps.

    Applications: Real-World Uses Beyond the Textbook

    Having supplied this compound for over a decade, practical know-how accumulates. Researchers in cell biology and pharmacology make up a large share of our customers. They use 3,5-Dicaffeylquinic Acid to explore not just baseline antioxidant effects, but also its role in inflammation modulation and cell cycle regulation. Early product development teams at pharmaceutical firms have turned to us for pilot-scale lots, where batch uniformity matters as much as supporting reproducibility in animal models or high-throughput screens.

    In cosmetics and personal care, formulators value the compound for its combination of natural origin and robust antioxidant action. Several customers have documented improvements in formula stability and skin tolerance when substituting synthetic antioxidants with 3,5-Dicaffeylquinic Acid—less irritation and stronger preservation of shelf life. Food and beverage technologists take a different approach, mixing it into functional beverages or dietary supplements. Here, the focus leans more on polyphenol content claims and the subtle flavor contribution, which is milder than some other hydroxycinnamates.

    Nutrition science recognizes the importance of dual-action molecules capable of combining antioxidant and anti-inflammatory benefits. This acid delivers on both fronts, which became clear to us after post-market surveillance with functional food producers. One product team noted a consistent drop in oxidative flavor degradation over six months—pointing to not just chemical stability, but a tangible benefit in long-term product quality.

    Reliability and Trust: Building on Track Record and Scientific Rigor

    Activity in this field has taught us that product quality alone isn’t enough. Institutions conducting clinical or preclinical research need assurance of traceability, batch consistency, and detailed documentation. In our facility, every lot comes with a comprehensive certificate of analysis, method validation, and a stability report stretching at least two years. Our in-house team frequently assists researchers tailoring protocols around specific applications of 3,5-Dicaffeylquinic Acid; this saves time compared to trial-and-error with generic grades purchased from resellers.

    We have also felt the growing demand for regulatory compliance and transparency. While not all applications fall under strict regulatory frameworks, we’ve adopted internal standards based on ICH guidelines for impurity control and residual solvent levels. Our chemists carry out routine audits of supply chain, production logs, and cleaning validation between batches—policies we instituted after observing preventable cross-contamination at another facility years ago.

    Trace metals and residual solvents pose persistent risks for highly active polyphenolic acids. In our process, we use food-grade, non-reactive equipment and regularly send aliquots for independent heavy metal analysis. The strict attention to purity, built into our daily routines and infrastructure, emerged as a response to an early customer’s critical feedback about trace lead content in another supplier’s polyphenol extracts. That experience led us to invest in new analytics and adopt a zero-tolerance approach for non-compliant batches, even if it slows delivery.

    Practical Considerations in Handling and Storage

    Every scientist or formulator who has worked in the polyphenol space knows about the hurdles in maintaining potency from factory to bench. Light, humidity, and thermal exposure can degrade 3,5-Dicaffeylquinic Acid more rapidly than some expect. Through years of experience, we have transitioned from standard glass to UV-blocking amber glass, then moved to airtight HDPE and custom mylar foils for larger scale packages. We always recommend keeping the product refrigerated, and to use aliquots from the container quickly since repeated opening causes a cumulative drop in both potency and solubility.

    Our technical team supports integration questions that range from optimizing buffer systems in high-pH environments to addressing precipitation during cold storage. For bulk users, we offer direct consultations at the formulation stage—courtesy that grew out of partnership with experienced researchers who understand that efficient upstream changes make downstream execution far simpler.

    The Road Ahead: Scientific Advances and Industry Shifts

    Interest keeps growing as global trends accelerate toward natural antioxidants and inflammation modulators. At industry meetings and scientific symposiums, attention to dicaffeoylquinic acids rises every year. More pharmaceutical leads emerge from polyphenol screening programs, and several major research projects are investing in novel delivery systems to target bioavailability challenges. Our team looks for ways to refine the compound further by supporting microencapsulation, nanodispersion, and co-formulation with established excipients, aiming to bridge the gap between in-vitro potential and in-vivo success.

    With regulatory frameworks evolving faster each year, we track published monographs and import standards for each geography we serve. This forward-looking approach has already supported multiple clients clearing hurdles not just in basic research, but in progressing toward dietary supplement and functional food markets. As a direct manufacturer, we prioritize horizon scanning not only for safety and compliance but for emerging assay technologies that might offer a tighter link between raw compound and end benefit.

    Looking Beyond the Standard: Lessons from Manufacturing Practice

    Manufacturing 3,5-Dicaffeylquinic Acid pushes us to blend scientific rigor with practical field know-how. From dealing with variable seasonal yields in plant materials to adjusting extraction protocols in response to feedstock variability, every lot comes with insights hard-learned over years. Our process does not chase the lowest production cost; it aims to underpin quality so that our partners can push forward with confidence. We work alongside those who value verified structure, proven activity, and the evidence built through careful, controlled release of each lot.

    For end users, a compound is only as good as the process that brings it from nature to application. We back this philosophy with open doors to our site, third-party audits, and continued technical support that does not end at shipment. After years of direct engagement, the pattern repeats: once customers experience the reliability in handling, documentation, and delivered quality, they return not just for the compound, but also for answers and collaboration.

    Insight, Adaptation, and Ongoing Collaboration

    In the shifting landscape of bioactive ingredient manufacture, 3,5-Dicaffeylquinic Acid serves as a testament to the potential locked in nature’s complex molecules. It stands out not only because of its intrinsic chemical strengths but more so due to the accumulated, hands-on adjustments that manufacturers like us keep making to improve and stabilize every batch. As the reach of this ingredient broadens, from university labs to global product launches, we recognize that scientific curiosity partners best with manufacturing reliability.

    Moving forward, we invest in advanced analytics, tighter process controls, ongoing technical education for our staff, and open communication with every client. Whether it's troubleshooting a solubility issue, investigating a new supplier for raw extracts, or developing guidance protocols for clinical researchers, the value always returns to practical experience and shared commitment to science-driven manufacturing.

    Years of observing changing industry practices, customer priorities, and new evidence from the research world remind us daily: no product remains static. Success with 3,5-Dicaffeylquinic Acid only comes from continuous learning, adaptation, and full transparency. As partners, we stake our reputation on every lot; as stewards of this remarkable compound, we remain invested in every application that brings its benefits to life.

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