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HS Code |
780195 |
| name | Gambogic Acid |
| chemical_formula | C38H44O8 |
| molecular_weight | 628.75 g/mol |
| CAS_number | 2752-65-0 |
| appearance | Yellow crystalline powder |
| solubility | Insoluble in water, soluble in DMSO and ethanol |
| purity | Typically ≥98% |
| melting_point | 203–205°C |
| source | Derived from Garcinia hanburyi (gamboge resin) |
| storage_temperature | -20°C, protected from light |
| IUPAC_name | 3-[(1R,7R,14S,16S)-7,16-dihydroxy-8,8,14,17-tetramethyl-3,4,7,14,15,16-hexahydro-1H,10H,18H-2,17-methanobenzo[7,8]chromeno[2,3-b]xanthen-1-yl]prop-2-enoic acid |
| PubChem_CID | 5281605 |
As an accredited Gambogic Acid factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Gambogic Acid, 10mg, is supplied in a clear glass vial, sealed with a screw cap, clearly labeled for laboratory use. |
| Shipping | Gambogic Acid is shipped in tightly sealed containers, protected from moisture and light. It is transported as a chemical substance, following all applicable regulations for handling and safety. Proper labeling, documentation, and, if needed, temperature control are ensured to maintain stability and prevent degradation during transit. |
| Storage | Gambogic Acid should be stored in a tightly sealed container, protected from light and moisture. Keep it in a cool, dry place, ideally at 2-8°C (refrigerator), and away from incompatible substances such as strong oxidizers. Ensure proper labeling, and limit exposure to air, heat, and humidity to preserve its stability and prevent degradation. |
Applications of Gambogic Acid in Industrial ManufacturingAs a specialized manufacturer of Gambogic Acid, we supply this raw material to a range of downstream industries that require precise composition and controlled purity for regulated production. Below are the most significant industrial application scenarios based on real-world market demand and regulatory frameworks. 1. Anticancer Active Pharmaceutical Ingredient (API) ProductionLarge-scale pharmaceutical manufacturers incorporate Gambogic Acid as a cytostatic agent in the synthesis of novel anticancer drugs. The compound enters as an active core in the formulation stage for injectable or oral oncology products. Formulators rely on our material for its defined purity, stability, and documented batch records to meet preclinical and clinical production standards. During process integration, technicians dissolve Gambogic Acid in buffered solutions, often under nitrogen, for further chemical modification and encapsulation as per targeted delivery systems. The integration occurs under strict aseptic and GMP-compliant conditions, resulting in finished oncology pharmaceuticals for global regulated markets. Industry compliance standards
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2. Pharmaceutical Research and Development (R&D)Gambogic Acid features prominently in preclinical drug screening and molecular inhibitor research by biotechnology firms and CROs. R&D teams use our material as a model scaffold in high-throughput cell culture assays, pharmacodynamic modeling, and toxicity testing in vitro and in vivo. Researchers select specific grades and batch specifications to support reproducibility across parallel drug discovery platforms, ensuring alignment with laboratory accreditation and bioanalytical method validation. The compound undergoes solubilization and dilution at bench scale before integration into cell assay plates or animal dosing protocols, enabling reliable mechanistic studies in oncology and immunology pipelines. Industry compliance standards
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3. Traditional Herbal Supplement ManufacturingNutraceutical manufacturers source Gambogic Acid for its defined functional component in producing herbal dietary supplements. Operators precisely blend our standardized extracts into powdered or capsule-based formulations, ensuring accurate content uniformity. Facility protocols require traceable certificates of analysis and adherence to non-pharmaceutical cGMP standards, while documentation supports Non-GMO, heavy metal, and pesticide residue thresholds. Material enters the supplement production line post-weighing and-screening, either as a standalone ingredient or in combination with other botanicals, before compaction, encapsulation, or blending for retail product packaging. Industry compliance standards
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4. Biomedical Diagnostic Kit FabricationSpecialized diagnostic kit manufacturers integrate Gambogic Acid as a functional reference or inhibitor in immunoassay and ELISA kit production for cancer research diagnostics. Process specialists require defined analytical purity to minimize cross-reactivity and ensure accurate sensitivity. The compound enters the assembly line during microplate coating or as a positive control in lyophilized reagents. All stages observe ISO 13485 medical device quality requirements and batch traceability from raw material receipt to kit release, supporting use in regulated laboratory settings and translational research centers globally. Industry compliance standards
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In our experience as a chemical manufacturer, Gambogic Acid stands out beyond its molecular structure. People in the pharmaceutical and research fields often focus on promises in the arena of natural products for their unique biological properties. Unlike widely regarded synthetic compounds, Gambogic Acid brings a rich legacy as a caged xanthone derivative harvested from Garcinia hanburyi. Its chemical roots trace back to traditional medicine, and over the past years, research teams have turned attention toward its anti-cancer, anti-inflammatory, and immunomodulatory properties. As we turn raw gum resin into reliable, high-purity Gambogic Acid, quality and reproducibility take precedence at each production step.
Our preparation lines have evolved with continuous internal research and hands-on refining of each process. We’ve found that a clean extraction with a well-controlled chromatographic separation achieves consistent results. Producing Gambogic Acid efficiently requires attention not only to yield, but to purity levels that meet demanding research protocols. We monitor every parameter—solvent ratios, temperature controls, and final crystallization conditions—to avoid impurity buildup and unwanted byproducts. Each batch receives a unique identifier for traceability in labs worldwide.
Gambogic Acid (CAS 2752-65-0) usually comes in powder form, its off-yellow color a hallmark of purity and the correct isolation process. Standard purities can run above 98% by HPLC, since any loss in purity often affects pharmacological studies. Researchers using our material for cell culture, structure-activity investigations, or preclinical pharmacokinetics depend on reliable supply. Storing the finished powder in argon-sealed amber glass extends its shelf life and slows down degradation caused by light and air. We are meticulous in ensuring safe handling: even though this compound doesn’t show the same hazards as many synthetics, proper gloves and fume hoods are essential for lab safety.
Our factory teams do not simply run a standardized recipe. Over the years, we have worked through every bottleneck. Extracting from gamboge resin is not a matter of mixing and filtering; the gum itself contains more than a dozen xanthones and gum molecules bonded to each other. In the hands of less experienced handlers, extracted batches can show contamination from even trace leaf material or oxidation byproducts. Meticulous fractionation and pre-inspection remove much of the headache before final crystallization. It takes patience to repeatedly extract, wash, and refine until only Gambogic Acid remains at detectable purity.
We continue to invest in high-pressure purification columns and test multiple stationary phases, not because it looks good on a brochure, but because it guards the consistency people expect to rely on in cell line studies or synthetic transformation work. The rare supply of raw resin can sometimes trigger supply tensions; sourcing partners have to understand the requirements to ship undamaged, fresh materials. Our direct relationships with local growers in origin regions let us inspect at the source, reducing waste and surprise at the receiving dock. Mistakes during resin collection or shipment can result in irreversible losses, so trust and timely communication with growers lie at the core of uninterrupted production.
Often, end-users ask: what sets Gambogic Acid apart from other compounds derived from Garcinia species or related xanthones? Based on years of processing, it is evident that this molecule’s configuration supports biological activities rarely matched by relatives like morelenone, norcembrene, or mangostin. The caged structure of Gambogic Acid allows for a distinctive interaction with cellular targets, and the combination of ester and ketone functions makes it suitable for both direct pharmacological investigation as well as chemical modification. This diversity in reactivity brings an edge for pharmaceutical research. Many alternative xanthones possess solid antioxidant or anti-inflammatory effects, but only Gambogic Acid shows particular promise in targeting multiple cancer-related pathways, including apoptosis induction and reversal of multidrug resistance.
Structurally, unfocused extraction might lead to significant co-isolation of structurally similar impurities—common in the unrefined products of some producers. A truly high-quality preparation comes down to not just removing gum and resin extras, but separating closely related analogs that can mislead assay results. It is our observation that relying solely on TLC or basic silica filtration fails to cut out such close contaminants. Only through layered purification—sometimes repeating columns three or four times—does the product reach standards suitable for pharmacodynamic studies.
Customers most frequently use Gambogic Acid in the investigative and preclinical phase of drug discovery. Its strong apoptosis-inducing properties have driven a surge of cell-based assays looking into solid tumor suppression. For academic labs, ease of dissolution in DMSO or ethanol simplifies dosing for in vitro work, with water solubility remaining limited—prompting some researchers to seek novel salt or prodrug formulations. Our experience shows that stability holds up well over several months in properly sealed containers. Researchers with expertise in medicinal chemistry have pursued modifications of the parent molecule for greater solubility or potency. Every year, requests for small-scale custom synthesis—involving coupling with fluorophores or linkers for bioconjugation—underscore the flexibility and adaptability of this product.
Users report distinctly favorable outcomes with high-purity supplies, showing more pronounced activity in cell death assays compared to less purified preparations. Minor contaminants or inconsistent batches often dampen bioactivity or skew dose-response relationships. During feedback exchanges, we have learned that some research groups consider Gambogic Acid a reference compound in the domain of new natural-product inspired therapeutics. Not all xanthones or yellow resin extracts share this reputation, which mostly stems from rigorous in-vivo and in-vitro data collected over decades.
Our years in the industry have offered clear lessons: sustainable sourcing and stability matter just as much as scientific interest. Traditionally, Gambogic Acid could only be gathered in small lots due to limited resin yields and high labor costs. To keep up with rising demand—especially as global cancer research has picked up—we formed close ties with small-scale farmers situated in regions where Garcinia hanburyi thrives. Field visits help our buyers distinguish truly uncontaminated batches for processing. When drought or weather fluctuations threaten harvest size, advance planning and backup inventories help us keep production flowing.
Stability is a common concern with many natural compounds. Rapid oxidation or polymerization can ruin a batch. We have tested multiple anti-oxidant additives and vacuum-sealing techniques, but ultimately found that rigorous exclusion of light and moisture, combined with robust glassware, preserved potency best. This knowledge comes not just from textbook studies but years of evaluating powder color, melting point drifts, and HPLC fingerprints batch after batch. Customers benefit directly from our decision not to compromise on freshness or packaging, and our advice on recommended storage practices continues to be shaped by direct observation of long-term shelf tests.
Compared with synthetically generated analogs, our plant-extracted Gambogic Acid maintains chemical authenticity recognized in pharmacological literature. Synthetic approaches, while promising, often stumble at large scales or introduce structural variants less well studied in vivo. Researchers dedicated to examining the full chemical space may appreciate both sources for different reasons, but our experience shows that natural extraction produces a consistency valued in biological investigations.
Synthetics sometimes win out in convenience, but feedback from collaborating scientists suggests subtle differences appear in signaling pathways affected, clearance rates in vivo, and ultimately in the nuances of observed pharmacological effects. Our close monitoring of each extraction run also ensures minimal environmental footprint: waste solvents are recovered and reused, and gum waste is composted, not merely discarded. Working at the source, as opposed to simply repackaging imported ingredients, gives us unique levers for improving both quality and sustainability.
While we maintain a standard purity model for Gambogic Acid, frequent dialogues with customers channel fresh ideas back to our technical team. Requests for gram to kilogram quantities, rapid scale-up after promising preclinical results, or custom-formulated blends for formulation partners emerge with every new wave of discovery. We maintain flexible scheduling in our production cycles to allow for rapid switches between batch sizes. Most recently, an uptick in demand from biotech startups developing targeted delivery systems has led us to offer even tighter controls on particle size and moisture content—parameters that otherwise go overlooked.
Our team remains alert for application-specific requests. For example, collaborations with academic medicinal chemistry teams may necessitate deuterated standards or label-enriched variants for metabolic tracing. Rather than treating these as specialty items destined for long lead times, we commit to fast turnaround by keeping lab-scale apparatus running in parallel with main production. This hands-on investment pays off in repeat partnerships and fewer costly errors for both sides.
Manufacturing Gambogic Acid over several years has taught our staff a set of practical realities that go far beyond theory. Scaling up from gram to multi-kilogram production is fraught with new challenges: increased surface exposure brings unexpected byproduct generation, not every solvent gradient cleans up at ten times the volume, and slight changes in suppliers’ resin age or storage can shift impurity profiles. Failures at scale prompted us to invest heavily in small-batch sampling, mid-process impurity scans, and regular HPLC calibration against certified standards. Customers sometimes don’t see the invisible work behind the scenes—just the confidence in each certificate of analysis.
We have found that upskilling our production techs on the basic chemistry of Gambogic Acid pays dividends. Even small misjudgments in pH adjustment or drying protocols set a batch off course, so ongoing in-house training is non-negotiable. QC teams track not just key markers, but run side-by-side comparison assays against international reference materials. We see transparency and willingness to admit production missteps as essential to earning the continued trust of our longtime partners. Many customers have remained loyal precisely because we resolve any challenge quickly, and involve them as collaborators, not simply buyers.
The conversation around natural chemical products now involves a responsibility lens. As manufacturers, we are increasingly asked for strict documentation on source traceability, good environmental practice, and disclosures for regulatory filings. Meeting these requests is not just a box-ticking exercise; it is a direct part of productive, long-term customer relationships. Modern research can demand a trail of origin for projects headed toward clinical evaluation, or even just for reputable grant applications. We retain full archiving of batch records, analytical results, and source farm documentation, and maintain legal compliance within all current international standards. These organizational habits stem from hard lessons during times of market tightening or audit.
Sustainability isn’t a slogan here. Local processing generates job opportunities and keeps skills in the communities where our raw material grows. Harvesting follows yielding cycles that avoid stripping trees of more resin than nature allows. We rotate collection zones and maintain dialogue with both farmers and local authorities to align with both environmental preservation and yield maximization. Waste management—whether spent resin, solvent, or process water—receives systematic tracking and controls, subject to internal and external audits. Our steady reduction of waste over five years demonstrates what hands-on, invested manufacturing achieves, beyond any certification symbol.
Collaborations with universities, biotech firms, and public research bodies serve as a constant feedback loop for how Gambogic Acid performs in the real world. Joint studies offer not only validation, but exposure to new application areas—from nanomedicine to advanced imaging. Our scientists have participated in roundtable discussions to advise on best preparation practices and real-world handling pitfalls. These experiences ground our team’s awareness about both the possibilities and the real-world barriers facing academic and industrial users.
Our technical team is tirelessly monitoring the literature for new advances and feeds insights back into both production optimization and customer guidance. Recent studies in drug delivery, targeted therapy, and even immunomodulation further highlight the relevance of Gambogic Acid as a scaffold molecule. Rather than waiting for requests, we sometimes pre-emptively refine our purification methods or solvent systems to anticipate user demands and shorten lead times when new trends break in published science.
The worldwide natural products market remains volatile. Price swings in raw material, compound demand spikes after new pharmacology findings, and periodic trade fluctuations all require foresight and agility. Our team does not simply watch trends; we seek to buffer our production and balance inventories with a view to year-long stability for our key clients. During the COVID-19 pandemic, interruptions to global shipping and disruption of field collection forced rapid new approaches—investment in freezer storage, local staffing, and forged relationships with alternative sources.
We invest in contingency plans not as a theoretical exercise, but based on lessons from real events that sometimes disrupt a carefully laid production schedule. Keeping open conversations with regular buyers about potential delays or substitutions puts us in a better position to navigate unpredictable waves and maintain trust. Supporting long-term projects—from compound screening to late-stage preclinical studies—means clients do not simply see us as a supplier, but as an active partner committed to their research success. We regard this trust as a privilege, earned only through consistently reliable product and open dialogue about both challenges and advances.
As chemical manufacturers, we recognize that the path from wild resin to highly characterized compound is never truly finished. Every batch teaches new lessons about process robustness, environmental stewardship, and changing research requirements. The cumulative hands-on experience of our team—whether handling farm-fresh resin, optimizing a troublesome purification, or troubleshooting an unexpected drop in purity—drives us to refine our methods continually.
Gambogic Acid has taken us on an ongoing journey through natural product chemistry, hands-on engineering, and front-line collaboration with scientific innovators. Its unique place among xanthones marks it as a target for further investigation, modification, and application across research domains. By keeping production intelligent, responsive, and grounded in practical experience, we offer more than a product—we offer a partnership in science. Researchers, developers, and pioneers continue breaking new ground, and as manufacturers we stand ready to support those discoveries with the best Gambogic Acid each season can yield.