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Antigout Agents

Manage uric acid levels and treat gout effectively with high-quality antigout raw materials. Explore a range of antigout chemical products with CAS NO., property information, and SDS. Source raw materials from certified suppliers to support pharmaceutical formulations, clinical treatments, and research in gout management.

Isoniazid

(54-85-3)
For the treatment of all forms of tuberculosis in which organisms are susceptible.

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2-Butene-1,4-diol

(110-64-5)
As a multifunctional organic compound, 2-Butene-1,4-diol has important applications in many fields due to its unique chemical properties, while also contributing to the development of chemical science and technology. 2-Butene-1, 4-DIol, an organic compound rich in active hydroxyl groups, plays a vital role in many industrial and chemical applications due to its unique chemical properties. As a multifunctional intermediate in chemical synthesis, it is used in a wide range of applications, from pesticide production to vitamin manufacturing. 2-butene-1,4-diol is widely used in the chemical industry. Its two hydroxyl groups enable it to participate in a variety of condensation, esterification and etherification reactions, and are commonly used in the preparation of various polymers and resins. For example, it can react with dibasic acids to form polyesters, which can be used to produce plastics, coatings and adhesives. In addition, through oxidation or peroxy-initiated polymerization, 2-butene-1,4-diol can be converted into polymers of high molecular weight, which have important applications in the rubber industry. In the pesticide industry, 2-butene-1,4-diol has received much attention due to its ability to participate in the synthesis of the endocrine disruptor 䓟 sulfonate in pesticides. Endo䓟 is a broad-spectrum pesticide that plays a key role in crop protection, and 2-butene-1,4-diol is a key ingredient in the production of this highly effective pesticide. At the same time, it is also an important precursor to the production of vitamin B series, which has a non-negligible contribution to human nutrition and health. Further expanding its application areas, 2-Butene-1, 4-DIol also plays an important role in the manufacture of chemical products. For example, it is used to make polyurethane foam, a material widely used in areas such as building insulation and furniture filling. In addition, it is an ingredient in coatings and adhesives, which plays a key role in improving the performance and durability of these products. The potential of 2-butene-1,4-diol goes far beyond that. Due to its unique molecular structure, researchers are exploring more possibilities in the field of polymer materials and fine chemicals. For example, it may be used to synthesize biodegradable polymers, which will have a profound impact on the environmental protection industry. At the same time, its application research in frontier fields such as conductive polymers is also gradually advancing, which is expected to open a new technological revolution. As a multifunctional, high-value organic compound, 2-butene-1, 4-DIol has broad application prospects in many industries such as chemical industry, materials industry and agriculture industry. With the deepening of scientific research, we have reason to believe that 2-butene-1,4-diol will play a greater role in the future development of science and technology and open a new chapter for more innovative applications.

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Benzene, ethyl-, homopolymer

(27536-89-6)

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Antigout Agents Intermediates are some key chemical raw materials or products in the synthesis process of anti-gout drugs. You can easily find high-quality new intermediates, products and their manufacturers or suppliers on ECHEMI. ECHEMI will continue to track the research and development of new products on anti-gout medicine.

More Information

Antigout agents are substances used to prevent or treat gout, a condition caused by elevated uric acid levels leading to joint inflammation and pain. These agents are widely applied in pharmaceutical formulations, hospital treatments, and research focused on hyperuricemia and metabolic disorders.

Key mechanisms of action for antigout agents include:
• Xanthine oxidase inhibitors – Reduce uric acid production by inhibiting the enzyme xanthine oxidase.
• Uricosuric agents – Increase renal excretion of uric acid to lower serum levels.
• Anti-inflammatory agents – Reduce inflammation and pain associated with acute gout attacks.
• Recombinant uricase – Convert uric acid into more soluble compounds for easier excretion.

Factors to consider when selecting antigout raw materials:
• Type of gout – acute attack vs. chronic management.
• Patient health status – kidney function, comorbidities, and drug tolerability.
• Formulation requirements – solubility, stability, and compatibility for tablets, capsules, or injectables.
• Regulatory compliance – adherence to pharmaceutical standards and clinical guidelines.

Common antigout raw materials include allopurinol, febuxostat, probenecid, colchicine, and pegloticase. They are typically supplied in powder or crystalline forms suitable for oral or injectable formulations. These agents are essential for clinical therapy, pharmaceutical development, and research on gout and hyperuricemia.

Frequently Asked Questions

What are Antigout Agents and how do they work?

Antigout Agents are medications used to treat or prevent gout, a form of inflammatory arthritis caused by elevated levels of uric acid in the blood. These agents work through different mechanisms: some reduce uric acid production (e.g., xanthine oxidase inhibitors like allopurinol), while others increase uric acid excretion (e.g., uricosurics like probenecid). Understanding their mode of action helps healthcare providers choose the most appropriate therapy based on patient-specific factors.

What are the common types of Antigout Agents available in the pharmaceutical market?

The most commonly used Antigout Agents fall into three main categories:1. Xanthine oxidase inhibitors (e.g., allopurinol, febuxostat) that lower uric acid production.2. Uricosuric agents (e.g., probenecid, lesinurad) that enhance renal excretion of uric acid.3. Anti-inflammatory drugs (e.g., colchicine, NSAIDs, corticosteroids) used for acute gout flare management.Each class serves distinct therapeutic purposes and is selected based on disease stage, comorbidities, and patient response.

How do I choose a reliable supplier for Antigout Agent APIs or intermediates?

Selecting a reliable supplier for Antigout Agent active pharmaceutical ingredients (APIs) or intermediates requires evaluating several key criteria:1. Regulatory compliance with GMP, FDA, EMA, or other relevant standards.2. Robust quality control systems, including analytical testing and documentation.3. Proven experience in manufacturing specific antigout compounds like allopurinol or febuxostat.4. Scalable production capacity and consistent supply chain reliability.5. Technical support and regulatory filing assistance (e.g., DMF availability).These factors ensure product safety, efficacy, and regulatory approval readiness.

Are there any emerging trends in the development of new Antigout Agents?

Yes, recent advancements in Antigout Agent development focus on improving efficacy and reducing side effects. Notable trends include:1. Novel urate-lowering therapies targeting URAT1 or other transporters with higher selectivity.2. Dual-action molecules combining anti-inflammatory and uric acid-lowering properties.3. Use of biologics and enzyme-based treatments (e.g., pegloticase) for refractory gout.4. Personalized medicine approaches based on genetic markers affecting uric acid metabolism.These innovations aim to address unmet needs in chronic gout management and improve long-term patient outcomes.

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