Leading Manufacturer of 4-(4,4-DiMethyl-2,5-dioxoiMidazolidin-1-yl)-2-trifluoroMethylbenzonitrile CAS 143782-20-1 for Pharmaceutical Synthesis

Discover a critical pharmaceutical intermediate essential for the synthesis of advanced therapeutic agents like Enzalutamide. We are a premier supplier offering high-purity materials sourced directly from China.

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Key Advantages of Our Pharmaceutical Intermediate Supply

Uncompromised Quality and Purity

Our 4-(4,4-DiMethyl-2,5-dioxoiMidazolidin-1-yl)-2-trifluoroMethylbenzonitrile (CAS 143782-20-1) undergoes rigorous testing to ensure it meets the highest purity standards required for pharmaceutical applications, supporting the efficacy of your final product.

Reliable Supply Chain and Competitive Pricing

As a prominent manufacturer in China, we offer a stable and consistent supply of this crucial pharmaceutical intermediate, ensuring your production schedules are met without disruption. Inquire about bulk purchase options and pricing.

Expertise in Pharmaceutical Intermediates

Leverage our deep understanding of the pharmaceutical landscape. We specialize in providing critical building blocks like this benzonitrile derivative, empowering your research and development efforts to create life-saving medications.

Applications in Pharmaceutical Synthesis

Enzalutamide Synthesis

This intermediate is a key component in the multi-step synthesis of Enzalutamide, a vital drug for treating advanced prostate cancer. Its precise structure is critical for the drug's therapeutic action.

Oncology Drug Development

Beyond Enzalutamide, it serves as a versatile building block for novel anticancer agents, supporting research into new therapeutic strategies for various forms of cancer.

Pharmaceutical R&D

Researchers and formulators utilize this compound for exploring new chemical entities and optimizing existing drug synthesis pathways, ensuring innovation in medicine.

High-Value Fine Chemicals

Its complex structure and specific functional groups make it a valuable fine chemical for custom synthesis projects and advanced organic chemistry research.