High Purity Benzimidazole Intermediate: Key for Lansoprazole Synthesis | Manufacturer & Supplier

Discover the critical role of 2-[[(4-Nitro-3-Methyl-2-Pyridinyl)-2-Methyl]Thio]-1H-Benzimidazole (CAS: 152402-98-7) in pharmaceutical synthesis. As a leading supplier, we offer this high-purity intermediate essential for Lansoprazole production. Get a competitive quote from our trusted manufacturer.

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Advantages of Sourcing Our Pharmaceutical Intermediate

Exceptional Purity for API Production

Our 2-[[(4-Nitro-3-Methyl-2-Pyridinyl)-2-Methyl]Thio]-1H-Benzimidazole offers a guaranteed purity of ≥98.0%, minimizing impurities and ensuring the highest quality final drug product. This makes us a preferred supplier for API manufacturers.

Cost-Effective Lansoprazole Intermediate Solutions

We provide competitive pricing on this essential Lansoprazole intermediate, offering significant cost benefits without compromising on quality. Inquire about bulk purchase options from our China-based manufacturer.

Expertise in Pharmaceutical Intermediate Supply

With extensive experience in the chemical industry, we are a knowledgeable supplier for pharmaceutical intermediates, understanding the precise needs of R&D scientists and procurement managers.

Applications of Our Pharmaceutical Intermediate

Lansoprazole Synthesis

This compound is a direct precursor, playing an instrumental role in the complex chemical reactions required for producing the active pharmaceutical ingredient Lansoprazole.

Pharmaceutical Research & Development

As a high-purity compound, it is invaluable for R&D purposes, enabling accurate testing and development of new therapeutic formulations and synthetic routes.

Active Pharmaceutical Ingredient (API) Manufacturing

Reliable sourcing of this intermediate is crucial for the large-scale, consistent manufacturing of Lansoprazole by API producers globally.

Heterocyclic Chemistry Applications

Its benzimidazole and pyridine structure offers potential for broader applications in heterocyclic chemistry research and development for novel compounds.