Lotilaner Intermediate: A Key Component in Pharmaceutical Synthesis
Explore the critical role of this chemical compound in developing advanced pharmaceutical ingredients and research applications.
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Lotilaner Intermediate
This high-purity chemical compound, known scientifically as 2,2,2-Trifluoro-1-(3,4,5-Trichlorophenyl)Ethanone (CAS No. 158401-00-4), serves as a vital building block in the synthesis of Lotilaner, a significant active pharmaceutical ingredient (API). Its precise chemical structure and properties make it indispensable for research and development in the pharmaceutical sector, particularly in the creation of antiparasitic agents.
- This Lotilaner Intermediate synthesis is crucial for producing essential veterinary medicines.
- The CAS 158401-00-4 chemical properties offer unique advantages in complex organic reactions.
- Understanding 2,2,2-Trifluoro-1-(3,4,5-Trichlorophenyl)Ethanone pharmaceutical intermediate applications aids in drug discovery processes.
- The manufacturing of API Lotilaner intermediates demands high standards for purity and consistency.
Advantages Offered
Purity and Consistency
Ensuring high purity in our Lotilaner Intermediate is paramount for reliable API synthesis, contributing to the efficacy of final pharmaceutical products and supporting critical scientific research.
Versatile Application
The unique structure of this trifluoroacetophenone derivative allows for versatile use in various chemical synthesis pathways, making it a valuable asset for pharmaceutical companies engaged in drug discovery and development.
Research Enablement
By providing high-quality intermediates, we empower researchers to explore new therapeutic avenues and develop innovative treatments, leveraging the specific chemical properties for groundbreaking discoveries.
Key Applications
Active Pharmaceutical Ingredient (API) Synthesis
This intermediate is foundational for the large-scale production of Lotilaner, an important API used in veterinary health, making its reliable supply critical for the animal health industry.
Pharmaceutical Research and Development
Researchers utilize this compound to explore new formulations and therapeutic strategies, furthering advancements in medicine and chemical science.
Chemical Synthesis Projects
Its specific chemical structure makes it a valuable reagent for various organic synthesis projects, enabling the creation of complex molecules with tailored properties.
Veterinary Medicine Development
The primary application is in the development and manufacturing of veterinary antiparasitic drugs, directly impacting animal well-being and disease prevention.