Etofamide API Manufacturers
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Looking for Etofamide API 25287-60-9?
- Description:
- Here you will find a list of producers, manufacturers and distributors of Etofamide. You can filter on certificates such as GMP, FDA, CEP, Written Confirmation and more. Send inquiries for free and get in direct contact with the supplier of your choice.
- API | Excipient name:
- Etofamide
- Synonyms:
- Cas Number:
- 25287-60-9
- DrugBank number:
- DB13258
- Unique Ingredient Identifier:
- 03F36JH21U
General Description:
Etofamide, identified by CAS number 25287-60-9, is a notable compound with significant therapeutic applications. Etofamide is used as an antiamoebic agent. Etofamide, under the brand name Kitnos, was marketed in Brazil by Pfizer but has been discontinued .
Classification:
Etofamide belongs to the class of organic compounds known as diphenylethers. These are aromatic compounds containing two benzene rings linked to each other through an ether group, classified under the direct parent group Diphenylethers. This compound is a part of the Organic compounds, falling under the Benzenoids superclass, and categorized within the Benzene and substituted derivatives class, specifically within the Diphenylethers subclass.
Categories:
Etofamide is categorized under the following therapeutic classes: Acetates, Acids, Acyclic, Amebicides, Amides, Anti-Infective Agents, Antiparasitic Agents, Antiparasitic Products, Insecticides and Repellents, Antiprotozoals, Dichloroacetamide Derivatives. These classifications highlight the drug's diverse therapeutic applications and its importance in treating various conditions.
Etofamide is a type of Antiparasitics
Antiparasitics are a category of pharmaceutical Active Pharmaceutical Ingredients (APIs) that are used to combat parasitic infections in humans and animals. These APIs play a crucial role in the field of medicine and veterinary care by targeting and eliminating various parasites, such as protozoa, helminths, and ectoparasites.
The use of antiparasitics is essential in preventing and treating parasitic diseases, which can cause significant health issues and even be life-threatening. These APIs work by interfering with the parasite's vital biological processes, such as reproduction, metabolism, and survival mechanisms.
Pharmaceutical companies develop and manufacture a wide range of antiparasitic APIs to cater to different parasitic infections. Some common examples of antiparasitics include anthelmintics (used against intestinal worms), antimalarials (used to treat malaria), and ectoparasiticides (used to control external parasites like ticks and fleas).
The development of antiparasitic APIs requires rigorous research, including the identification of suitable targets within the parasite's biology and the formulation of effective chemical compounds. Safety and efficacy are paramount in the manufacturing of antiparasitics, ensuring that they effectively combat the targeted parasites while minimizing adverse effects on the host.
Overall, antiparasitics are vital tools in the fight against parasitic infections, benefiting both human and animal health. Through ongoing research and development, the pharmaceutical industry continues to innovate and improve antiparasitic APIs, contributing to the advancement of healthcare and the well-being of individuals and their animal companions.