Spebrutinib API Manufacturers
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Looking for Spebrutinib API 1202757-89-8?
- Description:
- Here you will find a list of producers, manufacturers and distributors of Spebrutinib. 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:
- Spebrutinib
- Synonyms:
- 3-(5-FLUORO-2-(4-(2-METHOXYETHOXY)PHENYLAMINO)PYRIMIDIN-4-YLAMINO)PHENYL)ACRYLAMIDE , BTK inhibitor CC-292 , N-(3-(5-fluoro-2-(4-(2-methoxyethoxy)phenylamino)pyrimidin-4-ylamino)phenyl)acrylamide , Spebrutinib
- Cas Number:
- 1202757-89-8
- DrugBank number:
- DB11764
- Unique Ingredient Identifier:
- DRU6NG543J
General Description:
Spebrutinib, identified by CAS number 1202757-89-8, is a notable compound with significant therapeutic applications. Spebrutinib has been used in trials studying the treatment of Rheumatoid Arthritis, Lymphoma, Large B-Cell, Diffuse, and Leukemia Lymphocytic Chronic B-Cell.
Classification:
Spebrutinib belongs to the class of organic compounds known as anilides. These are organic heterocyclic compounds derived from oxoacids RkE(=O)l(OH)m (l not 0) by replacing an OH group by the NHPh group or derivative formed by ring substitution, classified under the direct parent group Anilides. 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 Anilides subclass.
Categories:
Spebrutinib is categorized under the following therapeutic classes: Acids, Acyclic, Acrylates, Amides, Enzyme Inhibitors, Protein Kinase Inhibitors. These classifications highlight the drug's diverse therapeutic applications and its importance in treating various conditions.
Spebrutinib is a type of Enzyme Replacements/modifiers
Enzyme replacements/modifiers are a crucial category of pharmaceutical active pharmaceutical ingredients (APIs) utilized in the treatment of various enzyme-related disorders. Enzymes play a vital role in the normal functioning of the body by catalyzing specific biochemical reactions. However, in certain medical conditions, the body may lack or produce dysfunctional enzymes, leading to serious health complications.
Enzyme replacement therapy (ERT) involves administering exogenous enzymes to compensate for the enzyme deficiency in patients. These enzymes are typically derived from natural sources or produced using recombinant DNA technology. By introducing these enzymes into the body, they can effectively substitute the missing or defective enzymes, thereby restoring normal metabolic processes.
On the other hand, enzyme modifiers are API substances that regulate the activity of specific enzymes within the body. These modifiers can either enhance or inhibit the enzyme's function, depending on the therapeutic objective. By modulating enzyme activity, these APIs can restore the balance of enzymatic reactions, leading to improved physiological outcomes.
Enzyme replacements/modifiers have shown remarkable success in treating various genetic disorders, such as Gaucher disease, Fabry disease, and lysosomal storage disorders. Additionally, they have demonstrated potential in managing enzyme deficiencies associated with rare diseases and certain types of cancer.
The development and production of enzyme replacements/modifiers involve rigorous research, formulation optimization, and adherence to stringent quality control measures. Pharmaceutical companies invest substantial resources in developing these APIs to ensure their safety, efficacy, and compliance with regulatory standards.
Overall, enzyme replacements/modifiers represent a vital therapeutic category in modern medicine, offering hope and improved quality of life for patients with enzyme-related disorders.