The Cytochrome b 245 Heavy Chain pipeline drugs market research report outlays comprehensive information on the Cytochrome b 245 Heavy Chain targeted therapeutics, complete with analysis by indications, stage of development, mechanism of action (MoA), route of administration (RoA), and molecule type. GlobalData’s report assesses the drugs in the Cytochrome b 245 Heavy Chain pipeline by therapy areas, indications, stages, MoA, RoA, molecule type and the key players in the development pipeline. Buy the report here.
The report also covers products from therapy areas such as Genetic Disorders, Cardiovascular, Central Nervous System, and Infectious Disease which include the indications Chronic Granulomatous Disease, Cardiovascular Disease, Pulmonary Hypertension, Alzheimer’s Disease, Epilepsy, and Influenzavirus A Infections. It also reviews key players involved in Cytochrome b 245 Heavy Chain targeted therapeutics development with respective active and dormant or discontinued products.
The Cytochrome b 245 Heavy Chain pipeline targets constitutes close to six molecules. Out of which, approximately three molecules are developed by companies and the remaining by the universities/institutes. The molecules developed by companies in Phase I, IND/ CTA Filed, and Preclinical stages are 1, 1, and 1 respectively. Similarly, the universities portfolio in IND/ CTA Filed, Preclinical, and Discovery comprises 1, 1, and 1 molecule.
Cytochrome b 245 Heavy Chain overview
Cytochrome b 245 Heavy Chain (CYBB) is a crucial component of the phagocyte oxidase (phox) enzyme complex, which is essential to produce reactive oxygen species (ROS) in immune cells. CYBB is primarily expressed in phagocytes, including neutrophils, macrophages, and certain non-phagocytic cells. CYBB is a transmembrane protein located in the phagosomal membrane, and its activation is tightly regulated. Upon stimulation, CYBB undergoes conformational changes and transfers electrons across the membrane, leading to the production of superoxide radicals. These reactive oxygen species contribute to the killing of microbes within the phagosome. Mutations in the CYBB gene can result in chronic granulomatous disease (CGD), a rare genetic disorder characterized by recurrent bacterial and fungal infections.
For a complete picture of Cytochrome b 245 Heavy Chain’s drug pipeline, buy the report here.
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