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Details

Autor(en) / Beteiligte
Titel
Development of an improved and specific inhibitor of NADPH oxidase 2 to treat traumatic brain injury
Ist Teil von
  • Redox biology, 2023-04, Vol.60, p.102611-102611, Article 102611
Ort / Verlag
Netherlands: Elsevier B.V
Erscheinungsjahr
2023
Link zum Volltext
Quelle
MEDLINE
Beschreibungen/Notizen
  • NADPH oxidases (NOX's), and the reactive oxygen species (ROS) they produce, play an important role in host defense, thyroid hormone synthesis, apoptosis, gene regulation, angiogenesis and other processes. However, overproduction of ROS by these enzymes is associated with cardiovascular disease, fibrosis, traumatic brain injury (TBI) and other diseases. Structural similarities between NOX's have complicated development of specific inhibitors. Here, we report development of NCATS-SM7270, a small molecule optimized from GSK2795039, that inhibited NOX2 in primary human and mouse granulocytes. NCATS-SM7270 specifically inhibited NOX2 and had reduced inhibitory activity against xanthine oxidase in vitro. We also studied the role of several NOX isoforms during mild TBI (mTBI) and demonstrated that NOX2 and, to a lesser extent, NOX1 deficient mice are protected from mTBI pathology, whereas injury is exacerbated in NOX4 knockouts. Given the pathogenic role played by NOX2 in mTBI, we treated mice transcranially with NCATS-SM7270 after injury and revealed a dose-dependent reduction in mTBI induced cortical cell death. This inhibitor also partially reversed cortical damage observed in NOX4 deficient mice following mTBI. These data demonstrate that NCATS-SM7270 is an improved and specific inhibitor of NOX2 capable of protecting mice from NOX2-dependent cell death associated with mTBI. [Display omitted] •A new NOX2 inhibitor, NCATS-SM7270, protects mice from mild traumatic brain injury.•Knockout of NOX1 or NOX2 protects from injury while deletion of NOX4 increases it.•NCATS-SM7270 partially reversed mTBI in NOX4KO mice.
Sprache
Englisch
Identifikatoren
ISSN: 2213-2317
eISSN: 2213-2317
DOI: 10.1016/j.redox.2023.102611
Titel-ID: cdi_doaj_primary_oai_doaj_org_article_31bbeff5a1be41638e89f840fa625181

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