Abstract: Ischemic stroke (also called cerebral ischemia) is one of the leading causes of death and severe disability worldwide. NLR inflammasomes play a crucial role in sensing cell damage in response to a harmful stimuli and modulating the inflammatory response, promoting the release of pro-inflammatory cytokines such as IL-18 and IL-1β following ischemic injury. Therefore, a neuroprotective effect is achieved by inhibiting the expression, assembly, and secretion of inflammasomes, thus limiting the extent of brain detriment and neurological sequelae. This review aims to illustrate the molecular characteristics, expression levels, and assembly of NLRP3 (nucleotide-binding oligomerization domain-like receptor [NLR] family pyrin-domain-containing 3) inflammasome, the most studied in the literature, in order to discover promising therapeutic implications. In addition, we provide some information regarding the contribution of NLRP1, NLRP2, and NLRC4 inflammasomes to ischemic stroke pathogenesis, highlighting potential therapeutic strategies that require further study.

Maria Grazia Puleo, S.M. (2022). Molecular Mechanisms of Inflammasome in Ischemic Stroke Pathogenesis [10.1016/j.biopha.2022.113999].

Molecular Mechanisms of Inflammasome in Ischemic Stroke Pathogenesis

Maria Grazia Puleo;Salvatore Miceli;Tiziana Di Chiara;Giuseppina Maria Pizzo;Vittoriano Della Corte;Irene Simonetta;Antonio Pinto;Antonino Tuttolomondo
2022-09-13

Abstract

Abstract: Ischemic stroke (also called cerebral ischemia) is one of the leading causes of death and severe disability worldwide. NLR inflammasomes play a crucial role in sensing cell damage in response to a harmful stimuli and modulating the inflammatory response, promoting the release of pro-inflammatory cytokines such as IL-18 and IL-1β following ischemic injury. Therefore, a neuroprotective effect is achieved by inhibiting the expression, assembly, and secretion of inflammasomes, thus limiting the extent of brain detriment and neurological sequelae. This review aims to illustrate the molecular characteristics, expression levels, and assembly of NLRP3 (nucleotide-binding oligomerization domain-like receptor [NLR] family pyrin-domain-containing 3) inflammasome, the most studied in the literature, in order to discover promising therapeutic implications. In addition, we provide some information regarding the contribution of NLRP1, NLRP2, and NLRC4 inflammasomes to ischemic stroke pathogenesis, highlighting potential therapeutic strategies that require further study.
13-set-2022
Settore MED/09 - Medicina Interna
Maria Grazia Puleo, S.M. (2022). Molecular Mechanisms of Inflammasome in Ischemic Stroke Pathogenesis [10.1016/j.biopha.2022.113999].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10447/582477
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