bioRxiv Science⌕ Search

Biology subjects

Vieira-Saecker, A.

Publications and source records attributed to Vieira-Saecker, A..

2 recordsLinked to original sources

NLRP3 inhibition maintains microglia architecture and enhances behavioral recovery after traumatic brain injury

NLRP3 plays an essential role in secondary neuroinflammatory damage following traumatic brain injury (TBI). However, the specific mechanisms mediating NLRP3s effects in TBI remain poorly understood, and it is unknown whether its pharmacological inhibition with oral compounds during initial phases confers long-term protection. In this study, we investigated the role of the NLRP3 inflammasome pathway in TBI-induced neuroinflammation and long-term neurobehavioral impairment, as well as the impact of its pharmacological inhibition. Following controlled cortical impact (CCI), most NLRP3 inflammasome-related proteins and key inflammatory markers were elevated during the first week post-injury. Genetic Nlrp3 deletion and treatment with oral NLRP3-specific inhibitors preserved microglial homeostatic architecture, reduced ASC aggregation, and enhanced neurological and cognitive recovery after CCI. Repeated intravital imaging confirmed that NLRP3 inhibition prevents microglial activation post-TBI. These findings suggest NLRP3 inflammasome targeting represents a viable translational strategy for clinical trials and may mitigate long-term neurocognitive decline following TBI.

neuroscience↗

ASC contributes to sustained glial reactivity and mild cognitive impairment after closed-head injury

Mild brain traumatic brain injury (mTBI) from closed-head injuries (CHI) can lead to prevalent neuropsychiatric disorders, including an increased risk for neurodegenerative diseases and dementia. Inflammasomes are molecular complexes crucial for neuroinflammation and secondary damage after trauma, however their role in mild CHI is poorly understood. In this study, we investigate the cellular expression of inflammasome-related genes and their functional significance in CHI models. Single-cell RNA sequencing of cortical tissue revealed selective expression of Pycard (PYD and CARD domain containing), also known as Asc (apoptosis-associated speck-like protein containing a caspase recruitment domain), which encodes the inflammasome adaptor ASC, predominantly in microglial clusters. Sustained upregulation of inflammasome-related proteins persisted up to 21 days in a model for mTBI, with this pattern significantly reduced in Asc-/- mice. Importantly, mild cognitive impairment induced after mild CHI was largely abrogated in Asc-/- mice. These findings suggest that ASC, as the primary inflammasome adaptor, plays a critical role in sustaining neuroinflammation and contributes to cognitive deficits after mild CHI. This study provides insights into the molecular neuroinflammatory mechanisms underlying CHI, potentially informing future therapeutic strategies.

neuroscience↗