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NLRP3 Activation Contributes to Memory Impairment in an Experimental Model of Pneumococcal Meningitis
Jaqueline S Generoso1, Cristiano Julio Faller2, Allan Collodel3
1Laboratory of Experimental Neurology, Graduate Program in Health Sciences, University of Southern Santa Catarina (UNESC), Criciúma, SC, Brazil. jsg@unesc.net.
Abstract:
Bacterial meningitis is considered a life-threatening condition with high mortality rates. In response to the infection, signaling cascades, producing pro-inflammatory mediators trigger an exacerbated host immune response. Another inflammatory pathway occurs through the activation of inflammasomes. Studies highlight the role of the NLR family pyrin domain containing 3 (NLRP3) in central nervous system disorders commonly involved in neuroinflammation. We aimed to investigate the role of NLRP3 and its inhibitor MCC950 on neurochemical, immunological, and behavioral parameters in the early and late stages of experimental pneumococcal meningitis. For this, adult male Wistar rats received an intracisternal injection of Streptococcus pneumoniae or artificial cerebrospinal fluid as a placebo. The animals were divided into control/saline, control/MCC950, meningitis/saline, and meningitis/MCC950. Immediately after the meningitis induction, the animals received 140 ng/kg MCC950 via intracisternal injection. For the acute protocol, 24 h after induction, brain structures were collected to evaluate cytokines, NLRP3, and microglia. In the long-term group, the animals were submitted to open field and recognition of new objects tests at ten days after the meningitis induction. After the behavioral tests, the same markers were evaluated. The animals in the meningitis group at 24 h showed increased levels of cytokines, NLRP3, and IBA-1 expression, and the use of the MCC950 significantly reduced those levels. Although free from infection, ten days after meningitis induction, the animals in the meningitis group had elevated cytokine levels and demonstrated behavioral deficits; however, the single dose of NLRP3 inhibitor rescued the behavior deficits and decreased the brain inflammatory profile.
Insights
The NLR family pyrin domain containing 3 (NLRP3) inflammasome drives neuroinflammation in bacterial meningitis. Its inhibitor, MCC950, reduced inflammation and rescued behavioral deficits in rats, offering a potential therapeutic strategy.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Bacterial meningitis is a severe infection with high mortality.
- Neuroinflammation, involving pro-inflammatory mediators and inflammasomes like NLRP3, exacerbates the host immune response.
- NLRP3 is implicated in various central nervous system disorders.
Purpose of the Study:
- To investigate the role of NLRP3 and its inhibitor MCC950 in experimental pneumococcal meningitis.
- To assess the effects of MCC950 on neurochemical, immunological, and behavioral parameters in early and late stages of the disease.
Main Methods:
- Adult male Wistar rats were induced with pneumococcal meningitis or given a placebo.
- Animals received intracisternal injections of either saline or the NLRP3 inhibitor MCC950.
- Neurochemical (cytokines, NLRP3), immunological (microglia/IBA-1), and behavioral assessments were performed at 24 hours and 10 days post-induction.
Main Results:
- Meningitis induced increased levels of cytokines, NLRP3, and IBA-1 expression at 24 hours.
- MCC950 treatment significantly reduced these inflammatory markers in the acute phase.
- In the late stage, meningitis caused persistent behavioral deficits and elevated cytokines, which were ameliorated by a single dose of MCC950.
Conclusions:
- NLRP3 activation plays a critical role in neuroinflammation and subsequent behavioral deficits during pneumococcal meningitis.
- Targeting NLRP3 with MCC950 demonstrates therapeutic potential for mitigating both the acute inflammatory response and long-term neurological consequences of bacterial meningitis.
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