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Published on: August 29, 2012
Decrease of miR-19b-3p in Brain Microvascular Endothelial Cells Attenuates Meningitic Escherichia coli-Induced
Nouman Amjad1,2, Ruicheng Yang1,2, Liang Li1,2
1State Key Laboratory of Agricultural Microbiology, College of Veterinary Medicine, Huazhong Agricultural University, Wuhan 430070, China.
Abstract:
Meningitic Escherichia coli can traverse the host's blood-brain barrier (BBB) and induce severe neuroinflammatory damage to the central nervous system (CNS). During this process, the host needs to reasonably balance the battle between bacteria and brain microvascular endothelial cells (BMECs) to minimize inflammatory damage, but this quenching of neuroinflammatory responses at the BBB is unclear. MicroRNAs (miRNAs) are widely recognized as key negative regulators in many pathophysiological processes, including inflammatory responses. Our previous transcriptome sequencing revealed numbers of differential miRNAs in BMECs upon meningitic E. coli infection; we next sought to explore whether and how these miRNAs worked to modulate neuroinflammatory responses at meningitic E. coli entry of the BBB. Here, we demonstrated in vivo and in vitro that meningitic E. coli infection of BMECs significantly downregulated miR-19b-3p, which led to attenuated production of proinflammatory cytokines and chemokines via increasing the expression of TNFAIP3, a negative regulator of NF-κB signaling. Moreover, in vivo injection of miR-19b-3p mimics during meningitic E. coli challenge further aggravated the inflammatory damage to mice brains. These in vivo and in vitro findings indicate a novel quenching mechanism of the host by attenuating miR-19b-3p/TNFAIP3/NF-κB signaling in BMECs in response to meningitic E. coli, thus preventing CNS from further neuroinflammatory damage.
Insights
Meningitic Escherichia coli infection downregulates miR-19b-3p in brain cells, reducing inflammation by increasing TNFAIP3. This host mechanism protects the central nervous system from damage.
Area of Science:
- Neuroscience
- Immunology
- Microbiology
Background:
- Meningitic Escherichia coli breaches the blood-brain barrier (BBB), causing neuroinflammation.
- MicroRNAs (miRNAs) regulate inflammatory responses, but their role in E. coli-induced BBB inflammation is unclear.
Purpose of the Study:
- To investigate the role of differentially expressed miRNAs in brain microvascular endothelial cells (BMECs) during meningitic E. coli infection.
- To elucidate the mechanism by which miRNAs modulate neuroinflammation at the BBB.
Main Methods:
- In vivo and in vitro experiments using meningitic E. coli infection models.
- Analysis of miRNA and gene expression, including TNFAIP3 and NF-κB signaling.
- Administration of miR-19b-3p mimics in vivo.
Main Results:
- Meningitic E. coli infection downregulated miR-19b-3p in BMECs.
- Reduced miR-19b-3p increased TNFAIP3 expression, suppressing NF-κB signaling and proinflammatory cytokine production.
- In vivo administration of miR-19b-3p mimics exacerbated brain inflammatory damage.
Conclusions:
- A novel host quenching mechanism involves attenuating miR-19b-3p/TNFAIP3/NF-κB signaling in BMECs to prevent CNS damage from meningitic E. coli.
- miR-19b-3p acts as a negative regulator, and its downregulation is a protective response against neuroinflammation.
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