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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Microglial activation by microbial neuraminidase through TLR2 and TLR4 receptors
María Del Mar Fernández-Arjona1,2, Jesús M Grondona1,2, Pedro Fernández-Llebrez1,2
1Dpto. de Biología Celular, Genética y Fisiología, Facultad de Ciencias, Universidad de Málaga, Campus de Teatinos, 29071, Málaga, Spain.
Background:
Neuraminidase (NA) is a sialidase present, among various locations, in the envelope/membrane of some bacteria/viruses (e.g., influenza virus), and is involved in infectiveness and/or dispersion. The administration of NA within the brain lateral ventricle represents a model of acute sterile inflammation. The relevance of the Toll-like receptors TLR2 and TLR4 (particularly those in microglial cells) in such process was investigated.
Methods:
Mouse strains deficient in either TLR2 (TLR2-/-) or TLR4 (TLR4-/-) were used. NA was injected in the lateral ventricle, and the inflammatory reaction was studied by immunohistochemistry (IBA1 and IL-1β) and qPCR (cytokine response). Also, microglia was isolated from those strains and in vitro stimulated with NA, or with TLR2/TLR4 agonists as positive controls (P3C and LPS respectively). The relevance of the sialidase activity of NA was investigated by stimulating microglia with heat-inactivated NA, or with native NA in the presence of sialidase inhibitors (oseltamivir phosphate and N-acetyl-2,3-dehydro-2-deoxyneuraminic acid).
Results:
In septofimbria and hypothalamus, IBA1-positive and IL-1β-positive cell counts increased after NA injection in wild type (WT) mice. In TLR4-/- mice, such increases were largely abolished, while were only slightly diminished in TLR2-/- mice. Similarly, the NA-induced expression of IL-1β, TNFα, and IL-6 was completely blocked in TLR4-/- mice, and only partially reduced in TLR2-/- mice. In isolated cultured microglia, NA induced a cytokine response (IL-1β, TNFα, and IL-6) in WT microglia, but was unable to do so in TLR4-/- microglia; TLR2 deficiency partially affected the NA-induced microglial response. When WT microglia was exposed in vitro to heat-inactivated NA or to native NA along with sialidase inhibitors, the NA-induced microglia activation was almost completely abrogated.
Conclusions:
NA is able to directly activate microglial cells, and it does so mostly acting through the TLR4 receptor, while TLR2 has a secondary role. Accordingly, the inflammatory reaction induced by NA in vivo is partially dependent on TLR2, while TLR4 plays a crucial role. Also, the sialidase activity of NA is critical for microglial activation. These results highlight the relevance of microbial NA in the neuroinflammation provoked by NA-bearing pathogens and the possibility of targeting its sialidase activity to ameliorate its impact.
Insights
Neuraminidase (NA) directly activates brain microglial cells primarily via Toll-like receptor 4 (TLR4), with a minor role for TLR2. NA’s sialidase activity is crucial for this neuroinflammatory response.
Area of Science:
- Neuroscience
- Immunology
- Microbiology
Background:
- Neuraminidase (NA) is a sialidase enzyme found in pathogens like influenza viruses, contributing to infection.
- NA administration into the brain lateral ventricle models sterile neuroinflammation.
- The study investigated the role of Toll-like receptors (TLRs), specifically TLR2 and TLR4, in microglial responses to NA.
Purpose of the Study:
- To elucidate the role of TLR2 and TLR4 in mediating neuroinflammation induced by bacterial/viral neuraminidase (NA).
- To determine if NA directly activates microglial cells and the specific TLRs involved.
- To assess the importance of NA's enzymatic (sialidase) activity in microglial activation.
Main Methods:
- Utilized TLR2-deficient (TLR2-/-) and TLR4-deficient (TLR4-/-) mice.
- Administered NA into the lateral ventricle and analyzed inflammatory markers (IBA1, IL-1β) via immunohistochemistry and cytokine responses via qPCR.
- Isolated primary microglia for in vitro stimulation with NA, NA agonists, heat-inactivated NA, or NA with sialidase inhibitors.
Main Results:
- NA injection increased microglial activation (IBA1) and IL-1β expression in wild-type mice.
- These increases were significantly reduced in TLR4-/- mice and slightly in TLR2-/- mice.
- In vitro studies confirmed NA activates microglia via TLR4, with a partial contribution from TLR2, and demonstrated the necessity of NA's sialidase activity.
Conclusions:
- Neuraminidase directly activates microglial cells, predominantly through TLR4 and secondarily through TLR2.
- The neuroinflammatory response to NA in vivo is critically dependent on TLR4 and partially on TLR2.
- NA's sialidase activity is essential for microglial activation, suggesting therapeutic potential in targeting this enzyme in NA-associated neuroinflammation.
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