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Concomitant Isolation of Primary Astrocytes and Microglia for Protozoa Parasite Infection
Published on: March 18, 2020
Astrocytes Enhance Streptococcus suis-Glial Cell Interaction in Primary Astrocyte-Microglial Cell Co-Cultures
Jana Seele1,2,3, Roland Nau4,5, Chittappen K Prajeeth6
1Center for Infection Medicine, Institute for Microbiology, University of Veterinary Medicine Hannover, Bischofsholer Damm 15, Hannover 30173, Germany. jana_seele@gmx.de.
Abstract:
Streptococcus (S.) suis infections are the most common cause of meningitis in pigs. Moreover, S. suis is a zoonotic pathogen, which can lead to meningitis in humans, mainly in adults. We assume that glial cells may play a crucial role in host-pathogen interactions during S. suis infection of the central nervous system. Glial cells are considered to possess important functions during inflammation and injury of the brain in bacterial meningitis. In the present study, we established primary astrocyte-microglial cell co-cultures to investigate interactions of S. suis with glial cells. For this purpose, microglial cells and astrocytes were isolated from new-born mouse brains and characterized by flow cytometry, followed by the establishment of astrocyte and microglial cell mono-cultures as well as astrocyte-microglial cell co-cultures. In addition, we prepared microglial cell mono-cultures co-incubated with uninfected astrocyte mono-culture supernatants and astrocyte mono-cultures co-incubated with uninfected microglial cell mono-culture supernatants. After infection of the different cell cultures with S. suis, bacteria-cell association was mainly observed with microglial cells and most prominently with a non-encapsulated mutant of S. suis. A time-dependent induction of NO release was found only in the co-cultures and after co-incubation of microglial cells with uninfected supernatants of astrocyte mono-cultures mainly after infection with the capsular mutant. Only moderate cytotoxic effects were found in co-cultured glial cells after infection with S. suis. Taken together, astrocytes and astrocyte supernatants increased interaction of microglial cells with S. suis. Astrocyte-microglial cell co-cultures are suitable to study S. suis infections and bacteria-cell association as well as NO release by microglial cells was enhanced in the presence of astrocytes.
Insights
Streptococcus suis, a cause of meningitis in pigs and humans, interacts more with microglial cells when astrocytes are present. Astrocytes enhance microglial cell interaction and nitric oxide release during S. suis infection.
Area of Science:
- Neuroscience
- Immunology
- Microbiology
Background:
- Streptococcus (S.) suis is a significant cause of meningitis in both pigs and humans, posing a zoonotic risk.
- Glial cells, including astrocytes and microglial cells, are crucial in brain inflammation and injury during bacterial meningitis.
Purpose of the Study:
- To investigate the role of glial cells, specifically astrocytes and microglial cells, in host-pathogen interactions during S. suis infection of the central nervous system.
- To establish and utilize primary astrocyte-microglial cell co-cultures to study these interactions.
Main Methods:
- Isolation and characterization of primary microglial cells and astrocytes from newborn mouse brains using flow cytometry.
- Establishment of mono-cultures and co-cultures of astrocytes and microglial cells.
- Co-incubation of mono-cultures with supernatants from the other cell type.
- Infection of cell cultures with S. suis and assessment of bacteria-cell association, nitric oxide (NO) release, and cytotoxicity.
Main Results:
- Bacteria-cell association with S. suis was primarily observed in microglial cells, especially with a non-encapsulated mutant.
- A time-dependent induction of NO release was noted in co-cultures and when microglial cells were exposed to astrocyte supernatants, particularly after infection with a capsular mutant.
- S. suis infection resulted in only moderate cytotoxic effects on co-cultured glial cells.
Conclusions:
- Astrocytes and their supernatants enhance the interaction between microglial cells and S. suis.
- Astrocyte-microglial cell co-cultures provide a suitable model for studying S. suis infections.
- The presence of astrocytes potentiates bacteria-cell association and nitric oxide release by microglial cells during S. suis infection.
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