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Published on: May 14, 2014
Differential response of pineal microglia to surgical versus pharmacological stimuli
María P Ibañez Rodriguez1, María D Galiana1, Jorge A Rásmussen1
1Institute of Histology and Embryology of Mendoza (IHEM), National University of Cuyo, National Scientific and Technical Research Council (CONICET), Mendoza, Argentina.
Abstract:
Microglial cells are one of the interstitial elements of the pineal gland (PG). We recently reported the pattern of microglia colonization and activation, and microglia-Pax6+ cell interactions during normal pineal ontogeny. Here, we describe the dynamics of microglia-Pax6+ cell associations and interactions after surgical or pharmacological manipulation. In adult rats, the superior cervical ganglia (SCG) were exposed, and either bilaterally excised (SCGx) or decentralized (SCGd). In the SCGx PGs, the density of Iba1+ microglia increased after surgery and returned to sham baseline levels 13 days later. Pineal microglia also responded to SCGd, a more subtle denervation. The number of clustered Iba1+ /PCNA+ /ED1+ microglia was higher 4 days after both surgeries compared to the sham-operated group. However, the number of Pax6+ /PCNA- cells and the percentage of Pax6+ cells contacted by and/or phagocytosed by microglia increased significantly only after SCGx. Separate groups of rats were treated with either bacterial lipopolysaccharides (LPS) or doxycycline (DOX) to activate or inhibit pineal microglia, respectively. Peripheral LPS administration caused an increase in the number of clustered Iba1+ /PCNA+ /ED1+ microglial cells, and in the percentage of Pax6+ cells associated with and/or engulfed by microglia. In the LPS-treated PGs, we also noted an increase in the number of PCNA+ cells that were Iba1- within the microglial cell clusters. The density of Pax6+ cells did not change after LPS treatment. DOX administration did not influence the parameters analyzed. These data suggest that pineal microglia are highly receptive cells capable of rapidly responding in a differential manner to surgical and pharmacological stimuli.
Insights
Pineal gland microglia rapidly respond to surgical denervation and LPS stimulation, showing increased activation and interaction with Pax6+ cells. These microglial cells exhibit differential responses to various stimuli.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Microglial cells are key immune cells within the pineal gland (PG).
- Previous research detailed microglia colonization and interactions during normal pineal development.
Purpose of the Study:
- To investigate the dynamic interactions between microglia and Pax6+ cells in the pineal gland following surgical or pharmacological manipulation.
- To understand the responsiveness of pineal microglia to denervation and immune activation.
Main Methods:
- Adult rats underwent superior cervical ganglion excision (SCGx) or decentralization (SCGd).
- Rats were treated with bacterial lipopolysaccharides (LPS) to activate microglia or doxycycline (DOX) to inhibit them.
- Immunohistochemistry was used to analyze microglial markers (Iba1, ED1), proliferation (PCNA), and Pax6+ cells.
Main Results:
- Both SCGx and SCGd increased clustered microglia (Iba1+/PCNA+/ED1+).
- SCGx significantly increased microglial interaction with and phagocytosis of Pax6+ cells.
- LPS administration elevated clustered microglia and enhanced microglial association with/engulfment of Pax6+ cells.
Conclusions:
- Pineal microglia demonstrate rapid and differential responses to surgical denervation and LPS-induced immune activation.
- Microglia exhibit plasticity and are highly receptive to external stimuli in the pineal gland environment.
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