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Reactive Microgliosis in Sepsis-Associated and Acute Hepatic Encephalopathies: An Ultrastructural Study
Tatyana Shulyatnikova1, Valerii Tumanskyi1, Melvin R Hayden2
1Department of Pathological Anatomy and Forensic Medicine, Zaporizhzhia State Medical University, Mayakovsky Avenue, 26, 69035 Zaporizhzhia, Ukraine.
Abstract:
Sepsis and acute liver failure are associated with severe endogenous intoxication. Microglia, which are the resident immune brain cells, play diverse roles in central nervous system development, surveillance, and defense, as well as contributing to neuroinflammatory reactions. In particular, microglia are fundamental to the pathophysiology of reactive toxic encephalopathies. We analyzed microglial ultrastructure, morphotypes, and phagocytosis in the sensorimotor cortex of cecal ligation and puncture (CLP) and acetaminophen-induced liver failure (AILF) Wistar rats. A CLP model induced a gradual shift of ~50% of surveillant microglia to amoeboid hypertrophic-like and gitter cell-like reactive phenotypes with active phagocytosis and frequent contacts with damaged neurons. In contrast, AILF microglia exhibited amoeboid, rod-like, and hypertrophic-like reactive morphotypes with minimal indications for efficient phagocytosis, and were mostly in contact with edematous astrocytes. Close interactions of reactive microglia with neurons, astrocytes, and blood-brain barrier components reflect an active contribution of these cells to the tissue adaptation and cellular remodeling to toxic brain damage. Partial disability of reactive microglia may affect the integrity and metabolism in all tissue compartments, leading to failure of the compensatory mechanisms in acute endogenous toxic encephalopathies.
Insights
Sepsis and liver failure alter brain immune cells (microglia). Microglia in sepsis actively clear damaged neurons, while in liver failure, they interact with astrocytes, potentially impairing brain repair.
Area of Science:
- Neuroscience
- Immunology
- Toxicology
Background:
- Sepsis and acute liver failure cause severe endogenous intoxication, impacting the central nervous system.
- Microglia, the brain's resident immune cells, are crucial in neuroinflammation and reactive toxic encephalopathies.
Purpose of the Study:
- To investigate microglial ultrastructure, morphotypes, and phagocytosis in response to sepsis and acetaminophen-induced liver failure (AILF).
- To compare microglial responses in cecal ligation and puncture (CLP) and AILF models.
Main Methods:
- Analysis of microglial ultrastructure, morphotypes, and phagocytosis in the sensorimotor cortex of Wistar rats.
- Utilizing cecal ligation and puncture (CLP) for sepsis model and acetaminophen administration for AILF model.
Main Results:
- CLP induced a shift to reactive microglia with active phagocytosis and neuronal contact.
- AILF microglia showed reactive morphotypes with limited phagocytosis, interacting primarily with edematous astrocytes.
- Reactive microglia actively engaged with neurons, astrocytes, and blood-brain barrier components.
Conclusions:
- Microglial responses differ significantly between sepsis and AILF models.
- Impaired microglial phagocytosis in AILF may contribute to brain damage and failure of compensatory mechanisms.
- Microglia play a key role in brain adaptation and remodeling during toxic encephalopathies.
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