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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Prenatal stress is a vulnerability factor for altered morphology and biological activity of microglia cells
Joanna Ślusarczyk1, Ewa Trojan1, Katarzyna Głombik1
1Department of Experimental Neuroendocrinology, Institute of Pharmacology, Polish Academy of Sciences Kraków, Poland.
Abstract:
Several lines of evidence suggest that the dysregulation of the immune system is an important factor in the development of depression. Microglia are the resident macrophages of the central nervous system and a key player in innate immunity of the brain. We hypothesized that prenatal stress (an animal model of depression) as a priming factor could affect microglial cells and might lead to depressive-like disturbances in adult male rat offspring. We investigated the behavioral changes (sucrose preference test, Porsolt test), the expression of C1q and CD40 mRNA and the level of microglia (Iba1 positive) in 3-month-old control and prenatally stressed male offspring rats. In addition, we characterized the morphological and biochemical parameters of potentially harmful (NO, iNOS, IL-1β, IL-18, IL-6, TNF-α, CCL2, CXCL12, CCR2, CXCR4) and beneficial (insulin-like growth factor-1 (IGF-1), brain derived neurotrophic factor (BDNF)) phenotypes in cultures of microglia obtained from the cortices of 1-2 days old control and prenatally stressed pups. The adult prenatally stressed rats showed behavioral (anhedonic- and depression-like) disturbances, enhanced expression of microglial activation markers and an increased number of Iba1-immunopositive cells in the hippocampus and frontal cortex. The morphology of glia was altered in cultures from prenatally stressed rats, as demonstrated by immunofluorescence microscopy. Moreover, in these cultures, we observed enhanced expression of CD40 and MHC II and release of pro-inflammatory cytokines, including IL-1β, IL-18, TNF-α and IL-6. Prenatal stress significantly up-regulated levels of the chemokines CCL2, CXCL12 and altered expression of their receptors, CCR2 and CXCR4 while IGF-1 production was suppressed in cultures of microglia from prenatally stressed rats. Our results suggest that prenatal stress may lead to excessive microglia activation and contribute to the behavioral changes observed in depression in adulthood.
Insights
Prenatal stress primes microglia, leading to depression-like behaviors in adult rats. This study reveals how early-life stress impacts brain immune cells and contributes to mood disorders.
Area of Science:
- Neuroscience
- Immunology
- Psychiatry
Background:
- Depression is linked to immune system dysregulation.
- Microglia, the brain's immune cells, play a crucial role in neuroinflammation.
- Prenatal stress is an established animal model for depression.
Purpose of the Study:
- To investigate the impact of prenatal stress on microglial activation and its correlation with depression-like behaviors in adult male rats.
- To characterize the morphological and biochemical changes in microglia following prenatal stress exposure.
Main Methods:
- Adult male rats exposed to prenatal stress and control rats were assessed for depression-like behaviors (sucrose preference, Porsolt test).
- Microglial activation markers (Iba1, CD40, MHC II) and mRNA expression were analyzed in brain tissue and cultured microglia.
- Pro-inflammatory (NO, iNOS, IL-1β, IL-18, IL-6, TNF-α, CCL2, CXCL12) and beneficial (IGF-1, BDNF) factors were quantified in microglia cultures.
Main Results:
- Prenatal stress induced anhedonic and depression-like behaviors in adult rats.
- Increased microglial activation markers and cell numbers were observed in the hippocampus and frontal cortex of stressed rats.
- Microglia from stressed rats exhibited altered morphology, enhanced pro-inflammatory cytokine release, and suppressed IGF-1 production.
Conclusions:
- Prenatal stress can prime microglia, leading to heightened inflammatory responses and contributing to depression-like behaviors in adulthood.
- Microglial activation and neuroinflammation are key mechanisms linking early-life stress to mood disorders.
- Targeting microglial pathways may offer therapeutic strategies for depression.

