Neonatal maternal separation increases susceptibility to experimental colitis and acute stress exposure in male mice
Isabella M Fuentes1, Natalie K Walker1, Angela N Pierce1
1Department of Anatomy and Cell Biology, School of Medicine, University of Kansas Medical Center, Kansas City, KS 66160.
Insights
Early life stress, like neonatal maternal separation (NMS), primes mice for exaggerated responses to colitis and stress. NMS disrupts colonic gene expression, increasing susceptibility to chronic pain disorders.
Area of Science:
- Neuroscience
- Gastroenterology
- Stress Research
Background:
- Early life stress dysregulates the hypothalamic-pituitary-adrenal axis, increasing chronic pelvic pain risk.
- Neonatal maternal separation (NMS) is a model for early life stress effects.
Purpose of the Study:
- Investigate if NMS increases susceptibility to experimental colitis and stress.
- Examine behavioral and colonic inflammatory responses to stress in NMS mice.
Main Methods:
- Male mice underwent NMS (postnatal days 1-21).
- Assessed behavior, hindpaw sensitivity, and visceromotor response (VMR) to colorectal distension (CRD).
- Measured colonic MPO activity and gene/receptor expression after TNBS or water avoidance stress (WAS).
Main Results:
- NMS mice showed increased anxiety and sensitivity after CRD.
- TNBS treatment reduced body weight and survival in NMS mice.
- NMS altered colonic IL-6, artemin, and CRF2 expression in response to stress and inflammation.
Conclusions:
- NMS disrupts inflammatory and stress-induced colonic gene expression.
- Early life stress may contribute to exaggerated responses to stressors later in life.
- This model offers insights into chronic pelvic pain disorder development.
Abstract:
Experiencing early life stress can result in maladjusted stress response via dysregulation of the hypothalamic-pituitary-adrenal axis and serves as a risk factor for developing chronic pelvic pain disorders. We investigated whether neonatal maternal separation (NMS) would increase susceptibility to experimental colitis or exposure to acute or chronic stress. Male mice underwent NMS from postnatal day 1-21 and as adults were assessed for open field behavior, hindpaw sensitivity, and visceromotor response (VMR) to colorectal distension (CRD). VMR was also measured before and after treatment with intracolonic trinitrobenzene sulfonic acid (TNBS) or exposure to acute or chronic water avoidance stress (WAS). Myeloperoxidase (MPO) activity, proinflammatory gene and corticotropin-releasing factor (CRF) receptor expression were measured in distal colon. Baseline VMR was not affected by NMS, but undergoing CRD increased anxiety-like behaviors and mechanical hindpaw sensitivity of NMS mice. Treatment with TNBS dose-dependently decreased body weight and survival only in NMS mice. Following TNBS treatment, IL-6 and artemin mRNA levels were decreased in the distal colon of NMS mice, despite increased MPO activity. A single WAS exposure increased VMR during CRD in NMS mice and increased IL-6 mRNA and CRF2 protein levels in the distal colon of naïve mice, whereas CRF2 protein levels were heightened in NMS colon both at baseline and post-WAS exposure. Taken together, these results suggest that NMS in mice disrupts inflammatory- and stress-induced gene expression in the colon, potentially contributing towards an exaggerated response to specific stressors later in life.
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