Sex differences in the effects of early life stress exposure on mast cells in the developing rat brain

2019 ◽  
Vol 113 ◽  
pp. 76-84 ◽  
Author(s):  
Aarohi Joshi ◽  
Chloe E. Page ◽  
Mark Damante ◽  
Courtney N. Dye ◽  
Achikam Haim ◽  
...  
2021 ◽  
Vol 44 ◽  
pp. S20-S21
Author(s):  
A. Castro-Zavala ◽  
A. Martín-Sánchez ◽  
L. Montalvo-Martínez ◽  
A. Camacho-Morales ◽  
O. Valverde

2020 ◽  
Vol 10 (7) ◽  
pp. 447 ◽  
Author(s):  
Héctor González-Pardo ◽  
Jorge L. Arias ◽  
Eneritz Gómez-Lázaro ◽  
Isabel López Taboada ◽  
Nélida M. Conejo

Sex differences have been reported in the susceptibility to early life stress and its neurobiological correlates in humans and experimental animals. However, most of the current research with animal models of early stress has been performed mainly in males. In the present study, prolonged maternal separation (MS) paradigm was applied as an animal model to resemble the effects of adverse early experiences in male and female rats. Regional brain mitochondrial function, monoaminergic activity, and neuroinflammation were evaluated as adults. Mitochondrial energy metabolism was greatly decreased in MS females as compared with MS males in the prefrontal cortex, dorsal hippocampus, and the nucleus accumbens shell. In addition, MS males had lower serotonin levels and increased serotonin turnover in the prefrontal cortex and the hippocampus. However, MS females showed increased dopamine turnover in the prefrontal cortex and increased norepinephrine turnover in the striatum, but decreased dopamine turnover in the hippocampus. Sex differences were also found for pro-inflammatory cytokine levels, with increased levels of TNF-α and IL-6 in the prefrontal cortex and hippocampus of MS males, and increased IL-6 levels in the striatum of MS females. These results evidence the complex sex- and brain region-specific long-term consequences of early life stress.


2020 ◽  
Vol 31 ◽  
pp. S33-S34
Author(s):  
L. Van Doeselaar ◽  
C. Engelhardt ◽  
J. Bordes ◽  
L. Brix ◽  
J. Deussing ◽  
...  

2019 ◽  
Vol 29 ◽  
pp. S405
Author(s):  
N. Broshevitskaya ◽  
I. Pavlova ◽  
M. Zaichenko ◽  
V. Gruzdeva ◽  
G. Grigoryan

2019 ◽  
Author(s):  
David A Connor ◽  
Ruthie E Wittenberg ◽  
Jillian Drogin ◽  
Allison Mak ◽  
John A Dani

AbstractAlcohol use disorders (AUDs) continue to be a significant public health problem. Early life stress and adversity have long-lasting effects on a wide range of behaviors, including responses to drugs of abuse. Epidemiological evidence indicates that exposure to early life stress contributes to alcohol use disorders and, while it is known that stress and alcohol both act on overlapping mesolimbic circuitry, the cellular mechanisms underlying the relationship between stress and alcohol intake are not well understood. Previous work has demonstrated that acute stress increases ethanol intake mediated by changes in GABA signaling within the ventral tegmental area (VTA). Here we investigated if adolescent stress exposure might elicit long-term, persistent increases in ethanol self-administration associated with altered VTA GABA signaling. To this end, we exposed adolescent postnatal day (PND) 28 male rats to 14 days of chronic variable stress (CVS) and then examined operant ethanol self-administration begun at least 30 days later. We found that adolescent stress exposure resulted in significantly increased ethanol self-administration in adulthood. In contrast, adult (PND 82) male rats exposed to the same CVS protocol did not display increased ethanol self-administration that was begun 30 days later. Furthermore, we found that adolescent stress exposure resulted in enhancement of ethanol-induced GABA signaling onto VTA dopamine neurons and impairments in VTA GABA chloride homeostasis. The results indicate that adolescence is a period vulnerable to stress, which produces long-term changes in VTA GABA signaling associated with increased ethanol self-administration behavior.


2020 ◽  
Author(s):  
Jennifer L. LaBarre ◽  
Alison L. Miller ◽  
Katherine W. Bauer ◽  
Charles F. Burant ◽  
Julie C. Lumeng

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