bioRxiv Science⌕ Search

Biology subjects

Eid, R.

Publications and source records attributed to Eid, R..

2 recordsLinked to original sources

Exploring the parity paradox: Differential effects on neuroplasticity and neuroinflammation by APOEe4 genotype at middle-age

Female sex and Apolipoprotein E (APOE) {varepsilon}4 genotype are top non-modifiable risk factors for Alzheimers disease (AD). Although female-unique experiences like parity (pregnancy and motherhood) have positive effects on neuroplasticity at middle age, previous pregnancy may also contribute to AD risk. To explore these seemingly paradoxical long-term effects of parity, we investigated the impact of parity with APOE{varepsilon}4 genotype by examining behavioural and neural biomarkers of brain health in middle-aged female rats. Our findings show that primiparous (parous one time) hAPOE{varepsilon}4 rats display increased use of a non-spatial cognitive strategy and exhibit decreased number and recruitment of new-born neurons in the ventral dentate gyrus of the hippocampus in response to spatial working memory retrieval. Furthermore, primiparity and hAPOE{varepsilon}4 genotype synergistically modulate neuroinflammatory markers in the ventral hippocampus. Collectively, these findings demonstrate that previous parity in hAPOE{varepsilon}4 rats confers an added risk to present with reduced activity and engagement of the hippocampus as well as elevated pro-inflammatory signaling, and underscores the importance of considering female-specific factors and genotype in health research. O_LSTHighlightsC_LSTO_LIhAPOE{varepsilon}4 rats made more errors and used a non-spatial cognitive strategy C_LIO_LIPrimiparous hAPOE{varepsilon}4 rats increased use of a non-spatial cognitive strategy C_LIO_LIParity increased neurogenesis in wildtype rats, but decreased it in hAPOE{varepsilon}4 rats C_LIO_LIPrimiparous hAPOE{varepsilon}4 rats had less active new neurons in response to memory retrieval C_LIO_LIParity and hAPOE{varepsilon}4 affect the neuroimmune milieu in a region-specific manner C_LI

neuroscience↗

Cellular and molecular signatures of motherhood in the adult and ageing brain

Pregnancy is marked by brain changes to volume, structure, connectivity, some of which are long-lasting. Few studies have examined possible mechanisms of these changes or the effects of multiple pregnancies. Here, we characterized various cellular and molecular signatures of parity (nulliparous, primiparous, biparous) in the hippocampus, an important area for cognitive and emotional regulation, and in plasma. We investigated density of neural stems cells (Sox2) and microglia (Iba-1), and levels of the postsynaptic density protein (PSD-95), cell signalling pathways, hippocampal and peripheral inflammation and the tryptophan-kynurenine (TRP-KYN) pathway, at 1 week after weaning (7 months) and in middle-age (13 months). Parity increased PSD-95 levels in both age groups and prevented the age-related decrease in neural stem cell density observed in nulliparous rats. Biparity increased cell signalling phosphoproteins (pp706sk, S6RP) and number of microglia in the dentate gyrus, regardless of age. Parity resulted in transient changes to the TRP-KYN system and peripheral inflammation. Thus, parity has lasting effects on synaptic plasticity and alters the trajectory of hippocampal aging. Highlights- Parity increased the postsynaptic protein PSD-95 in the hippocampus, regardless of age. - Biparity increased microglial density and cell signalling in the hippocampus, regardless of age. - Parity prevented the age-related decline in hippocampal neural stem cells. - Parity transiently increased tryptophan-kynurenine pathway metabolites. - Aging reduced plasma cytokine levels, an effect more prominent with nulliparity.

neuroscience↗