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Neuroanatomical and Functional Consequences of Oxytocin Treatment at Birth

View ORCID ProfileWilliam M. Kenkel, Richard J. Ortiz, Jason R. Yee, Allison M. Perkeybile, Praveen Kulkarni, C. Sue Carter, Craig F. Ferris
doi: https://doi.org/10.1101/2022.05.21.492438
William M. Kenkel
1University of Delaware; Indiana University
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Richard J. Ortiz
2University of Texas El Paso, New Mexico State University
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Jason R. Yee
3University of Veterinary Medicine, Vienna
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Allison M. Perkeybile
4University of Virginia
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Praveen Kulkarni
5Northeastern University
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C. Sue Carter
6Kinsey Institute, Indiana University
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Craig F. Ferris
5Northeastern University
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ABSTRACT

Birth is a critical period for the developing brain, a time when surging hormone levels help prepare the fetal brain for the tremendous physiological changes it must accomplish upon entry into the ‘extrauterine world’. A number of obstetrical conditions warrant manipulations of these hormones at the time of birth, but we know little of their possible consequences on the developing brain. One of the most notable birth signaling hormones is oxytocin, which is administered to roughly 50% of laboring women in the United States prior to / during delivery. Previously, we found evidence for behavioral, epigenetic, and neuroendocrine consequences in adult prairie vole offspring following maternal oxytocin treatment immediately prior to birth. Here, we examined the neurodevelopmental consequences in adult prairie vole offspring following maternal oxytocin treatment immediately. Control prairie voles and those exposed to 0.25 mg/kg oxytocin were scanned as adults using anatomical and functional MRI, with neuroanatomy and brain function analyzed as voxel-based morphometry and resting state functional connectivity, respectively. Overall, anatomical differences brought on by oxytocin treatment, while widespread, were generally small, while differences in functional connectivity, particularly among oxytocin-exposed males, were larger. Analyses of functional connectivity based in graph theory revealed that oxytocin-exposed males in particular showed markedly increased connectivity throughout the brain and across several parameters, including closeness and degree. These results are interpreted in the context of the organizational effects of oxytocin exposure in early life and these findings add to a growing literature on how the perinatal brain is sensitive to hormonal manipulations at birth.

Competing Interest Statement

The authors have declared no competing interest.

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. All rights reserved. No reuse allowed without permission.
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Posted May 23, 2022.
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Neuroanatomical and Functional Consequences of Oxytocin Treatment at Birth
William M. Kenkel, Richard J. Ortiz, Jason R. Yee, Allison M. Perkeybile, Praveen Kulkarni, C. Sue Carter, Craig F. Ferris
bioRxiv 2022.05.21.492438; doi: https://doi.org/10.1101/2022.05.21.492438
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Neuroanatomical and Functional Consequences of Oxytocin Treatment at Birth
William M. Kenkel, Richard J. Ortiz, Jason R. Yee, Allison M. Perkeybile, Praveen Kulkarni, C. Sue Carter, Craig F. Ferris
bioRxiv 2022.05.21.492438; doi: https://doi.org/10.1101/2022.05.21.492438

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