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Ogola Lab

Assistant Professor



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Ogola Lab

Assistant Professor


Curriculum vitae


Vascular Biology Center & Department of Medicine

Medical College of Georgia at Augusta University




Ogola Lab

Assistant Professor


Vascular Biology Center & Department of Medicine

Medical College of Georgia at Augusta University



Sex Differences in Vascular Aging and Impact of GPER Deletion.


Journal article


B. Ogola, Caleb M Abshire, Bruna Visniauskas, Jasmine Kiley, Alec C Horton, Gabrielle L. Clark, Isabella M. Kilanowski-Doroh, Zaidmara T Diaz, Anne N Bicego, Alexandra B Mcnally, Margaret A. Zimmerman, L. Groban, A. Trask, Kristin S Miller, S. Lindsey
American journal of physiology. Heart and circulatory physiology, 2022

Semantic Scholar DOI PubMed
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APA   Click to copy
Ogola, B., Abshire, C. M., Visniauskas, B., Kiley, J., Horton, A. C., Clark, G. L., … Lindsey, S. (2022). Sex Differences in Vascular Aging and Impact of GPER Deletion. American Journal of Physiology. Heart and Circulatory Physiology.


Chicago/Turabian   Click to copy
Ogola, B., Caleb M Abshire, Bruna Visniauskas, Jasmine Kiley, Alec C Horton, Gabrielle L. Clark, Isabella M. Kilanowski-Doroh, et al. “Sex Differences in Vascular Aging and Impact of GPER Deletion.” American journal of physiology. Heart and circulatory physiology (2022).


MLA   Click to copy
Ogola, B., et al. “Sex Differences in Vascular Aging and Impact of GPER Deletion.” American Journal of Physiology. Heart and Circulatory Physiology, 2022.


BibTeX   Click to copy

@article{b2022a,
  title = {Sex Differences in Vascular Aging and Impact of GPER Deletion.},
  year = {2022},
  journal = {American journal of physiology. Heart and circulatory physiology},
  author = {Ogola, B. and Abshire, Caleb M and Visniauskas, Bruna and Kiley, Jasmine and Horton, Alec C and Clark, Gabrielle L. and Kilanowski-Doroh, Isabella M. and Diaz, Zaidmara T and Bicego, Anne N and Mcnally, Alexandra B and Zimmerman, Margaret A. and Groban, L. and Trask, A. and Miller, Kristin S and Lindsey, S.}
}

Abstract

Aging is a nonmodifiable risk factor for cardiovascular disease associated with arterial stiffening and endothelial dysfunction. We hypothesized that sex differences exist in vascular aging processes and would be attenuated by global deletion of the G protein-coupled estrogen receptor. Blood pressure was measured by tail cuff plethysmography, pulse wave velocity (PWV) and echocardiography were assessed with high resolution ultrasound, and small vessel reactivity was measured using wire myography in adult (25 weeks) and middle-aged (57 weeks) male and female mice. Adult female mice displayed lower blood pressure and PWV, but this sex difference was absent in middle-aged mice. Aging significantly increased PWV but not blood pressure in both sexes. Adult female carotids were more distensible than males, but this sex difference was lost during aging. Acetylcholine-induced relaxation was greater in female than male mice at both ages, and only males showed aging-induced changes in cardiac hypertrophy and function. GPER deletion removed the sex difference in PWV as well as ex vivo stiffness in adult mice. The sex difference in blood pressure was absent in KO mice and was associated with endothelial dysfunction in females. These findings indicate that the impact of aging on arterial stiffening and endothelial function is not the same in male and female mice. Moreover, nongenomic estrogen signaling through GPER impacted vascular phenotype differently in male and female mice. Delineating sex differences in vascular changes during healthy aging is an important first step in improving early detection and sex-specific treatments in our aging population.


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