Characterizing the role of ovarian hormones in regulating sex differences in baseline immune parameters 2309498

R Robert Wilson N Nasana Vaidya (University of Toronto) B Beth DeConinck (University of Toronto) L Lewis Liu (University of Toronto) S Sophia Zhao (University of Toronto) M Margot Boucher (Unity Health Toronto) N Nuria Álvarez Sánchez (Unity Health Toronto) E Emily Pullen (Unity Health Toronto) C Cynthia Guidos (Hospital for Sick Children Research Institute) G Gillian Einstein S Shannon Dunn (University of Toronto)

Abstract

Abstract Introduction Sex differences among peripheral blood mononuclear cells (PBMCs) have been previously described in humans, including greater percentages (%) of CD4+ T cells in females (XX) and greater % of natural killer cells in males (XY). The role of the ovaries in regulating these and other sex differences is unknown. Methods We collected PBMCs from 80 age-matched participants (reported as mean ± SEM) and stratified into control females (n = 28; 41.6 ± 1.0 years), control males (n = 20; 40.4 ± 1.3 years), bilateral salpingo-oophorectomy (BSO) recipients (n = 16; 46.1 ± 2.0 years), and BSO recipients receiving hormone therapy (HT) (n = 16; 45.7 ± 1.2). BSO recipients were at least 1 year out from surgery. PBMCs were isolated to analyze subsets by single-cell mass cytometry. Serum was collected for estradiol (E2), testosterone (T), and progesterone measurements, and cytokines were quantified using the O-LINK platform. Results Three serum markers (IL-10, IL-17c, and CXCL11) showed a sex difference, with greater levels in males; no cytokine was modulated by BSO. Among CD45+ PBMCs, females had a greater % of CD3+ T cells, whereas the % of monocytes were greater in males. However, the sex difference in monocytes disappeared when accounting for T cell differences. Within CD4+ T cells, males had higher % of regulatory T cells and circulating follicular T cells, while within CD8+ T cells, they had higher percentages of PD-1+ effector and terminally differentiated subsets. No highlighted sex difference was associated with the presence of the ovaries. Further explorations identified a negative correlation of % of CD3+ T cells with T levels. Though not driving the sex differences, BSO did increase the % of naïve B cells at the expense of memory B cells, and this was reversed with HT. The % of naïve B cells negatively correlated with E2 and T levels. Conclusion The ovaries are not a major regulator of sex differences in immune subsets but do repress the generation of naïve B cells. Funding Source CIHR - Canada Graduate Scholarship Topic Categories Immune Mechanisms of Human Disease (HUM)

Article Details

Volume / Issue Vol. 215, Issue Supplement_1
Published August 01, 2026
ISSN 0022-1767
Publisher American Association of Immunologists

Authors (11)

R

Robert Wilson

N

Nasana Vaidya

University of Toronto

B

Beth DeConinck

University of Toronto

L

Lewis Liu

University of Toronto

S

Sophia Zhao

University of Toronto

M

Margot Boucher

Unity Health Toronto

N

Nuria Álvarez Sánchez

Unity Health Toronto

E

Emily Pullen

Unity Health Toronto

C

Cynthia Guidos

Hospital for Sick Children Research Institute

G

Gillian Einstein

S

Shannon Dunn

University of Toronto