Female reproductive dysfunction and transgenerational consequences following prolonged spaceflight exposure

X Xiaoman Hong (Department of Cell Biology and Physiology, University of Kansas Medical Center) F Fereshteh Dalouchi (Department of Cell Biology and Physiology, University of Kansas Medical Center) J John C. Prom (Department of Cell Biology and Physiology, University of Kansas Medical Center) M Michael E. Ponte (Department of Cell Biology and Physiology, University of Kansas Medical Center) B Briana L. Hockey (Department of Kinesiology, Brock University) J Jessica L. Braun (Department of Kinesiology, Brock University) P Payton Nies (Department of Cell Biology and Physiology, University of Kansas Medical Center) A Avanelle Stoltz (Department of Cell Biology and Physiology, University of Kansas Medical Center) V V. Praveen Chakravarthi (Department of Cell Biology and Physiology, University of Kansas Medical Center) M Molika Sinha (Department of Cell Biology and Physiology, University of Kansas Medical Center) S Sungshin Y. Choi (Amentum (FILMSS, formally KBR), Space Biosciences Division, NASA Ames Research Center) A April E. Ronca (Space Biosciences Division, NASA Ames Research Center) J Joshua S. Alwood (Space Biosciences Division, NASA Ames Research Center) V Val A. Fajardo (Department of Kinesiology, Brock University) E E. Matthew Morris (Department of Cell Biology and Physiology, University of Kansas Medical Center) S Stephanie Puukila (Blue Marble Space Institute of Science) L Lane K. Christenson (Department of Cell Biology and Physiology, University of Kansas Medical Center)

Abstract

Spaceflight presents unique gravitational, radiation, and isolation hazards for human exploration of the Moon, Mars, and beyond, yet its impact on the female reproductive system and successive generations has been largely unassessed. In the NASA Rodent Research 20 mission, we examined the impact of a 42-d spaceflight on the female reproductive axis including ovulatory capacity, implantation rate, and fecundity as well as behavioral, metabolic, and functional outcomes in F1 and F2 offspring. Females bred 5 d after return to Earth became pregnant but only exhibited a slight decline in fecundity compared to ground controls. In contrast, F1 offspring from spaceflight dams exhibited marked growth, functional, and behavioral differences compared to F1 offspring from control dams. Moreover, F1 female offspring from spaceflight dams exhibited decreased ovarian reserves as evidenced by reduced anti-Mullerian hormone levels early in life (21 d of age) and premature ovarian failure or an early loss in fertility, as indicated by reduced numbers of litters and total number of pups born to females over a 9-mo period. Strikingly, transgenerational metabolic and reproductive disturbances were also observed in F2 pups of spaceflight granddams, including persistent reductions in ovarian reserve, suggesting germline-level effects. Together these findings reveal significant short- and long-term impacts of spaceflight on the female reproductive system and on their offspring across generations, demonstrating biological transmission of reproductive vulnerability following maternal spaceflight exposure, and raising concerns for space travelers and colonization missions.

Article Details

Volume / Issue Vol. 123, Issue 27
Published July 07, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (17)

X

Xiaoman Hong

Department of Cell Biology and Physiology, University of Kansas Medical Center

F

Fereshteh Dalouchi

Department of Cell Biology and Physiology, University of Kansas Medical Center

J

John C. Prom

Department of Cell Biology and Physiology, University of Kansas Medical Center

M

Michael E. Ponte

Department of Cell Biology and Physiology, University of Kansas Medical Center

B

Briana L. Hockey

Department of Kinesiology, Brock University

J

Jessica L. Braun

Department of Kinesiology, Brock University

P

Payton Nies

Department of Cell Biology and Physiology, University of Kansas Medical Center

A

Avanelle Stoltz

Department of Cell Biology and Physiology, University of Kansas Medical Center

V

V. Praveen Chakravarthi

Department of Cell Biology and Physiology, University of Kansas Medical Center

M

Molika Sinha

Department of Cell Biology and Physiology, University of Kansas Medical Center

S

Sungshin Y. Choi

Amentum (FILMSS, formally KBR), Space Biosciences Division, NASA Ames Research Center

A

April E. Ronca

Space Biosciences Division, NASA Ames Research Center

J

Joshua S. Alwood

Space Biosciences Division, NASA Ames Research Center

V

Val A. Fajardo

Department of Kinesiology, Brock University

E

E. Matthew Morris

Department of Cell Biology and Physiology, University of Kansas Medical Center

S

Stephanie Puukila

Blue Marble Space Institute of Science

L

Lane K. Christenson

Department of Cell Biology and Physiology, University of Kansas Medical Center