Ovariectomy attenuates phenotypes related to Alzheimer’s disease in a preclinical mouse model and in C57BL/6 J mice

K Kazuki Fujii Y Yumie Koshidaka (Life Science Research Center, University of Toyama) Y Yuko Yanagibashi M Mayumi Adachi M Mina Matsuo K Kimihiro Kimura T Takashi Saito (Institute of Materials Structure Science) T Takaomi C. Saido K Keizo Takao (Research Center for Idling Brain Science, University of Toyama)

Abstract

Abstract Women are at higher risk for Alzheimer’s disease (AD) than men and hormonal changes during perimenopause are considered a risk factor. The relationship between ovarian hormones and AD has been explored using AD animal models, especially through ovariectomy (OVX) in established AD models. The link between early-stage AD and ovarian hormones, however, remains unclear, largely due to the lack of suitable animal models. Appropriate models for studying early-stage AD pathology, treatment, and prevention are critically needed. The App knock-in mouse model, which carries a single amyloid precursor protein ( App ) gene mutation, effectively reproduces early amyloid AD pathology. To elucidate the relationship between ovarian hormone deficiency and the behavioral phenotypes of a preclinical AD model, we applied a comprehensive behavioral test battery to this mouse model with bilateral OVX. The App mutation reduced anxiety-like behavior and impaired performance in the fear memory task. OVX restored the anxiety-like behavior of the App mutation mice to a level comparable to that in wild-type (WT) mice. Furthermore, OVX enhanced performance in a fear memory task in both genotypes and reduced amyloid-β staining in WT mice. Together, these findings suggest that OVX attenuates AD-related phenotypes in a preclinical AD model and in C57BL/6 J WT mice.

Article Details

Volume / Issue Vol. 15, Issue 1
Published October 28, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (9)

K

Kazuki Fujii

Y

Yumie Koshidaka

Life Science Research Center, University of Toyama

Y

Yuko Yanagibashi

M

Mayumi Adachi

M

Mina Matsuo

K

Kimihiro Kimura

T

Takashi Saito

Institute of Materials Structure Science

T

Takaomi C. Saido

K

Keizo Takao

Research Center for Idling Brain Science, University of Toyama