Related Experiment Video
Updated: Feb 28, 2026

Methods for Studying Uterine Contributions to Pregnancy Establishment in an Ovariectomized Mouse Model
Published on: April 7, 2023
Multi-omics analysis reveals steroid hormone biosynthesis as a key pathway in advanced maternal age threatened
Xia Liu1, Tianjiao Liu2, Xuemei Zou1
1Department of Gynecology, Chongqing Traditional Chinese Medicine Hospital, Chongqing 400021, China.
Abstract:
Advanced maternal age (≥35 years) is increasingly common and associated with a higher risk of threatened abortion, yet its molecular basis remains unclear. To elucidate the underlying mechanisms of advanced maternal age-related threatened abortion (AMA-TA) by integrating metabolomics and transcriptomics. Untargeted serum metabolomics was performed in nine AMA-TA patients and seven age-matched healthy pregnant women. An AMA-TA mouse model was established using mifepristone (4 mg/kg) to assess embryo resorption, placental morphology, and serum hormone levels. Serum metabolomics and placental transcriptomic profiling (RNA-seq) were then conducted in AMA-TA mice to characterize metabolic and gene expression alterations. Cross-species and multi-omics integration was performed using HomoloGene and MetaboAnalyst 5.0. Key genes were validated by real-time quantitative polymerase chain reaction. Human serum metabolomics revealed the differential metabolites were mainly enriched in steroid hormone biosynthesis, lipid metabolism, and amino-acid metabolism. The AMA-TA model showed higher embryo resorption, abnormal placental architecture, and reduced progesterone and chorionic gonadotropin. RNA-seq revealed 111 up- and 1337 downregulated genes enriched in 68 pathways. Consistently, serum metabolomics in AMA-TA mice also showed significant metabolic disturbances, prominently involving steroid hormone biosynthesis. Integrated analysis converged on steroid hormone biosynthesis as a shared key dysregulated pathway. Real-time quantitative polymerase chain reaction further confirmed aberrant expression of steroid metabolism-related genes, including upregulation of Akr1d1 and Ugt family genes. Disruption of steroid hormone biosynthesis represents central molecular feature of AMA-TA. Integrated multi-omics analysis offers mechanistic insight and supports the development of biomarkers and therapeutic targets for AMA-TA.
Related Concept Videos
Gonadal and Placental Hormones
In males, testosterone is the primary gonadal androgen. It plays a central role in the maturation of male reproductive organs — the penis and testes. Additionally, testosterone is instrumental in the development of secondary sexual characteristics — a deep voice as well as facial and pubic hair...
Oogenesis
Nondisjunction
Hormonal Control of the Ovarian Cycle
Before puberty, the hypothalamus releases GnRH in a low frequency, low amplitude pulsatile manner. This along with the immature hypothalamic-pituitary-gonadal axis activity, results in low estrogen levels and the absence of a fully functional ovarian cycle. At puberty, GnRH secretion increases in both frequency and...
Hormonal Regulation of the Menstrual Cycle
At puberty, GnRH begins a pulsatile release pattern, which triggers the anterior pituitary gland to secrete follicle-stimulating hormone (FSH) and luteinizing hormone (LH). The frequency and amplitude of GnRH pulses vary across the menstrual cycle, with faster pulses favoring LH release and slower pulses favoring FSH...
Infertility in Females
Endometriosis, a condition characterized by abnormal growth of...

