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Updated: Mar 24, 2026

Whole Ovary Immunofluorescence, Clearing, and Multiphoton Microscopy for Quantitative 3D Analysis of the Developing Ovarian Reserve in Mouse
Published on: September 3, 2021
Macrophages regulate meiotic initiation and germ cell clearance in the developing ovary
Xiaowei Gu1, Satoko Matsuyama1, Shu-Yun Li1
1Reproductive Sciences Center, Division of Developmental Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, U.S.A.
Abstract:
Tissue-resident macrophages are increasingly recognized for their roles in promoting organogenesis, yet how macrophages are involved in fetal ovarian development remains unclear. In particular, little is known about ovarian macrophage ontogeny and how it relates to germ cell entry into meiosis and establishment of the oocyte reserve. Here we combine temporally-controlled lineage tracing of yolk-sac erythro-myeloid progenitors, fetal HSC-derived progenitors, and postnatal monocytes to map multi-wave seeding and remodeling of ovarian macrophages across fetal and early postnatal life. We identify three major resident subsets defined by MHCII and CSF1R that display distinct expansion kinetics and persistence, and we show that CCR2-dependent monocyte recruitment is required for efficient maturation of postnatal macrophage populations. Functionally, transient or sustained depletion of CSF1R+ fetal macrophages perturbs ovarian vascular growth and triggers precocious meiotic initiation without overt loss of germ cells, leading to persistent, premature meiotic progression. Extending macrophage depletion into late gestation disrupts perinatal physiological germ cell attrition despite rapid postnatal macrophage repopulation. Together, our findings establish ovarian macrophages as stage-specific regulators that couple immune ontogeny to ovarian morphogenesis and germ cell quality control during establishment of the oocyte reserve.
Insights
Ovarian macrophages orchestrate fetal ovarian development by regulating germ cell meiosis and vascular growth. These immune cells are crucial for establishing the oocyte reserve and ensuring proper germ cell quality control.
Area of Science:
- Reproductive immunology
- Developmental biology
- Cellular and molecular biology
Background:
- Tissue-resident macrophages play key roles in organogenesis, but their function in fetal ovarian development is not well understood.
- The ontogeny of ovarian macrophages and their relationship with germ cell development and meiosis initiation are largely unknown.
Purpose of the Study:
- To map the multi-wave seeding and remodeling of ovarian macrophages during fetal and early postnatal development.
- To investigate the functional roles of ovarian macrophages in ovarian morphogenesis, germ cell meiosis, and oocyte reserve establishment.
Main Methods:
- Temporally-controlled lineage tracing of yolk-sac erythro-myeloid progenitors, fetal HSC-derived progenitors, and postnatal monocytes.
- Identification of macrophage subsets using MHCII and CSF1R markers.
- CCR2-dependent monocyte recruitment analysis.
- Macrophage depletion studies using CSF1R inhibition.
Main Results:
- Three major resident ovarian macrophage subsets with distinct kinetics and persistence were identified.
- CCR2-dependent monocyte recruitment is essential for postnatal macrophage maturation.
- Depletion of fetal macrophages impaired ovarian vascular growth and induced precocious meiotic initiation.
- Extended macrophage depletion disrupted perinatal germ cell attrition, despite postnatal repopulation.
Conclusions:
- Ovarian macrophages act as stage-specific regulators of ovarian development.
- These immune cells link immune ontogeny with ovarian morphogenesis and germ cell quality control.
- Macrophages are critical for establishing the oocyte reserve and ensuring proper timing of germ cell meiosis.
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