ArticlePLoS biology2025
Multinucleated giant cells are hallmarks of ovarian aging with unique immune and degradation-associated molecular signatures.
Article in PLoS biology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 15 papers.
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Who cites it
15 citing papers in PubMed.
- Dietary composition and metabolic stress differentially affect the ovarian microenvironment in mice.GeroScience · 2026Article
- Mitochondrial Haplotype Shapes the Trajectory of Ovarian Aging in Genetically Heterogeneous Rats.Aging cell · 2026Article
- Single-nucleus profiling reveals age-associated remodeling opposed by parity in the postmenopausal human ovary.bioRxiv : the preprint server for biology · 2026Article
- Extracellular matrix: new insights into its role in female reproductive aging and potential therapeutic strategies.npj aging · 2026Review
- Review
- Multicellular origins of murine ovarian inflammaging.Communications biology · 2026Article
- Senescence-Linked Fibrosis in the Aging Human Ovary Revealed by p16-Based Histological Profiling and Spatial Transcriptomics.Research square · 2026Article
- Self-Organizing Ovarian Somatic Organoids Preserve Cellular Heterogeneity and Reveal Cellular Contributions to Ovarian Aging.Aging cell · 2026Article
- The immune microenvironment: a key regulator of ovarian function during ovarian aging.Frontiers in immunology · 2026Review
- Microscale pressure measurements and optical coherence tomography reveal time-dependent biomechanical stages of ovulation in mice.iScience · 2025Article
- Timing and duration of calorie restriction determine its impact on ovarian aging in female mice.npj aging · 2025Article
- Studying ovarian aging and its health impacts: modern tools and approaches.Genes & development · 2025Review
- Multinucleated giant cells are hallmarks of ovarian aging with unique immune and degradation-associated molecular signatures.PLoS biology · 2025Article
- The aging ovary stands on the shoulders of giant multinucleated cells.PLoS biology · 2025Article
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Abstract
The ovary is one of the first organs to exhibit signs of aging, characterized by reduced tissue function, chronic inflammation, and fibrosis. Multinucleated giant cells (MNGCs), formed by macrophage fusion, typically occur in chronic immune pathologies, including infectious and non-infectious granulomas and the foreign body response, but are also observed in the aging ovary. The function and consequence of ovarian MNGCs remain unknown as their biological activity is highly context-dependent, and their large size has limited their isolation and analysis through technologies such as single-cell RNA sequencing. In this study, we define ovarian MNGCs through a deep analysis of their presence across age and species using advanced imaging technologies as well as their unique transcriptome using laser capture microdissection. MNGCs form complex interconnected networks that increase with age in both mouse and nonhuman primate ovaries. MNGCs are characterized by high Gpnmb expression, a putative marker of ovarian and non-ovarian MNGCs. Pathway analysis highlighted functions in apoptotic cell clearance, lipid metabolism, proteolysis, immune processes, and increased oxidative phosphorylation and antioxidant activity. Thus, MNGCs have signatures related to degradative processes, immune function, and high metabolic activity. These processes were enriched in MNGCs compared to primary ovarian macrophages, suggesting discrete functionality. MNGCs express CD4 and colocalize with T-cells, which were enriched in regions of MNGCs, indicative of a close interaction between these immune cell types. These findings implicate MNGCs in modulation of the ovarian immune landscape during aging given their high penetrance and unique molecular signature that supports degradative and immune functions.
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