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Updated: Jul 8, 2026

Collection of Human Follicular Fluid, Follicle Somatic Cells, and Immature Oocytes from Individuals Undergoing In Vitro Fertilization
Published on: October 24, 2025
Single-cell transcriptomic atlas of ovarian endometriosis patient's follicular fluid: unraveling novel insights into
Meng Zhang1,2, Xinye Hu1,2, Haiyan Lin1,2
1Reproductive Medicine Center, Sun Yat-sen Memorial Hospital, Sun Yat-sen University, Guangzhou, China.
Abstract:
In brief: We present the first single-cell transcriptomic atlas of follicular fluid from an ovarian endometrioma (OMA) patient, revealing a novel TCR+ macrophage subtype, aberrant granulosa cell developmental trajectories, immune dysregulation, and enhanced MIF/MK signaling, providing new insights into mechanisms underlying impaired follicular development in OMA. Abstract: Ovarian endometrioma (OMA), an endometriosis subtype, involves hemorrhagic cysts formed by ectopic endometrial-like tissue, causing pelvic pain, inflammation, and infertility by disrupting ovarian function. Despite its impact, the single-cell dynamics in OMA follicular fluid are poorly understood. We performed single-cell RNA sequencing (10x Genomics) on follicular fluid from a patient's affected (2,793 cells) and unaffected (4,699 cells; control) ovaries. Analysis revealed four cell types, including a novel TCR+ macrophage subtype. Affected-side granulosa cells showed abnormal developmental trajectories linked to dysregulated steroid pathways. Immune cells exhibited heightened inflammation and reduced macrophage phagocytosis. Cell-cell communication highlighted prominent Macrophage Migration Inhibitory Factor and Midkine signaling from granulosa cells. This study provides the first single-cell transcriptomic profile of OMA follicular fluid, elucidating aberrant granulosa cell development, immune dysregulation, and distinctive cellular interactions, enhancing understanding of OMA's impact on follicular development and suggesting potential diagnostic/therapeutic targets.
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