Elevated body mass index is associated with reduced follicular CCL3 levels and diminished monocyte chemotactic activity.

Obesity is a major risk factor for subfertility and poor reproductive outcomes in women; however, the impact of elevated body mass index (BMI) on the ovarian immune microenvironment remains unclear. We investigated BMI-associated molecular and functional changes in follicular fluid (FF) and granulosa cells (GCs) obtained from women undergoing assisted reproductive technology and stratified into low-BMI (< 22.9 kg/m²) and high-BMI (≥ 25 kg/m²) groups. RNA sequencing revealed that high-BMI GCs exhibited suppression of immune-related pathways. Chemokine (C-C motif) ligand 3 (CCL3) was significantly reduced in high-BMI GCs and inversely correlated with BMI at both mRNA and protein levels in FF. Functionally, FF from women with high BMI showed markedly diminished chemotactic activity toward THP-1 monocytes in a chemotaxis assay, indicating impaired immune cell recruitment capacity of the follicular milieu. In addition, CYP27A1, a key regulator of cholesterol and oxysterol metabolism, was selectively downregulated in high-BMI GCs. Together, these results indicate that elevated BMI is associated with suppression of chemokine signaling and lipid-associated metabolic pathways in human GCs. Our findings provide functional evidence that obesity compromises immune cell recruitment within the ovarian follicular microenvironment, thereby offering a mechanistic link between metabolic status and impaired follicular homeostasis in women with increased BMI.

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Publication Details

Journal
PubMed
Published
2026-10-05
DOI
https://doi.org/10.1093/reprod/xaag124
Primary Topic
Reproductive Biology and Fertility
Type
article
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article

Elevated body mass index is associated with reduced follicular CCL3 levels and diminished monocyte chemotactic activity.

Yoo Ra Ko, Su Hee Seok, 송행석, Hyejin Shin et al.
PubMed
Reproductive Biology and Fertility
article

Elevated body mass index is associated with reduced follicular CCL3 levels and diminished monocyte chemotactic activity.

Yoo Ra Ko, Su Hee Seok, 송행석, Hyejin Shin, 신은빈, Hyunjung Jade Lim, Soyeon Hong, W D Lee, Jae Kyun Park, Min Kyoung Kim, Donghyun Kim, Sohyun Hwang, Surim Oh
article en

Abstract

Obesity is a major risk factor for subfertility and poor reproductive outcomes in women; however, the impact of elevated body mass index (BMI) on the ovarian immune microenvironment remains unclear. We investigated BMI-associated molecular and functional changes in follicular fluid (FF) and granulosa cells (GCs) obtained from women undergoing assisted reproductive technology and stratified into low-BMI (< 22.9 kg/m²) and high-BMI (≥ 25 kg/m²) groups. RNA sequencing revealed that high-BMI GCs exhibited suppression of immune-related pathways. Chemokine (C-C motif) ligand 3 (CCL3) was significantly reduced in high-BMI GCs and inversely correlated with BMI at both mRNA and protein levels in FF. Functionally, FF from women with high BMI showed markedly diminished chemotactic activity toward THP-1 monocytes in a chemotaxis assay, indicating impaired immune cell recruitment capacity of the follicular milieu. In addition, CYP27A1, a key regulator of cholesterol and oxysterol metabolism, was selectively downregulated in high-BMI GCs. Together, these results indicate that elevated BMI is associated with suppression of chemokine signaling and lipid-associated metabolic pathways in human GCs. Our findings provide functional evidence that obesity compromises immune cell recruitment within the ovarian follicular microenvironment, thereby offering a mechanistic link between metabolic status and impaired follicular homeostasis in women with increased BMI.

PubMed
Konkuk University (KR), Korea Institute of Oriental Medicine (KR), Maria Fertility Hospital (KR), CHA University Bundang Medical Center (KR), CHA University (KR), CHA University Gangnam Medical Center (KR)
Openalex Percentile: Top 9%
Reproductive Biology and Fertility
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Elevated body mass index is associated with reduced follicular CCL3 levels and diminished monocyte chemotactic activity. — Yoo Ra Ko, Su Hee Seok, et al. · PubMed (2026) | TGRS Research Map | TGRS