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Updated: Jul 10, 2025

Surgical Techniques to Optimize Ovarian Reserve during Laparoscopic Cystectomy for Ovarian Endometrioma
Published on: January 22, 2022
Serum miRNA as a predictive biomarker for ovarian reserve after endometrioma-cystectomy
Atsushi Yabuki1, Ayako Muraoka1, Satoko Osuka1
1Department of Obstetrics and Gynecology, Nagoya University Graduate School of Medicine, 65 Tsurumai-cho, Showa-ku, Nagoya 466-8550, Japan.
Abstract:
Ovarian endometrioma (OE) is a common gynecological disease that is often treated with surgery and hormonal treatment. However, ovarian cystectomy can impair the ovarian reserve (OR). Previously, we showed that perioperative administration of dienogest (DNG) is an effective option for OR preservation. However, there were differences in the extent of OR preservation among patients following perioperative DNG treatment. In the current study, we performed a global examination of serum microRNAs (miRNAs) to identify accurate biomarkers that predict post-operative restoration of OR following perioperative DNG treatment. We also sought to identify specific miRNAs related to the anti-Müllerian hormone (AMH). miRNA sequencing was performed on serum samples obtained from twenty-seven patients who received perioperative DNG treatment. Candidate miRNAs were selected by comparing patients whose ORs were restored postoperatively (responder group, n = 7) with those whose ORs were not (non-responder group, n = 7). miR-370-3p and miR-1307-3p were significantly upregulated in the responder group, whereas miR-27b-3p was upregulated in the non-responder group. The pretreatment value of each miRNA could predict DNG responsiveness for OR following ovarian cystectomy (area under the curve [AUC] > 0.8). The quantitative polymerase chain reaction (qPCR) revealed only miR-1307-3p was found to be significantly upregulated in the responder group (P < 0.05). In addition, we identified miR-139-3p, miR-140-3p, and miR-629-5p as AMH-associated miRNAs. The transition of AMH showed a correlation with miR-139-3p (P < 0.05, r = -0.76). The miRNAs identified herein represent potential serum biomarkers of clinical value in predicting OR prior to DNG treatment.
Insights
New serum biomarkers, including miR-1307-3p, can predict ovarian reserve restoration after ovarian endometrioma surgery and dienogest treatment. These findings aid in personalized treatment strategies for women undergoing ovarian cystectomy.
Area of Science:
- Gynecology
- Reproductive Endocrinology
- Molecular Biology
Background:
- Ovarian endometrioma (OE) is a common gynecological condition often managed with surgery and hormonal therapy.
- Ovarian cystectomy, a surgical treatment for OE, can negatively impact ovarian reserve (OR).
- Perioperative administration of dienogest (DNG) has shown promise in preserving OR, but patient responses vary.
Purpose of the Study:
- To identify serum microRNAs (miRNAs) as predictive biomarkers for post-operative OR restoration following perioperative DNG treatment.
- To explore the relationship between specific miRNAs and anti-Müllerian hormone (AMH) levels.
Main Methods:
- Serum miRNA sequencing was performed on 27 patients undergoing perioperative DNG treatment for OE.
- Patients were categorized into responder (OR restored) and non-responder groups (n=7 each).
- Candidate miRNAs were identified by comparing expression profiles between groups; qPCR validated key findings.
Main Results:
- miR-370-3p and miR-1307-3p were upregulated in responders, while miR-27b-3p was upregulated in non-responders.
- Pretreatment miRNA values demonstrated high accuracy (AUC > 0.8) in predicting DNG responsiveness.
- qPCR confirmed significant upregulation of miR-1307-3p in responders; miR-139-3p, miR-140-3p, and miR-629-5p were identified as AMH-associated.
Conclusions:
- Specific serum miRNAs, particularly miR-1307-3p, show potential as predictive biomarkers for ovarian reserve restoration after DNG treatment.
- These biomarkers could enable personalized treatment strategies for patients undergoing ovarian cystectomy.
- Further research may elucidate the role of identified miRNAs in AMH regulation and ovarian reserve maintenance.

