ARTICLE
31 August 2026

Research on the Mechanism of Bionic Physical Microenvironment Combined with Plant-derived Signaling Molecules in Remodeling the Female Reproductive Tract Microbiota

Shujuan Lu1 Yan Zhang2
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1 Taosihao Health Center, Tumote Left Banner, Hohhot 010100, Inner Mongolia Autonomous Region
2 Department of Obstetrics and Gynecology, People’s Hospital of Tumote Left Banner, Hohhot 010100, Inner Mongolia Autonomous Region
© 2026 by the Author(s). Licensee Whioce Publishing, Singapore. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution 4.0 International License ( https://creativecommons.org/licenses/by/4.0/ )
Abstract

Objective: To explore the remodeling effect of a bionic physical microenvironment combined with plant-derived signaling molecules on the female reproductive tract microbiota. Methods: A total of 63 patients with female reproductive tract inflammation admitted to our hospital from June 2021 to June 2024 were selected and divided into an experimental group (32 patients, treated with bionic physical microenvironment combined with plant-derived signaling molecules) and a control group (31 patients, treated with Western medicine). The therapeutic effects of the two groups were compared. Results: After treatment, the clinical effectiveness rate, clinical symptom score, and quality of life score in the experimental group were significantly higher than those in the control group, while the incidence of adverse reactions between the two groups showed no significant difference. Conclusion: The treatment of female reproductive tract inflammatory diseases using a bionic physical microenvironment combined with plant-derived signaling molecules is highly effective, effectively alleviates related symptoms, improves patients’ future quality of life, and exhibits relatively high safety.

Keywords
Bionic physical microenvironment
Plant-derived signaling molecules
Female reproductive tract inflammation
Remodeling of female reproductive tract microbiota
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Conflict of interest
The authors declare no conflict of interest.
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