Regional Analysis of the Immune Microenvironment in Human Endometrium

Author:

Yang Lingtao123,Su Yiyi34,Cai Songchen12,Ma Huan5,Yang Jing6,Xu Mingjuan12,Li Yuye12,Huang Chunyu12ORCID,Zeng Yong12ORCID,Li Qiyuan6,Feng Mingqian4,Li Hanjie3,Diao Lianghui12ORCID

Affiliation:

1. Shenzhen Key Laboratory of Reproductive Immunology for Peri‐implantation Shenzhen Zhongshan Institute for Reproductive Medicine and Genetics Shenzhen Zhongshan Obstetrics & Gynecology Hospital (formerly Shenzhen Zhongshan Urology Hospital) Shenzhen China

2. Guangdong Engineering Technology Research Center of Reproductive Immunology for Peri‐implantation Shenzhen China

3. Key Laboratory of Quantitative Synthetic Biology Shenzhen Institute of Synthetic Biology Shenzhen Institutes of Advanced Technology Chinese Academy of Sciences Shenzhen China

4. College of Life Science and Technology Huazhong Agricultural University Wuhan China

5. School of Medicine The Chinese University of Hong Kong Shenzhen China

6. Department of Hematology National Institute for Data Science in Health and Medicine School of Medicine Xiamen University Xiamen China

Abstract

ABSTRACTProblemEndometrial immune cells are essential for maintaining homeostasis and the endometrial receptivity to embryo implantation. Understanding regional variations in endometrial immune cell populations is crucial for comprehending normal endometrial function and the pathophysiology of endometrial disorders. Despite previous studies focusing on the overall immune cell composition and function in the endometrium, regional variations in premenopausal women remain unclear.Method of StudyEndometrial biopsies were obtained from four regions (anterior, posterior, left lateral, and right lateral) of premenopausal women undergoing hysteroscopy with no abnormalities. A 15‐color human endometrial immune cell‐focused flow cytometry panel was used for analysis. High‐dimensional flow cytometry combined with a clustering algorithm was employed to unravel the complexity of endometrial immune cells. Additionally, multiplex immunofluorescent was performed for further validation.ResultsOur findings revealed no significant variation in the distribution and abundance of immune cells across different regions under normal conditions during the proliferative phase. Each region harbored similar immune cell subtypes, indicating a consistent immune microenvironment. However, when comparing normal regions to areas with focal hemorrhage, significant differences were observed. An increase in CD8+ T cells highlights the impact of localized abnormalities on the immune microenvironment.ConclusionsOur study demonstrates that the endometrial immune cell landscape is consistent across different anatomical regions during the proliferative phase in premenopausal women. This finding has important implications for understanding normal endometrial function and the pathophysiology of endometrial disorders.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Guangdong Province

Publisher

Wiley

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