A novel PRR15-TGF-β axis in decidual microenvironment dysfunction associated with advanced maternal age

Hui Luo , Ruizhi Feng , Jie zheng , Ming Zhang

Clinical and Translational Discovery ›› 2026, Vol. 6 ›› Issue (1) : e70118

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Clinical and Translational Discovery ›› 2026, Vol. 6 ›› Issue (1) :e70118 DOI: 10.1002/ctd2.70118
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A novel PRR15-TGF-β axis in decidual microenvironment dysfunction associated with advanced maternal age
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Hui Luo, Ruizhi Feng, Jie zheng, Ming Zhang. A novel PRR15-TGF-β axis in decidual microenvironment dysfunction associated with advanced maternal age. Clinical and Translational Discovery, 2026, 6(1): e70118 DOI:10.1002/ctd2.70118

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References

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Tinelli A, Andjić M, Morciano A, et al. Uterine aging and reproduction: dealing with a puzzle biologic topic. Int J Mol Sci. 2023; 25:322.

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Vento-Tormo R, Efremova M, Botting RA, et al. Single-cell reconstruction of the early maternal-fetal interface in humans. Nature. 2018; 563: 347-353.

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Xie H, Lu Y, Zhang A, et al. Single-cell transcriptome analyses reveal disturbed decidual microenvironment in women of advanced maternal age. Clin Transl Med. 2025; 15:e70541.

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Pathare ADS, Loid M, Saare M, et al. Endometrial receptivity in women of advanced age: an underrated factor in infertility. Hum Reprod Update. 2023; 29: 773-793.

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Garcia-Alonso L, Handfield LF, Roberts K, et al. Mapping the temporal and spatial dynamics of the human endometrium in vivo and in vitro. Nat Genet. 2021; 53: 1698-1711.

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Yang M, Ong J, Meng F, et al. Spatiotemporal insight into early pregnancy governed by immune-featured stromal cells. Cell. 2023; 186: 4271-4288.

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2026 The Author(s). Clinical and Translational Discovery published by John Wiley & Sons Australia, Ltd on behalf of Shanghai Institute of Clinical Bioinformatics.

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