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1. Global endometrial DNA methylation analysis reveals insights into mQTL regulation and associated endometriosis disease risk and endometrial function

2. Deep immunophenotyping reveals endometriosis is marked by dysregulation of the mononuclear phagocytic system in endometrium and peripheral blood

3. Transcriptomic analysis supports collective endometrial cell migration in the pathogenesis of adenomyosis

4. Cell types of origin of the cell-free transcriptome

5. The Tabula Sapiens: A multiple-organ, single-cell transcriptomic atlas of humans

6. Whole-Tissue Deconvolution and scRNAseq Analysis Identify Altered Endometrial Cellular Compositions and Functionality Associated With Endometriosis

7. Steroid hormones regulate genome-wide epigenetic programming and gene transcription in human endometrial cells with marked aberrancies in endometriosis.

8. Progestins Related to Progesterone and Testosterone Elicit Divergent Human Endometrial Transcriptomes and Biofunctions.

9. Macrophages display proinflammatory phenotypes in the eutopic endometrium of women with endometriosis with relevance to an infectious etiology of the disease

11. Aberrant Endometrial DNA Methylome and Associated Gene Expression in Women with Endometriosis1

12. Global Transcriptome Abnormalities of the Eutopic Endometrium From Women With Adenomyosis

13. Cryopreservation and recovery of human endometrial epithelial cells with high viability, purity, and functional fidelity

15. Diversity of the Vaginal Microbiome Correlates With Preterm Birth

16. Coculturing human endometrial epithelial cells and stromal fibroblasts alters cell-specific gene expression and cytokine production

18. Global Endometrial DNA Multi-omics Analysis Reveals Insights into mQTL Regulation and Associated Endometriosis Disease Risk

19. The Tabula Sapiens: A multiple-organ, single-cell transcriptomic atlas of humans

21. The Tabula Sapiens: A multiple-organ, single-cell transcriptomic atlas of humans.

22. Deep Immunophenotyping Reveals Endometriosis is Marked by Dysregulation of the Mononuclear Phagocytic System in Endometrium and Peripheral Blood

23. Additional file 7 of Deep immunophenotyping reveals endometriosis is marked by dysregulation of the mononuclear phagocytic system in endometrium and peripheral blood

24. Additional file 4 of Deep immunophenotyping reveals endometriosis is marked by dysregulation of the mononuclear phagocytic system in endometrium and peripheral blood

25. Additional file 5 of Deep immunophenotyping reveals endometriosis is marked by dysregulation of the mononuclear phagocytic system in endometrium and peripheral blood

26. Additional file 3 of Deep immunophenotyping reveals endometriosis is marked by dysregulation of the mononuclear phagocytic system in endometrium and peripheral blood

27. Whole-Tissue Deconvolution and scRNAseq Analysis Identify Altered Endometrial Cellular Compositions and Functionality Associated With Endometriosis

28. Whole-tissue deconvolution and scRNAseq analysis identify altered endometrial cellular compositions and functionality associated with endometriosis

30. Whole-Tissue Deconvolution and scRNAseq Analysis Identify Altered Endometrial Cellular Compositions and Functionality Associated With Endometriosis.

31. Cytotrophoblast induction of arterial apoptosis and lymphangiogenesis in an in vivo model of human placentation

36. Developmental response to hypoxia

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