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February 27, 20260 citations

Unveiling the Role of Vitamin D/VDR in Promoting Endometrial Decidualization.

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JGJing GuoXTXiangming TianHLHailong Liu

Key Points

  • This research aims to understand how vitamin D and its receptor VDR influence endometrial decidualization processes in human endometrial stromal cells.
  • Established an in vitro model using T-HESC and primary HESC cultured with vitamin D.
  • Measured VDR expression using siRNA modulation and analyzed cell morphology through immunofluorescence.
  • Utilized Western blot, qPCR, and ELISA to assess decidualization markers and metabolic enzymes.
  • Evaluated cell proliferation with the CCK-8 method and conducted ChIP-qPCR for VDR binding analysis.
  • CYP27B1 expression significantly increased by Day 4 and peaked on Day 8 during decidualization.
  • High vitamin D concentrations upregulated PRL, IGFBP1, and enhanced E2 and VDR expression.
  • VDR knockdown reduced expression of key markers, while VDR overexpression enhanced them.
  • Vitamin D treatment significantly elevated the expression of PRL, IGFBP1, and other markers on Day 8.

Abstract

Vitamin D's impact on reproductive health, particularly endometrial receptivity, has attracted significant attention. This study investigated the effects of vitamin D and its receptor (VDR) on decidualization in human endometrial stromal cells (HESCs). An in vitro decidualization model was established by culturing immortalized T-HESC or primary HESC in differentiation medium, treated with different concentrations of 1,25(OH)2D. VDR expression was modulated using siRNA, and cell morphology was analyzed by immunofluorescence. Decidualization markers (PRL and IGFBP1), vitamin D metabolic enzymes (CYP27B1 and CYP24A1), and VDR were measured using Western blot, qPCR, and ELISA. Aromatase (CYP19), estrogen receptor (ESR1), and estradiol (E2) expressions were also assessed. Cell proliferation was evaluated using the CCK-8 method. During T-HESC decidualization, CYP27B1 expression significantly increased by Day 4, peaking on Day 8, whereas VDR expression increased progressively, and CYP24A1 levels remained stable. A high concentration of vitamin D significantly upregulated PRL and IGFBP1 transcription, increased CYP19 and VDR expression, elevated E2 and PRL secretion, and promoted ESC proliferation. VDR knockdown inhibited ESC decidualization, reducing PRL, IGFBP1, ESR1, and CYP19 expression, whereas VDR overexpression enhanced these markers. ChIP-qPCR analysis demonstrated that VDR directly binds to the promoter regions of CYP19 and ESR1 in HESC. Vitamin D treatment significantly upregulated the expression of PRL, IGFBP1, CYP27B1, VDR, CYP19, and ESR1 in primary HESC on Day 8 of decidualization. These findings suggest that vitamin D promotes ESC decidualization in a dose- and time-dependent manner via a VDR-mediated mechanism, with estrogen signaling potentially playing a key role.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/69a1355fed1d949a99abf228https://doi.org/10.1155/ije/1712178
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