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RNA-seq of ME-HESC in SRF-deficient vs Normal Conditions

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NIAID Data Ecosystem2026-05-10 收录
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The transcription factor SRF plays known roles in mitogenic cell response and muscle cell development, and potential roles in endometrial stromal decidualization have been reported. After RNAi-based SRF knockdown in menstrual effluent-derived primary human endometrial stromal cells (ME-HESC), SRF-deficient cells exhibited disrupted cytoskeletal remodeling, cell cycle, and extracellular matrix genes. These data show that SRF is important for endometrial stromal cell homeostasis. Primary menstrual effluent-derived human endometrial stromal cells (ME-HESCs) were obtained from deidentified archives that were previously banked after non-invasive isolation from menstrual fluids of healthy volunteers with the NIEHS Clinical Research Unit according to IRB approved, published methods and analyzed by RNA-seq at passage number 6. Cells from three distinct human donors were treated with control non-targeting siRNA or siSRF to analyze the impact of SRF deficiency on the transcriptome.

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2025-09-30
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