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Biology of Reproduction· 2026Q1

Progesterone regulates lipid synthesis and secretion in bovine uterine epithelial cells

Arpna Sharma, Diego Hernández-Saavedra, Matthew Dean

Short summary

Progesterone treatment of bovine uterine epithelial cells (BUTE) significantly increased 130 lipid species in conditioned media and altered 53 lipid species within the cells, including increases in phosphatidylcholines, oxidized triglycerides, and ether triglycerides.

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Key points

  • Progesterone increased 130 lipid species in conditioned media from BUTE cells, including phosphatidylcholines and triglycerides.
  • Progesterone altered 53 lipid species within BUTE cells, increasing intracellular triglyceride levels and lipid droplets.
  • Lipid storage and esterification enzymes (LPIN1, DGAT2) were significantly higher in bovine uterine glandular epithelium on day 11 of the cycle compared to day 1.
  • These findings suggest progesterone stimulates lipid synthesis and secretion by the uterine epithelium during high progesterone periods.

AI-generated from the title and abstract; the full text is not read.

Abstract

Abstract Uterine secretions consist of a mixture of nutrients that support the growth of the implanted embryo. Our previous data showed that progesterone increased NADPH production in bovine uterine epithelial (BUTE) cells, leading us to hypothesize that progesterone modulates lipid synthesis and secretion. R. Untargeted lipidomics of control and progesterone-treated (10 μM) BUTE cells and conditioned media detected 1,607 lipid species across 14 distinct lipid subclasses. In conditioned media, progesterone significantly decreased 3 lipid species. Conversely, progesterone increased the levels of 130 lipid species, increasing the concentrations of phosphatidylcholines, oxidized triglycerides, and ether triglycerides. Unbiased lipid clustering analysis in the BUTE cells showed that progesterone produced widespread lipid alterations, significantly increasing 34 and decreasing 19 lipid species. This was validated in BUTE cells in vitro, whereby progesterone increased intracellular triglyceride levels and lipid droplets. Immunohistochemistry of endometrial biopsies collected from the cow uterus on days 1 and 11 of the cycle showed that the lipid storage and esterification enzymes LPIN1 and DGAT2 were significantly higher in the glandular epithelium on day 11. These results suggest that progesterone increases lipid synthesis and secretion by the uterine epithelium when progesterone concentrations are high, such as in the luteal phase or early pregnancy.

The authors' abstract, as published at the source. Biology of Reproduction, 2026 · DOI ↗

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Field: Agronomy and Crop Science

Agronomy and Crop ScienceAgricultural and Biological Sciences