4.4 Article

Global gene expression analysis reveals a subtle effect of DEHP in human granulosa cell line HGrC1

Journal

REPRODUCTIVE TOXICOLOGY
Volume 120, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.reprotox.2023.108452

Keywords

DEHP; Human granulosa cells HGrC1; ABCA1; SREBP-1; Progesterone

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This study examined the effects of different concentrations of DEHP exposure on human granulosa cells. The results showed that low concentration did not affect gene expression, while high concentration only affected the expression of nine genes. Despite these changes, progesterone production was not affected in both low and high concentration DEHP-exposed cells. Overall, this study suggests that acute exposure to low concentration of DEHP does not compromise the function of human granulosa cells, while high concentration only causes subtle effects. The identified nine novel targets of high-dose DEHP require further investigation for their role and importance in DEHP-exposed human granulosa cells.
Di(2-ethylhexyl) phthalate (DEHP) is an endocrine disruptor that exerts anti-steroidogenic effects in human granulosa cells; however, the extent of this effect depends on the concentration of DEHP and granulosa cell models used for exposure. The objective of this study was to identify the effects of low- and high-dose DEHP exposure in human granulosa cells. We exposed human granulosa cell line HGrC1 to 3 nM and 25 & mu;M DEHP for 48 h. The whole genome transcriptome was analyzed using the DNBSEQ sequencing platform and bioinformatics tools. The results revealed that 3 nM DEHP did not affect global gene expression, whereas 25 & mu;M DEHP affected the expression of only nine genes in HGrC1 cells: ABCA1, SREBF1, MYLIP, TUBB3, CENPT, NUPR1, ASS1, PCK2, and CTSD. We confirmed the downregulation of ABCA1 mRNA and SREBP-1 protein (encoded by the SREBF1 gene), both involved in cholesterol homeostasis. Despite these changes, progesterone production remained unaffected in low- and high-dose DEHP-exposed HGrC1 cells. The high concentration of DEHP decreased the levels of ABC1A mRNA and SREBP-1 protein and prevented the upregulation of STAR, a protein involved in progesterone synthesis, in forskolin-stimulated HGrC1 cells; however, the observed changes were not sufficient to alter progesterone production in forskolin-stimulated HGrC1 cells. Overall, this study suggests that acute exposure to low concentration of DEHP does not compromise the function of HGrC1 cells, whereas high concentration causes only subtle effects. The identified nine novel targets of high-dose DEHP require further investigation to determine their role and importance in DEHP-exposed human granulosa cells.

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