Related Experiment Video
Updated: Dec 26, 2025

A Tissue Culture Model of Estrogen-producing Primary Bovine Granulosa Cells
Published on: September 6, 2018
Paraben concentrations found in human body fluids do not exert steroidogenic effects in human granulosa primary cell
Elena Herrera-Cogco1, Bruno López-Bayghen1,2, Dinorah Hernández-Melchor1,2
1Departamento de Toxicología, Centro de Investigación de Estudios Avanzados del IPN, México City, México.
Abstract:
In cosmetics and food products, parabens are widely used as antimicrobial agents. Reports have suggested that parabens may be linked to infertility, owing to their effects on basal steroidogenesis properties or their capacity to inflict mitochondrial damage. Despite growing concerns about parabens as endocrine disruptors, it is unclear whether they affect any of these actions in humans, particularly at environmentally relevant concentrations. In this work, an in vitro primary culture of human granulosa cells was used to evaluate steroidogenesis, based on the assessment of progesterone production and regulation of critical steroidogenic genes: CYP11A1, HSD3B1, CYP19A1, and HSD17B1. The effects of two commercially relevant parabens, methylparaben (MPB) and butylparaben (BPB), were screened. Cells were exposed to multiple concentrations ranging from relatively low (typical environmental exposure) to relatively high. The effect was assessed by the parabens' ability to modify steroidogenic genes, progesterone or estradiol production, and on mitochondrial health, by evaluating mitochondrial activity as well as mtDNA content. Neither MPB nor BPB showed any effect over progesterone production or the expression of genes controlling steroid production. Only BPB affected the mitochondria, decreasing mtDNA content at supraphysiological concentrations (1000 nM). Prolonged exposure to these compounds produced no effects in neither of these parameters. In conclusion, neither MPB nor BPB significantly affected basal steroidogenesis in granulosa cells. Although evidence supporting paraben toxicity is prevalent, here we put forth evidence that suggests that parabens do not affect basal steroidogenesis in human granulosa cells.
Insights
Parabens, widely used in cosmetics and food, were investigated for their effects on human granulosa cell steroidogenesis. This study found neither methylparaben nor butylparaben significantly impacted progesterone production or key steroidogenic genes.
Area of Science:
- Endocrinology
- Toxicology
- Cell Biology
Background:
- Parabens are common antimicrobial agents in cosmetics and food.
- Concerns exist regarding parabens as endocrine disruptors affecting fertility via steroidogenesis or mitochondrial damage.
- The impact of environmentally relevant paraben concentrations on human reproductive cells remains unclear.
Purpose of the Study:
- To investigate the effects of methylparaben (MPB) and butylparaben (BPB) on human granulosa cell steroidogenesis.
- To assess the impact of parabens on progesterone and estradiol production.
- To evaluate paraben effects on mitochondrial health and gene expression related to steroidogenesis.
Main Methods:
- Primary culture of human granulosa cells exposed to MPB and BPB.
- Assessment of progesterone and estradiol production.
- Analysis of steroidogenic gene expression (CYP11A1, HSD3B1, CYP19A1, HSD17B1).
- Evaluation of mitochondrial activity and mtDNA content.
Main Results:
- Neither MPB nor BPB affected progesterone production or steroidogenic gene expression.
- Butylparaben (BPB) decreased mitochondrial DNA (mtDNA) content only at supraphysiological concentrations.
- Prolonged exposure to MPB and BPB did not yield significant effects on the measured parameters.
Conclusions:
- MPB and BPB do not significantly affect basal steroidogenesis in human granulosa cells at tested concentrations.
- While BPB showed mitochondrial effects at high doses, overall evidence suggests parabens do not disrupt basal steroidogenesis in these cells.
- Findings contribute to understanding the safety of parabens concerning reproductive endocrine function.

