Cannabis compound alters pregnancy-critical cellular processes

The impact of cannabigerol exposure on human endometrial stromal cells decidualization.

Toxicology • • Moderately Relevant
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AI Summary

This research investigates how cannabigerol (CBG), a non-intoxicating cannabinoid found in cannabis, affects the process of decidualization—the transformation of endometrial cells necessary for successful pregnancy. Using both cell cultures and primary human endometrial stromal cells, researchers exposed these cells to CBG and measured changes in key genes and proteins involved in pregnancy preparation. The study found that CBG reduced IL-6 secretion during early decidualization, suggesting it may interfere with normal inflammatory signaling crucial for embryo implantation.

While CBG didn't suppress the major decidual marker genes in primary cells—a potentially positive finding—the cannabinoid did alter cellular metabolism, immune responses, and tissue remodeling pathways in measurable ways. Gene sequencing revealed 34 differentially expressed genes primarily affecting mitochondrial function, lipid synthesis, and inflammation regulation. These metabolic and immune changes occurred despite the preservation of traditional pregnancy markers, raising concerns about whether these alterations could impact pregnancy success in real-world scenarios.

The findings suggest that cannabis exposure during pregnancy planning or early pregnancy could disrupt the biological foundations of placental development, even without completely shutting down major pregnancy genes. This is particularly significant for women considering cannabis use or those currently using cannabis products, as it reveals that CBG's effects on reproductive tissue are more nuanced than simple on/off effects—subtle metabolic changes might accumulate into meaningful pregnancy complications. Further research is needed to understand whether these cellular changes translate to actual pregnancy risks in humans.

📄 Original Abstract

Decidualization denotes the inflammatory reprogramming of endometrial stromal cells (EnSC) into progesterone-dependent decidual cells (DC), a process essential for embryo implantation and placenta formation. Decidualization also gives rise to progesterone-resistant decidual-like senescent cells (dSC), involved in extracellular matrix (ECM) remodelling and menstruation. Cannabigerol (CBG) is a non-psychotropic phytocannabinoid present in cannabis-derived products, whose impact on endometrial function remains poorly understood. The effects of CBG on decidualization were studied using an immortalized human endometrial stromal cell line (St-T1b) and primary EnSC. Cell viability was assessed following exposure to CBG (1-10µM) during decidualization induction. CBG (2µM) was used to evaluate its impact on decidual marker genes expression, IL-6 secretion, and transcriptomic changes (RNA-Seq). CBG inhibited the induction of the canonical decidual marker genes PRL and IGFBP1 in differentiating St-T1b cells, while this repression was not observed in decidualizing primary EnSC. Also, in these cells, CBG did not affect progesterone-dependent regulation of SCARA5 or DIO2, nor the expression of IL1RL1 and CLU, marker genes of anti-inflammatory DC and pro-inflammatory dSC, respectively. However, IL-6 secretion was reduced during the initial pro-inflammatory phase of decidualization, suggesting alterations in the cellular reprogramming of EnSC. RNA-Seq analysis identified 34 differentially expressed genes mostly associated with mitochondrial activity, lipid biosynthesis, inflammatory response and ECM remodelling. Although CBG did not disrupt canonical decidual markers in primary cells, the modulation of DC metabolism, ECM remodelling, and inflammatory response may constitute a significant risk factor for adverse pregnancy outcome.

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