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Research Abstract In Vitro Study

Perillaldehyde Attenuates Insulin Resistance and High Glucose-Induced Ferroptosis in Trophoblast Cells via Regulation of PTPN1/Akt/Foxo1 Signaling Pathway.

Wang X, Lu Y, Wang S, Wang X, Yang S, Zhao C
Reproductive sciences (Thousand Oaks, Calif.)
Aug 28, 2026
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Abstract

<p>Ferroptosis and insulin resistance (IR) play crucial roles in the development of gestational diabetes mellitus (GDM). This study aims to analyze the effects of perillaldehyde (PAE) on ferroptosis and IR in human trophoblast cells, as well as its underlying mechanism in these effects. In this study, human trophoblasts (HTR-8/SVneo cells) treated with high glucose or in combination with insulin were used as in vitro models of GDM. The protective effects of PAE were evaluated by detecting insulin resistance and ferroptosis. GSE datasets (GSE154414 and GSE54157), SwissTargetPrediction, and GeneCards were used for gene target prediction. Results showed that PAE mitigated the decrease in HTR-8/SVneo cell viability caused by HG treatment. PAE exerted a protective effect against HG-triggered ferroptosis in HTR-8/SVneo cells by reducing ROS, Fe2+, and MDA levels, while increasing GSH and GPX4 levels and SOD activity. PAE alleviated IR in HTR-8/SVneo cells by increasing IRS1 and GLUT4 mRNA levels and glucose uptake, while decreasing IGF-1 mRNA level. PAE inhibited the expression of PTPN1 in HTR-8/SVneo cells with HG treatment. PTPN1 overexpression reversed the effect of PAE on ferroptosis in HTR-8/SVneo cells with HG treatment. PTPN1 overexpression counteracted the effects of PAE on IR in HTR-8/SVneo cells. PAE activated the Akt/Foxo signaling pathway by downregulating PTPN1 in HTR-8/SVneo cells under HG conditions. Akt/Foxo1 activation counteracted the effects of PTPN1 overexpression on ferroptosis and IR in HTR-8/SVneo cells with HG treatment. In conclusion, PAE attenuated IR and high glucose-triggered ferroptosis in trophoblast cells via regulation of the PTPN1/Akt/Foxo1 signaling pathway.</p>

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