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May 12, 2026Ecotoxicology and Environmental Safety2 citationsOpen Access

Potential role of miR-128–1 modulating antioxidant NRF2 pathway in linking acrylamide exposure with type 2 diabetes risk: Insight from epidemiological and toxicological evidence

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ZHZhiying HuoJSJiahao SongLFLieyang Fan

Key Points

  • To investigate the role of miR-128-1 in linking acrylamide exposure to type 2 diabetes risk through modulation of the NRF2 pathway.
  • Analyzed urine acrylamide exposure biomarkers and plasma miR-128-1 in 482 Chinese adults using generalized linear models.
  • Conducted toxicological experiments on INS-1 cells with acrylamide and miR-128-1 mimic/inhibitor to assess NRF2 pathway modulation.
  • Mediation analysis to evaluate miR-128-1's role in acrylamide-mediated effects on type 2 diabetes.
  • Acrylamide exposure biomarkers positively correlated with miR-128-1 (β-coefficients: 0.63–1.45; P < 0.05) and with T2D (odds ratio: 1.42–4.60; P < 0.05).
  • MiR-128-1 was positively associated with T2D (odds ratio: 1.34; P < 0.05) and mediated 18.39–24.54% of the ACR-T2D relationship.
  • Acrylamide treatment in INS-1 cells led to NRF2 pathway activation, increased oxidative stress, and a dose-dependent decrease in glucose-stimulated insulin secretion.

Abstract

Role of miR-128–1, an emerging therapeutic target of type 2 diabetes (T2D) and a targeted posttranscriptional suppressor of the antioxidant master nuclear factor erythroid 2-related factor 2 (NRF2), in linking acrylamide (ACR), a worldwide-concerning and lifelong-exposed pollutant, with T2D is unclear and warrants urgent elucidation. Epidemiologically, 482 Chinese adults from Wuhan-Zhuhai cohort were incorporated to evaluate the relationships among urinary ACR exposure biomarkers (N-acetyl-S-2-carbamoylethyl- L -cysteine AAMA, N-acetyl-S-2-carbamoyl-2-hydroxyethyl- L -cysteine GAMA, AAMA+GAMA ΣUAAM, and GAMA/AAMA), plasma miR-128–1, and prevalent T2D by generalized-linear-models and the mediation role of miR-128–1 in ACR-T2D relationships by mediation analyses. Toxicologically, INS-1 cells were treated with ACR and miR-128–1 mimic/inhibitor for 24 h to explore the mechanism of miR-128–1 modulating antioxidant NRF2 pathway in ACR-related oxidative damage of β-cell function characterized by glucose-stimulated insulin secretion (GSIS). We uncovered linear positive relationships of ACR exposure biomarkers with miR-128–1 (β-coefficients: 0.63–1.45; P < 0.05) and T2D (odds ratio: 1.42–4.60; P < 0.05) and miR-128–1 with T2D (odds ratio: 1.34; P < 0.05) with elevated miR-128–1 mediated 18.39–24.54% of the ACR-T2D relationships. INS-1 cells treated with ACR showed NRF2 pathway activation and dose-dependent reduction in GSIS while elevations in miR-128–1 and oxidative stress (reactive oxygen species and malondialdehyde) levels. Compared to INS-1 cells treated with ACR+negative control, those treated with ACR+miR-128–1 mimic/inhibitor exhibited reduced/elevated mRNA and protein levels of NRF2 and downstream antioxidant factors, increased/decreased oxidative stress levels, and reduced/elevated GSIS. Overall, miR-128–1 might play a potential mechanism role in linking ACR exposure and T2D risk, possibly involving targeted suppression of antioxidant NRF2 pathway and oxidative impairment of β-cell function. • ACR exposure was positively associated with miR-128–1 and T2D in general adults. • MiR-128–1 was positively linked with T2D and mediated ACR-T2D association. • ACR induced miR-128–1 upregulation and β-cell dysfunction in INS-1 cells. • MiR-128–1 targetedly suppressed the antioxidant NRF2 pathway. • MiR-128–1 mimic/inhibitor worsened/mitigated ACR-induced oxidative stress and β-cell dysfunction.

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Cite This Study

Huo et al. (2026) studied this question.

synapsesocial.com/papers/6a02c2fdce8c8c81e9640546https://doi.org/10.1016/j.ecoenv.2026.120234
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