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June 1, 20261 citations

Tomato Polyphenols Protect Human Red Blood Cells from Mercury-Induced Oxidative Stress and Phosphatidylserine Exposure

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CMC. MorielloNAN. AlessioRFR. Finamore

Key Points

  • The aim is to evaluate the protective effects of tomato polyphenolic extracts against mercury-induced oxidative stress in human red blood cells.
  • Investigated two tomato cultivars (Piccadilly and Piennolo) for their antioxidant effects against HgCl2 exposure in RBCs.
  • Assessed reactive oxygen species production, lipid peroxidation, and glutathione levels after pretreatment with tomato extracts.
  • Chemical characterization determined the antioxidant capacities and phenolic content of each extract.
  • Tomato extracts significantly reduced ROS production and lipid peroxidation in RBCs exposed to HgCl2 (P<0.05).
  • Pretreatment restored intracellular glutathione levels and decreased methemoglobin formation (P<0.01).
  • Both extracts reduced phosphatidylserine externalization, indicating preserved membrane function in oxidatively stressed RBCs.

Abstract

Oxidative stress plays a central role in the development of cardiovascular diseases (CVDs) and is strongly influenced by environmental toxicants such as heavy metals. Mercury (Hg) is a well-known pro-oxidant agent capable of disrupting cellular redox homeostasis, pro-moting reactive oxygen species (ROS) generation, and inducing structural and functional alterations in circulating blood cells. In particular, erythrocytes (RBC) are highly suscep-tible to oxidative damage due to their continuous exposure to oxygen and limited antiox-idant repair mechanisms. In this study, we investigated the protective effects of polyphe-nolic extracts obtained from two tomato (Solanum lycopersicum) cultivars, Piccadilly and Piennolo, against HgCl2-induced oxidative stress in human RBC. Chemical characteriza-tion revealed that Piennolo extracts contained higher levels of total polyphenols, flavo-noids, and ortho-diphenols compared with Piccadilly samples. Despite these differences, both extracts showed comparable antioxidant capacity. In RBC exposed to HgCl2, tomato extracts significantly reduced ROS production, lipid peroxidation (TBARS), methemoglo-bin formation, and sulfhydryl depletion, while restoring intracellular glutathione levels. Importantly, pretreatment with the extracts markedly decreased phosphatidylserine ex-ternalization, indicating preservation of membrane phospholipid asymmetry and a re-duction in the procoagulant phenotype induced by oxidative stress. Overall, these find-ings suggest that bioactive compounds present in polyphenol-rich tomato extracts exert protective effects on RBC through antioxidant and membrane-stabilizing mechanisms

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Cite This Study

Moriello et al. (2026) studied this question.

synapsesocial.com/papers/6a1d228d02fbce91306383c5https://doi.org/10.3390/cimb48060567
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