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February 26, 2026Nutrients0 citationsOpen Access

Development of a Lipidomics-Based Cell Screening Platform for Indirect Antioxidants Targeting Oxidized Lipid Droplet Formation and Mitochondrial Membrane Abnormality

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YSYuzu ShibataTSToshihiro SakuraiASAkiko Sakurai

Key Points

  • To develop a lipidomics-based cell screening platform for assessing indirect antioxidants' effects on oxidized lipid droplet formation and mitochondrial membrane abnormalities.
  • Developed a lipidomics-based platform using oxidized low-density lipoprotein and human liver-derived C3A cells.
  • Screened indirect antioxidants for their impact on cellular antioxidant enzyme expression.
  • Utilized mass spectrometry and fluorescence microscopy to evaluate lipid changes.
  • oxLDL increased cholesteryl ester hydroperoxides confirming oxidized lipid droplet formation.
  • Quercetin decreased major lipids, particularly triglycerides and triglyceride hydroperoxides.
  • Fluorescence microscopy showed quercetin prevented small oxidized lipid droplet formation and reduced monolysocardiolipin.

Abstract

Background/Objectives: Oxidized lipid droplet formation and cardiolipin (CL) profile abnormality in mitochondrial membranes are associated with metabolic dysfunction-associated steatotic liver disease (MASLD). However, studies on cell models to easily and simultaneously assess the preventive effects on oxidized lipid droplet formation and CL abnormality by indirect antioxidants are limited. Here, we aimed to develop a lipidomics-based cell screening platform to simultaneously evaluate the preventive effects of indirect antioxidants on oxidized lipid droplet formation and mitochondrial membrane lipid abnormalities. Methods: We created a novel lipidomics-based cell screening platform using oxidized low-density lipoprotein (oxLDL) and a human liver-derived cell line (C3A), and screened indirect antioxidants to promote the expression of cellular antioxidant enzymes, preventing oxidized lipid droplet formation. Results: Mass spectrometry revealed that oxLDL increased the levels of cholesteryl ester hydroperoxides. Thus, oxidized lipid droplet formation was confirmed. Three indirect antioxidants (kaempferol, quercetin, and hesperetin) were examined in the lipidomics-based platform. Consequently, quercetin significantly decreased major lipids and lipid hydroperoxide species, particularly triglycerides and triglyceride hydroperoxides with five or more double bonds. Furthermore, fluorescence microscopy revealed that quercetin prevented the formation of small oxidized lipid droplets; it also decreased monolysocardiolipin, which could be associated with mitochondrial dysfunction. Conclusions: Overall, we demonstrated that this method could be useful for screening indirect antioxidants with excellent preventive effects against oxidized lipid droplet formation and CL abnormality by simultaneously analyzing various lipids.

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Cite This Study

Shibata et al. (2026) studied this question.

synapsesocial.com/papers/699f956d1bc9fecf3dab3382https://doi.org/10.3390/nu18050719
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