Temporal Regulation of UVA-Induced Ferroptosis-Associated Injury in Keratinocytes

Ferroptosis contributes to ultraviolet (UV)-induced epidermal injury, but whether circadian state modifies keratinocyte susceptibility remains unclear. We integrated human epidermal transcriptomic analyses with functional experiments in HaCaT keratinocytes to compare UVA- and UVB-induced ferroptosis-associated responses and assess their temporal regulation. Both wavelengths reduced cell viability and increased reactive oxygen species, lipid peroxidation, and intracellular Fe2+ accumulation; ferrostatin-1 provided partial protection. UVB reduced xCT and GPX4 and showed a proteasome-sensitive component of GPX4 loss, whereas UVA predominantly reduced GPX4 without detectably altering xCT. Human epidermal transcriptomes showed heterogeneous cross-sectional associations among circadian, oxidative-stress, and ferroptosis-related genes, while longitudinal profiles revealed positive temporal coupling between NR1D1-associated signals and GPX4. In synchronized HaCaT cells, ARNTL and NR1D1 displayed 24 h rhythmicity, whereas GPX4 and SLC7A11 did not meet the prespecified rhythmicity criterion. Nevertheless, UVA-induced cytotoxicity, oxidative stress, lipid peroxidation, and GPX4 loss varied across post-synchronization time points and were greatest at 24 h. SR8278 partially preserved GPX4 abundance and attenuated UVA-induced loss of viability, reactive oxygen species accumulation, and lipid peroxidation, without significantly affecting Fe2+ accumulation. These findings associate circadian state with temporal variation in UVA-induced ferroptosis susceptibility and implicate the broader clock-redox system rather than rhythmic expression of individual ferroptosis effectors.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-10-09
DOI
https://doi.org/10.3390/ijms27208947
Primary Topic
Ferroptosis and cancer prognosis
Type
article
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article

Temporal Regulation of UVA-Induced Ferroptosis-Associated Injury in Keratinocytes

Zirun Wang, Ying Xie, Ping Wang, Ren Dong et al.
International Journal of Molecular Sciences
Ferroptosis and cancer prognosis
article

Temporal Regulation of UVA-Induced Ferroptosis-Associated Injury in Keratinocytes

Zirun Wang, Ying Xie, Ping Wang, Ren Dong, Xiang Li, Qianxian Yin
article en

Abstract

Ferroptosis contributes to ultraviolet (UV)-induced epidermal injury, but whether circadian state modifies keratinocyte susceptibility remains unclear. We integrated human epidermal transcriptomic analyses with functional experiments in HaCaT keratinocytes to compare UVA- and UVB-induced ferroptosis-associated responses and assess their temporal regulation. Both wavelengths reduced cell viability and increased reactive oxygen species, lipid peroxidation, and intracellular Fe2+ accumulation; ferrostatin-1 provided partial protection. UVB reduced xCT and GPX4 and showed a proteasome-sensitive component of GPX4 loss, whereas UVA predominantly reduced GPX4 without detectably altering xCT. Human epidermal transcriptomes showed heterogeneous cross-sectional associations among circadian, oxidative-stress, and ferroptosis-related genes, while longitudinal profiles revealed positive temporal coupling between NR1D1-associated signals and GPX4. In synchronized HaCaT cells, ARNTL and NR1D1 displayed 24 h rhythmicity, whereas GPX4 and SLC7A11 did not meet the prespecified rhythmicity criterion. Nevertheless, UVA-induced cytotoxicity, oxidative stress, lipid peroxidation, and GPX4 loss varied across post-synchronization time points and were greatest at 24 h. SR8278 partially preserved GPX4 abundance and attenuated UVA-induced loss of viability, reactive oxygen species accumulation, and lipid peroxidation, without significantly affecting Fe2+ accumulation. These findings associate circadian state with temporal variation in UVA-induced ferroptosis susceptibility and implicate the broader clock-redox system rather than rhythmic expression of individual ferroptosis effectors.

International Journal of Molecular SciencesVol. 27(20)
Hunan Normal University (CN)
Openalex Percentile: Top 12%
Ferroptosis and cancer prognosis
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Temporal Regulation of UVA-Induced Ferroptosis-Associated Injury in Keratinocytes — Zirun Wang, Ying Xie, et al. · International Journal of Molecular Sciences (2026) | TGRS Research Map | TGRS