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Terahertz radiation-induced remodeling of purine metabolism and membrane raft signaling in human melanoma cells

03.27.26 | Xia & He Publishing Inc.

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Terahertz (THz) radiation is increasingly explored for biomedical applications, however, its non-thermal effects on cellular metabolism and regulatory networks remain insufficiently characterized. This study aimed to investigate how 2.3 THz radiation affects metabolic pathways and membrane-associated signaling in human melanoma cells.

SK-MEL-28 melanoma cells were exposed to 2.3 THz radiation for 45 min using the 1st Novosibirsk free-electron laser. Cell viability was assessed by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide and trypan blue assays. Metabolic alterations were detected by targeted metabolomics using liquid chromatography–tandem mass spectrometry. Gene network analysis was performed using the ANDSystem platform to reconstruct gene and protein interaction networks linking altered metabolites to membrane receptors, lipid raft proteins, and signaling pathways. Overrepresentation analysis of biological processes was applied to identify enriched functional categories.

THz exposure did not affect cell viability but induced significant alterations in purine metabolism, pantothenate/CoA biosynthesis, and the pentose phosphate pathway. Network analysis revealed that these metabolic changes were associated with membrane raft reorganization and receptor-mediated signaling involving epidermal growth factor receptor and G-protein subunits. Additional effects were observed in pathways related to chromatin organization and post-translational regulation.

Exposure of SK-MEL-28 melanoma cells to 2.3 THz radiation produces coordinated alterations in metabolic and regulatory networks without affecting cell viability. Metabolomic profiling reveals pronounced modulation of purine metabolism, pantothenate/CoA biosynthesis, and the pentose phosphate pathway, while bioinformatic analysis links these changes to processes of chromatin organization, G-protein–mediated signaling, and post-translational regulation. Gene network reconstruction indicates that lipid raft–associated receptors and enzymes act as central mediators of these responses, suggesting that cellular membrane proteins may serve as sensitive interfaces for THz irradiation perception and transduction. The observed remodeling of nucleotide and energy metabolism suggests an adaptive, non-thermal reprogramming of biochemical pathways, enabling cells to maintain homeostasis under electromagnetic stimulation.

https://www.xiahepublishing.com/1555-3884/GE-2025-00068

The study was recently published in the Gene Expression .

Gene Expression (GE) is an open-access journal. It was launched in 1991 by Chicago Medical School Press, and transferred to Cognizant Communication Corporation in 1994. From August 2022, GE is published by Xia & He Publishing Inc.

GE publishes peer-reviewed and high-quality original articles, reviews, editorials, commentaries, and opinions on its primary research topics including cell biology, molecular biology, genes, and genetics, especially on the cellular and molecular mechanisms of human diseases.

GE has been indexed in Medline (1991-2021), Scopus, Biological Abstracts, Biosis Previews, ProQuest, etc .

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Gene Expression

10.14218/GE.2025.00068

Terahertz Radiation-induced Remodeling of Purine Metabolism and Membrane Raft Signaling in Human Melanoma Cells: A Metabolomic and Gene Network Analysis

26-Jan-2026

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Shelly Zhang
Xia & He Publishing Inc.
service@xiahepublishing.com

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How to Cite This Article

APA:
Xia & He Publishing Inc.. (2026, March 27). Terahertz radiation-induced remodeling of purine metabolism and membrane raft signaling in human melanoma cells. Brightsurf News. https://www.brightsurf.com/news/LDEMJQ68/terahertz-radiation-induced-remodeling-of-purine-metabolism-and-membrane-raft-signaling-in-human-melanoma-cells.html
MLA:
"Terahertz radiation-induced remodeling of purine metabolism and membrane raft signaling in human melanoma cells." Brightsurf News, Mar. 27 2026, https://www.brightsurf.com/news/LDEMJQ68/terahertz-radiation-induced-remodeling-of-purine-metabolism-and-membrane-raft-signaling-in-human-melanoma-cells.html.