Transcriptome Analysis of Linalool-Induced Hypopigmentation in B16 Melanoma Cells

Plant-derived phytochemicals exhibit significant pharmacological potential in chronic diseases, including melanoma. Since hyperactive melanogenesis is closely linked to melanoma progression, targeting this pathway with natural bioactive agents represents a major therapeutic strategy. The plant-derived terpene linalool induces cancer-specific oxidative stress in colon cancer cells, as we have previously reported. Here, we characterized the effects of linalool on B16-F10 melanoma cells to establish a transcriptomic baseline of hypopigmentation networks using phenotypic assays and high-throughput RNA-seq profiling. Non-toxic doses of linalool significantly inhibited melanin synthesis, accompanied by a marked reduction in tyrosinase protein abundance. RNA-seq identified 31 significantly upregulated and 48 significantly downregulated genes (p < 0.05), with PCA and cluster analysis demonstrating a distinct transcriptomic profile. Functional GO enrichment revealed candidate regulatory networks involving lysosomal components, the neurofilament cytoskeleton, and cell-cycle checkpoints. While core melanogenesis transcripts (Mitf, Tyr, Dct) showed only minor, non-significant variations, key stress-adaptation and cell-plasticity regulators (Mir210, Dll1) were significantly suppressed. This profile indicates a state of latent molecular vulnerability, mirroring the oxidative responses in colon cancer cells. Taken together, these findings provide a foundational transcriptomic repository of linalool-responsive networks, uncovering critical candidate pathways that modulate melanin production and antioxidant defenses to guide future functional validation and therapeutic exploration of botanical bioactives in melanoma research.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-10-09
DOI
https://doi.org/10.3390/ijms27208956
Primary Topic
melanin and skin pigmentation
Type
article
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article

Transcriptome Analysis of Linalool-Induced Hypopigmentation in B16 Melanoma Cells

Myra Orlina Villareal, Hiroko Isoda
International Journal of Molecular Sciences
melanin and skin pigmentation
article

Transcriptome Analysis of Linalool-Induced Hypopigmentation in B16 Melanoma Cells

Myra Orlina Villareal, Hiroko Isoda
article en

Abstract

Plant-derived phytochemicals exhibit significant pharmacological potential in chronic diseases, including melanoma. Since hyperactive melanogenesis is closely linked to melanoma progression, targeting this pathway with natural bioactive agents represents a major therapeutic strategy. The plant-derived terpene linalool induces cancer-specific oxidative stress in colon cancer cells, as we have previously reported. Here, we characterized the effects of linalool on B16-F10 melanoma cells to establish a transcriptomic baseline of hypopigmentation networks using phenotypic assays and high-throughput RNA-seq profiling. Non-toxic doses of linalool significantly inhibited melanin synthesis, accompanied by a marked reduction in tyrosinase protein abundance. RNA-seq identified 31 significantly upregulated and 48 significantly downregulated genes (p < 0.05), with PCA and cluster analysis demonstrating a distinct transcriptomic profile. Functional GO enrichment revealed candidate regulatory networks involving lysosomal components, the neurofilament cytoskeleton, and cell-cycle checkpoints. While core melanogenesis transcripts (Mitf, Tyr, Dct) showed only minor, non-significant variations, key stress-adaptation and cell-plasticity regulators (Mir210, Dll1) were significantly suppressed. This profile indicates a state of latent molecular vulnerability, mirroring the oxidative responses in colon cancer cells. Taken together, these findings provide a foundational transcriptomic repository of linalool-responsive networks, uncovering critical candidate pathways that modulate melanin production and antioxidant defenses to guide future functional validation and therapeutic exploration of botanical bioactives in melanoma research.

International Journal of Molecular SciencesVol. 27(20)
University of Tsukuba (JP), Institute of Applied Biochemistry (JP), Sophia University (JP)
Openalex Percentile: Top 16%
melanin and skin pigmentation
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