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December 2, 2025Cancer Cell International2 citationsOpen Access

Elevated expression and secretion of TGF-α contribute to Temozolomide resistance in human glioblastoma cells

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ILI‐Neng LeeCHCheng HuangJCJui‐Chieh Chen

Key Points

  • TGF-α secretion increases significantly in glioblastoma cells after treatment with Temozolomide, contributing to drug resistance.
  • RNA-Seq and bioinformatics analyses reveal that Temozolomide downregulates most genes while activating pathways linked to cytokines and growth factors.
  • Knockdown of TGF-α restores sensitivity to Temozolomide in a mouse xenograft model, indicating its potential as a drug resistance biomarker.
  • Tissue analysis identifies higher levels of TGF-α in glioblastoma, suggesting its role as a therapeutic target for new treatments.

Abstract

Glioblastoma multiforme (GBM) is a highly aggressive brain tumor often treated with Temozolomide (TMZ). Research reveals that secretory substances and receptor-activated signaling may contribute to TMZ resistance in GBM cells. RNA-Seq and bioinformatics analyses reveal that TMZ treatment downregulates most genes, particularly those involved in cell structure and metabolism, while activating genes linked to secretory substances like cytokines, chemokines, and growth factors. Antibody array analysis identified a significant increase in TGF-α secretion after TMZ treatment, which also triggered its associated pathways. Moreover, the remarkable secretion of TGF-α also triggered the activation of its associated pathways. Notably, a marked increase in TGF-α expression was observed in TMZ-resistant cells. TGF-α knockdown restored TMZ sensitivity in a mouse xenograft model. Tissue analysis revealed significantly higher TGF-α levels in GBM, suggesting its potential as a drug resistance biomarker and target for new therapies.

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Cite This Study

Lee et al. (2025) studied this question.

synapsesocial.com/papers/692e3d8d6c9b3ab28c187639https://doi.org/10.1186/s12935-025-04050-z
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