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Fear stress promotes glioma progression through inhibition of ferroptosis by enhancing FSP1 stability

  • Chaojie Bu [1] ; Sen Hu [1] ; Jinliang Yu [1] ; Nianxuan Li [1] ; Jianjun Gu [1] ; Zhiyuan Sheng [1] ; Zhaoyue Yan [1] ; Xingyao Bu [1]
    1. [1] Zhengzhou University

      Zhengzhou University

      China

  • Localización: Clinical & translational oncology, ISSN 1699-048X, Vol. 25, Nº. 5 (May), 2023, págs. 1378-1388
  • Idioma: inglés
  • Texto completo no disponible (Saber más ...)
  • Resumen
    • Purpose Patients diagnosed with cancer often suffer from emotional stressors, such as anxiety, depression, and fear of death. However, whether fear stress could influence the glioma progression is still unclear.

      Methods Xenograft glioma animal models were established in nude mice. Tumor-bearing mice were subjected to fear stress by living closely with cats and then their depressive behaviors were measured using an open field test. Hematoxylin and eosin staining, the TUNEL staining and immunochemical staining were used to detect the histopathological changes of tumor tissues. Gene expression profiling was used to screen the aberrant gene expression. Methylated RNA immunoprecipitation was used to identify the RNA m6A level. Gene expression was measured by western blot and real-time PCR, respectively.

      Results We found that fear stress promoted glioma tumor progression in mice. Fear stress-induced upregulation of METTL3 and FSP1, increased m6A level of glioma tumor tissues, and inhibited ferroptosis in glioma progression, which were reversed by knockdown of METTL3 and FSP1 in vivo. In addition, we found that when iFSP1 (a ferroptosis inducer by targeting inhibition of FSP1) was introduced to glioma cells, the cells viability of glioma significantly was decreased and ferroptosis was enhanced in glioma cells.

      Conclusions Fear stress-induced upregulation of METTL3 stabilized FSP1 mRNA by m6A modification, leading to tumor progression through inhibition of ferroptosis. Our study provides a new understanding of psychological effects on glioma development, and new insights for glioma therapy.


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