Antitumor activity of pluripotent cell-engineered vaccines and their potential to treat lung cancer in relation to different levels of irradiation

Cancer stem cells (CSCs) are critical for tumor initiation/maintenance and recurrence or metastasis, so they may serve as a potential therapeutic target. However, CSC-established multitherapy resistance and immune tolerance render tumors resistant to current tumor-targeted strategies. To address thi...

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Veröffentlicht in:OncoTargets and therapy 2016-01, Vol.9, p.1425-1436
Hauptverfasser: Zhang, Yan-Na, Duan, Xiao-Gang, Zhang, Wen-Hui, Wu, Ai-Ling, Yang, Huan-Huan, Wu, Dong-Ming, Wei, Yu-Quan, Chen, Xian-Cheng
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Sprache:eng
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Zusammenfassung:Cancer stem cells (CSCs) are critical for tumor initiation/maintenance and recurrence or metastasis, so they may serve as a potential therapeutic target. However, CSC-established multitherapy resistance and immune tolerance render tumors resistant to current tumor-targeted strategies. To address this, renewable multiepitope-integrated spheroids based on placenta-derived mesenchymal stem cells (pMSCs) were X-ray-modified, at four different irradiation levels, including 80, 160, 240, and 320 Gy, as pluripotent biologics, to inoculate hosts bearing Lewis lung carcinoma (LL2) and compared with X-ray-modified common LL2 cells as control. We show that the vaccines at the 160/240 Gy irradiation levels could rapidly trigger tumor cells into the apoptosis loop and evidently prolong the tumor-bearing host's survival cycle, in contrast to vaccines irradiated at other levels (P
ISSN:1178-6930
1178-6930
DOI:10.2147/OTT.S97587