Ly6G+ inflammatory cells enable the conversion of cancer cells to cancer stem cells in an irradiated glioblastoma model
Autor: | Se Hoon Kim, Xiong Jin, Hyunggee Kim, Chang Yong Choi, Seok Won Ham, Hee Young Jeon, Xun Jin, Taehoon Chun, Seon Yong Lee, Yong Jae Shin, Do-Hyun Nam, Jason K. Sa, Jun Kyum Kim |
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Rok vydání: | 2019 |
Předmět: |
0301 basic medicine
Tumor microenvironment business.industry Cell Biology Transfection medicine.disease nervous system diseases 03 medical and health sciences 030104 developmental biology 0302 clinical medicine Antigen Cancer stem cell Cell culture 030220 oncology & carcinogenesis Glioma Cancer cell medicine Cancer research Stem cell business neoplasms Molecular Biology |
Zdroj: | Cell Death & Differentiation. 26:2139-2156 |
ISSN: | 1476-5403 1350-9047 |
DOI: | 10.1038/s41418-019-0282-0 |
Popis: | Most glioblastomas frequently recur at sites of radiotherapy, but it is unclear if changes in the tumor microenvironment due to radiotherapy influence glioblastoma recurrence. Here, we demonstrate that radiation-induced senescent glioblastoma cells exhibit a senescence-associated secretory phenotype that functions through NFκB signaling to influence changes in the tumor microenvironment, such as recruitment of Ly6G+ inflammatory cells and vessel formation. In particular, Ly6G+ cells promote conversion of glioblastoma cells to glioblastoma stem cells (GSCs) through the NOS2-NO-ID4 regulatory axis. Specific inhibition of NFκB signaling in irradiated glioma cells using the IκBα super repressor prevents changes in the tumor microenvironment and dedifferentiation of glioblastoma cells. Treatment with Ly6G-neutralizing antibodies also reduces the number of GSCs and prolongs survival in tumor-bearing mice after radiotherapy. Clinically, a positive correlation exists between Ly6G+ cells and the NOS2-NO-ID4 regulatory axis in patients diagnosed with recurrent glioblastoma. Together, our results illustrate important roles for Ly6G+ inflammatory cells recruited by radiation-induced SASP in cancer cell dedifferentiation and tumor recurrence. |
Databáze: | OpenAIRE |
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