4.6 Article

Cell quiescence correlates with enhanced glioblastoma cell invasion and cytotoxic resistance

期刊

EXPERIMENTAL CELL RESEARCH
卷 374, 期 2, 页码 353-364

出版社

ELSEVIER INC
DOI: 10.1016/j.yexcr.2018.12.010

关键词

Glioblastoma; GBM; Invasion; Migration; Resistance; Quiescence; Proliferation; Gene expression; Oregon green; Cancer stem cells

资金

  1. Royal Melbourne Hospital Neuroscience Foundation, Australia
  2. NHMRC, Australia [1104010, 1047581]
  3. Australian Department of Health and Aging
  4. National Health and Medical Research Council of Australia [1104010] Funding Source: NHMRC

向作者/读者索取更多资源

Glioblastoma (GBM) tumor cells exhibit drug resistance and are highly infiltrative. GBM stem cells (GSCs), which have low proliferative capacity are thought to be one of the sources of resistant cells which result in relapse/recurrence. However, the molecular mechanisms regulating quiescent-specific tumor cell biology are not well understood. Using human GBM cell lines and patient-derived GBM cells, Oregon Green dye retention was used to identify and isolate the slow-cycling, quiescent-like cell subpopulation from the more proliferative cells in culture. Sensitivity of cell subpopulations to temozolomide and radiation, as well as the migration and invasive potential were measured. Differential expression analysis following RNAseq identified genes enriched in the quiescent cell subpopulation. Orthotopic transplantation of cells into mice was used to compare the in vivo malignancy and invasive capacity of the cells. Proliferative quiescence correlated with better TMZ resistance and enhanced cell invasion, in vitro and in vivo. RNAseq expression analysis identified genes involved in the regulation cell invasion/migration and a three-gene signature, TGFBI, IGFBP3, CHI3L1, overexpressed in quiescent cells which correlates with poor GBM patient survival.

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