Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników

Znaleziono wyników: 4

Liczba wyników na stronie
Pierwsza strona wyników Pięć stron wyników wstecz Poprzednia strona wyników Strona / 1 Następna strona wyników Pięć stron wyników wprzód Ostatnia strona wyników

Wyniki wyszukiwania

help Sortuj według:

help Ogranicz wyniki do:
Pierwsza strona wyników Pięć stron wyników wstecz Poprzednia strona wyników Strona / 1 Następna strona wyników Pięć stron wyników wprzód Ostatnia strona wyników
Surprisingly in vitro conditions allowing to culture glioblastoma cells presenting EGFR amplification were not known until now. Our evaluation of EGFR amplification status in glioblastoma (GBM) culture demonstrated that this anomaly was preserved for months in spheroids (aggregated glioblastoma cells) at a level comparable to the earliest passage of cell culture. In contrast, and in accordance with already published data we detected it as completely lost in the adherent culture. Apparently glioblastoma cells presenting EGFR amplification become apoptotic in the regular cell culture conditions. In addition discrepant expression of SOX2 and multilineage phenotype recognized as a markers of neural progenitors was observed in monolayer and 3D culture. Moreover, our analyses showed a decreased invasion potential of adherent GBM loosing EGFR amplification, and spheroids maintaining EGFR amplification. In conclusion, our findings confirm that GBM-derived spheroids seem to be a promising tool to preserve original molecular features of the tumor in vitro, with a special emphasis on EGFR gene aberrations, including EGFRvIII, regarded as novel therapeutic target. Our last unpublished and preliminary data suggest that mechanism responsible for in vitro death of adherent glioblastoma cells showing EGFR amplification seems to be linked to the artificial in vitro cell-cell interaction rather than to the lack of proper autocrine effects. Those suggestion came from analysis of glioblastoma cells in artificial brain tissues system and analysis of aggregated glioblastoma cells only. The present study was supported by the Ministry of Science and Higher Education, Poland, grant No. N N401047337 and Foundation for Polish Science(PARENT-BRIDGE Programme - support for women, No.POMOST_C/15).
We have compared differentiation ability of glioblastoma cells with differentiation ability of neural progenitors. An effi cient differentiation arrest was observed in all cell lines isolated from glioblastomas in contrast to normal neural progenitors. However, cells isolated from six glioblastomas showed features of early stages of neural differentiation. Moreover, the cells derived from a majority of glioblastomas (8 out of 10) as well as neural progenitors showed features of non-neural (mesenchymal-like) differentiation. Moreover aggregated cells sustained EGFR amplifi cation, whereas cells grown as a monolayer did not. Cells showing EGFR amplifi cation became apoptotic grown as monolayer. Majority of mesenchymally differentiated glioblastoma cells showed features of senescence. Novel hypotheses which we would like to test are as follows: Neural progenitors could be a potential source of glioblastomas. Glioblastoma presents not only tumor stem cells but also tumor progenitor cells. Stable coexpression of glial and neuronal markers presented by glioblastoma cells results from differentiation arrest. Aggregating glioblastoma cells allows to sustain, EGFR amplifi cation in vitro. Moreover aggregated cells show proliferation ability, and differentiation arrest, whereas monolayer cells can be effi ciently differentiated and fi nally senescent. It suggests that simultaneous analysis of differentiation processes altogether with considering status of genes such as EGFR may help in designing new molecular targets for chemotherapy.
Pierwsza strona wyników Pięć stron wyników wstecz Poprzednia strona wyników Strona / 1 Następna strona wyników Pięć stron wyników wprzód Ostatnia strona wyników
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.