TY - JOUR
T1 - Gliomagenesis is orchestrated by the Oct3/4 regulatory network
AU - Ignatova, Tatyana N.
AU - Chaitin, Hersh J.
AU - Kukekov, Nickolay V.
AU - Suslov, Oleg N.
AU - Dulatova, Galina I.
AU - Hanafy, Khalid A.
AU - Vrionis, Frank D.
N1 - Publisher Copyright:
© 2024 Edizioni Minerva Medica. All rights reserved.
PY - 2024/4
Y1 - 2024/4
N2 - BACKGROUND: Glioblastoma multiforme (GBM) is a lethal brain tumor characterized by developmental hierarchical phenotypic heterogeneity, therapy resistance and recurrent growth. Neural stem cells (NSCs) from human central nervous system (CNS), and glioblastoma stem cells from patient-derived GBM (pdGSC) samples were cultured in both 2D well-plate and 3D monoclonal neurosphere culture system (pdMNCS). The pdMNCS model shows promise to establish a relevant 3D-tumor environment that maintains GBM cells in the stem cell phase within suspended neurospheres. METHODS: Utilizing the pdMNCS, we examined GBM cell-lines for a wide spectrum of developmental cancer stem cell markers, including the early blastocyst inner-cell mass (ICM)-specific Nanog, Oct3/4, B, and CD133. RESULTS: We observed that MNCS epigenotype is recapitulated using gliomasphere-derived cells. CD133, the marker of GSC is robustly expressed in 3D-gliomaspheres and localized within the plasma membrane compartment. Conversely, gliomasphere cultures grown in conventional 2D culture quickly lost CD133 expression, indicating its variable expression is dependent on cell-culture conditions. Incomplete differentiation of cytoskeleton microtubules and intermediate filaments (IFs) of patient derived cells, similar to commercially available GBM cell lines, was seen. Subsequently, in order to determine whether Oct3/4 it was necessary for CD133 expression and cancer stemness, we transfected 2D and 3D culture with siRNA against Oct3/4 and found a significant reduction in gliomasphere formation. CONCLUSIONS: These results suggest that expression of Oct3/4, A- and CD133 suppress differentiation of GSCs.
AB - BACKGROUND: Glioblastoma multiforme (GBM) is a lethal brain tumor characterized by developmental hierarchical phenotypic heterogeneity, therapy resistance and recurrent growth. Neural stem cells (NSCs) from human central nervous system (CNS), and glioblastoma stem cells from patient-derived GBM (pdGSC) samples were cultured in both 2D well-plate and 3D monoclonal neurosphere culture system (pdMNCS). The pdMNCS model shows promise to establish a relevant 3D-tumor environment that maintains GBM cells in the stem cell phase within suspended neurospheres. METHODS: Utilizing the pdMNCS, we examined GBM cell-lines for a wide spectrum of developmental cancer stem cell markers, including the early blastocyst inner-cell mass (ICM)-specific Nanog, Oct3/4, B, and CD133. RESULTS: We observed that MNCS epigenotype is recapitulated using gliomasphere-derived cells. CD133, the marker of GSC is robustly expressed in 3D-gliomaspheres and localized within the plasma membrane compartment. Conversely, gliomasphere cultures grown in conventional 2D culture quickly lost CD133 expression, indicating its variable expression is dependent on cell-culture conditions. Incomplete differentiation of cytoskeleton microtubules and intermediate filaments (IFs) of patient derived cells, similar to commercially available GBM cell lines, was seen. Subsequently, in order to determine whether Oct3/4 it was necessary for CD133 expression and cancer stemness, we transfected 2D and 3D culture with siRNA against Oct3/4 and found a significant reduction in gliomasphere formation. CONCLUSIONS: These results suggest that expression of Oct3/4, A- and CD133 suppress differentiation of GSCs.
UR - https://www.scopus.com/pages/publications/85190902193
UR - https://www.scopus.com/pages/publications/85190902193#tab=citedBy
U2 - 10.23736/S0390-5616.21.05437-0
DO - 10.23736/S0390-5616.21.05437-0
M3 - Article
C2 - 34342203
AN - SCOPUS:85190902193
SN - 0390-5616
VL - 68
SP - 148
EP - 156
JO - Journal of Neurosurgical Sciences
JF - Journal of Neurosurgical Sciences
IS - 2
ER -