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Cited 49 time in webofscience Cited 52 time in scopus
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Glioma-initiating cells at tumor edge gain signals from tumor core cells to promote their malignancy

Authors
Bastola, S[Bastola, Soniya]Pavlyukov, MS[Pavlyukov, Marat S.]Yamashita, D[Yamashita, Daisuke]Ghosh, S[Ghosh, Sadashib]Cho, H[Cho, Heejin]Kagaya, N[Kagaya, Noritaka]Zhang, Z[Zhang, Zhuo]Minata, M[Minata, Mutsuko]Lee, Y[Lee, Yeri]Sadahiro, H[Sadahiro, Hirokazu]Yamaguchi, S[Yamaguchi, Shinobu]Komarova, S[Komarova, Svetlana]Yang, E[Yang, Eddy]Markert, J[Markert, James]Nabors, LB[Nabors, Louis B.]Bhat, K[Bhat, Krishna]Lee, J[Lee, James]Chen, Q[Chen, Qin]Crossman, DK[Crossman, David K.]Shin-Ya, K[Shin-Ya, Kazuo]Nam, DH[Nam, Do-Hyun]Nakano, I[Nakano, Ichiro]
Issue Date
16-Sep-2020
Publisher
NATURE RESEARCH
Citation
NATURE COMMUNICATIONS, v.11, no.1
Indexed
SCIE
SCOPUS
Journal Title
NATURE COMMUNICATIONS
Volume
11
Number
1
URI
https://scholarworks.bwise.kr/skku/handle/2021.sw.skku/3142
DOI
10.1038/s41467-020-18189-y
ISSN
2041-1723
Abstract
Intratumor spatial heterogeneity facilitates therapeutic resistance in glioblastoma (GBM). Nonetheless, understanding of GBM heterogeneity is largely limited to the surgically resectable tumor core lesion while the seeds for recurrence reside in the unresectable tumor edge. In this study, stratification of GBM to core and edge demonstrates clinically relevant surgical sequelae. We establish regionally derived models of GBM edge and core that retain their spatial identity in a cell autonomous manner. Upon xenotransplantation, edge-derived cells show a higher capacity for infiltrative growth, while core cells demonstrate core lesions with greater therapy resistance. Investigation of intercellular signaling between these two tumor populations uncovers the paracrine crosstalk from tumor core that promotes malignancy and therapy resistance of edge cells. These phenotypic alterations are initiated by HDAC1 in GBM core cells which subsequently affect edge cells by secreting the soluble form of CD109 protein. Our data reveal the role of intracellular communication between regionally different populations of GBM cells in tumor recurrence. Intratumoural spatial heterogeneity is crucial to enhance therapeutic resistance in glioblastoma. Here, the authors show a paracrine signaling mechanism where glioblastoma-initiating cells located in the tumour edge elevate their malignancy by interaction with core-located tumour cells.
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