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Mesenchymal Stem Cells Isolated From Human Gliomas Increase Proliferation and Maintain Stemness of Glioma Stem Cells Through the IL-6/gp130/STAT3 Pathway

Authors :
Michael Andreeff
Diana Villarreal
Tatsuya Takezaki
Howard Colman
Celine Joyce
Joy Gumin
Feng Gao
Anwar Hossain
Erik P. Sulman
Qianghu Wang
Seok Gu Kang
Frank C. Marini
Waldemar Priebe
Frederick F. Lang
Naoki Shinojima
Javier Figueroa
Source :
Stem Cells. 33:2400-2415
Publication Year :
2015
Publisher :
Oxford University Press (OUP), 2015.

Abstract

Although mesenchymal stem cells (MSCs) have been implicated as stromal components of several cancers, their ultimate contribution to tumorigenesis and their potential to drive cancer stem cells, particularly in the unique microenvironment of human brain tumors, remain largely undefined. Consequently, using established criteria, we isolated glioma-associated-human MSCs (GA-hMSCs) from fresh human glioma surgical specimens for the first time. We show that these GA-hMSCs are nontumorigenic stromal cells that are phenotypically similar to prototypical bone marrow-MSCs. Low-passage genomic sequencing analyses comparing GA-hMSCs with matched tumor-initiating glioma stem cells (GSCs) suggest that most GA-hMSCs (60%) are normal cells recruited to the tumor (group 1 GA-hMSCs), although, rarely (10%), GA-hMSCs may differentiate directly from GSCs (group 2 GA-hMSCs) or display genetic patterns intermediate between these groups (group 3 GA-hMSCs). Importantly, GA-hMSCs increase proliferation and self-renewal of GSCs in vitro and enhance GSC tumorigenicity and mesenchymal features in vivo, confirming their functional significance within the GSC niche. These effects are mediated by GA-hMSC-secreted interleukin-6, which activates STAT3 in GSCs. Our results establish GA-hMSCs as a potentially new stromal component of gliomas that drives the aggressiveness of GSCs, and point to GA-hMSCs as a novel therapeutic target within gliomas. Stem Cells 2015;33:2400–2415

Details

ISSN :
15494918 and 10665099
Volume :
33
Database :
OpenAIRE
Journal :
Stem Cells
Accession number :
edsair.doi.dedup.....f12a5522da52c34eb7dd44fea2c9a9a6