Chemotherapeutic Stress Induces Transdifferentiation of Glioblastoma Cells to Endothelial Cells and Promotes Vascular Mimicry

被引:29
作者
Baisiwala, Shivani [1 ]
Auffinger, Brenda [1 ]
Caragher, Seamus P. [1 ]
Shireman, Jack M. [1 ]
Ahsan, Riasat [1 ]
Lee, Gina [1 ]
Hasan, Tanwir [1 ]
Park, Cheol [1 ]
Saathoff, Miranda R. [1 ]
Christensen, Anne C. [2 ]
Ahmed, Atique U. [1 ]
机构
[1] Northwestern Univ, Feinberg Sch Med, Dept Neurol Surg, Chicago, IL 60611 USA
[2] Winona State Univ, Winona, MN 55987 USA
关键词
STEM-LIKE CELLS; PERIVASCULAR NICHE; TUMOR; HYPOXIA; GLIOMA; TEMOZOLOMIDE; EXPRESSION; VEGF; MICROENVIRONMENT; PROGRESSION;
D O I
10.1155/2019/6107456
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Glioblastoma (GBM) is the most common and aggressive primary malignant brain tumor affecting adults, with a median survival of approximately 21 months. One key factor underlying the limited efficacy of current treatment modalities is the remarkable plasticity exhibited by GBM cells, which allows them to effectively adapt to changes induced by anticancer therapeutics. Moreover, GBM tumors are highly vascularized with aberrant vessels that complicate the delivery of antitumor agents. Recent research has demonstrated that GBM cells have the ability to transdifferentiate into endothelial cells (ECs), illustrating that GBM cells may use plasticity in concert with vascularization leading to the creation of tumor-derived blood vessels. The mechanism behind this transdifferentiation, however, remains unclear. Here, we show that treatment with temozolomide (TMZ) chemotherapy induces time-dependent expression of markers for glioma stem cells (GSCs) and immature and mature ECs. In addition, GBM tumors growing as orthotopic xenografts in nude mice showed increased expression of GSC and EC markers after TMZ treatment. Ex vivo FACS analysis showed the presence of immature and mature EC populations. Furthermore, immunofluorescence analysis revealed increased tumor-derived vessels in TMZ-recurrent tumors. Overall, this study identifies chemotherapeutic stress as a new driver of transdifferentiation of tumor cells to endothelial cells and highlights cellular plasticity as a key player in therapeutic resistance and tumor recurrence.
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页数:14
相关论文
共 44 条
[1]   CXCR2-Expressing Tumor Cells Drive Vascular Mimicry in Antiangiogenic Therapy-Resistant Glioblastoma [J].
Angara, Kartik ;
Borin, Thaiz F. ;
Rashid, Mohammad H. ;
Lebedyeva, Iryna ;
Ara, Roxan ;
Lin, Ping-Chang ;
Iskander, A. S. M. ;
Bollag, Roni J. ;
Achyut, Bhagelu R. ;
Arbab, Ali S. .
NEOPLASIA, 2018, 20 (10) :1070-1082
[2]   Conversion of differentiated cancer cells into cancer stem-like cells in a glioblastoma model after primary chemotherapy [J].
Auffinger, B. ;
Tobias, A. L. ;
Han, Y. ;
Lee, G. ;
Guo, D. ;
Dey, M. ;
Lesniak, M. S. ;
Ahmed, A. U. .
CELL DEATH AND DIFFERENTIATION, 2014, 21 (07) :1119-1131
[3]   Temozolomide preferentially depletes cancer stem cells in glioblastoma [J].
Beier, Dagmar ;
Roehrl, Stefanie ;
Pillai, Deepu R. ;
Schwarz, Stefanie ;
Kunz-Schughart, Leoni A. ;
Leukel, Petra ;
Proescholdt, Martin ;
Brawanski, Alexander ;
Bogdahn, Ulrich ;
Trampe-Kieslich, Ariane ;
Giebel, Bernd ;
Wischhusen, Joerg ;
Reifenberger, Guido ;
Hau, Peter ;
Beier, Christoph P. .
CANCER RESEARCH, 2008, 68 (14) :5706-5715
[4]   Phase I dose-escalation and pharmacokinetic study of temozolomide (SCH 52365) for refractory or relapsing malignancies [J].
Brada, M ;
Judson, I ;
Beale, P ;
Moore, S ;
Reidenberg, P ;
Statkevich, P ;
Dugan, M ;
Batra, V ;
Cutler, D .
BRITISH JOURNAL OF CANCER, 1999, 81 (06) :1022-1030
[5]   VEGF-A-stimulated signalling in endothelial cells via a dual receptor tyrosine kinase system is dependent on co-ordinated trafficking and proteolysis [J].
Bruns, Alexander F. ;
Bao, Leyuan ;
Walker, John H. ;
Ponnambalam, Sreenivasan .
BIOCHEMICAL SOCIETY TRANSACTIONS, 2009, 37 :1193-1197
[6]   A perivascular niche for brain tumor stem cells [J].
Calabrese, Christopher ;
Poppleton, Helen ;
Kocak, Mehmet ;
Hogg, Twala L. ;
Fuller, Christine ;
Hamner, Blair ;
Oh, Eun Young ;
Gaber, M. Waleed ;
Finklestein, David ;
Allen, Meredith ;
Frank, Adrian ;
Bayazitov, Ildar T. ;
Zakharenko, Stanislav S. ;
Gajjar, Amar ;
Davidoff, Andrew ;
Gilbertson, Richard J. .
CANCER CELL, 2007, 11 (01) :69-82
[7]   The perivascular niche microenvironment in brain tumor progression [J].
Charles, Nikki ;
Holland, Eric C. .
CELL CYCLE, 2010, 9 (15) :3012-3021
[8]   Glioblastoma Stem Cells Generate Vascular Pericytes to Support Vessel Function and Tumor Growth [J].
Cheng, Lin ;
Huang, Zhi ;
Zhou, Wenchao ;
Wu, Qiulian ;
Donnola, Shannon ;
Liu, James K. ;
Fang, Xiaoguang ;
Sloan, Andrew E. ;
Mao, Yubin ;
Lathia, Justin D. ;
Min, Wang ;
McLendon, Roger E. ;
Rich, Jeremy N. ;
Bao, Shideng .
CELL, 2013, 153 (01) :139-152
[9]   CD133+Glioblastoma Stem-Like Cells Induce Vascular Mimicry in Vivo [J].
Chiao, Ming-Tsang ;
Yang, Yi-Chin ;
Cheng, Wen-Yu ;
Shen, Chiung-Chyi ;
Ko, Jiunn-Liang .
CURRENT NEUROVASCULAR RESEARCH, 2011, 8 (03) :210-219
[10]   A neurocentric perspective on glioma invasion [J].
Cuddapah, Vishnu Anand ;
Robel, Stefanie ;
Watkins, Stacey ;
Sontheimer, Harald .
NATURE REVIEWS NEUROSCIENCE, 2014, 15 (07) :455-465