Uncovering Spatiotemporal Heterogeneity of High-Grade Gliomas: From Disease Biology to Therapeutic Implications

被引:38
作者
Comba, Andrea [1 ,2 ,3 ]
Faisal, Syed M. [1 ,2 ,3 ]
Varela, Maria Luisa [1 ,2 ,3 ]
Hollon, Todd [1 ]
Al-Holou, Wajd N. [1 ]
Umemura, Yoshie [1 ]
Nunez, Felipe J. [4 ]
Motsch, Sebastien [5 ]
Castro, Maria G. [1 ,2 ,3 ]
Lowenstein, Pedro R. [1 ,2 ,3 ]
机构
[1] Univ Michigan, Sch Med, Dept Neurosurg, Ann Arbor, MI 48109 USA
[2] Univ Michigan, Sch Med, Dept Cell & Dev Biol, Ann Arbor, MI 48109 USA
[3] Univ Michigan, Sch Med, Rogel Canc Ctr, Ann Arbor, MI 48109 USA
[4] Fdn Inst Leloir, Lab Mol & Cellular Therapy, Buenos Aires, DF, Argentina
[5] Arizona State Univ, Sch Math & Stat Sci, Tempe, AZ USA
基金
美国国家卫生研究院;
关键词
glioblastoma multiforme; heterogeneity; tumor microenvironment; dynamic; spatial resolution; deep learning; precision oncology; INTEGRATED GENOMIC ANALYSIS; REGULATORY T-CELLS; STEM-CELLS; BRAIN-TUMORS; PHASE-II; MICROENVIRONMENTAL LANDSCAPE; INTRATUMORAL HETEROGENEITY; IMMUNE MICROENVIRONMENT; HISTONE H3.3; DOUBLE-BLIND;
D O I
10.3389/fonc.2021.703764
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Glioblastomas (GBM) are the most common and aggressive tumors of the central nervous system. Rapid tumor growth and diffuse infiltration into healthy brain tissue, along with high intratumoral heterogeneity, challenge therapeutic efficacy and prognosis. A better understanding of spatiotemporal tumor heterogeneity at the histological, cellular, molecular, and dynamic levels would accelerate the development of novel treatments for this devastating brain cancer. Histologically, GBM is characterized by nuclear atypia, cellular pleomorphism, necrosis, microvascular proliferation, and pseudopalisades. At the cellular level, the glioma microenvironment comprises a heterogeneous landscape of cell populations, including tumor cells, non-transformed/reactive glial and neural cells, immune cells, mesenchymal cells, and stem cells, which support tumor growth and invasion through complex network crosstalk. Genomic and transcriptomic analyses of gliomas have revealed significant inter and intratumoral heterogeneity and insights into their molecular pathogenesis. Moreover, recent evidence suggests that diverse dynamics of collective motion patterns exist in glioma tumors, which correlate with histological features. We hypothesize that glioma heterogeneity is not stochastic, but rather arises from organized and dynamic attributes, which favor glioma malignancy and influences treatment regimens. This review highlights the importance of an integrative approach of glioma histopathological features, single-cell and spatially resolved transcriptomic and cellular dynamics to understand tumor heterogeneity and maximize therapeutic effects.
引用
收藏
页数:16
相关论文
共 187 条
[1]   The CXCR2/CXCL2 signalling pathway - An alternative therapeutic approach in high-grade glioma [J].
Acker, Gueliz ;
Zollfrank, Julia ;
Jelgersma, Claudius ;
Nieminen-Kelhae, Melina ;
Kremenetskaia, Irina ;
Mueller, Susanne ;
Ghori, Adnan ;
Vajkoczy, Peter ;
Brandenburg, Susan .
EUROPEAN JOURNAL OF CANCER, 2020, 126 :106-115
[2]   Challenges to curing primary brain tumours [J].
Aldape, Kenneth ;
Brindle, Kevin M. ;
Chesler, Louis ;
Chopra, Rajesh ;
Gajjar, Amar ;
Gilbert, Mark R. ;
Gottardo, Nicholas ;
Gutmann, David H. ;
Hargrave, Darren ;
Holland, Eric C. ;
Jones, David T. W. ;
Joyce, Johanna A. ;
Kearns, Pamela ;
Kieran, Mark W. ;
Mellinghoff, Ingo K. ;
Merchant, Melinda ;
Pfister, Stefan M. ;
Pollard, Steven M. ;
Ramaswamy, Vijay ;
Rich, Jeremy N. ;
Robinson, Giles W. ;
Rowitch, David H. ;
Sampson, John H. ;
Taylor, Michael D. ;
Workman, Paul ;
Gilbertson, Richard J. .
NATURE REVIEWS CLINICAL ONCOLOGY, 2019, 16 (08) :509-520
[3]   Intravital imaging of glioma border morphology reveals distinctive cellular dynamics and contribution to tumor cell invasion [J].
Alieva, Maria ;
Leidgens, Verena ;
Riemenschneider, Markus J. ;
Klein, Christoph A. ;
Hau, Peter ;
van Rheenen, Jacco .
SCIENTIFIC REPORTS, 2019, 9 (1)
[4]   TERT promoter mutation confers favorable prognosis regardless of 1p/19q status in adult diffuse gliomas with IDH1/2 mutations [J].
Arita, Hideyuki ;
Matsushita, Yuko ;
Machida, Ryunosuke ;
Yamasaki, Kai ;
Hata, Nobuhiro ;
Ohno, Makoto ;
Yamaguchi, Shigeru ;
Sasayama, Takashi ;
Tanaka, Shota ;
Higuchi, Fumi ;
Iuchi, Toshihiko ;
Saito, Kuniaki ;
Kanamori, Masayuki ;
Matsuda, Ken-ichiro ;
Miyake, Yohei ;
Tamura, Kaoru ;
Tamai, Sho ;
Nakamura, Taishi ;
Uda, Takehiro ;
Okita, Yoshiko ;
Fukai, Junya ;
Sakamoto, Daisuke ;
Hattori, Yasuhiko ;
Pareira, Eriel Sandika ;
Hatae, Ryusuke ;
Ishi, Yukitomo ;
Miyakita, Yasuji ;
Tanaka, Kazuhiro ;
Takayanagi, Shunsaku ;
Otani, Ryohei ;
Sakaida, Tsukasa ;
Kobayashi, Keiichi ;
Saito, Ryuta ;
Kurozumi, Kazuhiko ;
Shofuda, Tomoko ;
Nonaka, Masahiro ;
Suzuki, Hiroyoshi ;
Shibuya, Makoto ;
Komori, Takashi ;
Sasaki, Hikaru ;
Mizoguchi, Masahiro ;
Kishima, Haruhiko ;
Nakada, Mitsutoshi ;
Sonoda, Yukihiko ;
Tominaga, Teiji ;
Nagane, Motoo ;
Nishikawa, Ryo ;
Kanemura, Yonehiro ;
Kuchiba, Aya ;
Narita, Yoshitaka .
ACTA NEUROPATHOLOGICA COMMUNICATIONS, 2020, 8 (01)
[5]   Association of CTLA4 polymorphism with regulatory T cell frequency [J].
Atabani, SF ;
Thio, CL ;
Divanovic, S ;
Trompette, A ;
Belkaid, Y ;
Thomas, DL ;
Karp, CL .
EUROPEAN JOURNAL OF IMMUNOLOGY, 2005, 35 (07) :2157-2162
[6]   Integrated genomic characterization of IDH1-mutant glioma malignant progression [J].
Bai, Hanwen ;
Harmanci, Akdes Serin ;
Erson-Omay, E. Zeynep ;
Li, Jie ;
Coskun, Sueleyman ;
Simon, Matthias ;
Krischek, Boris ;
Ozduman, Koray ;
Omay, S. Buelent ;
Sorensen, Eric A. ;
Turcan, Sevin ;
Bakirciglu, Mehmet ;
Carrion-Grant, Geneive ;
Murray, Phillip B. ;
Clark, Victoria E. ;
Ercan-Sencicek, A. Gulhan ;
Knight, James ;
Sencar, Leman ;
Altinok, Selin ;
Kaulen, Leon D. ;
Guelez, Burcu ;
Timmer, Marco ;
Schramm, Johannes ;
Mishra-Gorur, Ketu ;
Henegariu, Octavian ;
Moliterno, Jennifer ;
Louvi, Angeliki ;
Chan, Timothy A. ;
Tannheimer, Stacey L. ;
Pamir, M. Necmettin ;
Vortmeyer, Alexander O. ;
Bilguvar, Kaya ;
Yasuno, Katsuhito ;
Guenel, Murat .
NATURE GENETICS, 2016, 48 (01) :59-+
[7]   Mechanisms of Glioma Formation: Iterative Perivascular Glioma Growth and Invasion Leads to Tumor Progression, VEGF-Independent Vascularization, and Resistance to Antiangiogenic Therapy [J].
Baker, Gregory J. ;
Yadav, Viveka Nand ;
Motsch, Sebastien ;
Koschmann, Carl ;
Calinescu, Anda-Alexandra ;
Mineharu, Yohei ;
Camelo-Piragua, Sandra Ines ;
Orringer, Daniel ;
Bannykh, Serguei ;
Nichols, Wesley S. ;
deCarvalho, Ana C. ;
Mikkelsen, Tom ;
Castro, Maria G. ;
Lowenstein, Pedro R. .
NEOPLASIA, 2014, 16 (07) :543-561
[8]   Glioma-initiating cells at tumor edge gain signals from tumor core cells to promote their malignancy [J].
Bastola, Soniya ;
Pavlyukov, Marat S. ;
Yamashita, Daisuke ;
Ghosh, Sadashib ;
Cho, Heejin ;
Kagaya, Noritaka ;
Zhang, Zhuo ;
Minata, Mutsuko ;
Lee, Yeri ;
Sadahiro, Hirokazu ;
Yamaguchi, Shinobu ;
Komarova, Svetlana ;
Yang, Eddy ;
Markert, James ;
Nabors, Louis B. ;
Bhat, Krishna ;
Lee, James ;
Chen, Qin ;
Crossman, David K. ;
Shin-Ya, Kazuo ;
Nam, Do-Hyun ;
Nakano, Ichiro .
NATURE COMMUNICATIONS, 2020, 11 (01)
[9]   A Viro-Immunotherapy Triple Play for the Treatment of Glioblastoma [J].
Bell, John C. ;
Ilkow, Carolina S. .
CANCER CELL, 2017, 32 (02) :133-134
[10]   The Intratumoral Heterogeneity Reflects the Intertumoral Subtypes of Glioblastoma Multiforme: A Regional Immunohistochemistry Analysis [J].
Bergmann, Natalie ;
Delbridge, Claire ;
Gempt, Jens ;
Feuchtinger, Annette ;
Walch, Axel ;
Schirmer, Lucas ;
Bunk, Wolfram ;
Aschenbrenner, Thomas ;
Liesche-Starnecker, Friederike ;
Schlegel, Juergen .
FRONTIERS IN ONCOLOGY, 2020, 10