Literature DB >> 19191326

Imaging glioma cell invasion in vivo reveals mechanisms of dissemination and peritumoral angiogenesis.

Frank Winkler1, Yvonne Kienast, Martin Fuhrmann, Louisa Von Baumgarten, Steffen Burgold, Gerda Mitteregger, Hans Kretzschmar, Jochen Herms.   

Abstract

Infiltration of cancer cells into normal tissue is a hallmark of malignant gliomas and compromises treatment options. A lack of appropriate models limits the study of this invasion in vivo, which makes it difficult to fully understand its anatomy and the role of dynamic interactions with structures of the normal brain. We developed a novel methodology by utilizing multiphoton laser scanning microscopy (MPLSM) to image the movement of glioma cells deep within the normal brain of live mice in real time. This allowed us to track the invasion of individual RFP-expressing GL261 cells in relation to perfused vasculature or GFP-labeled endothelial cells repetitively over days, up to a depth of 0.5 mm. Glioma cells moved faster and more efficiently when the abluminal site of a blood vessel was utilized for invasion. Cells that invaded perivascularly were frequently found next to (a) multiple capillary structures where microvessels run parallel to each other, (b) capillary loops or glomeruloid-like bodies, and (c) dilated capillaries. Dynamic MPLSM for more than 48 h revealed that single invasive glioma cells induced intussusceptive microvascular growth and capillary loop formation, specifically at the microvascular site with which they had contact. As the main tumor grew by cooption of existing brain vessels, these peritumoral vascular changes may create a beneficial environment for glioma growth. In conclusion, our study revealed new mechanisms of peritumoral angiogenesis and invasion in gliomas, providing an explanation for their interdependence.

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Year:  2009        PMID: 19191326     DOI: 10.1002/glia.20850

Source DB:  PubMed          Journal:  Glia        ISSN: 0894-1491            Impact factor:   7.452


  100 in total

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2.  Non-invasive MR assessment of macroscopic and microscopic vascular abnormalities in the rectal tumour-surrounding mesorectum.

Authors:  Ewelina Kluza; Jean-Paul J E Kleijnen; Milou H Martens; Dorit Rennspiess; Monique Maas; Cécile R L P N Jeukens; Robert G Riedl; Axel zur Hausen; Geerard L Beets; Regina G H Beets-Tan
Journal:  Eur Radiol       Date:  2015-08-30       Impact factor: 5.315

3.  Real-time imaging of perivascular transport of nanoparticles during convection-enhanced delivery in the rat cortex.

Authors:  Conor P Foley; Nozomi Nishimura; Keith B Neeves; Chris B Schaffer; William L Olbricht
Journal:  Ann Biomed Eng       Date:  2011-10-19       Impact factor: 3.934

4.  A 3D topographical model of parenchymal infiltration and perivascular invasion in glioblastoma.

Authors:  Kayla J Wolf; Stacey Lee; Sanjay Kumar
Journal:  APL Bioeng       Date:  2018-04-01

5.  Initial contact of glioblastoma cells with existing normal brain endothelial cells strengthen the barrier function via fibroblast growth factor 2 secretion: a new in vitro blood-brain barrier model.

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Journal:  Cell Mol Neurobiol       Date:  2013-02-06       Impact factor: 5.046

Review 6.  Glioblastoma stem cells: Molecular characteristics and therapeutic implications.

Authors:  Nermin Sumru Bayin; Aram Sandaldjian Modrek; Dimitris George Placantonakis
Journal:  World J Stem Cells       Date:  2014-04-26       Impact factor: 5.326

7.  Attenuated adenosine-to-inosine editing of microRNA-376a* promotes invasiveness of glioblastoma cells.

Authors:  Yukti Choudhury; Felix Chang Tay; Dang Hoang Lam; Edwin Sandanaraj; Carol Tang; Beng-Ti Ang; Shu Wang
Journal:  J Clin Invest       Date:  2012-10-24       Impact factor: 14.808

Review 8.  Mouse models for studying angiogenesis and lymphangiogenesis in cancer.

Authors:  Lauri Eklund; Maija Bry; Kari Alitalo
Journal:  Mol Oncol       Date:  2013-03-05       Impact factor: 6.603

9.  Mesenchymal migration as a therapeutic target in glioblastoma.

Authors:  Jessie Zhong; Andre Paul; Stewart J Kellie; Geraldine M O'Neill
Journal:  J Oncol       Date:  2010-06-21       Impact factor: 4.375

10.  Translation of the ecological trap concept to glioma therapy: the cancer cell trap concept.

Authors:  Boudewijn van der Sanden; Florence Appaix; François Berger; Laurent Selek; Jean-Paul Issartel; Didier Wion
Journal:  Future Oncol       Date:  2013-06       Impact factor: 3.404

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