Literature DB >> 17954920

High-resolution imaging of the dynamic tumor cell vascular interface in transparent zebrafish.

Konstantin Stoletov1, Valerie Montel, Robin D Lester, Steven L Gonias, Richard Klemke.   

Abstract

Cell metastasis is a highly dynamic process that occurs in multiple steps. Understanding this process has been limited by the inability to visualize tumor cell behavior in real time by using animal models. Here, we employ translucent zebrafish and high-resolution confocal microscopy to study how human cancer cells invade in tissues, induce angiogenesis, and interact with newly formed vessels. We use this system to study how the human metastatic gene RhoC promotes the initial steps of metastasis. We find that RhoC expression induces a primitive amoeboid-like cell invasion characterized by the formation of dynamic membrane protrusions and blebs. Surprisingly, these structures penetrate the blood vessel wall exclusively at sites of vascular remodeling and not at regions of existing intact vessels. This process requires tumor cells to secrete VEGF, which induces vascular openings, which in turn, serve as portholes allowing access of RhoC-expressing cells to the blood system. Our results support a model in which the early steps in intravasation and metastasis require two independent events: (i) dynamic regulation of the actin/myosin cytoskeleton within the tumor cell to form protrusive structures and (ii) vascular permeablization and vessel remodeling. The integration of zebrafish transgenic technology with human cancer biology may aid in the development of cancer models that target specific organs, tissues, or cell types within the tumors. Zebrafish could also provide a cost-effective means for the rapid development of therapeutic agents directed at blocking human cancer progression and tumor-induced angiogenesis.

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Year:  2007        PMID: 17954920      PMCID: PMC2077269          DOI: 10.1073/pnas.0703446104

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  41 in total

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Review 2.  Intravital imaging of cell movement in tumours.

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4.  Relationship of hypoxia-inducible factor (HIF)-1alpha and HIF-2alpha expression to vascular endothelial growth factor induction and hypoxia survival in human breast cancer cell lines.

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5.  Vascular morphogenesis and remodeling in a human tumor xenograft: blood vessel formation and growth after ovariectomy and tumor implantation.

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6.  RhoC GTPase overexpression modulates induction of angiogenic factors in breast cells.

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Review 8.  Tumor angiogenesis and accessibility: role of vascular endothelial growth factor.

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  126 in total

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2.  Fluorescent imaging of cancer in zebrafish.

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3.  Mechanisms of tumor cell extravasation in an in vitro microvascular network platform.

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4.  Invasive Behavior of Human Breast Cancer Cells in Embryonic Zebrafish.

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Review 7.  Emergence of zebrafish models in oncology for validating novel anticancer drug targets and nanomaterials.

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8.  The effects of cell compressibility, motility and contact inhibition on the growth of tumor cell clusters using the Cellular Potts Model.

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9.  The effects of monocytes on tumor cell extravasation in a 3D vascularized microfluidic model.

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Review 10.  Cell motility in cancer invasion and metastasis: insights from simple model organisms.

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