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A versatile in vitro assay for investigating angiogenesis of the heart

Kiefer, Fabrice N. and Munk, Veronica C. and Humar, Rok and Dieterle, Thomas and Landmann, Lukas and Battegay, Edouard J.. (2004) A versatile in vitro assay for investigating angiogenesis of the heart. Experimental cell research, 300 (2). pp. 272-282.

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Official URL: https://edoc.unibas.ch/71056/

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Abstract

Neovascularization in the heart is usually investigated with models of angiogenesis in vivo. Here we present a simple model that allows investigating heart angiogenesis in mice and rats in vitro. Small pieces of left ventricular myocardium were cultured in three-dimensional fibrin gels for 10 days. A single mouse heart allowed assessing 24 conditions, each tested in octuplicates. Rat recombinant VEGF164, human recombinant bFGF, and human recombinant PDGF-BB were used under normoxia (21% O2) and hypoxia (3% O2), and outgrowth of endothelial sprouts from heart pieces was quantified. In 4-week-old OF1 mice, endothelial sprouts formed spontaneously. In contrast, in 12-week-old adult mice, virtually no sprouts formed under normoxia. Under hypoxia, sprout formation increased substantially. Different growth factors induced formation of distinct patterns of sprouts and unorganized single cells. Sprouts were composed of endothelial cells with smooth muscle cells or pericytes interacting with them, as assessed by immunohistochemistry. Taken together, our model is suited for investigation of angiogenesis of the heart in vitro. It may allow performing extensive series of experiments in vitro including rapid screening of pharmacological compounds and assessment of mechanisms of heart angiogenesis in transgenic animals in an easy straightforward manner.
Faculties and Departments:03 Faculty of Medicine
03 Faculty of Medicine > Bereich Medizinische Fächer (Klinik) > Allgemeine innere Medizin USB
03 Faculty of Medicine > Departement Klinische Forschung > Bereich Medizinische Fächer (Klinik) > Allgemeine innere Medizin USB
UniBasel Contributors:Dieterle, Thomas
Item Type:Article, refereed
Article Subtype:Research Article
Publisher:Elsevier
ISSN:0014-4827
Note:Publication type according to Uni Basel Research Database: Journal article
Identification Number:
Last Modified:03 Jul 2020 10:05
Deposited On:03 Jul 2020 10:05

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