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Titel: Replacement in angiogenesis research: Studying mechanisms of blood vessel development by animal-free in vitro, in vivo and in silico approaches
VerfasserIn: Laschke, Matthias W.
Gu, Yuan
Menger, Michael D.
Sprache: Englisch
Titel: Frontiers in Physiology
Bandnummer: 13
Verlag/Plattform: Frontiers
Erscheinungsjahr: 2022
Freie Schlagwörter: angiogenesis
endothelial cells
migration
microfluidics
zebrafish
proliferation
mathematical modeling
spheroid
DDC-Sachgruppe: 610 Medizin, Gesundheit
Dokumenttyp: Journalartikel / Zeitschriftenartikel
Abstract: Angiogenesis, the development of new blood vessels from pre-existing ones, is an essential process determining numerous physiological and pathological conditions. Accordingly, there is a high demand for research approaches allowing the investigation of angiogenic mechanisms and the assessment of pro- and anti-angiogenic therapeutics. The present review provides a selective overview and critical discussion of such approaches, which, in line with the 3R principle, all share the common feature that they are not based on animal experiments. They include in vitro assays to study the viability, proliferation, migration, tube formation and sprouting activity of endothelial cells in two- and three-dimensional environments, the degradation of extracellular matrix compounds as well as the impact of hemodynamic forces on blood vessel formation. These assays can be complemented by in vivo analyses of microvascular network formation in the chorioallantoic membrane assay and early stages of zebrafish larvae. In addition, the combination of experimental data and physical laws enables the mathematical modeling of tissue-specific vascularization, blood flow patterns, interstitial fluid flow as well as oxygen, nutrient and drug distribution. All these animal-free approaches markedly contribute to an improved understanding of fundamental biological mechanisms underlying angiogenesis. Hence, they do not only represent essential tools in basic science but also in early stages of drug development. Moreover, their advancement bears the great potential to analyze angiogenesis in all its complexity and, thus, to make animal experiments superfluous in the future.
DOI der Erstveröffentlichung: 10.3389/fphys.2022.981161
URL der Erstveröffentlichung: https://doi.org/10.3389/fphys.2022.981161
Link zu diesem Datensatz: urn:nbn:de:bsz:291--ds-440585
hdl:20.500.11880/39413
http://dx.doi.org/10.22028/D291-44058
ISSN: 1664-042X
Datum des Eintrags: 21-Jan-2025
Fakultät: M - Medizinische Fakultät
Fachrichtung: M - Chirurgie
Professur: M - Prof. Dr. Michael D. Menger
Sammlung:SciDok - Der Wissenschaftsserver der Universität des Saarlandes

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