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African Trypanosomes as model system for functional analyses of microbial motility
Book Item (Buchkapitel, Lexikonartikel, jur. Kommentierung, Beiträge in Sammelbänden)
 
ID 1526078
Author(s) Engstler, Markus; Heddergott, Niko; Krüger, Tim; Stellamanns, Eric; Uppaluri, Sravanti; Pfohl, Thomas
Author(s) at UniBasel Pfohl, Thomas
Year 2012
Title African Trypanosomes as model system for functional analyses of microbial motility
Editor(s) Tropea, C; Bleckmann, H
Book title Nature-Inspired Fluid Mechanics : Results of the DFG Priority Programme 1207 ”Nature-inspired Fluid Mechanics” 2006-2012
Publisher Springer
Place of publication Berlin
Pages 43-61
ISSN/ISBN 978-3-642-28301-7 ; 978-3-642-28302-4
Abstract The locomotion of microorganisms in a microscopic world, where cells move through a fluid environment without using inertial forces, is a fascinating phenomenon in life science. Nature offers clever and inspiring strategies for self-propelling in an environment of no inertia. The flagellate African trypanosome, which causes African sleeping sickness, moves with help of a flagellum, which is firmly attached to its cell body. The beating flagellum leads to a strong distortion of the cell body and therefore to a swimming agitation of trypanosomes. We have found that trypanosomes use a hydrodynamic mechanism to defend against host’s immune attacks. Owing to continuous and directional swimming, host-derived antibodies attached to surface glycoproteins of the cell are dragged to the posterior cell pole, where they are rapidly internalized and destroyed. In the following we present new methodology and techniques to quantify the movements of proteins and the motility of cells. Moreover trypanosome motility schemes and their influence on cellular lifestyle and survival strategies are characterized.
edoc-URL http://edoc.unibas.ch/dok/A6070571
Full Text on edoc Restricted
Digital Object Identifier DOI 10.1007/978-3-642-28302-4_3
ISI-number WOS:000325437700004
Additional Information Also published in: Notes on numerical fluid mechanics and multidisciplinary design. - Berlin : Springer. - Vol. 119 (2012), S. 43-61
 
   

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