Spatio-temporal patterns of pancreatic cancer cells expressing CD44 isoforms on supported membranes displaying hyaluronic acid oligomers arrays.

In this paper, we designed a quantitative model of biological membranes by the deposition of planar lipid membranes on solid substrates (called supported membranes), and immobilized biotinylated oligomers of hyaluronic acid (oligo-HA, 6-8 disaccharide units in length) to the membrane surface via neu...

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Main Authors: Thomas Kaindl, Harden Rieger, Lisa-Mareike Kaschel, Ulrike Engel, Anja Schmaus, Jonathan Sleeman, Motomu Tanaka
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3419250?pdf=render
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spelling doaj-a450e95d86ea4ff9b54bde7ffb193dbe2020-11-25T01:38:39ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0178e4299110.1371/journal.pone.0042991Spatio-temporal patterns of pancreatic cancer cells expressing CD44 isoforms on supported membranes displaying hyaluronic acid oligomers arrays.Thomas KaindlHarden RiegerLisa-Mareike KaschelUlrike EngelAnja SchmausJonathan SleemanMotomu TanakaIn this paper, we designed a quantitative model of biological membranes by the deposition of planar lipid membranes on solid substrates (called supported membranes), and immobilized biotinylated oligomers of hyaluronic acid (oligo-HA, 6-8 disaccharide units in length) to the membrane surface via neutravidin cross-linkers. By controlling the self-assembly of biotinylated lipid anchors, the mean distance between the oligo-HA molecules on the membrane could be controlled to nm accuracy. The adhesion and motility of pancreatic adenocarcinoma cells expressing different splice variants of the HA-binding cell surface receptor CD44 on these surfaces were investigated quantitatively. The combination of label-free, time-lapse imaging of living cells and statistical analysis suggests that the static morphology (global shape and cytoskeleton remodeling) of cells, their stochastic morphological dynamics, and the probability of directed motion reflect the metastatic behaviour of the cancer cells.http://europepmc.org/articles/PMC3419250?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Thomas Kaindl
Harden Rieger
Lisa-Mareike Kaschel
Ulrike Engel
Anja Schmaus
Jonathan Sleeman
Motomu Tanaka
spellingShingle Thomas Kaindl
Harden Rieger
Lisa-Mareike Kaschel
Ulrike Engel
Anja Schmaus
Jonathan Sleeman
Motomu Tanaka
Spatio-temporal patterns of pancreatic cancer cells expressing CD44 isoforms on supported membranes displaying hyaluronic acid oligomers arrays.
PLoS ONE
author_facet Thomas Kaindl
Harden Rieger
Lisa-Mareike Kaschel
Ulrike Engel
Anja Schmaus
Jonathan Sleeman
Motomu Tanaka
author_sort Thomas Kaindl
title Spatio-temporal patterns of pancreatic cancer cells expressing CD44 isoforms on supported membranes displaying hyaluronic acid oligomers arrays.
title_short Spatio-temporal patterns of pancreatic cancer cells expressing CD44 isoforms on supported membranes displaying hyaluronic acid oligomers arrays.
title_full Spatio-temporal patterns of pancreatic cancer cells expressing CD44 isoforms on supported membranes displaying hyaluronic acid oligomers arrays.
title_fullStr Spatio-temporal patterns of pancreatic cancer cells expressing CD44 isoforms on supported membranes displaying hyaluronic acid oligomers arrays.
title_full_unstemmed Spatio-temporal patterns of pancreatic cancer cells expressing CD44 isoforms on supported membranes displaying hyaluronic acid oligomers arrays.
title_sort spatio-temporal patterns of pancreatic cancer cells expressing cd44 isoforms on supported membranes displaying hyaluronic acid oligomers arrays.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description In this paper, we designed a quantitative model of biological membranes by the deposition of planar lipid membranes on solid substrates (called supported membranes), and immobilized biotinylated oligomers of hyaluronic acid (oligo-HA, 6-8 disaccharide units in length) to the membrane surface via neutravidin cross-linkers. By controlling the self-assembly of biotinylated lipid anchors, the mean distance between the oligo-HA molecules on the membrane could be controlled to nm accuracy. The adhesion and motility of pancreatic adenocarcinoma cells expressing different splice variants of the HA-binding cell surface receptor CD44 on these surfaces were investigated quantitatively. The combination of label-free, time-lapse imaging of living cells and statistical analysis suggests that the static morphology (global shape and cytoskeleton remodeling) of cells, their stochastic morphological dynamics, and the probability of directed motion reflect the metastatic behaviour of the cancer cells.
url http://europepmc.org/articles/PMC3419250?pdf=render
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