Freely Suspended Actin Cortex Models on Arrays of Microfabricated Pillars
Actin networking across pillar‐tops: Actin filaments have been self‐assembled onto microscopic silicon pillars, forming quasi‐two‐dimensional networks (see graphic) and creating novel possibilities for mimicking functions of the cellular actin cortex on solid‐state devices.
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Veröffentlicht in: | Chemphyschem 2003-08, Vol.4 (8), p.872-877 |
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creator | Roos, Wouter H. Roth, Alexander Konle, Johannes Presting, Hartmut Sackmann, Erich Spatz, Joachim P. |
description | Actin networking across pillar‐tops: Actin filaments have been self‐assembled onto microscopic silicon pillars, forming quasi‐two‐dimensional networks (see graphic) and creating novel possibilities for mimicking functions of the cellular actin cortex on solid‐state devices. |
doi_str_mv | 10.1002/cphc.200300712 |
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subjects | actin cortex modeling Actins - chemistry Actins - physiology Animals Biological and medical sciences Biophysical Phenomena Biophysics Biotechnology Cell structures and functions Cytoskeleton - metabolism Cytoskeleton, cytoplasm. Intracellular movements Fundamental and applied biological sciences. Psychology materials science Microscopy, Electron, Scanning Microscopy, Fluorescence Models, Statistical Models, Theoretical Molecular and cellular biology polymers Polymers - chemistry two-dimensional networks |
title | Freely Suspended Actin Cortex Models on Arrays of Microfabricated Pillars |
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