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
Hauptverfasser: Roos, Wouter H., Roth, Alexander, Konle, Johannes, Presting, Hartmut, Sackmann, Erich, Spatz, Joachim P.
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container_end_page 877
container_issue 8
container_start_page 872
container_title Chemphyschem
container_volume 4
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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source MEDLINE; Wiley Journals
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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