Publication | Open Access
Nanomechanics of Microtubules
352
Citations
13
References
2002
Year
EngineeringMicromechanicsMicroscopyMechanical EngineeringBiofabricationBiomedical EngineeringSoft MatterSoft RoboticsSingle MicrotubuleCarbon NanotubesNanomechanicsBiophysicsNanoroboticsCell BiomechanicsMicrostructureShear ModuliMicrofabricationScanning Force MicroscopyMechanical AnisotropyMedicineMechanics Of Materials
We have determined the mechanical anisotropy of a single microtubule by simultaneously measuring the Young's and the shear moduli in vitro. This was achieved by elastically deforming the microtubule deposited on a substrate tailored by electron-beam lithography with a tip of an atomic force microscope. The shear modulus is 2 orders of magnitude lower than the Young's, giving rise to a length-dependent flexural rigidity of microtubules. The temperature dependence of the microtubule's bending stiffness in the (5-40) degrees C range shows a strong variation upon cooling coming from the increasing interaction between the protofilaments.
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