In our recent work we have characterized the mechanical interaction occurring between the pipette tip and the sample during SICM operation, when the pipette is filled to a level differing from the value determined by the capillary tension. We have also demonstrated that this phenomenon can be actually exploited to deliver weak and finely adjustable pressure stimuli to neuronal growth cones, to guide them, in far scanning mode. A question that still remains open is the type of cell response that mediates the remodeling. One of the possible mechanisms is the activation of mechano-sensitive ion channels due to membrane deformation. The knowledge of the extent of membrane deformation is an essential step to evaluate different hypotheses.

Strategies to measure the Young modulus of cells by means of Scanning Ion Conductance Microscopy

Tognoni E;Baschieri P;Dinelli F;
2011

Abstract

In our recent work we have characterized the mechanical interaction occurring between the pipette tip and the sample during SICM operation, when the pipette is filled to a level differing from the value determined by the capillary tension. We have also demonstrated that this phenomenon can be actually exploited to deliver weak and finely adjustable pressure stimuli to neuronal growth cones, to guide them, in far scanning mode. A question that still remains open is the type of cell response that mediates the remodeling. One of the possible mechanisms is the activation of mechano-sensitive ion channels due to membrane deformation. The knowledge of the extent of membrane deformation is an essential step to evaluate different hypotheses.
2011
Istituto Nazionale di Ottica - INO
SICM
neuronal cone growth
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/181120
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