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  5. Elasticity Maps of Living Neurons Measured by Combined Fluorescence and Atomic Force Microscopy

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Article
en
2012

Elasticity Maps of Living Neurons Measured by Combined Fluorescence and Atomic Force Microscopy

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0 Files

en
2012
Vol 103 (5)
Vol. 103
DOI: 10.1016/j.bpj.2012.08.005

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David Kaplan
David Kaplan

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Elise Spedden
James D. White
Elena N. Naumova
+2 more

Abstract

Detailed knowledge of mechanical parameters such as cell elasticity, stiffness of the growth substrate, or traction stresses generated during axonal extensions is essential for understanding the mechanisms that control neuronal growth. Here, we combine atomic force microscopy-based force spectroscopy with fluorescence microscopy to produce systematic, high-resolution elasticity maps for three different types of live neuronal cells: cortical (embryonic rat), embryonic chick dorsal root ganglion, and P-19 (mouse embryonic carcinoma stem cells) neurons. We measure how the stiffness of neurons changes both during neurite outgrowth and upon disruption of microtubules of the cell. We find reversible local stiffening of the cell during growth, and show that the increase in local elastic modulus is primarily due to the formation of microtubules. We also report that cortical and P-19 neurons have similar elasticity maps, with elastic moduli in the range 0.1-2 kPa, with typical average values of 0.4 kPa (P-19) and 0.2 kPa (cortical). In contrast, dorsal root ganglion neurons are stiffer than P-19 and cortical cells, yielding elastic moduli in the range 0.1-8 kPa, with typical average values of 0.9 kPa. Finally, we report no measurable influence of substrate protein coating on cell body elasticity for the three types of neurons.

How to cite this publication

Elise Spedden, James D. White, Elena N. Naumova, David Kaplan, Cristian Staii (2012). Elasticity Maps of Living Neurons Measured by Combined Fluorescence and Atomic Force Microscopy. , 103(5), DOI: https://doi.org/10.1016/j.bpj.2012.08.005.

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Publication Details

Type

Article

Year

2012

Authors

5

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1016/j.bpj.2012.08.005

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