Abstract
Metaphase chromosomes prepared according to the standard spreading procedure exhibit viscoelastical behavior after rehydration. The salt- dependency of this elasticity was investigated using contact mode scanning force microscopy (SFM). Therefore, chromosomes were imaged in solutions of different ionic strength (0.3 x PBS and water). The elasticity was probed by stepwise increase of the loading force of the scanning tip, resulting in a set of images. The images were used for the determination of the height and the apparent volume of each chromosome, and these values were the base for a characterization of the viscoelastical response of the chromosomes under different salt conditions. Lower ionic strength resulted in a greater response of the chromosome structures to applied loading forces.
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Fritzsche, W. (1999). Salt-dependent chromosome viscoelasticity characterized by scanning force microscopy-based volume measurements. Microscopy Research and Technique, 44(5), 357–362. https://doi.org/10.1002/(SICI)1097-0029(19990301)44:5<357::AID-JEMT7>3.0.CO;2-U
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