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PMID: 22094372 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Interlaboratory round robin on cantilever calibration for AFM force spectroscopy.

Ultramicroscopy ·Vol. 111 ·No. 12 ·2011-12-00 ·Pages 1659-69

te Riet J, Katan AJ, Rankl C, Stahl SW, van Buul AM, Phang IY, Gomez-Casado A, Schön P, Gerritsen JW, Cambi A, Rowan AE, Vancso GJ, Jonkheijm P, Huskens J, Oosterkamp TH, Gaub H, Hinterdorfer P, Figdor CG, Speller S

Abstract

Single-molecule force spectroscopy studies performed by Atomic Force Microscopes (AFMs) strongly rely on accurately determined cantilever spring constants. Hence, to calibrate cantilevers, a reliable calibration protocol is essential. Although the thermal noise method and the direct Sader method are frequently used for cantilever calibration, there is no consensus on the optimal calibration of soft and V-shaped cantilevers, especially those used in force spectroscopy. Therefore, in this study we aimed at establishing a commonly accepted approach to accurately calibrate compliant and V-shaped cantilevers. In a round robin experiment involving eight different laboratories we compared the thermal noise and the Sader method on ten commercial and custom-built AFMs. We found that spring constants of both rectangular and V-shaped cantilevers can accurately be determined with both methods, although the Sader method proved to be superior. Furthermore, we observed that simultaneous application of both methods on an AFM proved an accurate consistency check of the instrument and thus provides optimal and highly reproducible calibration. To illustrate the importance of optimal calibration, we show that for biological force spectroscopy studies, an erroneously calibrated cantilever can significantly affect the derived (bio)physical parameters. Taken together, our findings demonstrated that with the pre-established protocol described reliable spring constants can be obtained for different types of cantilevers.

MeSH Terms
Algorithms Calibration Ligands Microscopy, Atomic Force/instrumentation,methods Models, Theoretical Spectrum Analysis/instrumentation,methods Static Electricity
Chemicals
Ligands
Authors & Affiliations
19 authors, click to expand affiliations / ORCID
te Riet Joost
Scanning Probe Microscopy, Radboud University Nijmegen, P.O. Box 9010, 6500 GL Nijmegen, The Netherlands.
Katan Allard J
Rankl Christian
Stahl Stefan W
van Buul Arend M
Phang In Yee
Gomez-Casado Alberto
Schön Peter
Gerritsen Jan W
Cambi Alessandra
Rowan Alan E
Vancso G Julius
Jonkheijm Pascal
Huskens Jurriaan
Oosterkamp Tjerk H
Gaub Hermann
Hinterdorfer Peter
Figdor Carl G
Speller Sylvia
Article Info
Journal
Ultramicroscopy
Abbr.
Ultramicroscopy
ISSN
1879-2723
Published
2011-12-00
Epub
2011-00-24
Pages
1659-69
Language
English
Region
Netherlands
NLM ID
7513702
Subset
IM
Analysis Services
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