» Articles » PMID: 23799123

Sub-diffraction Nano Manipulation Using STED AFM

Overview
Journal PLoS One
Date 2013 Jun 27
PMID 23799123
Citations 10
Authors
Affiliations
Soon will be listed here.
Abstract

In the last two decades, nano manipulation has been recognized as a potential tool of scientific interest especially in nanotechnology and nano-robotics. Contemporary optical microscopy (super resolution) techniques have also reached the nanometer scale resolution to visualize this and hence a combination of super resolution aided nano manipulation ineluctably gives a new perspective to the scenario. Here we demonstrate how specificity and rapid determination of structures provided by stimulated emission depletion (STED) microscope can aid another microscopic tool with capability of mechanical manoeuvring, like an atomic force microscope (AFM) to get topological information or to target nano scaled materials. We also give proof of principle on how high-resolution real time visualization can improve nano manipulation capability within a dense sample, and how STED-AFM is an optimal combination for this job. With these evidences, this article points to future precise nano dissections and maybe even to a nano-snooker game with an AFM tip and fluorospheres.

Citing Articles

Unveiling nuclear chromatin distribution using IsoConcentraChromJ: A flourescence imaging plugin for IsoRegional and IsoVolumetric based ratios analysis.

Zeaiter L, Dabbous A, Baldini F, Pagano A, Bianchini P, Vergani L PLoS One. 2024; 19(7):e0305809.

PMID: 38954704 PMC: 11218964. DOI: 10.1371/journal.pone.0305809.


Correlative nanoscopy: A multimodal approach to molecular resolution.

Jadavi S, Bianchini P, Cavalleri O, Dante S, Canale C, Diaspro A Microsc Res Tech. 2021; 84(10):2472-2482.

PMID: 33955625 PMC: 8518117. DOI: 10.1002/jemt.23800.


Combined AFM and super-resolution localisation microscopy: Investigating the structure and dynamics of podosomes.

Hirvonen L, Marsh R, Jones G, Cox S Eur J Cell Biol. 2020; 99(7):151106.

PMID: 33070038 PMC: 7768945. DOI: 10.1016/j.ejcb.2020.151106.


AFM-STED correlative nanoscopy reveals a dark side in fluorescence microscopy imaging.

Cosentino M, Canale C, Bianchini P, Diaspro A Sci Adv. 2019; 5(6):eaav8062.

PMID: 31223651 PMC: 6584704. DOI: 10.1126/sciadv.aav8062.


Cortical Actin Dynamics in Endothelial Permeability.

Belvitch P, Htwe Y, Brown M, Dudek S Curr Top Membr. 2018; 82:141-195.

PMID: 30360779 PMC: 6263148. DOI: 10.1016/bs.ctm.2018.09.003.


References
1.
Fotiadis D, Scheuring S, Muller S, Engel A, Muller D . Imaging and manipulation of biological structures with the AFM. Micron. 2002; 33(4):385-97. DOI: 10.1016/s0968-4328(01)00026-9. View

2.
Diaspro A, Rolandi R . Atomic force microscopy. IEEE Eng Med Biol Mag. 1997; 16(2):26-7. DOI: 10.1109/memb.1997.582172. View

3.
Hell S, Wichmann J . Breaking the diffraction resolution limit by stimulated emission: stimulated-emission-depletion fluorescence microscopy. Opt Lett. 2009; 19(11):780-2. DOI: 10.1364/ol.19.000780. View

4.
Kassies R, van der Werf K, Lenferink A, Hunter C, Olsen J, Subramaniam V . Combined AFM and confocal fluorescence microscope for applications in bio-nanotechnology. J Microsc. 2005; 217(Pt 1):109-16. DOI: 10.1111/j.0022-2720.2005.01428.x. View

5.
Dvorak J . The application of atomic force microscopy to the study of living vertebrate cells in culture. Methods. 2003; 29(1):86-96. DOI: 10.1016/s1046-2023(02)00284-0. View