Journal article
Multispectral Atomic Force Microscopy-Infrared Nano-Imaging of Malaria Infected Red Blood Cells
D Perez-Guaita, K Kochan, M Batty, C Doerig, J Garcia-Bustos, S Espinoza, D McNaughton, P Heraud, BR Wood
Analytical Chemistry | AMER CHEMICAL SOC | Published : 2018
Abstract
Atomic force microscopy-infrared (AFM-IR) spectroscopy is a powerful new technique that can be applied to study molecular composition of cells and tissues at the nanoscale. AFM-IR maps are acquired using a single wavenumber value: they show either the absorbance plotted against a single wavenumber value or a ratio of two absorbance values. Here, we implement multivariate image analysis to generate multivariate AFM-IR maps and use this approach to resolve subcellular structural information in red blood cells infected with Plasmodium falciparum at different stages of development. This was achieved by converting the discrete spectral points into a multispectral line spectrum prior to multivaria..
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Awarded by European Regional Development Fund
Funding Acknowledgements
B.R.W. is supported by an Australian Research Council (ARC) Future Fellowship grant FT120100926. We acknowledge Mr. Finlay Shanks for instrumental support. The Nano-IR was purchased under an Australian Research Council (ARC) Linkage Equipment infrastructure grant LE150100088. S.J.E.H. is supported by the ELI Extreme Light Infrastructure Phase 2 (CZ.02.1.01/0.0/0.0/15_008/0000162) and ELIBIO (CZ.02.1.01/0.0/0.0/15_003/0000447) from the European Regional Development Fund.