Infrared spectroscopy of biological cell monolayers grown on surfaces is a poorly developed field. This is unfortunate because these monolayers have potential as biological sensors. Here we have used infrared microscopy, in both transmission and transflection geometries, to study air-dried Vero cell monolayers. Using both methods allows one to distinguish sampling artefactual features from real sample spectral features. In transflection experiments, amide I/II absorption bands down-shift 9/4 cm(-1), respectively, relative to the corresponding bands in transmission experiments. In all other spectral regions no pronounced frequency differences in spectral bands in transmission and transflection experiments were observed. Transmission and transflection infrared microscopy were used to obtain infrared spectra for unfixed and acetone- or formalin-fixed Vero cell monolayers. Formalin-fixed monolayers display spectra that are very similar to that obtained using unfixed cells. However, acetone fixation leads to considerable spectral modifications. For unfixed and formalin-fixed monolayers, a distinct band is observed at 1740 cm(-1). This band is absent in spectra obtained using acetone-fixed monolayers. The 1740 cm(-1) band is associated with cellular ester lipids. In support of this hypothesis, two bands at 2925 and 2854 cm(-1) are also found to disappear upon acetone fixation. These bands are associated with C-H modes of the cellular lipids. Acetone fixation also leads to modification of protein amide I and II absorption bands. This may be expected as acetone causes coagulation of soluble cellular proteins. Other spectral changes associated with acetone or formalin fixation in the 1400-800 cm(-1) region are discussed.
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Nat Commun
January 2025
Biomimetic Systems for Cell Engineering Laboratory, Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute of Science and Technology (BIST), Barcelona, Spain.
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View Article and Find Full Text PDFCancer Immunol Immunother
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Université Paris-Saclay, UVSQ, EA 4340 BECCOH, Boulogne-Billancourt, France.
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View Article and Find Full Text PDFAlzheimers Dement
December 2024
University of Colorado Anschutz Medical Campus, Aurora, CO, USA.
Background: Adults with Down syndrome (DS) develop Alzheimer's disease (AD) brain pathology by their 40s due to triplication of the amyloid precursor protein (APP) gene on chromosome 21, and most develop clinical symptoms by age 50-60. Inheritance of the apolipoprotein E (apoE) ε4 allele (APOE4) is the strongest risk factor for AD besides age, whereas the ε3 allele (APOE3) does not change AD risk. The APOE4 genotype is associated with earlier and more rapid cognitive decline in both typical AD and DS-associated AD (DS-AD); however, understanding of the associated mechanisms is lacking.
View Article and Find Full Text PDFPathologica
December 2024
Department of Pharmacy, University of Salerno, Italy.
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Sci Rep
January 2025
University of Novi Sad, BioSense Institute, Dr Zorana Djindjica 1, Novi Sad, 21000, Serbia.
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