Literature DB >> 23291426

Monitoring and manipulation of the pH of single cells using infrared spectromicroscopy and a molecular switch.

Marilena Carbone1, Theodora Zlateva, Luca Quaroni.   

Abstract

BACKGROUND: The pH of a biological system is a crucial determinant of the structures and reactivity of its components and cellular homeostasis of H(+) is critical for cell viability. Control and monitoring of cellular acidity are highly desirable for the purpose of studying biochemical processes in vivo.
METHODS: The effect of photolysis of a caged strong acid, the ester 1-(2-nitrophenyl)-ethylhexadecyl sulfonate (HDNS) is used to cause a controlled drop in pH in single cells. An isolated cell is selected under the IR microscope, irradiated with near-UV light and monitored by FTIR.
RESULTS: We demonstrate the use of FTIR spectromicroscopy to monitor light-induced acidification of the cellular medium by measuring the increased concentration of CO2 and corresponding decrease of HCO3(-) in the cell and in the surrounding medium.
CONCLUSIONS: We have demonstrated a method to control and accurately monitor the changes in pH of a cellular system by coupling a caged proton-releasing agent with FTIR spectromicroscopy detection. The overall implementation of photolysis and spectroscopic detection in a microscope optical configuration ensures single cell selectivity in both acidification and monitoring. We show the viability of monitoring of pH changes by FTIR spectromicroscopy with sensitivity comparable to that of glass electrodes, better than the existing methods for determining cell pH. GENERAL SIGNIFICANCE: Reporting the effect of small variations of cellular acidity provides a major improvement in the understanding of the interplay between molecular properties as assessed in vitro and cell physiology.
Copyright © 2013 Elsevier B.V. All rights reserved.

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Year:  2013        PMID: 23291426     DOI: 10.1016/j.bbagen.2012.12.022

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  4 in total

1.  Modulating intracellular acidification by regulating the incubation time of proton caged compounds.

Authors:  Marilena Carbone; Gianfranco Sabbatella; Simonetta Antonaroli; Viviana Orlando; Stefano Biagioni; Alessandro Nucara
Journal:  Eur Biophys J       Date:  2016-03-26       Impact factor: 1.733

2.  Exogenous control over intracellular acidification: Enhancement via proton caged compounds coupled to gold nanoparticles and an alternative pathway with DMSO.

Authors:  Marilena Carbone; Gianfranco Sabbatella; Simonetta Antonaroli; Hynd Remita; Viviana Orlando; Stefano Biagioni; Alessandro Nucara
Journal:  Data Brief       Date:  2016-01-21

3.  Photoactivated release of membrane impermeant sulfonates inside cells.

Authors:  Stuart T Caldwell; Sean N O'Byrne; Calum Wilson; Filip Cvetko; Michael P Murphy; John G McCarron; Richard C Hartley
Journal:  Chem Commun (Camb)       Date:  2021-03-23       Impact factor: 6.222

4.  Microfluidic approaches to synchrotron radiation-based Fourier transform infrared (SR-FTIR) spectral microscopy of living biosystems.

Authors:  Kevin Loutherback; Giovanni Birarda; Liang Chen; Hoi-Ying N Holman
Journal:  Protein Pept Lett       Date:  2016       Impact factor: 1.890

  4 in total

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