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Fluorescent Nanoparticles for the Measurement of Ion Concentration in Biological Systems
Published on: July 4, 2011
The sodium concentration of the lateral intercellular spaces of MDCK cells: a microspectrofluorimetric study
1Laboratory of Kidney and Electrolyte Metabolism, National Heart, Lung, and Blood Institute, National Institutes of Health, Bethesda, Maryland 20892-1598, USA.
Abstract:
MDCK cell monolayers grown on glass coverslips were used to examine the Na+ concentration in individual lateral intercellular spaces (LIS) by video fluorescence microscopy. The LIS was filled with the Na(+)-sensitive fluorescent dye SBFO by incubation of the monolayers for 75-90 min with 250 microM of the membrane impermeant form of the dye. After dye loading, the monolayers were perfused at 37 degrees C with solutions buffered with HEPES or bicarbonate/CO2 containing 142 mM Na+. Ratios of the fluorescence images after sequential excitation with 340 nm and 380 nm light were performed and in situ calibration of LIS Na+ was accomplished after blocking the Na+ pump with 5 x 10(-4) M ouabain. Measurements of Na+ along the basolateral-to-apical axis of the LIS at 1.0 or 1.5 microns intervals did not reveal a Na+ gradient when the perfusate was either HEPES or bicarbonate/CO2 solutions. In bicarbonate solutions, the mean Na+ concentration (mM) was 157.2 +/- 2.3, approximately 15 mM higher than the bath Na+ concentration. In HEPES solutions, however, the Na+ concentration was not different from the bath concentration (142.7 +/- 3.1 mM). The time course of Na+ changes in LIS was investigated by rapidly switching the perfusate from 142 to 80 mM Na+ and measuring the Na+ changes at one focal plane.
Insights
This study measured sodium (Na+) concentration in lateral intercellular spaces (LIS) of MDCK cells using fluorescence microscopy. Bicarbonate-buffered solutions showed higher Na+ in LIS compared to HEPES-buffered solutions.
Area of Science:
- Cell Biology
- Physiology
- Biophysics
Background:
- Lateral intercellular spaces (LIS) play a crucial role in epithelial transport.
- Understanding ion concentrations within LIS is vital for comprehending epithelial function.
Purpose of the Study:
- To quantify Na+ concentration in the LIS of Madin-Darby canine kidney (MDCK) cell monolayers.
- To investigate the influence of different buffer solutions (HEPES vs. bicarbonate/CO2) on LIS Na+ levels.
Main Methods:
- Utilized video fluorescence microscopy with a Na+-sensitive dye (SBFO) to measure intracellular Na+.
- Employed in situ calibration after blocking the Na+ pump with ouabain.
- Perfused cell monolayers with solutions containing 142 mM Na+ under HEPES or bicarbonate/CO2 buffering.
Main Results:
- No significant Na+ gradient was observed along the basolateral-to-apical axis of LIS in either buffer.
- LIS Na+ concentration was significantly higher (approx. 15 mM above bath) in bicarbonate/CO2 buffered solutions.
- LIS Na+ concentration in HEPES buffered solutions was similar to the bath Na+ concentration.
Conclusions:
- Epithelial buffer composition influences Na+ concentration within lateral intercellular spaces.
- Bicarbonate buffering leads to elevated Na+ levels in the LIS of MDCK cells, suggesting a role in transepithelial transport dynamics.
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