Semi-automatic Method for Ca super(2+) Imaging Data Analysis of Maturing Human Embryonic Stem Cells-Derived Retinal Pigment Epithelium

Ca super(2+) is a second messenger controlling vital cellular processes, including cell maturation. Changes in Ca super(2+) signaling during maturation of human embryonic stem cell-derived retinal pigment epithelial cells (hESC-RPE) have not been assessed previously. The aim of this study was to inv...

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Veröffentlicht in:Annals of biomedical engineering 2016-11, Vol.44 (11), p.3408-3420
Hauptverfasser: Abu Khamidakh, Amna E, Santos, Florentino Caetano, Skottman, Heli, Juuti-Uusitalo, Kati, Hyttinen, Jari
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Sprache:eng
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Zusammenfassung:Ca super(2+) is a second messenger controlling vital cellular processes, including cell maturation. Changes in Ca super(2+) signaling during maturation of human embryonic stem cell-derived retinal pigment epithelial cells (hESC-RPE) have not been assessed previously. The aim of this study was to investigate maturation-dependent changes in transient intracellular Ca super(2+) ([Ca super(2+)] sub(i)) increases in hESC-RPE. For this, we developed image analysis tools to evaluate cell-specific Ca super(2+) signals from the entire field of view. Spontaneous and mechanically induced transient [Ca super(2+)] sub( i) increases (STIs and MITIs) were analyzed in hESC-RPEs cultured for 9 or 28 days, altogether from more than 80,000 cells. Both cultures showed STIs: the longer culture time resulted in twofold increase of amount of cells with STIs. Mechanical stimulation induced intercellular Ca super(2+) waves in cells from both time points, but longer culture time reduced Ca super(2+) wave spreading. Depletion of intracellular Ca super(2+) stores decreased cell fraction with STIs and MITIs at both time points, and absence of extracellular Ca super(2+) had similar effect on cells with STIs. To conclude, hESC-RPE cells undergo significant Ca super(2+) signaling re-arrangements during a short maturation period increasing cell fraction with STIs, while decreasing coordinated cell response to mechanical stimulation. This knowledge and proposed analysis tools can be used for assessment of hESC-RPE maturation in vitro.
ISSN:0090-6964
1573-9686
DOI:10.1007/s10439-016-1656-9