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Simultaneous capacitance and amperometric measurements of exocytosis: A comparison

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Simultaneous capacitance and amperometric measurements of exocytosis: A comparison. / Oberhauser, Andres F.; Robinson, Iain M.; Fernandez, Julio M.
In: Biophysical Journal, Vol. 71, No. 2, 31.08.1996, p. 1131-1139.

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Oberhauser AF, Robinson IM, Fernandez JM. Simultaneous capacitance and amperometric measurements of exocytosis: A comparison. Biophysical Journal. 1996 Aug 31;71(2):1131-1139. doi: 10.1016/S0006-3495(96)79315-3

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Oberhauser, Andres F. ; Robinson, Iain M. ; Fernandez, Julio M. / Simultaneous capacitance and amperometric measurements of exocytosis : A comparison. In: Biophysical Journal. 1996 ; Vol. 71, No. 2. pp. 1131-1139.

Bibtex

@article{24224fe60fa0463cad06a57689a9e256,
title = "Simultaneous capacitance and amperometric measurements of exocytosis: A comparison",
abstract = "We measured the exocytotic response induced by flash photolysis of caged compounds in isolated mast cells and chromaffin cells. Vesicle fusion was measured by monitoring the cell membrane capacitance. The release of vesicular contents was followed by amperometry. In response to a GTPγS stimulus we found that the time integral of the amperometric current could be superimposed on the capacitance trace. This shows that the integrated amperometric signal provides an alternative method of measuring the extent and kinetics of the secretory response. Very different results were obtained when photolysis of caged Ca2+ (DM-nitrophen) was used to stimulate secretion. In mast cells, there was an immediate, graded increase in membrane capacitance that was followed by step increases (indicative of granule fusion). During the initial phase of the capacitance increases, no release of oxidizable secretory products was detected. In chromaffin cells we also observed a considerable delay between increases in capacitance, triggered by uncaging Ca2+, and the release of oxidizable secretory products. Here we demonstrate that there can be large increases in the membrane capacitance of a secretory cell, triggered by flash photolysis of DM-nitrophen, which indicate events that are not due to the fusion of granules containing oxidizable substances. These results show that increases in capacitance that are not resolved as steps cannot be readily interpreted as secretory events unless they are confirmed independently.",
author = "Oberhauser, {Andres F.} and Robinson, {Iain M.} and Fernandez, {Julio M.}",
year = "1996",
month = aug,
day = "31",
doi = "10.1016/S0006-3495(96)79315-3",
language = "English",
volume = "71",
pages = "1131--1139",
journal = "Biophysical Journal",
issn = "0006-3495",
publisher = "Cell Press",
number = "2",

}

RIS

TY - JOUR

T1 - Simultaneous capacitance and amperometric measurements of exocytosis

T2 - A comparison

AU - Oberhauser, Andres F.

AU - Robinson, Iain M.

AU - Fernandez, Julio M.

PY - 1996/8/31

Y1 - 1996/8/31

N2 - We measured the exocytotic response induced by flash photolysis of caged compounds in isolated mast cells and chromaffin cells. Vesicle fusion was measured by monitoring the cell membrane capacitance. The release of vesicular contents was followed by amperometry. In response to a GTPγS stimulus we found that the time integral of the amperometric current could be superimposed on the capacitance trace. This shows that the integrated amperometric signal provides an alternative method of measuring the extent and kinetics of the secretory response. Very different results were obtained when photolysis of caged Ca2+ (DM-nitrophen) was used to stimulate secretion. In mast cells, there was an immediate, graded increase in membrane capacitance that was followed by step increases (indicative of granule fusion). During the initial phase of the capacitance increases, no release of oxidizable secretory products was detected. In chromaffin cells we also observed a considerable delay between increases in capacitance, triggered by uncaging Ca2+, and the release of oxidizable secretory products. Here we demonstrate that there can be large increases in the membrane capacitance of a secretory cell, triggered by flash photolysis of DM-nitrophen, which indicate events that are not due to the fusion of granules containing oxidizable substances. These results show that increases in capacitance that are not resolved as steps cannot be readily interpreted as secretory events unless they are confirmed independently.

AB - We measured the exocytotic response induced by flash photolysis of caged compounds in isolated mast cells and chromaffin cells. Vesicle fusion was measured by monitoring the cell membrane capacitance. The release of vesicular contents was followed by amperometry. In response to a GTPγS stimulus we found that the time integral of the amperometric current could be superimposed on the capacitance trace. This shows that the integrated amperometric signal provides an alternative method of measuring the extent and kinetics of the secretory response. Very different results were obtained when photolysis of caged Ca2+ (DM-nitrophen) was used to stimulate secretion. In mast cells, there was an immediate, graded increase in membrane capacitance that was followed by step increases (indicative of granule fusion). During the initial phase of the capacitance increases, no release of oxidizable secretory products was detected. In chromaffin cells we also observed a considerable delay between increases in capacitance, triggered by uncaging Ca2+, and the release of oxidizable secretory products. Here we demonstrate that there can be large increases in the membrane capacitance of a secretory cell, triggered by flash photolysis of DM-nitrophen, which indicate events that are not due to the fusion of granules containing oxidizable substances. These results show that increases in capacitance that are not resolved as steps cannot be readily interpreted as secretory events unless they are confirmed independently.

U2 - 10.1016/S0006-3495(96)79315-3

DO - 10.1016/S0006-3495(96)79315-3

M3 - Journal article

C2 - 8842250

AN - SCOPUS:0029782660

VL - 71

SP - 1131

EP - 1139

JO - Biophysical Journal

JF - Biophysical Journal

SN - 0006-3495

IS - 2

ER -