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Quantitative Nanoscale Secondary Ion Mass Spectrometry (NanoSIMS) Imaging of Individual Vesicles to Investigate the Relation between Fraction of Chemical Release and Vesicle Size
Authors:Tho Duc Khanh Nguyen  Stefania Rabasco  Alicia A. Lork  Andre Du Toit  Prof. Andrew G. Ewing
Affiliation:1. Department of Chemistry and Molecular Biology, University of Gothenburg, 41296 Gothenburg, Sweden

These authors contributed equally to this work.;2. Department of Chemistry and Molecular Biology, University of Gothenburg, 41296 Gothenburg, Sweden

Abstract:We used correlative transmission electron microscopy (TEM) and nanoscale secondary ion mass spectrometry (NanoSIMS) imaging to quantify the contents of subvesicular compartments, and to measure the partial release fraction of 13C-dopamine in cellular nanovesicles as a function of size. Three modes of exocytosis comprise full release, kiss-and-run, and partial release. The latter has been subject to scientific debate, despite a growing amount of supporting literature. We tailored culturing procedures to alter vesicle size and definitively show no size correlation with the fraction of partial release. In NanoSIMS images, vesicle content was indicated by the presence of isotopic dopamine, while vesicles which underwent partial release were identified by the presence of an 127I-labelled drug, to which they were exposed during exocytosis allowing entry into the open vesicle prior to its closing again. Demonstration of similar partial release fractions indicates that this mode of exocytosis is predominant across a wide range of vesicle sizes.
Keywords:Chemical Release Fraction  Exocytosis  Nanosims  Partial Release  TEM
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