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Quantitative X-ray microanalysis of calcium with the Camebax-TEM system in frozen,freeze-substituted and resin-embedded tissue sections
Authors:S. Blaineau  A. K. Julliard  J. Amsellem  G. Nicaise
Affiliation:(1) Laboratoire de Physiologie des Elements Excitables, Université Claude Bernard, F-69622 Villeurbanne, France;(2) Laboratoire d'Histologie Expérimentale, Université Claude Bernard, F-69622 Villeurbanne, France;(3) Laboratoire de Cytologie Expérimentale, Université de Nice, Parc Valrose, F-06034 Nice Cedex, France
Abstract:Summary The relevance of the continuum method for a quantitative X-ray microanalysis of epon embedded tissue sections in the particular conditions offered by the Camebax-TEM system was tested and an improved model of specimen holder is proposed.The absolute calcium concentration [Ca] of membrane-bound intracellular glio-interstitial granules was determined by X-ray microanalysis in transmission electron microscopy of Mytilus retractor muscle. The Ca peak and background values were measured by the wavelength-dispersive spectrometer of the Camebax; the mass thickness of the section was recorded simultaneously with an added energy-dispersive detector. The tissue was frozen at ap77 K in a mixture of liquid propane and butane, freeze-substituted in the presence of oxalic acid and embedded in epoxy resin. The calcium concentration of glio-intestitial granules can be as high as 180 mmol·kg–1 of epoxy-embedded tissue, with an average of 40 mmol·kg–1. The sampling of the data through repcated experiments is discussed and it is proposed that the cell would be the main level of variation. The Ca content of glio-interstitial granules is significantly lower in the tissbes of animals submitted to high-potassium artificial seawater for 10 min. This finding was predicted by the hypothesis that glio-interstitial tissue is a regulator of calcium concentration in extracellular spaces.
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