Literature DB >> 33795908

Sample preparation with sucrose cryoprotection dramatically alters Zn distribution in the rodent hippocampus, as revealed by elemental mapping.

M J Pushie1, A Hollings2,3, J Reinhardt4, S M Webb5, V Lam2,6, R Takechi2,6, J C Mamo2,6, P G Paterson7, M E Kelly1, G N George8,9, I J Pickering8,9, M J Hackett2,3.   

Abstract

Transition metal ions (Fe, Mn, Cu, Zn) are essential for healthy brain function, but altered concentration, distribution, or chemical form of the metal ions has been implicated in numerous brain pathologies. Currently, it is not possible to image the cellular or sub-cellular distribution of metal ions in vivo and therefore, studying brain-metal homeostasis largely relies on ex vivo in situ elemental mapping. Sample preparation methods that accurately preserve the in vivo elemental distribution are essential if one wishes to translate the knowledge of elemental distributions measured ex vivo toward increased understanding of chemical and physiological pathways of brain disease. The choice of sample preparation is particularly important for metal ions that exist in a labile or mobile form, for which the in vivo distribution could be easily distorted by inappropriate sample preparation. One of the most widely studied brain structures, the hippocampus, contains a large pool of labile and mobile Zn. Herein, we describe how sucrose cryoprotection, the gold standard method of preparing tissues for immuno-histochemistry or immuno-fluorescence, which is also often used as a sample preparation method for elemental mapping studies, drastically alters hippocampal Zn distribution. Based on the results of this study, in combination with a comparison against the strong body of published literature that has used either rapid plunge freezing of brain tissue, or sucrose cryo-protection, we strongly urge investigators in the future to cease using sucrose cryoprotection as a method of sample preparation for elemental mapping, especially if Zn is an analyte of interest.

Entities:  

Keywords:  LA-ICP-MS; XFM; Zn; hippocampus; memory; metals; sample preparation

Year:  2020        PMID: 33795908      PMCID: PMC8009441          DOI: 10.1039/d0ja00323a

Source DB:  PubMed          Journal:  J Anal At Spectrom        ISSN: 0267-9477            Impact factor:   4.023


  3 in total

1.  Human Neocortex Layer Features Evaluated by PIXE, STIM, and STXM Techniques.

Authors:  Paulo Fernandes Costa Jobim; Carla Eliete Iochims Dos Santos; Johnny Ferraz Dias; Mitja Kelemen; Primož Pelicon; Katarina Vogel Mikuš; Lorella Pascolo; Alessandra Gianoncelli; Diana Eva Bedolla; Alberto Antônio Rasia-Filho
Journal:  Biol Trace Elem Res       Date:  2022-03-08       Impact factor: 3.738

2.  A simple preparation protocol for shipping and storage of tissue sections for laser ablation-inductively coupled plasma-mass spectrometry imaging.

Authors:  Rebecca Buchholz; Sebastian Krossa; Maria K Andersen; Michael Holtkamp; Michael Sperling; Uwe Karst; May-Britt Tessem
Journal:  Metallomics       Date:  2022-03-28       Impact factor: 4.526

Review 3.  X-ray fluorescence microscopy methods for biological tissues.

Authors:  M Jake Pushie; Nicole J Sylvain; Huishu Hou; Mark J Hackett; Michael E Kelly; Samuel M Webb
Journal:  Metallomics       Date:  2022-06-23       Impact factor: 4.636

  3 in total

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