3D analysis of the myenteric plexus of the human bowel by X-ray phase-contrast tomography - a future method?

Enteric nervous system X-ray phase-contrast tomography full-thickness biopsy three-dimensional analysis

Journal

Scandinavian journal of gastroenterology
ISSN: 1502-7708
Titre abrégé: Scand J Gastroenterol
Pays: England
ID NLM: 0060105

Informations de publication

Date de publication:
Oct 2020
Historique:
pubmed: 11 9 2020
medline: 19 8 2021
entrez: 10 9 2020
Statut: ppublish

Résumé

Light microscopical analysis in two dimensions, combined with immunohistochemistry, is presently the gold standard to describe the enteric nervous system (ENS). Our aim was to assess the usefulness of three-dimensional (3D) imaging by X-ray phase-contrast tomography in evaluating the ENS of the human bowel. Myenteric ganglia were identified in full-thickness biopsies of the ileum and colon by hematoxylin & eosin staining. A1-mm biopsy punch was taken from the paraffin blocks and placed into a Kapton The contrast allowed us to follow the shape and the size changes of the ganglia, as well as to study their cellular components together with the cells and cellular projections of the periganglional space. Furthermore, it was possible to show the 3D network of the myenteric plexus and to quantify its volume within the samples. Phase-contrast X-ray tomography can be applied for volume analyses of the human ENS and to study tissue components in unstained paraffin-embedded tissue biopsies. This technique could potentially be used to study disease mechanisms, and to compare healthy and diseased tissues in clinical research.

Identifiants

pubmed: 32907418
doi: 10.1080/00365521.2020.1815079
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

1261-1267

Auteurs

Niccolò Peruzzi (N)

Division of Medical Radiation Physics, Department of Clinical Sciences, Lund University, Lund, Sweden.

Béla Veress (B)

Department of Pathology, Skåne University Hospital, Malmö, Sweden.

Lars B Dahlin (LB)

Department of Translational Medicine - Hand Surgery, Lund University, Malmö, Sweden.
Department of Hand Surgery, Skåne University Hospital, Malmö, Sweden.

Tim Salditt (T)

Institute for X-Ray Physics, University of Göttingen, Göttingen, Germany.
Cluster of Excellence "Multiscale Bioimaging: from Molecular Machines to Networks of Excitable Cells" (MBExC), University of Göttingen, Germany.

Mariam Andersson (M)

Department of Applied Mathematics and Computer Science, Technical University of Denmark, Lyngby, Denmark.
Danish Research Centre for Magnetic Resonance (DRCMR), Center for Functional and Diagnostic Imaging and Research, Copenhagen University Hospital Hvidovre, Hvidovre, Denmark.

Marina Eckermann (M)

Institute for X-Ray Physics, University of Göttingen, Göttingen, Germany.
Cluster of Excellence "Multiscale Bioimaging: from Molecular Machines to Networks of Excitable Cells" (MBExC), University of Göttingen, Germany.

Jasper Frohn (J)

Institute for X-Ray Physics, University of Göttingen, Göttingen, Germany.

Anna-Lena Robisch (AL)

Institute for X-Ray Physics, University of Göttingen, Göttingen, Germany.

Martin Bech (M)

Division of Medical Radiation Physics, Department of Clinical Sciences, Lund University, Lund, Sweden.

Bodil Ohlsson (B)

Lund University, Skåne University Hospital, Department of Internal Medicine, Malmö, Sweden.

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Classifications MeSH