Multimodal quantitative phase imaging with digital holographic microscopy accurately assesses intestinal inflammation and epithelial wound healing

Lenz P., Brückner M., Ketelhut S., Heidemann J., Kemper B., Bettenworth D.

Research article (journal) | Peer reviewed

Abstract

The incidence of inflammatory bowel disease, i.e., Crohn’s disease and Ulcerative colitis, has significantly increased over the last decade. The etiology of IBD remains unknown and current therapeutic strategies are based on the unspecific suppression of the immune system. The development of treatments that specifically target intestinal inflammation and epithelial wound healing could significantly improve management of IBD, however this requires accurate detection of inflammatory changes. Currently, potential drug candidates are usually evaluated using animal models in vivo or with cell culture based techniques in vitro. Histological examination usually requires the cells or tissues of interest to be stained, which may alter the sample characteristics and furthermore, the interpretation of findings can vary by investigator expertise. Digital holographic microscopy (DHM), based on the detection of optical path length delay, allows stain-free quantitative phase contrast imaging. This allows the results to be directly correlated with absolute biophysical parameters. We demonstrate how measurement of changes in tissue density with DHM, based on refractive index measurement, can quantify inflammatory alterations, without staining, in different layers of colonic tissue specimens from mice and humans with colitis. Additionally, we demonstrate continuous multimodal label-free monitoring of epithelial wound healing in vitro, possible using DHM through the simple automated determination of the wounded area and simultaneous determination of morphological parameters such as dry mass and layer thickness of migrating cells. In conclusion, DHM represents a valuable, novel and quantitative tool for the assessment of intestinal inflammation with absolute values for parameters possible, simplified quantification of epithelial wound healing in vitro and therefore has high potential for translational diagnostic use.

Details about the publication

JournalJournal of Visualized Experiments
Volume2016
Issue115
StatusPublished
Release year2016
Language in which the publication is writtenEnglish
DOI10.3791/54460
Link to the full texthttps://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84989356223&origin=inward
KeywordsDigital holographic microscopy; Gastroenterology; Inflammation; Issue 115; Label-free; Medicine; Quantitative microscopy; Quantitative phase imaging; Stain-free; Wound healing

Authors from the University of Münster

Bettenworth, Dominik
Medical Clinic of Internal Medicine B: Gastroenterology and Metabolic Disorders (Med B)
Brückner, Markus Georg
Medical Clinic of Internal Medicine B: Gastroenterology and Metabolic Disorders (Med B)
Kemper, Björn
Biomedical Technology Center of the Medical Faculty Münster
Lenz, Philipp
Medical Clinic of Internal Medicine B: Gastroenterology and Metabolic Disorders (Med B)