Title
Enhanced detection of oral dysplasia by structured illumination fluorescence lifetime imaging microscopy
Date Issued
01 December 2021
Access level
open access
Resource Type
journal article
Author(s)
Hinsdale T.A.
Malik B.H.
Cheng S.
Benavides O.R.
Giger M.L.
Wright J.M.
Patel P.B.
Maitland K.C.
University of Oklahoma
Publisher(s)
Nature Research
Abstract
We demonstrate that structured illumination microscopy has the potential to enhance fluorescence lifetime imaging microscopy (FLIM) as an early detection method for oral squamous cell carcinoma. FLIM can be used to monitor or detect changes in the fluorescence lifetime of metabolic cofactors (e.g. NADH and FAD) associated with the onset of carcinogenesis. However, out of focus fluorescence often interferes with this lifetime measurement. Structured illumination fluorescence lifetime imaging (SI-FLIM) addresses this by providing depth-resolved lifetime measurements, and applied to oral mucosa, can localize the collected signal to the epithelium. In this study, the hamster model of oral carcinogenesis was used to evaluate SI-FLIM in premalignant and malignant oral mucosa. Cheek pouches were imaged in vivo and correlated to histopathological diagnoses. The potential of NADH fluorescence signal and lifetime, as measured by widefield FLIM and SI-FLIM, to differentiate dysplasia (pre-malignancy) from normal tissue was evaluated. ROC analysis was carried out with the task of discriminating between normal tissue and mild dysplasia, when changes in fluorescence characteristics are localized to the epithelium only. The results demonstrate that SI-FLIM (AUC = 0.83) is a significantly better (p-value = 0.031) marker for mild dysplasia when compared to widefield FLIM (AUC = 0.63).
Volume
11
Issue
1
Language
English
OCDE Knowledge area
Ingeniería médica Tecnología médica de laboratorio (análisis de muestras, tecnologías para el diagnóstico)
Scopus EID
2-s2.0-85101926744
PubMed ID
Source
Scientific Reports
ISSN of the container
20452322
Sponsor(s)
Division of Cancer Epidemiology and Genetics, National Cancer Institute R01CA138653
Sources of information: Directorio de Producción Científica Scopus