Fluorescence confocal microscopy on liver specimens for full digitization of transplant pathology

Author:

Kinzler Maximilian N.1ORCID,Schulze Falko2,Reitz Alexandra2,Gretser Steffen2ORCID,Ziegler Paul2,Shmorhun Oleksandr2,Friedrich-Rust Mireen1,Bojunga Jörg1,Zeuzem Stefan1ORCID,Schnitzbauer Andreas A.3,Bechstein Wolf Otto3,Reis Henning2ORCID,Barreiros Ana Paula4,Wild Peter J.256

Affiliation:

1. Department of Internal Medicine I, University Hospital Frankfurt, Goethe University Frankfurt am Main, Germany

2. Dr. Senckenberg Institute of Pathology, University Hospital Frankfurt, Goethe University Frankfurt am Main, Germany

3. Department of General, Visceral, Transplant and Thoracic Surgery, University Hospital Frankfurt, Goethe University Frankfurt am Main, Germany

4. German Organ Procurement Organization (DSO), 60594 Frankfurt am Main, Germany

5. Frankfurt Institute for Advanced Studies (FIAS), Frankfurt am Main, Germany

6. Frankfurt Cancer Institute (FCI), University Hospital Frankfurt, Goethe University Frankfurt am Main, Germany

Abstract

Fluorescence confocal microscopy (FCM) is a rapidly evolving tool that provides real-time virtual HE images of native tissue. Data about the potential of FCM as an alternative to frozen sections for the evaluation of donor liver specimens are lacking so far. The aim of the current study was to determine the value of FCM in liver specimens according to the criteria of the German Society for Organ Procurement. In this prospective study, conventional histology and FCM scans of 50 liver specimens (60% liver biopsies, 26% surgical specimens, and 14% donor samples) were evaluated according to the German Society for Organ Procurement. A comparison of FCM scans and conventional frozen sections revealed almost perfect levels of agreement for cholangitis (κ = 0.877), fibrosis (κ = 0.843), and malignancy (κ = 0.815). Substantial levels of agreement could be obtained for macrovesicular steatosis (κ = 0.775), inflammation (κ = 0.763), necrosis (κ = 0.643), and steatohepatitis (κ = 0.643). Levels of agreement were moderate for microvesicular steatosis (κ = 0.563). The strength of agreement between frozen sections and FCM was superior to the comparison of conventional HE and FCM imaging. We introduce FCM as a potential alternative to the frozen section that may represent a novel approach to liver transplant pathology where timely feedback is crucial and the deployment of human resources is becoming increasingly difficult.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Transplantation,Hepatology,Surgery

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