Related Experiment Video
Updated: Oct 7, 2026

Multiplex Immunofluorescence Combined with Spatial Image Analysis for the Clinical and Biological Assessment of the Tumor Microenvironment
Published on: June 2, 2023
Quantitative Digital Image Analysis Detects Differences in Nuclear Features Between CK20-Negative and CK20-Positive
Jiho Park1,2, Ramkumar Subramaniam1, Gerardo Cazzato3
1Department of Laboratory Medicine and Pathology, University of Minnesota, Minneapolis, MN.
Abstract:
Merkel cell carcinoma (MCC) is a rare, aggressive neuroendocrine cutaneous malignancy that can arise through 2 oncogenic pathways: a Merkel cell polyomavirus-positive pathway and a virus-negative pathway driven by ultraviolet exposure. Cytokeratin 20 (CK20), expressed in a paranuclear dot-like pattern, is a cornerstone diagnostic marker for MCC, yet roughly 5% of cases are CK20 negative, an uncommon immunophenotype that can cause diagnostic difficulty. In this exploratory study, we asked whether CK20-negative tumors show a distinct nuclear phenotype on digital image analysis. Using the HALO artificial intelligence platform (Indica Labs), we performed artificial intelligence-assisted whole-slide image analysis of 5 CK20-negative and 36 CK20-positive MCC sections (from 30 patients), extracting nuclear and cytoplasmic metrics from manually annotated tumor regions. Because sections from the same patient are not independent, we repeated the primary comparison at the patient level across all 24 possible one-section-per-patient combinations. CK20-negative MCC showed lower average nucleus roundness than CK20-positive tumors; the difference was significant by the Welch t test in the section-level analysis (0.731 vs. 0.754; P = 0.012) and remained significant by the Welch t test across all 24 patient-level combinations (P = 0.032 to 0.048), although the Mann-Whitney U test was no longer significant at the patient level. We also observed trends toward smaller nuclear area and perimeter, while cell, cytoplasmic, and tissue areas did not differ. Because Merkel cell polyomavirus status was unavailable, these differences cannot be attributed specifically to CK20 or viral status. These preliminary findings suggest that computational pathology can detect nuclear differences in this rare subset; larger, molecularly characterized cohorts from multiple institutions are needed for validation.
More Related Videos
07:52Multiplexed Fluorescent Immunohistochemical Staining, Imaging, and Analysis in Histological Samples of Lymphoma
Published on: January 9, 2019
06:34SCAnED - An Open-source Skin Segmentation Macro for Semi-automated Cell and Nuclei Detection in Epidermal and Dermal Skin Compartments
Published on: August 8, 2025