Characterization of the Peri‐Membrane Fluorescence Phenomenon Allowing the Detection of Urothelial Tumor Cells in Urine

Urine cytology is non‐invasive, easy to collect, with medium sensitivity and a high specificity. It is an effective way to detect high‐grade bladder cancer (BC), but it is less effective on lowgrade BC because the rate of equivocal results is much higher. Recently, the fluorescent properties of plas...

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Main Authors: Charpentier, M. (Author), Gutierrez, C. (Author), Jarnouen, K. (Author), Lallement, L. (Author), Pedeux, R. (Author), Pineau, R. (Author), Pinson, X. (Author)
Format: Article
Language:English
Published: MDPI 2022
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Online Access:View Fulltext in Publisher
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Summary:Urine cytology is non‐invasive, easy to collect, with medium sensitivity and a high specificity. It is an effective way to detect high‐grade bladder cancer (BC), but it is less effective on lowgrade BC because the rate of equivocal results is much higher. Recently, the fluorescent properties of plasma membranes of urothelial tumor cells (UTC) found in urine cytology have been shown to be useful in improving the early detection of BC. This phenomenon is called peri‐membrane fluorescence (PMF). Based on previous studies that have identified the PMF on UTCs, the main objective was to characterize this phenomenon. For this study, a software was specially created to quantify the PMF of all tested cells and different treatments performed. PMF was not found to be a morphological and discriminating feature of UTCs, all cells in shape and not from urine show PMF. We were able to highlight the crucial role of plasma membrane integrity in the maintenance of PMF. Finally, it was found that the induction of a strong cellular stress induced a decrease in PMF, mimicking what was observed in non‐tumor cells collected from urine. These results suggest that PMF is found in cells able to resist this stress, such as tumor cells. © 2022 by the authors. Licensee MDPI, Basel, Switzerland.
ISBN:20726694 (ISSN)
DOI:10.3390/cancers14092171