Margareta Žlajpah (Author), Emanuela Boštjančič (Author), Bojan Tepeš (Author), Nina Zidar (Author)

Abstract

Colorectal carcinoma usually evolves gradually, forming a spectrum of lesions, due to accumulation of genetic mutations and epigenetic alterations. Many early lesions are detected since the introduction of screening programs. The greatest challenge is to distinguish between adenomas with epithelial misplacement (AEM) and adenomas with early carcinoma (AEC), considering the diagnosis affects prognosis and treatment. We analyzed the expression of selected extracellular matrix (ECM)-related genes and proteins, and their regulatory microRNAs using RT-qPCR and immunohistochemistry in biopsies from 44 patients. Differences were observed in AEM in comparison to AEC for DCN, EPHA4, FN1, SPON2, and SPP1, reflecting inflammatory stromal reaction to traumatisation and misplacement of dysplastic glands in the submucosa in the former, and desmoplastic stromal reaction to true invasion of dysplastic glands in the submucosa in the latter. Expression of regulatory microRNAs hsa-miR-200c and hsa-miR-146a significantly negatively correlated with the expression of their regulated genes, while significant difference between AEM and AEC was observed only for hsa-miR-29c. The described expression patterns are too complex to be used in diagnostic work, but might contribute to better understanding ECM changes in colorectal carcinoma development, helping to find new markers in the future.

Keywords

extracellular matrix;colorectal carcinoma;colorectal polyps;

Data

Language: English
Year of publishing:
Typology: 1.01 - Original Scientific Article
Organization: UL MF - Faculty of Medicine
UDC: 616-006
COBISS: 42771715 Link will open in a new window
ISSN: 2072-6694
Views: 133
Downloads: 51
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Other data

Secondary language: Slovenian
Secondary keywords: zunajcelični matriks;kolorektalni karcinom;kolorektalni polipi;
Type (COBISS): Article
Pages: str. 1-15
Volume: ǂVol. ǂ12
Issue: ǂiss. ǂ12
Chronology: Dec. 2020
DOI: 10.3390/cancers12123715
ID: 14354407