Immunohistochemical Expression of Ornithine Decarboxylase, Diamine Oxidase, Putrescine, and Spermine in Normal Canine Enterocolic Mucosa, in Chronic Colitis, and in Colorectal Cancer

Author:

Rossi Giacomo1,Cerquetella Matteo1,Pengo Graziano2,Mari Subeide1,Balint Emilia3,Bassotti Gabrio4,Manolescu Nicolae3

Affiliation:

1. School of Biosciences and Veterinary Medicine, University of Camerino, Via Circonvallazione 93/95, 62024 Matelica, Italy

2. S. Antonio Clinic, 26020 Madignano, Italy

3. Faculty of Veterinary Medicine, 050097 Bucharest, Romania

4. Gastroenterology and Hepatology Section, Department of Medicine, Santa Maria della Misericordia Hospital, Piazzale Menghini 1, San Sisto, 06153 Perugia, Italy

Abstract

We compared the immunohistochemical expression of putrescine (PUT), spermine (SPM), ornithine decarboxylase (ODC), and diamine oxidase (DAO) in bioptic samples of canine colonic mucosa with chronic inflammation (i.e., granulomatous colitis and lymphoplasmacytic colitis) or neoplasia. Single and total polyamines levels were significantly higher in neoplastic tissue than in normal samples. Samples with different degrees of inflammation showed a general decrease expression of ODC if compared to controls; SPM was practically not expressed in control samples and very low in samples with chronic-granulomatous inflammation. In carcinomatous samples, the ODC activity was higher with respect to controls and samples with inflammation. This is the first description of polyamines expression in dog colonic mucosa in normal and in different pathological conditions, suggesting that the balance between polyamine degradation and biosynthesis is evidently disengaged during neoplasia.

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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2. Integrated Microbiome and Metabolomic Analysis Reveal the Repair Mechanisms of Ovalbumin on the Intestine Barrier of Colitis Mice;Journal of Agricultural and Food Chemistry;2023-05-10

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5. Chronic stress decreases ornithine decarboxylase expression and protects against 1,2-dimethylhydrazine-induced colon carcinogenesis;Molecular Biology Reports;2020-12

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