Comparative analysis of the effect of different concentrations of dextran sodium sulfate on the severity and extent of inflammation in experimental ulcerative colitis

dc.contributor.authorG Almutary,Abdulmajeed
dc.contributor.authorM Tambuwala, Murtaza
dc.contributor.authorA Almatroodi, Saleh
dc.contributor.authorM Alnuqaydan, Abdullah
dc.date.accessioned2024-11-12T08:29:31Z
dc.date.available2024-11-12T08:29:31Z
dc.date.issued2023-03-02
dc.descriptionUlcerative colitis is the prolonged inflammation of the epithelial tissue of the colon with common symptoms such as diarrhoea, weight loss, abdominal pain, and rectal bleeding [1]. UC is three times more common in European and American populations than in Asian populations [2]. Despite the developed therapeutic options currently available, chronic inflammation of the colon can lead to bowel surgery or cancer risk. The major challenge in inflammatory bowel disease (IBD) research is the complex and poorly understood nature of the disease, that may be caused by a combination of environmental, genetic, and immune system factors. Additionally, these heterogeneity of IBD patient populations and the difficulty in accurately diagnosing and monitoring the disease also pose significant challenges in IBD research.
dc.description.abstractSeveral chemicals, such as dextran sulfate sodium (DSS), oxazolone, acetic acid, and trinitrobenzene sulphonic acid (TNBS), have been used for establishing animal models of ulcerative colitis. These animal models help us to study or explore several factors involved in the etiology or pathogenesis of ulcerative colitis. They are also useful tools to design and develop effective drug delivery strategies. DSS is the most widely used tool to induce colitis in animals. The model of ulcerative colitis developed by this method effectively mimics the colitis condition in humans. The amount of DSS in drinking water can be adjusted to control the severity of colitis, such as acute or chronic inflammation. However, a miscalculation in the amount of DSS produces severe inflammation, which may lead to the death of mice. DSS has been shown to rupture the epithelial lining and induce infiltration of inflammatory markers such as TNF, interferons, and interleukins. The current study aims to study the effects of different amounts of DSS on weight loss, changes in colon length, and histological scoring. Furthermore, the main objective of this study was to find an optimum concentration of DSS to establish a mouse model for ulcerative colitis. Based on the disease index, weight loss, bleeding, histological studies, and colon length, 2.5% w/v DSS for 7 days in water was found to be adequate for the DSS-induced colitis model for a moderate level of colitis, and 3.5% w/v DSS could be used to study severe experimental colitis. Keywords: colitis; inflammation; in-vitro; histology; dextran sulfate sodium
dc.identifier.citationAlmutary, A. G., Alnuqaydan, A. M., Almatroodi, S. A., & Tambuwala, M. M. (2023). Comparative analysis of the effect of different concentrations of dextran sodium sulfate on the severity and extent of inflammation in experimental ulcerative colitis. Applied Sciences, 13(5), 3233.
dc.identifier.doihttps://doi.org/10.3390/app13053233
dc.identifier.urihttps://repository.adu.ac.ae/handle/1/6994
dc.language.isoen
dc.publisherMDPI
dc.titleComparative analysis of the effect of different concentrations of dextran sodium sulfate on the severity and extent of inflammation in experimental ulcerative colitis
dc.typeArticle

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