Effects of the N-Butanol Extract of Pulsatilla Decoction on Neutrophils in a Mouse Model of Ulcerative Colitis
-
Published:2024-08-16
Issue:8
Volume:17
Page:1077
-
ISSN:1424-8247
-
Container-title:Pharmaceuticals
-
language:en
-
Short-container-title:Pharmaceuticals
Author:
Wang Yadong12, Wu Hui12, Sun Juan12, Li Can12ORCID, Fang Ying1, Shi Gaoxiang12, Ma Kelong12, Wu Daqiang12ORCID, Shao Jing12ORCID, Song Hang12, Wang Tianming12, Wang Changzhong123
Affiliation:
1. Department of Pathogenic Biology and Immunology, College of Integrated Chinese and Western Medicine (College of Life Science), Anhui University of Chinese Medicine, Hefei 230012, China 2. Institute of Integrated Traditional Chinese and Western Medicine, Anhui University of Chinese Medicine, Hefei 230012, China 3. Anhui Province Key Laboratory of Chinese Medicinal Formula, Hefei 230012, China
Abstract
Ulcerative colitis (UC) is a chronic inflammatory disease, the incidence of which is increasing worldwide. However, the etiology and pathogenesis of UC remains unclear. The n-butanol extract of Pulsatilla decoction (BEPD), a traditional Chinese medicine, has been shown to be effective in treating UC. This study aimed to explore the molecular mechanism underlying the effects of BEPD on UC, in particular its effects on neutrophil extracellular trap (NET) formation by neutrophils. High-performance liquid chromatography was used to determine the principal compounds of BEPD. UC was induced in mice using dextran sodium sulfate, and mice were treated with 20, 40, or 80 mg/kg BEPD daily for seven days. Colonic inflammation was determined by assessing the disease activity index, histopathology, colonic mucosal damage index, colonic mucosal permeability, and pro- and anti-inflammatory cytokine levels. The infiltration and activation status of neutrophils in the colon were determined by analyzing the levels of chemokine (C-X-C motif) ligand (CXCL) 1 and CXCL2, reactive oxygen species, Ly6G, and numerous NET proteins. The findings suggest that BEPD improved the disease activity index, histopathology, and colonic mucosal damage index scores of mice with UC, and restored colonic mucosal permeability compared with untreated mice. The expression levels of the pro-inflammatory cytokines interleukin-1β, interleukin-6, and tumor necrosis factor-α in colon tissues were significantly decreased, while the expression levels of anti-inflammatory cytokines in colon tissues were significantly increased, exceeding those of control mice. In addition, BEPD reduced the expression of the neutrophil chemokines CXCL1 and CXCL2 in the colon tissue of mice with UC, reduced neutrophil infiltration, reduced reactive oxygen species levels, and significantly reduced the expression of NET proteins. BEPD also significantly reduced NET formation. The results of this study suggest that BEPD exerts therapeutic effects in a murine model of UC by inhibiting neutrophil infiltration and activation in the colon, as well as by inhibiting the expression of key proteins involved in NET formation and reducing NET formation, thereby alleviating local tissue damage and disease manifestations.
Funder
National Science Foundation of China Anhui Provincial Key Research and Development Plan Key Scientific Research Projects of Anhui Provincial Department of Education
Reference48 articles.
1. Mechanisms and regulation of IL-22-mediated intestinal epithelial homeostasis and repair;Patnaude;Life Sci.,2021 2. Changes in intestinal microbiota and correlation with TLRs in ulcerative colitis in the coastal area of northern China;Xu;Microb. Pathog.,2021 3. Yu Shi An Chang Fang Ameliorates TNBS-Induced Colitis in Mice by Reducing Inflammatory Response and Protecting the Intestinal Mucosal Barrier;Ye;Evid.-Based Complement. Altern. Med.,2021 4. Formiga, R.d.O., Alves Júnior, E.B., Vasconcelos, R.C., Guerra, G.C.B., Antunes de Araújo, A., Carvalho, T.G.d., Garcia, V.B., de Araújo Junior, R.F., Gadelha, F.A.A.F., and Vieira, G.C. (2020). p-Cymene and Rosmarinic Acid Ameliorate TNBS-Induced Intestinal Inflammation Upkeeping ZO-1 and MUC-2: Role of Antioxidant System and Immunomodulation. Int. J. Mol. Sci., 21. 5. Pavel, F.M., Vesa, C.M., Gheorghe, G., Diaconu, C.C., Stoicescu, M., Munteanu, M.A., Babes, E.E., Tit, D.M., Toma, M.M., and Bungau, S. (2021). Highlighting the Relevance of Gut Microbiota Manipulation in Inflammatory Bowel Disease. Diagnostics, 11.
|
|