Dietary polysaccharides from guavira pomace, a co-product from the fruit pulp industry, display therapeutic application in gut disorders

胃肠道 肠道通透性 辣椒素 炎症性肠病 腹泻 腹痛 医学 运动性 结肠炎 免疫系统 内脏痛 溃疡性结肠炎 炎症 胃肠病学 药理学 免疫学 化学 伤害 内科学 疾病 生物 受体 遗传学
作者
Natália Mulinari Turin de Oliveira,Bruna Barbosa da Luz,Vanessa Suzane Schneider,Humberto Barbosa da Costa Filho,Paulo Sérgio de Araújo Sousa,Maria Fernanda de Paula Werner,Marcellus Henrique Loiola Ponte de Souza,Jefferson Almeida Rocha,Lucas Antônio Duarte Nicolau,Lucimara M.C. Cordeiro,Daniele Maria‐Ferreira
出处
期刊:Food Research International [Elsevier BV]
卷期号:156: 111291-111291 被引量:27
标识
DOI:10.1016/j.foodres.2022.111291
摘要

Inflammatory bowel disease (IBD) includes two distinct diseases: Crohn's disease (CD) and ulcerative colitis (UC). IBD is a chronic systemic disease of the gastrointestinal tract, characterized by an inflammatory process. The mechanisms by which diseases develop are still unknown, but it is known that it results from a complex interaction between genetic variability, the host's immune system, and environmental factors. One of the main complaints of patients is abdominal pain, which may be associated with the release of inflammatory mediators, changes in the normal motility of the digestive tract, and increased intestinal permeability. Currently available drugs for abdominal pain are not satisfactory, therefore, it is extremely necessary to seek new therapeutic options for the treatment of abdominal pain. Polysaccharides extracted from fruits have attracted interest, as these molecules protect the intestinal mucosa and promote wound healing, attenuating inflammation, pain, and altered intestinal motility. In this study, we investigated the ability of pectic polysaccharides obtained from guavira pomace, named CPW to reduce visceral hypersensitivity, regulate intestinal motility, and control diarrhea in mice. Acetic acid, capsaicin, or mustard oil were used to assess visceral pain in normal mice. CPW reduced abdominal writhing, cell migration, and capsaicin-induced visceral nociception. Furthermore, it regulated intestinal motility and all measured parameters of castor oil-induced diarrhea. CPW treatment reversed the increase in mucosal permeability, TEER, and tissue weight caused by acetic acid. In addition, molecular docking analysis showed that specific the CPW units binds to the 3N8V, 5COX, 2J67 and 6RBF proteins. Thus, the results suggest that CPW has attractive therapeutic characteristics for the treatment of abdominal pain and ulcerative colitis.
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