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受生理启发的粘蛋白涂层益生菌 1917 通过调节病理性微环境增强生物治疗,以改善肠道定植。

Physiologically Inspired Mucin Coated Nissle 1917 Enhances Biotherapy by Regulating the Pathological Microenvironment to Improve Intestinal Colonization.

机构信息

School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou 450001, PR China.

Key Laboratory of Targeting Therapy and Diagnosis for Critical Diseases, Zhengzhou 450001, PR China.

出版信息

ACS Nano. 2022 Mar 22;16(3):4041-4058. doi: 10.1021/acsnano.1c09681. Epub 2022 Mar 1.

Abstract

The delivery of probiotics to the microbiota is a promising method to prevent and treat diseases. However, oral probiotics will suffer from gastrointestinal insults, especially the pathological microenvironment of inflammatory diseases such as reactive oxygen species (ROS) and the exhausted mucus layer, which can limit their survival and colonization in the intestinal tract. Inspired by the fact that probiotics colonized and grew in the mucus layer under physiological conditions, we developed a strategy for a super probiotic (EcN@TA-Ca@Mucin) coated with tannic acid and mucin via layer-by-layer technology. We demonstrated that mucin endows probiotics with superior resistance to the harsh environment of the gastrointestinal tract and with strong adhesiveness to the intestine through its interaction with mucus, which enhanced colonization and growth of probiotics in the mucus layer without removing the coating. Moreover, EcN@TA-Ca@Mucin can distinctly down-regulate inflammation with ROS scavenging and reduce the side effects of bacterial translocation in inflammatory bowel diseases, increasing the abundance and diversity of the gut microflora. We envision that it is a powerful platform to improve the colonization of probiotics by regulating the pathological microenvironment, which is expected to provide an important perspective for applying the intestinal colonization of probiotics to treat a variety of diseases.

摘要

将益生菌递送到微生物群是预防和治疗疾病的一种很有前途的方法。然而,口服益生菌将受到胃肠道的侵害,特别是在活性氧 (ROS) 等炎症性疾病的病理性微环境和耗尽的黏液层中,这会限制它们在肠道中的生存和定植。受益生菌在生理条件下定植和在黏液层中生长这一事实的启发,我们通过层层技术开发了一种用单宁酸和黏蛋白包裹超级益生菌(EcN@TA-Ca@Mucin)的策略。我们证明了黏蛋白通过与黏液相互作用赋予益生菌对胃肠道恶劣环境的卓越抵抗力和对肠道的强粘附性,从而增强了益生菌在黏液层中的定植和生长,而无需去除涂层。此外,EcN@TA-Ca@Mucin 可以通过清除 ROS 明显下调炎症反应,并减少炎症性肠病中细菌易位的副作用,增加肠道微生物群的丰度和多样性。我们设想这是一个通过调节病理性微环境来提高益生菌定植能力的强大平台,有望为将益生菌的肠道定植应用于治疗各种疾病提供一个重要视角。

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