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用可触发且具有催化作用的外壳修饰益生菌以协同增强结肠炎生物疗法。

Decorating probiotics with a triggerable and catalytic shell for synergistically enhanced colitis biotherapy.

作者信息

Li Zhishu, Wei Xinlin, Chen Wenting, Qiu Xuelian, Shi Jieyan, Li Yu, Wang Zhixuan, Chen Xiaolin, Wang Yuepeng, Cheng Lizeng, Teng Bo, Corke Harold, Zhang Bo-Bo, Yang Qiongqiong

机构信息

Department of Biology, College of Science, Shantou University, Shantou, 515063, Guangdong, China.

School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, 200240, China.

出版信息

Mater Today Bio. 2025 May 12;32:101861. doi: 10.1016/j.mtbio.2025.101861. eCollection 2025 Jun.

Abstract

Probiotics have creditableness in adjunctive therapy for ulcerative colitis, but their physiological activity and alleviation efficiency are frequently compromised by gastrointestinal conditions and oxidative stress microenvironments. Here, we developed a probiotic-based therapeutic that synergistically ameliorates colonic structure, intestinal redox, and microbiota homeostasis. Probiotics were initially coated with a metal-phenolic shell to provide a network for spatially loading antioxidant enzymes, and then wrapped with a pH-triggerable enteric layer to enable on-demand reactivation in the inflamed colon. Upon oral administration, the pH-triggerable enteric layer efficiently enhanced gastric acid resistance and on-demand release of enzyme-loaded probiotics in the inflamed colon, enabling efficient reactive oxygen species scavenging and salutary gut microbiota regulation at the lesional regions. In multiple mouse models, this therapeutic normalized immunologic balance and mitigated colonic damage with high efficacy, thus representing a powerful strategy for colitis therapy.

摘要

益生菌在溃疡性结肠炎的辅助治疗中具有可信度,但其生理活性和缓解效率常常受到胃肠道状况和氧化应激微环境的影响。在此,我们开发了一种基于益生菌的疗法,该疗法可协同改善结肠结构、肠道氧化还原状态和微生物群稳态。益生菌首先被包裹在金属酚类外壳中,以提供一个用于空间加载抗氧化酶的网络,然后再包裹一层pH触发的肠溶层,以便在发炎的结肠中实现按需重新激活。口服给药后,pH触发的肠溶层有效增强了胃酸耐受性,并使负载酶的益生菌在发炎的结肠中按需释放,从而在病变区域实现高效的活性氧清除和有益肠道微生物群调节。在多个小鼠模型中,这种疗法有效恢复了免疫平衡并减轻了结肠损伤,因此代表了一种强大的结肠炎治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9205/12144505/df1fad654beb/ga1.jpg

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