丁酸盐
胶束
花生过敏
微生物学
抗生素
化学
失调
肠道菌群
丁酸钠
免疫系统
势垒函数
食物过敏
免疫学
医学
过敏
生物
食品科学
生物化学
细胞生物学
物理化学
水溶液
发酵
基因
作者
Ruyi Wang,Shijie Cao,Mohamed Elfatih H. Bashir,Lauren A. Hesser,Yanlin Su,Sung Min Choi Hong,Andrew J. Thompson,Elliot Culleen,Matthew Sabados,Nicholas P. Dylla,Evelyn Campbell,Riyue Bao,Eric B. Nonnecke,Charles Bevins,David S. Wilson,Jeffrey A. Hubbell,Cathryn R. Nagler
标识
DOI:10.1101/2022.05.01.490224
摘要
Abstract The microbiome modulates host immunity and aids in maintenance of tolerance in the gut, where microbial and food-derived antigens are abundant. Modern lifestyle practices, including diet and antibiotic use, have depleted beneficial taxa, specifically butyrate-producing Clostridia. This depletion is associated with the rising incidence of food allergy, inflammatory bowel diseases, and other noncommunicable chronic diseases. Although butyrate is known to play important roles in regulating gut immunity and maintaining epithelial barrier function, its clinical translation is challenging due to its offensive odor and quick absorption in the upper gut. Here, we have developed two polymeric micelle systems, one with a neutral charge (NtL-ButM) and one with a negative charge (Neg-ButM) that release butyrate from their polymeric core in different regions of the gastrointestinal tract when administered intragastrically to mice. We show that these butyrate-containing micelles, used in combination, restore a barrier-protective response in mice treated with either dextran sodium sulfate or antibiotics. Moreover, butyrate micelle treatment protects peanut-allergic dysbiotic mice from an anaphylactic reaction to peanut challenge and rescues their antibiotic-induced dysbiosis by increasing the abundance of Clostridium Cluster XIVa. Butyrate micelle treatment also reduces the severity of colitis in a murine model. By restoring microbial and mucosal homeostasis, these butyrate-prodrug polymeric micelles may function as a new, antigen-agnostic approach for the treatment of allergic and inflammatory disease.
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