益生元
植物脂质转运蛋白
果胶
蔷薇花
双歧杆菌
肠道菌群
粘蛋白
化学
食品科学
纳他霉素
多糖
血脂谱
乳酸菌
普氏粪杆菌
敏化
发酵
免疫系统
生物化学
单糖
功能性食品
水解
沙棘
失调
过敏原
益生菌
丁酸盐
过敏
细胞壁
作者
Francisca Gómez,Natalia Pérez-Sánchez,Andrea Macías‐Camero,Rafael Núñez,Nuria Contreras,José Antonio Cañas,Isabel María Jiménez-Sánchez,Patricia Diez‐Echave,Coral Barbas,Jean‐Louis Guéant,Domingo Barber,Stefan Vieths,Stephan Scheurer,Alma Villaseñor,Alba Rodríguez‐Nogales,Cristobalina Mayorga,Marı́a José Torres
标识
DOI:10.1016/j.carbpol.2025.124236
摘要
Currently, there is great interest in the use of pectins for prebiotic treatment of food allergy. Hence, the effects of two different esterified pectins - low methoxyl citrus-derived pectin (CP-DElow) and high methoxyl apple-derived pectin (AP-DEhigh) - were evaluated in peach allergic patients due to sensitization to lipid transfer proteins (LTPs). This study analyzed the systemic immune response, the gut microbiota composition (using 16S rRNA gene sequencing), and microbial-derived metabolome, including short-chain fatty acids (SCFAs) and bile acids (BAs). Prebiotic treatment with both pectins was safe and induced a significant clinical increase in allergen tolerance in more than 50 % of patients. Additionally, CP-DElow and AP-DEhigh groups exhibited a distinctive systemic proteomic profile characterized by a decrease in various inflammatory cytokines compared to Placebo. Regarding microbiota, CP-DElow induced an increase in Bacteroides_H genus and Roseburia intestinalis species, whereas AP-DEhigh was associated with an increase in Bifidobacterium and Succinivibrio genera, and Faecalibacterium prausnitzii species. Reduced concentrations of branched SCFAs were observed after both treatments compared to Placebo. Likewise, fecal levels of microbial-derived secondary BAs were modified by pectin supplementation. Multi-omics integration revealed distinctive signatures in pectin- and placebo-treated patients. This study suggests that pectin treatment is a promising and safe option for LTP allergy.
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