乳铁蛋白-骨桥蛋白复合物:对肠道类器官生物利用度和肠道微生物群调节的见解
Lactoferrin-osteopontin complexes: insights into intestinal organoid bioavailability and gut microbiota modulation.
作者信息
Ceroni Camilla, Dayon Loïc, Van den Abbeele Pieter, Roch Aline, Dervaux Juliane, Ernest Marion, Sirugue Pascaline, Baudot Aurélien, Kraus Marine R-C, Brandenberg Nathalie, O'Regan Jonathan, Goulding David, Mashinchian Omid
机构信息
DOPPL S.A., EPFL Innovation Park, Lausanne, Switzerland.
Nestlé Institute of Food Safety and Analytical Sciences, Nestlé Research, Société des Produits Nestlé S.A., Lausanne, Switzerland.
出版信息
Commun Biol. 2025 Jul 8;8(1):1017. doi: 10.1038/s42003-025-08460-7.
Lactoferrin (LF) and osteopontin (OPN) are key bioactive milk proteins with significant immune-modulatory, gut, and systemic health benefits. We investigated the bioavailability and intestinal uptake dynamics of bovine LF-OPN soluble complexes (SC) and complex coacervates (CC) using a microarrayed high-throughput 3D apical-out intestinal organoid platform, which closely mimics the human intestinal epithelium. Our findings revealed that both SC and CC complexes exhibited cellular uptake compared to individual LF and OPN components. Nevertheless, complexation did not compromise intestinal organoid viability, even following extended exposure. Further, an ex vivo bioreactor-based colon fermentation study using infant fecal microbiota demonstrated that LF-OPN complexes significantly influenced microbial metabolic activities. This modulation leads to enhanced production of short-chain fatty acids (SCFAs), particularly elevating butyrate levels, a key metabolite for sustaining gut health. The phylogenetic analysis highlighted significant shifts in microbial composition, favoring beneficial bacterial families such as Bacteroides fragilis, Phocaeicola dorei, Parabacteroides spp., and Clostridium symbiosum for complex bioactives. Our findings indicate that LF-OPN complexes have significant potential to further optimize infant nutrition by enhancing the bioavailability of bioactive compounds and promoting gut health through microbiota modulation.
乳铁蛋白(LF)和骨桥蛋白(OPN)是关键的生物活性乳蛋白,对免疫调节、肠道和全身健康具有重要益处。我们使用微阵列高通量3D顶端向外肠道类器官平台研究了牛LF-OPN可溶性复合物(SC)和复合凝聚物(CC)的生物利用度和肠道摄取动力学,该平台紧密模拟人类肠道上皮。我们的研究结果表明,与单独的LF和OPN成分相比,SC和CC复合物均表现出细胞摄取。然而,即使在长时间暴露后,复合作用也不会损害肠道类器官的活力。此外,一项使用婴儿粪便微生物群的基于离体生物反应器的结肠发酵研究表明,LF-OPN复合物显著影响微生物代谢活动。这种调节导致短链脂肪酸(SCFAs)产量增加,尤其是丁酸盐水平升高,丁酸盐是维持肠道健康的关键代谢物。系统发育分析突出了微生物组成的显著变化,有利于脆弱拟杆菌、多雷福卡埃icola、副拟杆菌属和共生梭菌等有益细菌家族摄取复合生物活性物质。我们的研究结果表明,LF-OPN复合物具有显著潜力,可通过提高生物活性化合物的生物利用度和通过调节微生物群促进肠道健康来进一步优化婴儿营养。
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