Balaguer Ferran, Barrena Marta, Enrique María, Maicas Miren, Álvarez Beatriz, Tortajada Marta, Chenoll Empar, Ramón Daniel, Martorell Patricia
Archer Daniels Midland, Nutrition, Health & Wellness, Biopolis S.L. Parc Científic Universitat de València, C/Catedrático Agustín Escardino Benlloch, 9, 46980 Paterna, Spain.
Antioxidants (Basel). 2023 Dec 13;12(12):2107. doi: 10.3390/antiox12122107.
Life expectancy has increased globally in recent decades, driving interest in maintaining a healthy life that includes preservation of physical and mental abilities, particularly in elderly people. The gut microbiome becomes increasingly perturbed with aging so the use of probiotics can be a strategy for maintaining a balanced gut microbiome. A previous report showed that subsp. BPL1™ induces through its lipoteichoic acid (LTA) fat reduction activities via the insulin/IGF-1 signaling pathway. Here, we have delved into the mechanism of action, eliminating alternative pathways as putative mechanisms. Furthermore, we have identified that BPL1™, its heat treated form (BPL1™ HT) and its LTA prolong longevity in in an insulin/IGF-1-dependent mechanism, and its consumption improves the oxidative stress response, gut permeability and protection against pathogenic infections. Furthermore, positive effects on stress-related behaviors and in the Alzheimer's Disease model were found, highlighting the potential of the strain in improving the cognitive functions and proteotoxicity in the nematode. These results indicate the pivotal role of the IGF-1 pathway in the activity of the strain and pave the way for potential applications of BPL1™, BPL1™ HT and its LTA in the field of longevity and age-related markers.
近几十年来,全球预期寿命有所增加,这激发了人们对维持健康生活的兴趣,包括保持身体和心理能力,尤其是老年人。随着年龄增长,肠道微生物群会越来越紊乱,因此使用益生菌可能是维持肠道微生物群平衡的一种策略。先前的一份报告显示,亚种BPL1™ 通过其脂磷壁酸(LTA)经由胰岛素/IGF-1信号通路诱导脂肪减少活性。在这里,我们深入研究了其作用机制,排除了其他替代途径作为假定机制。此外,我们已经确定,BPL1™、其热处理形式(BPL1™ HT)及其LTA以胰岛素/IGF-1依赖性机制延长线虫的寿命,并且其消耗改善氧化应激反应、肠道通透性以及对病原体感染的抵抗力。此外,还发现了对与应激相关行为和阿尔茨海默病模型的积极影响,突出了该菌株在改善线虫认知功能和蛋白毒性方面的潜力。这些结果表明IGF-1通路在该菌株活性中的关键作用,并为BPL1™、BPL1™ HT及其LTA在长寿和年龄相关标志物领域的潜在应用铺平了道路。