Department of Public Health and Clinical Nutrition, University of Eastern Finland , Kuopio, Finland.
Microbiome Dynamics, Leibniz Institute for Natural Product Research and Infection Biology - Hans Knöll Institute , Jena, Germany.
mSystems. 2023 Oct 26;8(5):e0022423. doi: 10.1128/msystems.00224-23. Epub 2023 Aug 22.
Our study is applying a community-based approach to examine the influence of exercise on gut microbiota (GM) and discover GM structures linked with NAFLD improvements during exercise. The majority of microbiome research has focused on finding specific species that may contribute to the development of human diseases. However, we believe that complex diseases, such as NAFLD, would be more efficiently treated using consortia of species, given that bacterial functionality is based not only on its own genetic information but also on the interaction with other microorganisms. Our results revealed that exercise significantly changes the GM interaction and that structural alterations can be linked with improvements in intrahepatic lipid content and metabolic functions. We believe that the identification of these characteristics in the GM enhances the development of exercise treatment for NAFLD and will attract general interest in this field.
我们的研究采用基于社区的方法来研究运动对肠道微生物组(GM)的影响,并发现与运动过程中 NAFLD 改善相关的 GM 结构。大多数微生物组研究都集中在寻找可能导致人类疾病发展的特定物种上。然而,我们认为,复杂疾病(如 NAFLD)可能更有效地通过物种联合体来治疗,因为细菌功能不仅基于其自身的遗传信息,还基于与其他微生物的相互作用。我们的结果表明,运动显著改变了 GM 的相互作用,结构改变可以与肝内脂质含量和代谢功能的改善相关。我们相信,在 GM 中识别这些特征可以增强针对 NAFLD 的运动治疗的发展,并引起该领域的广泛关注。