Gut microbiota dysbiosis associated with glucose metabolism disorders and the metabolic syndrome in older adults

毛螺菌科 肠道菌群 生物 代谢综合征 失调 蔷薇花 代谢紊乱 糖尿病前期 肥胖 2型糖尿病 疾病 糖尿病 微生物群 碳水化合物代谢 生理学 糖耐量受损 内科学 内分泌学 拟杆菌 生物信息学 医学 免疫学 遗传学 厚壁菌 基因 细菌 16S核糖体RNA
作者
Kathrin Lippert,Lyudmyla Kedenko,Livio Antonielli,Igor Kedenko,C Gemeier,Miriam Leitner,Alexandra Kautzky‐Willer,Bernhard Paulweber,Evelyn Hackl
出处
期刊:Beneficial Microbes [Wageningen Academic Publishers]
卷期号:8 (4): 545-556 被引量:225
标识
DOI:10.3920/bm2016.0184
摘要

Obesity and associated metabolic disorders have become highly prevalent diseases worldwide, and the human gut microbiota, due to its influence on host energy metabolism, has been attributed an important role therein. This pilot study explores host-microbiota relationships in men and women affected by various types of glucose metabolism disorder. Among 20 individuals aged 58 to 71 years with either normal glucose tolerance, prediabetes, or type 2 diabetes mellitus the gut bacterial communities were compared based on barcoded 454 sequencing of 16S rRNA genes amplified from stool samples. We found that specific microbiota groups were relatively enriched or reduced in different metabolic states. Further, positive or negative associations with clinical manifestations of metabolic disease suggest that these organisms indicate and possibly contribute to metabolic impairment or health. For instance, a higher prevalence of Erysipelotrichaceae and Lachnospiraceae was found associated with metabolic disorders, and the Holdemania and Blautia genera correlated with clinical indicators of an impaired lipid and glucose metabolism. The Bacteroidetes and groups therein, by contrast, displayed inverse relationships with metabolic disease parameters and were found relatively enriched in participants not diagnosed with metabolic syndrome or obesity. Further, the prevalence of specific Clostridia and Rikenellaceae members also pointed towards a healthier metabolic state. Links with diet as an intermediate factor included positive and negative associations of Lachnospiraceae with relative consumption rates of fat and carbohydrates, respectively, and positive associations of Turicibacteraceae with the consumption of protein. Identifying critical roles of major gut microbiota components in metabolic disorders has important translational implications regarding the prevention and treatment of metabolic diseases by means of preventing or reversing dysbiosis and by controlling exacerbating diet and life style factors particularly in sensitive population groups.
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