Department of Paediatrics, Vittore Buzzi Children's Hospital-University of Milan, Via Lodovico Castelvetro, 32, 20154 Milan, Italy.
Department of Health Science, University of Milan, via di Rudinì 8, 20142 Milan, Italy.
Nutrients. 2020 Oct 29;12(11):3319. doi: 10.3390/nu12113319.
The composition and functioning of the gut microbiota, the complex population of microorganisms residing in the intestine, is strongly affected by endogenous and exogenous factors, among which diet is key. Important perturbations of the microbiota have been observed to contribute to disease risk, as in the case of neurological disorders, inflammatory bowel disease, obesity, diabetes, cardiovascular disease, among others. Although mechanisms are not fully clarified, nutrients interacting with the microbiota are thought to affect host metabolism, immune response or disrupt the protective functions of the intestinal barrier. Similarly, key intermediaries, whose presence may be strongly influenced by dietary habits, sustain the communication along the gut-brain-axis, influencing brain functions in the same way as the brain influences gut activity. Due to the role of diet in the modulation of the microbiota, its composition is of high interest in inherited errors of metabolism (IEMs) and may reveal an appealing therapeutic target. In IEMs, for example in phenylketonuria (PKU), since part of the therapeutic intervention is based on chronic or life-long tailored dietetic regimens, important variations of the microbial diversity or relative abundance have been observed. A holistic approach, including a healthy composition of the microbiota, is recommended to modulate host metabolism and affected neurological functions.
肠道微生物群的组成和功能,即居住在肠道内的复杂微生物群体,受到内源性和外源性因素的强烈影响,其中饮食是关键。已经观察到重要的微生物群扰动会导致疾病风险增加,如神经紊乱、炎症性肠病、肥胖症、糖尿病、心血管疾病等。尽管机制尚未完全阐明,但与微生物群相互作用的营养素被认为会影响宿主代谢、免疫反应或破坏肠道屏障的保护功能。同样,关键的中介物,其存在可能受到饮食习惯的强烈影响,维持着肠道-大脑轴的通讯,以与大脑影响肠道活动相同的方式影响大脑功能。由于饮食在调节微生物群方面的作用,其组成在代谢遗传错误(IEMs)中具有很高的研究价值,并且可能揭示出一个有吸引力的治疗靶点。例如在苯丙酮尿症(PKU)中,由于治疗干预的一部分基于慢性或终身定制的饮食方案,因此观察到微生物多样性或相对丰度的重要变化。建议采用整体方法,包括健康的微生物群组成,以调节宿主代谢和受影响的神经功能。