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综述:食物、肠道-大脑信号和代谢状态对猪模型大脑活动的影响:使用脑成像的 10 年营养研究。

Review: Impact of food, gut-brain signals and metabolic status on brain activity in the pig model: 10 years of nutrition research using brain imaging.

机构信息

INRA, INSERM, Univ Rennes, Nutrition Metabolisms and Cancer, NuMeCan, Rennes, St Gilles, France.

出版信息

Animal. 2019 Nov;13(11):2699-2713. doi: 10.1017/S1751731119001745. Epub 2019 Jul 29.

Abstract

The purpose of this review is to offer a panorama on 10 years of nutrition research using in vivo brain imaging in the pig model. First, we will review some work describing the brain responses to food signals, including basic tastants such as sweet and bitter at both oral and visceral levels, as well as conditioned preferred and aversive flavours. Second, we will have a look at the impact of weight gain and obesity on brain metabolism and functional responses, drawing the parallel with obese human patients. Third, we will evoke the concept of the developmental origins of health and diseases, and how the pig model can shed light on the importance of maternal nutrition during gestation and lactation for the development of the gut-brain axis and adaptation abilities of the progeny to nutritional environments. Finally, three examples of preventive or therapeutic strategies will be introduced: the use of sensory food ingredients or pre-, pro-, and postbiotics to improve metabolic and cognitive functions; the implementation of chronic vagus nerve stimulation to prevent weight gain and glucose metabolism alterations; and the development of bariatric surgery in the pig model for the understanding of its complex mechanisms at the gut-brain level. A critical conclusion will brush the limitations of neurocognitive studies in the pig model and put in perspective the rationale and ethical concerns underlying the use of pig experimentation in nutrition and neurosciences.

摘要

本文旨在对过去十年中利用活体猪模型进行脑影像学研究的营养科学进行综述。首先,我们将回顾一些描述食物信号引起大脑反应的工作,包括口腔和内脏水平的基本味觉,如甜和苦,以及条件性偏好和厌恶味道。其次,我们将探讨体重增加和肥胖对大脑代谢和功能反应的影响,并与肥胖人类患者进行比较。第三,我们将提到健康和疾病的发育起源概念,以及猪模型如何阐明妊娠和哺乳期母体营养对肠道-大脑轴发育和后代适应营养环境能力的重要性。最后,将介绍三种预防或治疗策略的例子:使用感官食物成分或前、益生菌和后生菌来改善代谢和认知功能;实施慢性迷走神经刺激以预防体重增加和葡萄糖代谢改变;以及在猪模型中开展减重手术,以了解其在肠道-大脑水平的复杂机制。本文将批判性地总结猪模型中神经认知研究的局限性,并从营养和神经科学中使用猪实验的基本原理和伦理问题的角度来看待这些局限性。

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