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Differential effects of L-tryptophan and L-leucine administration on brain resting state functional networks and plasma hormone levels

机译:L-色氨酸和L-亮氨酸给药对大脑静止状态功能网络和血浆激素水平的差异作用

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Depending on their protein content, single meals can rapidly influence the uptake of amino acids into the brain and thereby modify brain functions. The current study investigates the effects of two different amino acids on the human gut-brain system, using a multimodal approach, integrating physiological and neuroimaging data. In a randomized, placebo-controlled trial, L-tryptophan, L-leucine, glucose and water were administered directly into the gut of 20 healthy subjects. Functional MRI (fMRI) in a resting state paradigm (RS), combined with the assessment of insulin and glucose blood concentration, was performed before and after treatment. Independent component analysis with dual regression technique was applied to RS-fMRI data. Results were corrected for multiple comparisons. In comparison to glucose and water, L-tryptophan consistently modifies the connectivity of the cingulate cortex in the default mode network, of the insula in the saliency network and of the sensory cortex in the somatosensory network. L-leucine has lesser effects on these functional networks. L-tryptophan and L-leucine also modified plasma insulin concentration. Finally, significant correlations were found between brain modifications after L-tryptophan administration and insulin plasma levels. This study shows that acute L-tryptophan and L-leucine intake directly influence the brain networks underpinning the food-reward system and appetite regulation.
机译:根据其蛋白质含量,单餐可以迅速影响氨基酸向大脑的吸收,从而改变大脑的功能。当前的研究使用多峰方法研究了两种不同氨基酸对人体肠脑系统的影响,并整合了生理和神经影像数据。在一项随机,安慰剂对照的试验中,将L-色氨酸,L-亮氨酸,葡萄糖和水直接注入20名健康受试者的肠道。在治疗前和治疗后,在静止状态范例(RS)中进行功能性MRI(fMRI),并评估胰岛素和葡萄糖的血液浓度。采用双回归技术的独立成分分析应用于RS-fMRI数据。校正结果以进行多次比较。与葡萄糖和水相比,L-色氨酸始终改变默认模式网络中扣带回皮层,显着网络中的岛突和体感网络中的感觉皮层的连通性。 L-亮氨酸对这些功能网络的影响较小。 L-色氨酸和L-亮氨酸也可改变血浆胰岛素浓度。最后,发现L-色氨酸给药后的大脑修饰与胰岛素血浆水平之间存在显着相关性。这项研究表明,急性L-色氨酸和L-亮氨酸的摄入量直接影响着食物奖励系统和食欲调节的大脑网络。

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