富含(-)-没食子儿茶素没食子酸酯的绿茶提取物对健康人前额叶皮层脑血流动力学反应的急性影响

Jihyun Cha, Hyung-Su Kim, Gusang Kwon, Si-Young Cho, Jae-Myoung Kim
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引用次数: 0

摘要

长期饮用绿茶对大脑的益处众所周知。然而,在绿茶的众多成分中,富含(-)-没食子儿茶素没食子酸酯的绿茶提取物(GCG-GTE)的急性效应受到的关注相对较少。在这项随机、双盲、安慰剂对照、平行组试验中,35 名健康成年人分别在基线和服用安慰剂和 900 毫克 GCG-GTE 提取物补充剂 1 小时后,完成了需要激活前额叶皮层的计算机化认知任务。在认知测试过程中,使用功能性近红外光谱(fNIRS)评估了前额叶皮层的血液动力学反应(HbO2 浓度变化)。在行为数据方面,尽管 GCG-GTE 组的数字增加,而安慰剂组的数字减少,但在认知表现测量方面,各组之间没有观察到显著差异。GCG-GTE是一种很有前途的功能材料,它可以影响神经效率,从而降低认知要求较高任务中的脑力劳动负荷。然而,这还需要进一步的研究来验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acute effects of (–)-gallocatechin gallate-rich green tea extract on the cerebral hemodynamic response of the prefrontal cortex in healthy humans
The benefits of long-term consumption of green tea on the brain are well known. However, among many ingredients of green tea, the acute effects of (–)-gallocatechin gallate-rich green tea extract (GCG-GTE), have received comparatively less attention. Herein, we investigated the acute effects of oral ingestion of green tea with GCG-GTE, which contains close replicas of the ingredients of hot green tea, on task-dependent hemodynamics in the prefrontal cortex of healthy adult human brains.In this randomized, double-blind, placebo-controlled, parallel group trial, 35 healthy adults completed computerized cognitive tasks that demand activation of the prefrontal cortex at baseline and 1 h after consumption of placebo and 900 mg of GCG-GTE extract supplement. During cognitive testing, hemodynamic responses (change in HbO2 concentration) in the prefrontal cortex were assessed using functional near-infrared spectroscopy (fNIRS).In fNIRS data, significant group x session interactions were found in the left (p = 0.035) and right (p = 0.036) dorsolateral prefrontal cortex (DLPFC). In behavioral data, despite the numerical increase in the GCG-GTE group and the numerical decrease in the Placebo group, no significant differences were observed in the cognitive performance measure between the groups.The result suggests a single dose of orally administered GCG-GTE can reduce DLPFC activation in healthy humans even with increased task demand. GCG-GTE is a promising functional material that can affect neural efficiency to lower mental workload during cognitively demanding tasks. However, further studies are needed to verify this.
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