Sub-Chronic Consumption of Dark Chocolate Enhances Cognitive Function and Releases Nerve Growth Factors: A Parallel-Group Randomized Trial.

Eri Sumiyoshi, Kentaro Matsuzaki, Naotoshi Sugimoto, Yoko Tanabe, Toshiko Hara, Masanori Katakura, Mayumi Miyamoto, Seiji Mishima, Osamu Shido

Journal: Nutrients 2020;11(11):2800

PMID: 31744119

Plain Language Summary

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Previous research has shown that habitual chocolate consumption may be beneficial to human health, in particular cardiovascular health, cholesterol metabolism and cognitive function. This small, single-blinded randomised trial aimed to assess the effects of consuming chocolate daily on the cognitive function of young, healthy adults. The study participants consumed 24g of 70% cacao dark or 0% cacao white chocolate daily for 30 days and were evaluated pre, post and at a 3 week follow up. The study authors found that the consumption of a small amount of dark chocolate daily enhanced cognitive function and performance on a range of validated cognitive tests. Additionally, the enhancement of cognitive function was observed 3 weeks after the end of chocolate intake, suggesting a possible function for cacao as developing brain function. Whilst this is a small trial, Nutrition Practitioners may want to recommend the consumption of a small piece of dark chocolate daily as part of a protocol to support overall health, and cognitive function in particular.

Abstract

Previous research has shown that habitual chocolate intake is related to cognitive performance and that frequent chocolate consumption is significantly associated with improved memory. However, little is known about the effects of the subchronic consumption of dark chocolate (DC) on cognitive function and neurotrophins. Eighteen healthy young subjects (both sexes; 20-31 years old) were randomly divided into two groups: a DC intake group ( = 10) and a cacao-free white chocolate (WC) intake group ( = 8). The subjects then consumed chocolate daily for 30 days. Blood samples were taken to measure plasma levels of theobromine (a methylxanthine most often present in DC), nerve growth factor (NGF), and brain-derived neurotrophic factor, and to analyze hemodynamic parameters. Cognitive function was assessed using a modified Stroop color word test and digital cancellation test. Prefrontal cerebral blood flow was measured during the tests. DC consumption increased the NGF and theobromine levels in plasma, enhancing cognitive function performance in both tests. Interestingly, the DC-mediated enhancement of cognitive function was observed three weeks after the end of chocolate intake. WC consumption did not affect NGF and theobromine levels or cognitive performance. These results suggest that DC consumption has beneficial effects on human health by enhancing cognitive function.

Address: Department of Environmental Physiology, Faculty of Medicine, Shimane University, Izumo 693-8501, Japan.; Department of Physiology, Graduate School of Medical Science, Kanazawa University, Kanazawa 920-8640, Japan.; Department of Nutritional Physiology, Faculty of Pharmaceutical Sciences, Josai University, Sakado 350-0295, Japan.; School of Nursing, Faculty of Medicine, Shimane University, Izumo 693-8501, Japan.; Central Clinical Laboratory, Shimane University Hospital, Izumo 693-8501, Japan.

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