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Neuromodulatory peptides: Orally active anxiolytic-like and antidepressant-like peptides derived from dietary plant proteins

期刊

PEPTIDES
卷 142, 期 -, 页码 -

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.peptides.2021.170569

关键词

Plant peptides; Emotion; Depressive behavior; Anxious behavior; Structure-activity relationship; Digestome; Simultaneous analysis; Brain-gut axis

资金

  1. JSPS KAKENHI [JP24780127, JP26850081, JP16K07731, JP19K05927]

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Mental disorders are a severe global health problem, and the number of patients is increasing. Some peptides produced from plant proteins may exhibit emotional regulatory functions through various pathways.
Mental disorders are a severe health problem, and the number of patients is growing worldwide. Increased anxiety and decreased motivation due to excessive mental stress further accelerated the severity of the problem. Enzymatic digestion of food proteins produces bioactive peptides with various physiological functions, some of which exhibit neuromodulatory effects with oral administration. Recently, studies reported that some peptides produced from plant proteins such as soybeans, leaves, and grains exhibit emotional regulatory functions such as strong anxiolytic-like and antidepressant-like effects comparable to pharmaceuticals. Conventionally, researchers investigated bioactive peptides by fractionation of protein hydrolysates and structure-activity relationship. As a novel methodology for analyzing bioactive peptides, the information obtained by peptidomics simultaneous analysis of the digested fractions of proteins using mass spectrometry has been effectively utilized. Some smallsized peptides such as dipeptides and tripeptides released food-derived proteins show emotional regulating effects. Moreover, some middle-sized peptides produced after intestinal digestion may exhibit the emotional regulating effect via the vagus nerve, and the importance of the gut-brain axis is also focused. As the central mechanism of emotional regulation, it has been found that these plant-derived peptides regulated monoamine neurotransmitter signaling and hippocampal neurogenesis.

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