Mushroom extracts seem to exert an action on brain function. In order to objectify such an effect changes of the electric activity of the brain have been successfully used in earlier experiments in the presence of diverse food extracts.
Changes of field potentials recorded from implanted electrodes into the depth of the brain of rats served to analyse the action of plant-derived extracts in comparison to food supplements and reference drugs. Frequency analysis of the data and feeding of the results into discriminant analysis allowed indication dependent classification of the effects. The present investigation aimed at the neuro-physiological characterization of the effect of a preparation of Hericium erinaceus in this model.
The presently tested mycological preparation “MRL’s Hericium erinaceus hyphal powder” induced a pattern of frequency changes consisting in a statistically significant attenuation of delta, theta, alpha2 and beta1 spectral power, but not alpha1 power in all brain regions during the first 2 hours after administration. The lack of alpha1 spectral power attenuation in combination with attenuation of delta, theta and alpha2 power is shared by some other preparations tested earlier under identical conditions like Zembrin®, Acetylsalicylic acid, Methylphenidate, Taxifolin and Ginkgo extract. From this, calming, analgesic, antidepressive and cognition enhancing properties might be deduced for the tested mushroom biomass. However, due to the fact, that only one dosage was tested, interpretation of the results is limited. As active ingredients recently discovered erinacines from Hericium ericaneus mycelia might be considered, which show up in the brain as early as 30 min after oral administration.
Clinical Articles
The following section outlines the clinical papers, posters and proposals that refer to the clinical use of MRL mushroom nutrition products. This information is for healthcare practitioners only and should not be provided to members of the general public.
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Clinical articles
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Natural Compounds such as Hericium erinaceus and Coriolus versicolor Modulate Neuroinflammation, Oxidative Stress and Lipoxin A4 Expression in Rotenone-Induced Parkinson’s Disease in Mice
Marika Cordaro 1,†, Sergio Modafferi 2,†, Ramona D’Amico 3, Roberta Fusco 3, Tiziana Genovese 3, Alessio Filippo Peritore 3, Enrico Gugliandolo 4, Rosalia Crupi 4, Livia Interdonato 3, Davide Di Paola 3, Daniela Impellizzeri 3,*, Salvatore Cuzzocrea 3,5,*, Vittorio Calabrese 2,*, Rosanna Di Paola 4,‡ and Rosalba Siracusa 3,‡ -
Key Mechanisms and Potential Implications of Hericium erinaceus in NLRP3 Inflammasome Activation by Reactive Oxygen Species during Alzheimer’s Disease
Marika Cordaro 1,† , Angela Trovato Salinaro 2,† , Rosalba Siracusa 3,† , Ramona D’Amico 3 , Daniela Impellizzeri 3 , Maria Scuto 2 , Maria Laura Ontario 2, Salvatore Cuzzocrea 3 , Rosanna Di Paola 3,* , Roberta Fusco 3,‡ and Vittorio Calabrese 2,‡ -
Coriolus Versicolor Downregulates TLR4/NF-B Signaling Cascade in Dinitrobenzenesulfonic Acid-Treated Mice: A Possible Mechanism for the Anti-Colitis Effect
Daniela Impellizzeri 1,† , Roberta Fusco 2,† , Tiziana Genovese 1, Marika Cordaro 3 , Ramona D’Amico 1 , Angela Trovato Salinaro 4 , Maria Laura Ontario 4, Sergio Modafferi 4, Salvatore Cuzzocrea 1,5,* , Rosanna Di Paola 6,* , Vittorio Calabrese 4,‡ and Rosalba Siracusa 1,‡ -
Characterization of bioactive compounds in mushroom biomass of Coriolus versicolor, Hericium erinaceus and Pleurotus ostreatus species
Helena Araújo-Rodrigues, Manuela Amorim, Ana Sofia Salsinha, Sara Marçal, Freni K. Tavaria, João B. Relvas and Manuela E. Pintado. Catolica University, Porto Portugal. Presented at the XXII Congress, European Food ChMemistry Congress (EuroFoodChem) June 14-16, 2023, Belgrade, Serbia.