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Anti-allergic effect of bee pollen phenolic extract and myricetin in ovalbumin-sensitized mice
Authors:Medeiros K C P  Figueiredo C A V  Figueredo T B  Freire K R L  Santos F A R  Alcantara-Neves N M  Silva T M S  Piuvezam M R
Institution:Laboratório de Tecnologia Farmacêutica, Centro de Ciências da Saúde, Universidade Federal da Paraíba, UFPB, Brazil.
Abstract:ETHNOPHARMACOLOGICAL RELEVANCE: The bee pollen is used in folk medicine to alleviate allergic reactions. The bee pollen phenolic extract (BPPE) consists in phenolic compounds (flavonoids) from plants picked by Apis mellifera bee. AIM OF THIS STUDY: Here we evaluated the anti-allergic property of the BPPE and the flavonoid myricetin (MYR) in murine model of ovalbumin (OVA)-induced allergy. MATERIALS AND METHODS: The study focused on the BPPE or myricetin treatment of OVA-sensitized BALB/c mice and their effects on the IgE and IgG1 production, pulmonary cell migration, eosinophil peroxidase (EPO) activity and anaphylactic shock reaction. RESULTS: The BPPE treatment (200mg/kg) showed inhibition of the paw edema, IgE and IgG(1) OVA-specific production, leukocyte migration to the bronchoalveolar lavage (BAL) and EPO activity in lungs. In addition, BPPE treatment showed partial protection on the anaphylactic shock reaction induced by OVA. Treatment with myricetin (5mg/kg) also inhibited pulmonary cell migration and IgE and IgG(1) OVA-specific production. CONCLUSIONS: These results support the hypothesis the myricetin is one of the flavonoids of BPPE responsible for the anti-allergic effect and a potential tool to treat allergies.
Keywords:BPPE  bee pollen phenolic extract  MYR  myricetin  IgE  immunoglobulin E  IgG1  immunoglobulin G1  OVA  ovalbumin  LTs  leukotrienes  PGs  prostaglandins  GM-CSF  granulocyte-macrophage colony-stimulating factor  DMSO  dimethyl sulfoxide  BAL  bronchoalveolar lavage  EPO  eosinophil peroxidase  OPD  ortho-phenylenediamine  OD  optical density  PCA  cutaneous anaphylaxis
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