Osmanthus fragrans Flower Ameliorates Compound 48/80-Induced Pseudo-Allergic Reactions in vitro and in vivo

脱颗粒 肥大细胞 体内 体外 肉豆蔻 生物 免疫学 药理学 细胞 化学 线粒体 免疫球蛋白E 传统医学 桅杆(植物学) 生物化学 医学 细胞生物学 细胞免疫 炎性细胞 细胞培养
作者
Qian Chen,Yuan Gao,Zhuangzhuang Liu,Yunfeng Huang,Min Cai,Congyu Wu,Muqing Wang,Yilin Guo,Yun Qi
出处
期刊:International Archives of Allergy and Immunology [Karger Publishers]
卷期号:: 1-16
标识
DOI:10.1159/000551184
摘要

INTRODUCTION: Osmanthus fragrans flower is a highly popular edible flower due to its long-lasting aroma. Although it has been reported to possess multiple activities, no study has focused on its effects on mas-related G protein-coupled receptor (Mrgpr)-mediated mast cell activation. METHODS: -NaOH colorimetric method and HPLC. Compound 48/80 (C48/80) was used for activating Mrgpr signaling. Supernatant β-hexosaminidase level was assayed by using the fluorescence probe 4-methylumbelliferyl N-acetyl-β-D-glucosaminide. The levels of cytoplasmic Ca2+ ( Cac2+ ) and intracellular mitochondrial Ca2+ ( Cam2+ ) were determined by fluorescence probes Fluo-3 AM and Rhod-2/AM, respectively. The Ca2+ level outside the mitochondria was indicated by the fluorescence probe Calcium Green-5N. C48/80-induced vascular leakage, scratching behavior, and hypothermia models were used for evaluating the in vivo effects of OFE. RESULTS: The highly water-soluble flavonoid-rich OFE significantly inhibited C48/80-induced degranulation in LAD2 cells and primary rat peritoneal mast cells. It could rapidly and reversibly decrease Cac2+ level independent of the activation of Mrgpr signaling. Among the four classical pathways responsible for Cac2+ removal, OFE failed to affect plasma membrane Ca2+-ATPase, sarco/endoplasmic Ca2+-ATPase, and Na+/Ca2+ exchanger, but promoted the uptake of Cam2+ . In vivo, OFE alleviated C48/80-induced vascular leakage, scratching, as well as hypothermia. CONCLUSION: This study indicates, for the first time, that OFE is a mast cell stabilizer. It decreases Cac2+ to suppress mast cell degranulation by directly enhancing Cam2+ uptake. These findings may unveil a potential medicinal value of O. fragrans flower as a promising candidate for relieving mast cell activation-related diseases.
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