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Drosera rotundifolia and Drosera tokaiensis suppress the activation of HMC-1 human mast cells
Authors:Kenji Fukushima  Kanji Nagai  Yoshikazu Hoshi  Saeko Masumoto  Ichiho Mikami  Yumiko Takahashi  Hideaki Oike  Masuko Kobori
Institution:1. School of Agriculture, Tokai University, Kawayou, Minamiaso-mura, Kumamoto 869-1404, Japan;2. National Food Research Institute, National Agriculture and Food Research Organization, Tsukuba, Ibaraki 305-8642, Japan;3. Mitsubishi Rayon Co., Ltd., Yokohama, Kanagawa 230-0053, Japan
Abstract:

Ethnopharmacological relevance

Several Northern Hemisphere Drosera species have been used in the therapy of respiratory tract infections as the traditional medicine Droserae Herba.

Aim of the study

To determine the anti-inflammatory effects of Drosera species and to investigate a substitute material for Droserae Herba, we examined the effect of extracts of Drosera rotundifolia, Drosera tokaiensis and Drosera spatulata on activated T cell membrane (aTc-m)-induced inflammatory gene expression in HMC-1 human mast cells.

Materials and methods

Drosera rotundifolia, Drosera spatulata and Drosera tokaiensis were collected in Japan. Herbs were extracted with 80% EtOH, and subsequently applied to OASIS HLB column. HMC-1 cells were treated with each Drosera column-adsorbed fraction for 15 min, and subsequently added to aTc-m and incubated for 16 h. Inflammatory gene and protein expressions were determined by DNA microarray, RT-PCR and Western blotting.

Results

Drosera rotundifolia and Drosera tokaiensis fractions, but not the Drosera spatulata fraction, suppressed inflammatory gene expression induced by aTc-m in HMC-1 cells.

Conclusions

Drosera rotundifolia and Drosera tokaiensis suppressed activation of HMC-1 cells induced by aTc-m. Since the Drosera tokaiensis fraction was more effective than the traditionally used Drosera rotundifolia, Drosera tokaiensis is a likely substitute as a source of Droserae Herba.
Keywords:Drosera rotundifolia  Drosera tokaiensis  Droserae Herba  HMC-1 cells  Inflammation  DNA microarray
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