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从出芽短梗霉GM-NH-1A1菌株中纯化的水溶性低分子量β-(1,3-1,6) -D-葡聚糖对小鼠食物过敏反应的抑制作用

Inhibitory effects of water-soluble low-molecular-weight beta-(1,3-1,6) d-glucan purified from Aureobasidium pullulans GM-NH-1A1 strain on food allergic reactions in mice.

作者信息

Kimura Yoshiyuki, Sumiyoshi Maho, Suzuki Takahiro, Suzuki Toshio, Sakanaka Masahiro

机构信息

Division of Biochemical Pharmacology, Department of Basic Medical Research, Graduate School of Medicine, Ehime University, Shitsukawa, Toon-City, Ehime 791-0295, Japan.

出版信息

Int Immunopharmacol. 2007 Jul;7(7):963-72. doi: 10.1016/j.intimp.2007.03.003. Epub 2007 Apr 11.

Abstract

There have been a number of reports showing that the crude beta-glucan fraction prepared from various kinds of Basidiomycetes mushrooms acts as anti-cancer and anti-allergic reagent through stimulation of IFN-gamma production. It has been reported, however, that the exposure of the airway to beta-(1,3) d-glucan, contained in house dust, indoor moulds and some bacteria, potentiates the airway allergic response. It seems likely that the discrepant effects on immune function may be related to such factors as differences of the administration route, average molecular weight and water solubility. We isolated a new low-molecular-weight (about 100 kDa) beta-glucan from Aureobasidium pullulans 1A1 strain of black yeast, and found that it had low viscosity and was water-soluble. In this study, we examined the effects of water-soluble low-molecular-weight beta-(1-->3) and 50-80% branched beta-(1-->6) glucan (LMW-beta-Glucan) isolated from A. pullulans on the ova-albumin (OVA)-treated allergic reaction in mice. Feeding standard laboratory diets containing 0.5 and 1% LMW-beta-Glucan significantly inhibited the OVA-specific IgE elevation compared to that in OVA-sensitized mice fed standard laboratory diet alone (control). Furthermore, feeding standard laboratory diets containing 0.5 and 1% LMW-beta-Glucan inhibited the reduction of IL-12 and IFN-gamma production from splenocytes and the reduction of CD8- and IFN-gamma-positive cell number in the small intestine of the OVA-sensitized mice. These findings suggest that anti-food allergic action of LMW-beta-Glucan may be due to the inducing IFN-gamma production in the small intestine and splenocytes.

摘要

已有多项报告表明,从各种担子菌蘑菇中制备的粗β-葡聚糖部分通过刺激γ干扰素的产生而起到抗癌和抗过敏试剂的作用。然而,据报道,气道暴露于屋尘、室内霉菌和一些细菌中所含的β-(1,3) -d-葡聚糖会增强气道过敏反应。对免疫功能的不同影响似乎可能与给药途径、平均分子量和水溶性等因素有关。我们从黑酵母的出芽短梗霉1A1菌株中分离出一种新的低分子量(约100 kDa)β-葡聚糖,发现它具有低粘度且可溶于水。在本研究中,我们检测了从出芽短梗霉中分离出的水溶性低分子量β-(1→3)和50 - 80%分支的β-(1→6)葡聚糖(LMW-β-葡聚糖)对卵清蛋白(OVA)处理的小鼠过敏反应的影响。与仅喂食标准实验室饮食的OVA致敏小鼠(对照)相比,喂食含有0.5%和1% LMW-β-葡聚糖的标准实验室饮食显著抑制了OVA特异性IgE的升高。此外,喂食含有0.5%和1% LMW-β-葡聚糖的标准实验室饮食抑制了OVA致敏小鼠脾细胞中IL-12和γ干扰素产生的减少以及小肠中CD8和γ干扰素阳性细胞数量的减少。这些发现表明,LMW-β-葡聚糖的抗食物过敏作用可能是由于在小肠和脾细胞中诱导γ干扰素的产生。

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