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低剂量过敏原和益生菌补充剂单独或联合使用可减轻小鼠对牛β-乳球蛋白的过敏反应。

Low doses of allergen and probiotic supplementation separately or in combination alleviate allergic reactions to cow β-lactoglobulin in mice.

机构信息

Department of Animal Science, Macdonald Campus, McGill University, Ste Anne de Bellevue, Quebec, Canada.

出版信息

J Nutr. 2013 Feb;143(2):136-41. doi: 10.3945/jn.112.169466. Epub 2012 Dec 12.

Abstract

Probiotic supplementation and oral tolerance induction can reduce certain types of food allergy. The objectives of this study were to investigate the allergy-reducing effects of probiotics (VSL#3) and/or oral tolerance induction via low doses of an allergen supplementation in β-lactoglobulin (BLG)-sensitized mice. Three-week-old, male BALB/c mice were divided into 6 groups (n = 8/group): sham-sensitized negative control (CTL-), BLG-sensitized positive control (CTL+), oral tolerance-induced and BLG-sensitized group (OT), probiotic-supplemented OT group (OTP), probiotic-supplemented CTL- (PRO), and probiotic-supplemented and BLG-sensitized (PROC) groups. Mice were i.p. sensitized with BLG and alum and then orally challenged with BLG. Immunological responses were assessed by monitoring hypersensitivity scores and measuring levels of BLG-specific serum Igs, total serum IgE and fecal IgA, and cytokines from serum and spleen lysates. Hypersensitivity scores were significantly lower in the PROC (2.00 ± 0.53), OT (0.75 ± 0.46), and OTP mice (1.00 ± 0.53) than in the CTL+ mice (2.63 ± 0.52) as were BLG-specific serum IgE concentrations (34.3 ± 10, 0.442 ± 0.36, 3.54 ± 3.5, and 78.5 ± 8.7 μg/L for PROC, OT, OTP, and CTL+, respectively). Our results suggest that supplementation of VSL#3 suppressed the allergic reaction mainly through increased intestinal secretary IgA (sIgA) in PROC mice, and oral tolerance offered allergen-specific protective effects to BLG-induced allergy, probably through CD4+CD25+ regulatory T cell-mediated active suppression. In OTP mice, probiotics did not induce a further reduction of hypersensitivity score compared with OT mice but may provide additional protection to unforeseen nonspecific challenges through increased intestinal sIgA.

摘要

益生菌补充和口服耐受诱导可以减少某些类型的食物过敏。本研究的目的是研究益生菌(VSL#3)和/或通过低剂量过敏原补充进行口服耐受诱导对β-乳球蛋白(BLG)致敏小鼠的过敏减轻作用。将 3 周龄雄性 BALB/c 小鼠分为 6 组(每组 8 只):假致敏阴性对照(CTL-)、BLG 致敏阳性对照(CTL+)、口服耐受诱导和 BLG 致敏组(OT)、益生菌补充 OT 组(OTP)、益生菌补充 CTL-(PRO)和益生菌补充和 BLG 致敏组(PROC)。用 BLG 和 alum 对小鼠进行腹腔内致敏,然后用 BLG 进行口服挑战。通过监测过敏反应评分和测量 BLG 特异性血清 Ig、总血清 IgE 和粪便 IgA 以及血清和脾裂解物中的细胞因子水平来评估免疫反应。PROC(2.00 ± 0.53)、OT(0.75 ± 0.46)和 OTP 组(1.00 ± 0.53)的过敏反应评分明显低于 CTL+组(2.63 ± 0.52),BLG 特异性血清 IgE 浓度也明显低于 CTL+组(PROC、OT、OTP 和 CTL+ 组分别为 34.3 ± 10、0.442 ± 0.36、3.54 ± 3.5 和 78.5 ± 8.7 μg/L)。我们的结果表明,VSL#3 的补充主要通过 PROC 小鼠肠道分泌型 IgA(sIgA)的增加来抑制过敏反应,口服耐受对 BLG 诱导的过敏提供了过敏原特异性保护作用,可能通过 CD4+CD25+调节性 T 细胞介导的主动抑制。在 OTP 组中,与 OT 组相比,益生菌并没有进一步降低过敏反应评分,但可能通过增加肠道 sIgA 对不可预见的非特异性挑战提供额外的保护。

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