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首页> 外文期刊>Journal of Agricultural and Food Chemistry >IgE-Reactivity Pattern of Tomato Seed and Peel Nonspecific Lipid-Transfer Proteins after in Vitro Gastrointestinal Digestion
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IgE-Reactivity Pattern of Tomato Seed and Peel Nonspecific Lipid-Transfer Proteins after in Vitro Gastrointestinal Digestion

机译:番茄种子的IgE反应模式和剥离非特异性脂质转移蛋白在体外胃肠道消化后

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摘要

The influence of gastrointestinal digestion on the immunological properties of three different nonspecific lipid-transfer proteins (nsLTPs) described in tomato fruit has been assessed using an in vitro system mimicking the stomach and intestine digestion conditions. Tomato peel/pulp nsLTP, Sola l 3, was degraded after digestion, although the immunoglobulin E (IgE) recognition of intact protein and a 10 kDa band were still observed after 30 min of duodenal digestion in the presence of phosphatidylcholine. The tomato seed nsLTP, Sola l 7, showed a higher stability than the other seed allergen, Sola l 6, during digestion. Sola l 7 showed an IgE immunoreactive 6.5 kDa band in immunoblotting analysis, retaining up to 7% of its IgE-binding capacity in inhibition ELISA test after 60 min of duodenal digestion and keeping intact its ability to activate basophils after digestion. These results suggest that the tomato seed allergen Sola l 7 might be considered as an important allergen in the induction of allergic responses to tomato due to its high stability against gastrointestinal digestion.
机译:已经使用模拟胃肠消化条件的体外系统评估了胃肠消化对番茄果实中描述的三种不同非特异性脂质转移蛋白(nsLTPs)免疫特性的影响。番茄皮/果肉nsLTP Sola l 3在消化后降解,尽管在存在磷脂酰胆碱的十二指肠消化30分钟后仍观察到完整蛋白质的免疫球蛋白E(IgE)识别和10 kDa条带。番茄种子nsLTP Sola l 7在消化过程中表现出比其他种子过敏原Sola l 6更高的稳定性。Sola l 7在免疫印迹分析中显示出IgE免疫反应性6.5 kDa条带,在十二指肠消化60分钟后的抑制ELISA试验中保留高达7%的IgE结合能力,并在消化后保持其激活嗜碱性粒细胞的能力。这些结果表明,番茄种子过敏原Sola l 7因其对胃肠道消化的高稳定性,可能被认为是诱导番茄过敏反应的重要过敏原。

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