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Year-to-year variation of the elemental and allergenic contents of Ailanthus altissima pollen grains: an allergomic study

机译:Ailanthus Altissima花粉谷物的元素和过敏含量的年度变异:过敏性研究

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sThe Ailanthus altissima pollen (AAP) has been reported as an emerging aeroallergen worldwide. This paper aims at examining the allergen pattern and the elemental composition of A. altissima pollen collected during two consecutive seasons (2014 and 2015). A gel-based allergomic study and SEM coupled to energy-dispersive X-ray (EDX) analysis have been carried out in order to evaluate the allergenic and elemental composition of AAP in two consecutive years. The IgE reactive patterns of 2014 and 2015 AAP PBS extracts were compared using the serum of a 31-year-old woman suffering from severe pollinosis symptoms to AAP. The EDX analysis revealed an important year-to-year variation in the ratios of some polluting elements such as nickel, sulfur, aluminum, lead, and copper. Gel alignments and comparative immunoproteomic analyses showed differential protein expression and IgE reactive patterns between AAPs collected in 2014 and 2015 pollinating seasons. From 20 distinct IgE-reactive spots detected in AAP extracts, 13 proteins showed higher expression in 2014 sample, while 7 allergen candidates exhibited an increased expression in AAP collected in 2015. Matrix-assisted laser desorption ionization-MS/MS analyses led to the identification of 13 IgE-binding proteins with confidence, all belonging to well-known allergenic protein families, i.e., enolase, calreticulin, and pectate lyase. Overall, the 2014 AAP showed higher concentrations of urban polluting elements as well as an increased expression of allergenic pectate lyase isoforms of about 52kDa. This study demonstrates that the implementation of allergomic tools for the safety assessment of newly introduced and invasive plant species would help to the comprehensive monitoring of proteomic and transcriptomic alterations involving environmental allergens.
机译:STHE Ailanthus Altissima Pollen(AAP)已被报告为全球新兴航空预报。本文旨在检查连续两个季节收集的Altissima花粉的过敏原模式和元素组成(2014年和2015年)。已经进行了一种基于凝胶的过敏性研究和综合SEM耦合到能量分散X射线(EDX)分析,以便在连续两年内评估AAP的过敏和元素组成。使用患有严重的花粉症状的31岁女性的血清对AAP进行比较2014和2015 AAP PBS提取物的IgE反应模式。 EDX分析显示了一些污染元素,如镍,硫,铝,铅和铜的比例的重要年份变异。凝胶对准和比较免疫蛋白分析显示到2014年和2015年授粉季节的AAP之间的差异蛋白表达和IgE反应模式。从AAP提取物中检测到的20个不同的IgE反应斑点,2014年样品中的13个蛋白质显示出更高的表达,而7例过敏原候选候选者在2015年收集的AAP表现出增加。矩阵辅助激光解吸离子化-SM / MS分析导致了识别13个IgE结合的蛋白质充满自信,均属于众所周知的过敏蛋白质,即烯醇酶,钙霉素和果胶酶。总体而言,2014年AAP显示出较高浓度的城市污染元素,以及增加了大约52kDA的过敏率裂解酶同种型的表达增加。本研究表明,对新引进和侵入性植物物种的安全评估的过敏工具的实施将有助于综合监测涉及环境过敏原的蛋白质组学和转录组织。

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