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贝类原肌球蛋白IgE交叉反应性在可食用昆虫物种之间存在差异。

Shellfish Tropomyosin IgE Cross-Reactivity Differs Among Edible Insect Species.

作者信息

Palmer Lee K, Marsh Justin T, Lu Mei, Goodman Richard E, Zeece Michael G, Johnson Philip E

机构信息

University of Nebraska-Lincoln, 1901 N 21st, St. Lincoln, NE, 68503, USA.

出版信息

Mol Nutr Food Res. 2020 Apr;64(8):e1900923. doi: 10.1002/mnfr.201900923. Epub 2020 Mar 1.

Abstract

SCOPE

Insects are a potentially environmentally friendly alternative dietary protein source to supplement mammalian and fish sources, but potential allergenic risks are a concern. Consumption of insects may result in anaphylaxis and has been implicated in cross-reactivity with shellfish. Many allergenic proteins may be involved in cross-reactivity, including tropomyosin (TM). The uniformity of TM cross-reactivity among edible insects is unknown. Candidate edible insects for variability in shellfish IgE cross-reactivity are investigated.

METHODS AND RESULTS

Selected insects and known related sources of allergens are extracted and probed by immunoblot with sera/plasma from patients sensitized to insects or shellfish. Quantification of TM in these extracts is performed using mass spectrometry. A comparison of the quantity of TM and the IgE reactivity of TM from these insects is performed. Distinct patterns of IgE cross-reactivity are observed with three insect species showing diminished reactivity. This pattern is not consistent with the amount of TM present in these insects, or with overall sequence homology.

CONCLUSION

Insects display a diversity of TM-associated IgE reactivity. It is likely that minor sequence features and/or structural effects are primarily responsible. Additionally, it is demonstrated that some insect species may present significantly less IgE cross-reactivity to shrimp than do others.

摘要

范围

昆虫是一种潜在的环境友好型替代膳食蛋白质来源,可补充哺乳动物和鱼类来源,但潜在的过敏风险令人担忧。食用昆虫可能会导致过敏反应,并与贝类存在交叉反应。许多过敏蛋白可能参与交叉反应,包括原肌球蛋白(TM)。可食用昆虫中TM交叉反应的一致性尚不清楚。本研究调查了贝类IgE交叉反应性存在差异的候选可食用昆虫。

方法和结果

提取选定的昆虫和已知的相关过敏原来源,并用对昆虫或贝类致敏患者的血清/血浆进行免疫印迹检测。使用质谱法对这些提取物中的TM进行定量。比较这些昆虫中TM的含量和TM的IgE反应性。观察到三种昆虫的IgE交叉反应模式明显不同,其反应性降低。这种模式与这些昆虫中TM的含量或整体序列同源性不一致。

结论

昆虫表现出与TM相关的IgE反应多样性。可能主要是微小的序列特征和/或结构效应起作用。此外,研究表明,一些昆虫物种对虾的IgE交叉反应可能明显低于其他物种。

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