Delfino Danila, Prandi Barbara, Ridolo Erminia, Dellafiora Luca, Pedroni Lorenzo, Nicoletta Francesca, Cavazzini Davide, Sforza Stefano, Tedeschi Tullia, Folli Claudia
Department of Food and Drug, University of Parma, Parma, Italy.
Allergy and Clinical Immunology, Medicine and Surgery Department, University of Parma, Parma, Italy.
Food Chem. 2023 Oct 24;437(Pt 1):137849. doi: 10.1016/j.foodchem.2023.137849.
Insect consumption could address the increasing protein demand in compliance with environmental sustainability. Hermetia illucens (black soldier fly, BSF) is a promising insect for human diet and it is essential to assess the related allergenic risk, meant as primary sensitization or cross-reactivity with known allergens. In this work, we investigate the allergenicity of two tropomyosin variants identified in the BSF genome and produced as recombinant proteins. Immunoblot experiments showed that both proteins were recognized by sera of patients allergic to shrimp or mites highlighting the cross-reactivity risk. CD spectroscopy, cross-linking assays and size-exclusion chromatography showed a structure composed of alpha-helices oligomers for both variants. These proteins were quite stable to pH but sensitive to increasing temperatures. In vitro simulated digestion associated to mass-spectrometry allowed the identification of peptides resistant to gastrointestinal conditions which were compared with epitopes of Arthropoda and Mollusca allergens to predict the persistence of allergenicity upon digestion.
食用昆虫可以在符合环境可持续性的情况下满足日益增长的蛋白质需求。黑水虻是一种有前景的可供人类食用的昆虫,评估其相关的致敏风险至关重要,致敏风险指的是初次致敏或与已知过敏原的交叉反应。在这项研究中,我们调查了在黑水虻基因组中鉴定出并作为重组蛋白产生的两种原肌球蛋白变体的致敏性。免疫印迹实验表明,这两种蛋白都能被对虾或螨虫过敏的患者血清识别,突出了交叉反应风险。圆二色光谱、交联分析和尺寸排阻色谱显示,两种变体的结构均由α-螺旋寡聚体组成。这些蛋白质对pH相当稳定,但对温度升高敏感。与质谱联用的体外模拟消化能够鉴定出对胃肠道条件有抗性的肽段,并将其与节肢动物和软体动物过敏原的表位进行比较,以预测消化后致敏性的持续性。