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首页> 外文期刊>Experimental Biology and Medicine: Journal of the Society for Experimental Biology and Medicine >Nanoallergens: A multivalent platform for studying and evaluating potency of allergen epitopes in cellular degranulation
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Nanoallergens: A multivalent platform for studying and evaluating potency of allergen epitopes in cellular degranulation

机译:纳米过敏原:研究和评估过敏原表位在细胞脱粒中的效价的多价平台

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摘要

Degranulation caused by type I hypersensitivity (allergies) is a complex biophysical process, and available experimental models for studying relevant immunoglobulin E binding epitopes on allergen proteins lack the ability to adequately evaluate, rank, and associate these epitopes individually and with each other. In this study, we propose a new allergy model system for studying potential allergen epitopes using nanoallergens, liposomes modified to effectively display IgE binding epitopes/haptens. By utilizing the covalently conjugated lipid tails on two hapten molecules (dinitrophenol and dansyl), hapten molecules were successfully incorporated into liposomes with high precision to form nanoallergens. Nanoallergens, with precisely controlled high-particle valency, can trigger degranulation with much greater sensitivity than commonly used bovine serum albumin conjugates. In rat basophil leukemia cell experiments, nanoallergens with only 2% hapten loading were able to trigger degranulation in vitro at concentrations as low as 10 pM. Additionally, unlike bovine serum albumin-hapten conjugates, nanoallergens allow exact control over particle size and valency. By varying the nanoallergen parameters such as size, valency, monovalent affinity of hapten, and specific IgE ratios, we exposed the importance of these variables on degranulation intensity while demonstrating nanoallergens' potential for evaluating both high-and low-affinity epitopes. The data presented in this article establish nanoallergen platform as a reliable and versatile allergy model to study and evaluate allergen epitopes in mast cell degranulation.
机译:由I型超敏反应(过敏)引起的脱粒是一个复杂的生物物理过程,用于研究过敏原蛋白上相关免疫球蛋白E结合表位的可用实验模型缺乏充分评估,单独排列这些表位以及彼此关联的能力。在这项研究中,我们提出了一种新的过敏模型系统,用于使用纳米过敏原研究潜在的过敏原表位,纳米脂质体经修饰可有效显示IgE结合表位/半抗原。通过利用两个半抗原分子(二硝基苯酚和丹磺酰基)上共价结合的脂质尾巴,半抗原分子成功地高精度地掺入脂质体中,形成纳米过敏原。与通常使用的牛血清白蛋白结合物相比,具有精确控制的高化合价的纳米过敏原可以更高的敏感性触发脱粒。在大鼠嗜碱性粒细胞白血病细胞实验中,仅半抗原含量为2%的纳米过敏原能够在体外以低至10 pM的浓度触发脱粒。另外,与牛血清白蛋白-半抗原缀合物不同,纳米过敏原可以精确控制粒径和化合价。通过改变纳米变应原参数,例如大小,化合价,半抗原的单价亲和力和特定的IgE比,我们揭示了这些变量对脱颗粒强度的重要性,同时证明了纳米变应原在评估高亲和力和低亲和力表位方面的潜力。本文提供的数据建立了纳米过敏原平台,作为研究和评估肥大细胞脱粒中过敏原表位的可靠且通用的过敏模型。

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