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镍在钴致敏过程中起佐剂作用。

Nickel acts as an adjuvant during cobalt sensitization.

作者信息

Bonefeld Charlotte Menné, Nielsen Morten Milek, Vennegaard Marie T, Johansen Jeanne Duus, Geisler Carsten, Thyssen Jacob P

机构信息

Department of International Health, Immunology and Microbiology, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.

出版信息

Exp Dermatol. 2015 Mar;24(3):229-31. doi: 10.1111/exd.12634.

Abstract

Metal allergy is the most frequent form of contact allergy with nickel and cobalt being the main culprits. Typically, exposure comes from metal-alloys where nickel and cobalt co-exist. Importantly, very little is known about how co-exposure to nickel and cobalt affects the immune system. We investigated these effects by using a recently developed mouse model. Mice were epicutaneously sensitized with i) nickel alone, ii) nickel in the presence of cobalt, iii) cobalt alone, or iv) cobalt in the presence of nickel, and then followed by challenge with either nickel or cobalt alone. We found that sensitization with nickel alone induced more local inflammation than cobalt alone as measured by increased ear-swelling. Furthermore, the presence of nickel during sensitization to cobalt led to a stronger challenge response to cobalt as seen by increased ear-swelling and increased B and T cell responses in the draining lymph nodes compared to mice sensitized with cobalt alone. In contrast, the presence of cobalt during nickel sensitization only induced an increased CD8(+) T cell proliferation during challenge to nickel. Thus, the presence of nickel during cobalt sensitization potentiated the challenge response against cobalt more than the presence of cobalt during sensitization to nickel affected the challenge response against nickel. Taken together, our study demonstrates that sensitization with a mixture of nickel and cobalt leads to an increased immune response to both nickel and cobalt, especially to cobalt, and furthermore that the adjuvant effect appears to correlate with the inflammatory properties of the allergen.

摘要

金属过敏是最常见的接触性过敏形式,镍和钴是主要诱因。通常,接触源于镍和钴共存的金属合金。重要的是,对于镍和钴共同暴露如何影响免疫系统,人们知之甚少。我们使用一种最近开发的小鼠模型来研究这些影响。小鼠经皮致敏:i)单独用镍致敏,ii)在钴存在的情况下用镍致敏,iii)单独用钴致敏,或iv)在镍存在的情况下用钴致敏,然后单独用镍或钴进行激发。我们发现,通过耳肿胀增加来衡量,单独用镍致敏比单独用钴致敏诱导更多的局部炎症。此外,与单独用钴致敏的小鼠相比,在对钴致敏期间镍的存在导致对钴更强的激发反应,表现为耳肿胀增加以及引流淋巴结中B细胞和T细胞反应增加。相反,在镍致敏期间钴的存在仅在对镍激发时诱导CD8(+)T细胞增殖增加。因此,钴致敏期间镍的存在对钴激发反应的增强作用比对镍致敏期间钴的存在对镍激发反应的影响更大。综上所述,我们的研究表明,镍和钴混合物致敏会导致对镍和钴的免疫反应增加,尤其是对钴,而且这种佐剂效应似乎与过敏原的炎症特性相关。

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