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关于冷诱导性荨麻疹中一种IgGλ冷球蛋白的免疫化学研究。

Immunochemical studies on an IgG lambda cryoglobulin in cold-induced urticaria.

作者信息

Jørgensen M, Clemmensen I, Wiik A

出版信息

Eur J Clin Invest. 1984 Apr;14(2):135-41. doi: 10.1111/j.1365-2362.1984.tb02102.x.

Abstract

A type I cryoglobulinaemia associated with cold-induced urticaria was demonstrated in a 64-year-old woman without primary disease. The cryoglobulin contained only IgG lambda as disclosed by immunofixation technique. Different physicochemical studies indicated that the IgG lambda component was monomeric at temperatures above 35 degrees C, but became polymerized below 35 degrees C. In addition crossed immunoelectrophoresis of plasma fibronectin from the patient showed a heterogeneous precipitate at low temperatures but a homogeneous precipitate at 25 degrees C indicating a complex formation at low temperature between IgG lambda and fibronectin. Fibronectin, however, was not essential for the cold precipitation of the cryoglobulin. The precipitation phenomenon at low temperatures was found to be a result of the physicochemical properties of the cryoglobulin itself unrelated to the antibody specificities tested. The importance of performing the immunochemical and physicochemical techniques at low temperature (7 degrees C) and at high temperature (35 degrees C) to gain knowledge of the nature of the protein, is emphasized. We conclude that only results obtained by relevant laboratory procedures might lead to correct classification and understanding of cryoglobulinaemia.

摘要

在一名无原发性疾病的64岁女性中证实了与冷诱导性荨麻疹相关的I型冷球蛋白血症。免疫固定技术显示冷球蛋白仅含有IgG λ。不同的物理化学研究表明,IgG λ成分在温度高于35℃时为单体,但在低于35℃时会聚合。此外,对该患者血浆纤维连接蛋白进行的交叉免疫电泳显示,在低温下出现异质性沉淀,而在25℃时出现均一性沉淀,这表明在低温下IgG λ与纤维连接蛋白之间形成了复合物。然而,纤维连接蛋白对于冷球蛋白的冷沉淀并非必不可少。发现低温下的沉淀现象是冷球蛋白自身物理化学性质的结果,与所检测的抗体特异性无关。强调了在低温(7℃)和高温(35℃)下进行免疫化学和物理化学技术以了解蛋白质性质的重要性。我们得出结论,只有通过相关实验室程序获得的结果才可能导致对冷球蛋白血症的正确分类和理解。

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