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含抗DNA抗体活性的人工冷沉淀制品的研究。

Studies of artificial cryoprecipitates containing anti-DNA antibody activity.

作者信息

Taylor R P, Waller S J, Davis J S, Winfield J B, Morley K W, Wright E L

出版信息

Rheumatol Int. 1981;1(1):1-6. doi: 10.1007/BF00541215.

Abstract

Artificial cryoprecipitates have been prepared from SLE sera by incubation of anti-double stranded DNA with 3H-PM2 DNA. IgM rheumatoid factor, and complement to study further the relationships between natural cryoprecipitation and the DNA/anti-DNA system in this disorder. Addition of rheumatoid factor and/or complement to a mixture of SLE serum and 3H-DNA results in increased precipitation of the 3H-DNA following incubation at 4 degrees C. Precipitation formed with added complement or complement plus rheumatoid factor could be rapidly resolubilized or reprecipitated by warming to 37 degrees C or recooling to 4 degrees C, i.e., exhibited the behavior of natural cryoprecipitates. The resolubilized cryoprecipitates contained excess antibody, because they bound significant quantities of additional 3H-DNA in the Farr assay. Of special interest was the observation that DNA binding activity frequently could be recovered from solubilized cryoprecipitates even though 3H-DNA was not added during the original cryoprecipitate preparation. With certain cryoprecipitations prepared in this way, the DNA binding activity was further increased by deoxyribonuclease treatment, raising the possibility that endogenous DNA may be constituent of such cryoprecipitates. The implications of these findings with respect to the nature of antibody-DNA immune complexes in SLE are discussed.

摘要

通过将抗双链 DNA 与 3H-PM2 DNA、IgM 类风湿因子和补体一起孵育,从系统性红斑狼疮(SLE)血清中制备了人工冷沉淀物,以进一步研究这种疾病中自然冷沉淀与 DNA/抗 DNA 系统之间的关系。向 SLE 血清和 3H-DNA 的混合物中添加类风湿因子和/或补体,在 4℃孵育后会导致 3H-DNA 的沉淀增加。添加补体或补体加类风湿因子形成的沉淀物在升温至 37℃或再冷却至 4℃时可迅速再溶解或重新沉淀,即表现出自然冷沉淀物的行为。再溶解的冷沉淀物含有过量抗体,因为它们在 Farr 试验中结合了大量额外的 3H-DNA。特别有趣的是观察到,即使在最初制备冷沉淀物时未添加 3H-DNA,DNA 结合活性也经常可以从溶解的冷沉淀物中恢复。用这种方法制备的某些冷沉淀物,经脱氧核糖核酸酶处理后 DNA 结合活性进一步增加,这增加了内源性 DNA 可能是此类冷沉淀物组成成分的可能性。讨论了这些发现对 SLE 中抗体 - DNA 免疫复合物性质的影响。

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