Sinosich M J, Teisner B, Brandslund I, Fisher M, Grudzinskas J G
J Immunol Methods. 1982 Nov 26;55(1):107-14. doi: 10.1016/0022-1759(82)90083-7.
Quantitative and qualitative immunoelectrophoretic analyses of circulating C3, C3 split products and C4 were performed in matched EDTA plasma and serum obtained from 5 normal subjects and stored for up to 48 h at room temperature (18 degrees C-22 degrees C) and 4 degrees C. Fluctuations in apparent levels of C3 were greater in serum than plasma stored at room temperature, a fall in levels seen by 24 h being followed by a significant increase. By contrast, levels of C3 did not alter if stored at 4 degrees C. C4 levels in both EDTA plasma and serum remained unchanged for 24 h, a slight decrease being seen at 48 h. Levels of C4 remained constant if samples were stored at 4 degrees C. Crossed immunoelectrophoresis revealed a significant progressive decrease in C3 levels and a simultaneous increase in C3c occurring after 4 h in serum and 8 h in EDTA plasma, stored at room temperature. In studies conducted at 4 degrees C, similar but delayed fluctuations were seen. A progressive and significant increase in C3d levels was seen in both plasma and serum samples stored at room temperature, levels rising to 276% (plasma) and 308% (serum) of levels seen at zero time. At 4 degrees C marginal increases in C3d levels only were observed. These results suggest that in vitro degradation of C3 and C4 are readily facilitated by temperature, time and coagulation, and that conditions of collection and storage of samples must be optimized for the accurate definition of activation of the complement cascade.
对5名正常受试者的匹配乙二胺四乙酸(EDTA)血浆和血清进行循环C3、C3裂解产物和C4的定量及定性免疫电泳分析,并在室温(18摄氏度至22摄氏度)和4摄氏度下储存长达48小时。室温储存的血清中C3表观水平的波动大于血浆,24小时时水平下降,随后显著升高。相比之下,4摄氏度储存时C3水平未改变。EDTA血浆和血清中的C4水平在24小时内保持不变,48小时时略有下降。4摄氏度储存样本时C4水平保持恒定。交叉免疫电泳显示,室温储存的血清中4小时后、EDTA血浆中8小时后,C3水平显著逐渐降低,同时C3c水平升高。在4摄氏度进行的研究中,观察到类似但延迟的波动。室温储存的血浆和血清样本中C3d水平均逐渐显著升高,水平升至零时的276%(血浆)和308%(血清)。4摄氏度时仅观察到C3d水平略有升高。这些结果表明,C3和C4的体外降解很容易受到温度、时间和凝血的促进,并且必须优化样本的采集和储存条件,以准确界定补体级联反应的激活情况。