Martins Thomas B, Pasi Brian M, Litwin Christine M, Hill Harry R
Associated Regional and University Pathologists Institute for Clinical and Experimental Pathology, Salt Lake City, Utah 84108, USA.
Clin Diagn Lab Immunol. 2004 Mar;11(2):325-9. doi: 10.1128/cdli.11.2.325-329.2004.
While modern immunoassays provide sensitive and specific means for the quantitation of cytokines in biological fluids, heterophile antibodies are still a well-recognized cause of interference in the measurement of cytokines in these assays. We have developed a multiplexed fluorescent microsphere immunoassay for the simultaneous quantification of 10 cytokines in only 75 microl of serum. During the development of this multiplexed assay, the amount of assay interference due to heterophile antibodies was also determined, and methods for detecting heterophile interference and minimizing its effect were incorporated into the assay. Heterophile antibodies resulted in significantly elevated cytokine values compared to those of normal blood bank samples. These falsely elevated values, and thus the components of the assay the heterophile antibodies were binding to, were identified through the use of internal controls. This information was then used to design assay-specific blockers and absorbents that were shown to significantly reduce falsely elevated cytokine values while not affecting the standard and control values. The fluorescent multiplexed microsphere-based immunoassay can be used to quantitate multiple cytokines from a single sample and should be a useful tool in furthering our understanding of the role of cytokines in disease processes.
虽然现代免疫测定法为生物体液中细胞因子的定量提供了灵敏且特异的方法,但嗜异性抗体仍是这些测定法中细胞因子测量干扰的一个公认原因。我们开发了一种多重荧光微球免疫测定法,仅用75微升血清就能同时定量10种细胞因子。在开发这种多重测定法的过程中,还确定了嗜异性抗体引起的测定干扰量,并将检测嗜异性干扰和最小化其影响的方法纳入了该测定法。与正常血库样本相比,嗜异性抗体导致细胞因子值显著升高。通过使用内部对照,识别出了这些错误升高的值以及嗜异性抗体所结合的测定成分。然后利用这些信息设计了测定法特异性阻断剂和吸附剂,结果表明它们能显著降低错误升高的细胞因子值,同时不影响标准值和对照值。基于荧光多重微球的免疫测定法可用于从单个样本中定量多种细胞因子,应该是促进我们理解细胞因子在疾病过程中作用的一个有用工具。