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A Novel Multiplex–Protein Array for Serum Diagnostics of Colorectal Cancer: Impact of Pre-analytical Storage Conditions

机译:用于血清学诊断结直肠癌的新型多重蛋白阵列:分析前储存条件的影响

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Introduction: Biomarker discovery studies seldom report on pre-analytical effects. We used a novel multiplex protein biochip for colorectal cancer screening to investigate effects of different storage temperatures and repeated freeze-thaw cycles. Methods: This biochip, composed of CEA, IL-8, VEGF, M-CSF, S100A11, C3adesArg, CD26, and CRP, was applied to twenty highly standardized preserved serum samples. Results: Aliquot comparison of long-term storage at - 80℃ (n = 20) versus - 170℃ (n = 20) did not show significant differences for any of the eight markers. In contrast, three freeze-thaw cycles (3 · 20 aliquots) detected changes in the serum level for all markers (p < 0.05) but S100A11 and CD26: levels of CEA, IL-8, C3adesArg, and CRP increased, while VEGF and M-CSF levels decreased. However, applying diagnostic thresholds for CEA, IL- 8, and CRP revealed that freeze-thaw cycles did not affect diagnostic performance. In contrast, analysis of samples stored at - 80℃ compared to - 170℃ failed to detect one out of three detectable malignancies. Conclusion: We conclude that three freeze-thaw cycles modulated serum marker levels significantly, but do not compromise biochip diagnostic performance. For our marker panel, serum preservation at - 80℃ seems comparable to - 170℃; however, storage at - 80℃ could lead to misdiagnosis. Our findings emphasize the need for standardized sample collection, processing, storage, and reporting.
机译:简介:生物标志物发现研究很少报告分析前的影响。我们使用一种新型的多重蛋白生物芯片进行大肠癌筛查,以研究不同储存温度和反复冻融循环的影响。方法:该生物芯片由CEA,IL-8,VEGF,M-CSF,S100A11,C3adesArg,CD26和CRP组成,用于20个高度标准化保存的血清样品。结果:八个标记中的任何一个均分比较了-80℃(n = 20)和-170℃(n = 20)的长期储存。相比之下,三个冻融周期(3·20等分试样)检测到所有标志物(p <0.05)但S100A11和CD26的血清水平变化:CEA,IL-8,C3adesArg和CRP的水平增加,而VEGF和M-CSF水平下降。但是,对CEA,IL-8和CRP应用诊断阈值表明,冻融循环不会影响诊断性能。相比之下,在-80℃和-170℃的温度下对样品进行的分析未能检测出三分之一的可检测到的恶性肿瘤。结论:我们得出结论,三个冻融循环可显着调节血清标志物水平,但不会影响生物芯片的诊断性能。对于我们的标记板,在-80℃时的血清保存似乎与-170℃相当;但是,在-80℃下储存可能会导致误诊。我们的发现强调需要标准化的样品收集,处理,存储和报告。

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