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Ultratrace Level Determination and Quantitative Analysis of Kidney Injury Biomarkers in Patient Samples Attained by Zinc Oxide Nanorods

机译:氧化锌纳米棒获得的患者样品中肾脏损伤生物标记物的超痕量水平测定和定量分析

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摘要

Determining ultratrace amounts of protein biomarkers in patient samples in a straightforward and quantitative manner is extremely important for early disease diagnosis and treatment. Here, we successfully demonstrate the novel use of zinc oxide nanorods (ZnO NRs) in the ultrasensitive and quantitative detection of two acute kidney injury (AKI)-related protein biomarkers, tumor necrosis factor (TNF)-α and interleukin (IL)-8, directly from patient samples. We first validate the ZnO NRs-based IL-8 results via comparison with those obtained from using a conventional enzyme-linked immunosorbent method in samples from 38 individuals. We further assess the full detection capability of the ZnO NRs-based technique by quantifying TNF-α, whose levels in human urine are often below the detection limits of conventional methods. Using the ZnO NR platforms, we determine the TNF-α concentrations of all 46 patient samples tested, down to the fg/mL level. Subsequently, we screen for TNF-α levels in approximately 50 additional samples collected from different patient groups in order to demonstrate a potential use of the ZnO NRs-based assay in assessing cytokine levels useful for further clinical monitoring. Our research efforts demonstrate that ZnO NRs can be straightforwardly employed in the rapid, ultrasensitive, quantitative, and simultaneous detection of multiple AKI-related biomarkers directly in patient urine samples, providing an unparalleled detection capability beyond those of conventional analysis methods. Additional key advantages of the ZnO NRs-based approach include a fast detection speed, low-volume assay condition, multiplexing ability, and easy automation/integration capability to existing fluorescence instrumentation. Therefore, we anticipate that our ZnO NRs-based detection method will be highly beneficial for overcoming the frequent challenges in early biomarker development and treatment assessment, pertaining to the facile and ultrasensitive quantification of hard-to-trace biomolecules.
机译:以直接和定量的方式确定患者样品中蛋白质生物标志物的超痕量,对于早期疾病的诊断和治疗极为重要。在这里,我们成功地证明了氧化锌纳米棒(ZnO NRs)在超敏和定量检测两种急性肾损伤(AKI)相关蛋白生物标志物,肿瘤坏死因子(TNF)-α和白介素(IL)-8中的新颖用途。直接从患者样本中提取。我们首先通过与使用常规酶联免疫吸附法在38个个体的样品中获得的结果进行比较,来验证基于ZnO NRs的IL-8结果。我们通过定量TNF-α来进一步评估基于ZnO NRs的技术的完整检测能力,而TNF-α在人尿中的水平通常低于常规方法的检测极限。使用ZnO NR平台,我们可以确定所有46个患者样品的TNF-α浓度,低至fg / mL水平。随后,我们筛选了从不同患者组收集的大约50个其他样品中的TNF-α水平,以证明基于ZnO NRs的测定法在评估可用于进一步临床监测的细胞因子水平中的潜在用途。我们的研究工作表明,ZnO NRs可直接直接用于患者尿液样品中快速,超灵敏,定量和同时检测多种AKI相关生物标志物,提供了超越传统分析方法的无与伦比的检测能力。基于ZnO NRs的方法的其他关键优势包括检测速度快,分析量小,多路复用能力以及与现有荧光仪器的简单自动化/集成能力。因此,我们预计我们基于ZnO NRs的检测方法将对克服早期生物标志物开发和治疗评估中的常见挑战(对难于追踪的生物分子的简便和超灵敏定量)将非常有益。

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