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一种便捷的在线脱盐管与质谱联用,可直接检测未经处理的人血液透析废水中的碘造影剂。

A convenient online desalination tube coupled with mass spectrometry for the direct detection of iodinated contrast media in untreated human spent hemodialysates.

机构信息

Department of Cellular & Molecular Anatomy, Hamamatsu University School of Medicine, Hamamatsu, Shizuoka, Japan.

Institute of Food & Radiation Biology, Atomic Energy Research Establishment, Bangladesh Atomic Energy Commission, Savar, Dhaka, Bangladesh.

出版信息

PLoS One. 2022 Jun 6;17(6):e0268751. doi: 10.1371/journal.pone.0268751. eCollection 2022.

Abstract

BACKGROUND

Mass spectrometry (MS) analysis using direct infusion of biological fluids is often problematic due to high salts/buffers. Iodinated contrast media (ICM) are frequently used for diagnostic imaging purposes, sometimes inducing acute kidney injury (AKI) in patients with reduced kidney function. Therefore, detection of ICM in spent hemodialysates is important for AKI patients who require urgent continuous hemodiafiltration (CHDF) because it allows noninvasive assessment of the patient's treatment. In this study, we used a novel desalination tube before MS to inject the sample directly and detect ICM.

METHODS

Firstly, spent hemodialysates of one patient were injected directly into the electrospray ionization (ESI) source equipped with a quadrupole time-of-flight mass spectrometer (Q-TOF MS) coupled to an online desalination tube for the detection of ICM and other metabolites. Thereafter, spent hemodialysates of two patients were injected directly into the ESI source equipped with a triple quadrupole mass spectrometer (TQ-MS) connected to that online desalination tube to confirm the detection of ICM.

RESULTS

We detected iohexol (an ICM) from untreated spent hemodialysates of the patient-administered iohexol for computed tomography using Q-TOF MS. Using MRM profile analysis, we have confirmed the detection of ICM in the untreated spent hemodialysates of the patients administered for coronary angiography before starting CHDF. Using the desalination tube, we observed approximately 178 times higher signal intensity and 8 times improved signal-to-noise ratio for ioversol (an ICM) compared to data obtained without the desalination tube. This system was capable of tracking the changes of ioversol in spent hemodialysates of AKI patients by measuring spent hemodialysates.

CONCLUSION

The online desalination tube coupled with MS showed the capability of detecting iohexol and ioversol in spent hemodialysates without additional sample preparation or chromatographic separation. This approach also demonstrated the capacity to monitor the ioversol changes in patients' spent hemodialysates.

摘要

背景

由于高盐/缓冲液的存在,直接将生物体液注入质谱(MS)分析中常常会出现问题。含碘造影剂(ICM)常用于诊断成像,有时会导致肾功能降低的患者发生急性肾损伤(AKI)。因此,对于需要紧急连续血液透析滤过(CHDF)的 AKI 患者,检测用过的血液透析液中的 ICM 非常重要,因为它可以对患者的治疗进行非侵入性评估。在这项研究中,我们使用了一种新型脱盐管,在 MS 之前直接注入样品并检测 ICM。

方法

首先,将一名患者的用过的血液透析液直接注入配备四极杆飞行时间质谱(Q-TOF MS)的电喷雾电离(ESI)源,该质谱仪与在线脱盐管耦合,用于检测 ICM 和其他代谢物。此后,将两名患者的用过的血液透析液直接注入配备与在线脱盐管相连的三重四极杆质谱仪(TQ-MS)的 ESI 源,以确认 ICM 的检测。

结果

我们使用 Q-TOF MS 从接受碘海醇 CT 检查的患者的未处理过的血液透析液中检测到了碘海醇(一种 ICM)。通过使用 MRM 谱分析,我们已经确认了在开始 CHDF 之前接受冠状动脉造影的患者的未处理过的血液透析液中 ICM 的检测。使用脱盐管,与不使用脱盐管相比,我们观察到碘海醇(一种 ICM)的信号强度提高了约 178 倍,信噪比提高了 8 倍。该系统通过测量用过的血液透析液,能够跟踪 AKI 患者用过的血液透析液中碘海醇的变化。

结论

与 MS 联用的在线脱盐管无需额外的样品制备或色谱分离即可检测用过的血液透析液中的碘海醇和碘帕醇。这种方法还能够监测患者用过的血液透析液中碘帕醇的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/108a/9170114/6bb01b36b83d/pone.0268751.g001.jpg

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