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实时测定代谢反应速率变化的极化产物选择性饱和激发。

Hyperpolarized product selective saturating-excitations for determination of changes in metabolic reaction rates in real-time.

机构信息

Department of Radiology, Hadassah Medical Center, Hebrew University of Jerusalem, The Faculty of Medicine, Jerusalem, Israel.

出版信息

NMR Biomed. 2020 Feb;33(2):e4189. doi: 10.1002/nbm.4189. Epub 2019 Dec 2.

Abstract

Investigation of hyperpolarized substrate metabolism has been showing utility in real-time determination of in-cell and in vivo enzymatic activities. Intracellular reaction rates may vary during the course of a measurement, even on the very short time scales of visibility on hyperpolarized MR, due to many factors such as the availability of the substrate and co-factors in the intracellular space. Despite this potential variation, the kinetic analysis of hyperpolarized signals typically assumes that the same rate constant (and in many cases, the same rate) applies throughout the course of the reaction as observed via the build-up and decay of the hyperpolarized signals. We demonstrate here an acquisition approach that can null the need for such an assumption and enable the detection of instantaneous changes in the rate of the reaction during an ex vivo hyperpolarized investigation, (i.e. in the course of the decay of one hyperpolarized substrate dose administered to a viable tissue sample ex vivo). This approach utilizes hyperpolarized product selective saturating-excitation pulses. Similar pulses have been previously utilized in vivo for spectroscopic imaging. However, we show here favorable consequences to kinetic rate determinations in the preparations used. We implement this acquisition strategy for studies on perfused tissue slices and develop a theory that explains why this particular approach enables the determination of changes in enzymatic rates that are monitored via the chemical conversions of hyperpolarized substrates. Real-time changes in intracellular reaction rates are demonstrated in perfused brain, liver, and xenograft breast cancer tissue slices and provide another potential differentiation parameter for tissue characterization.

摘要

对超极化底物代谢的研究已经在实时测定细胞内和体内酶活性方面显示出了实用性。由于许多因素的影响,如细胞内空间中底物和辅助因子的可用性,即使在超极化 MR 可见的非常短的时间尺度内,细胞内反应速率也可能在测量过程中发生变化。尽管存在这种潜在的变化,但超极化信号的动力学分析通常假设在整个反应过程中都适用相同的速率常数(在许多情况下,适用相同的速率),这可以通过超极化信号的积累和衰减来观察。我们在这里展示了一种采集方法,该方法可以无需做出这种假设,并能够在离体的超极化研究中检测到反应速率的瞬时变化,(即在向离体的可存活组织样本中施用一种超极化底物剂量的衰减过程中)。该方法利用超极化产物选择性饱和激发脉冲。类似的脉冲先前已在体内用于光谱成像。然而,我们在这里展示了在所用制剂中进行动力学速率测定的有利后果。我们将这种采集策略应用于灌注组织切片的研究中,并提出了一种理论,解释了为什么这种特殊的方法能够确定通过超极化底物的化学转化来监测的酶速率变化。在灌注的大脑、肝脏和异种移植乳腺癌组织切片中观察到细胞内反应速率的实时变化,并为组织特征化提供了另一个潜在的区分参数。

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