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通过磷-31 核磁共振观察到 3-氨基丙膦酸盐在体外脑中的积累。

Accumulation of 3-aminopropylphosphonate in the ex vivo brain observed by phosphorus-31 nuclear magnetic resonance.

机构信息

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

The Wohl Institute for Translational Medicine, Jerusalem, Israel.

出版信息

NMR Biomed. 2022 Aug;35(8):e4721. doi: 10.1002/nbm.4721. Epub 2022 Mar 13.

Abstract

3-aminopropylphosphonate (3-APP) is known for its use as an exogenous indicator of extracellular volume and pH in phosphorus-31 nuclear magnetic resonance ( P NMR) studies. We used 3-APP for estimating the extracellular volume in NMR studies of several ex vivo preparations including retrograde perfused mouse heart (n = 4), mouse liver slices (n = 2), xenograft breast cancer tumors (n = 7, MCF7), and rat brain slices (n = 4). In the former three preparations, the 3-APP signal was stable in lineshape and intensity for hours and the chemical shift of the signal in the presence of the biological sample was the same as in the perfusion medium without the biological sample. However, in studies of brain slices, the 3-APP signal appeared split into two, with an upfield component (0.7 ± 0.1 ppm to the left) increasing with time and showing a wider linewidth (66.7 ± 12.6 vs. 39.1 ± 7.6 Hz, the latter is of the perfusion medium signal). This finding suggests that 3-APP inadvertently accumulated in brain slices, most likely as a membrane bound form. This observation limits the use of 3-APP as an inert biochemical indicator in brain preparations and should be taken into account when using 3-APP in vivo.

摘要

3-氨基丙膦酸盐(3-APP)常用于磷-31 核磁共振(P NMR)研究中,作为细胞外体积和 pH 的外源性指示剂。我们使用 3-APP 来估计几种离体标本的 NMR 研究中的细胞外体积,包括逆行灌流的小鼠心脏(n=4)、小鼠肝切片(n=2)、异种移植乳腺癌肿瘤(n=7,MCF7)和大鼠脑切片(n=4)。在前三种标本中,3-APP 信号的线形和强度在数小时内保持稳定,并且在存在生物样本的情况下,信号的化学位移与没有生物样本的灌注介质中的化学位移相同。然而,在脑切片的研究中,3-APP 信号似乎分裂成两个,一个向上场分量(相对于左方 0.7±0.1 ppm)随时间增加,并且显示出较宽的线宽(66.7±12.6 与 39.1±7.6 Hz,后者是灌注介质信号)。这一发现表明 3-APP 无意中在脑切片中积累,很可能是以膜结合形式。这一观察结果限制了 3-APP 在脑标本中作为惰性生化指示剂的使用,并且在体内使用 3-APP 时应考虑到这一点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2fb7/9540894/5291eeb39d68/NBM-35-e4721-g002.jpg

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