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通过化学交换饱和转移磁共振成像(CEST MRI)对血清素生物合成途径进行体外表征。

In vitro characterization of the serotonin biosynthesis pathway by CEST MRI.

作者信息

Oglesby Ryan T, Lam Wilfred W, Stanisz Greg J

机构信息

Physical Sciences, Sunnybrook Research Institute, Toronto, ON, Canada.

Medical Biophysics, University of Toronto, Toronto, ON, Canada.

出版信息

Magn Reson Med. 2020 Nov;84(5):2389-2399. doi: 10.1002/mrm.28281. Epub 2020 Apr 16.

Abstract

PURPOSE

The diagnosis of monoamine-related psychiatric disorders is based on the phenomenological evaluation of symptoms and behavior by trained clinicians. The CEST technique can be sensitive to monoamines such as serotonin. This study quantifies the CEST properties of the compounds in the serotonin biosynthesis pathway with the goal of developing noninvasive techniques aimed at advancing the diagnostic assessment of serotonin dysfunction.

METHODS

Saturation transfer-weighted images of L-tryptophan, 5-hydroxytryptophan, serotonin, 5-hydroxyindoleacetic acid, and melatonin phantoms were acquired over a range of saturation amplitudes and frequency offsets along with observed T , T , and B efficiency maps at physiological temperature and pH of 5.5, 6.7, and 7.4. The CEST and MT data were fitted to a three-pool Bloch-McConnell model of exchange to estimate the model parameters.

RESULTS

At a pH of 5.5, tryptophan, 5-hydroxytryptophan and serotonin exhibited significant CEST contrast at resonance frequency offset, Δω between 2.64 ppm and 2.71 ppm, and magnetization transfer ratio asymmetry amplitudes up to 20% per 30 mM. At a pH of 7.4, all molecules exhibited significant CEST contrast between 5.11 ppm and 5.47 ppm, and magnetization transfer ratio asymmetry amplitudes up to 9.5% per 30 mM. At a pH of 6.7, all studied compounds except melatonin exhibited a CEST peak from each of the preceding two pHs.

CONCLUSION

At a pH of 5.5, tryptophan, 5-hydroxytryptophan, and serotonin CEST contrast originates from the side chain, whereas at a pH of 7.4, CEST contrast is due to the chemical exchange between water and the NH proton on the indole ring. The data in this study could be used to inform future investigations aimed at detecting and measuring in vivo serotonin.

摘要

目的

单胺相关精神障碍的诊断基于训练有素的临床医生对症状和行为的现象学评估。CEST技术对血清素等单胺类物质可能敏感。本研究量化了血清素生物合成途径中化合物的CEST特性,目的是开发无创技术,以推进血清素功能障碍的诊断评估。

方法

在一系列饱和幅度和频率偏移下,采集L-色氨酸、5-羟色氨酸、血清素、5-羟吲哚乙酸和褪黑素体模的饱和转移加权图像,以及在生理温度和pH值分别为5.5、6.7和7.4时观察到的T1、T2和B1效率图。将CEST和MT数据拟合到一个三池Bloch-McConnell交换模型中,以估计模型参数。

结果

在pH值为5.5时,色氨酸、5-羟色氨酸和血清素在共振频率偏移(Δω在2.64 ppm至2.71 ppm之间)时表现出显著的CEST对比度,每30 mM的磁化转移率不对称幅度高达20%。在pH值为7.4时,所有分子在5.11 ppm至5.47 ppm之间表现出显著的CEST对比度,每30 mM的磁化转移率不对称幅度高达9.5%。在pH值为6.7时,除褪黑素外,所有研究的化合物都在前两个pH值下各表现出一个CEST峰。

结论

在pH值为5.5时,色氨酸、5-羟色氨酸和血清素的CEST对比度源于侧链,而在pH值为7.4时,CEST对比度是由于水与吲哚环上的NH质子之间的化学交换。本研究中的数据可用于为未来旨在检测和测量体内血清素的研究提供信息。

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