19F磁共振光谱法检测精神活性药物。

M Bartels, K Albert
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引用次数: 9

摘要

体内19F共振光谱测量三氟化抗精神病药(氟非那嗪和三氟拉嗪)和后来的三氟化抗抑郁药(氟西汀和氟伏沙明)始于1983年的动物实验。在实验开始时,使用口服大剂量氟非那嗪三周的大鼠进行测量,测量时间很长(长达10小时)。采用更好的表面线圈技术可以显著改善信噪比,动物实验的测量时间可以缩短到几分钟。这些结果鼓励我们和其他研究小组在人类身上进行实验,以检测并试图估计三氟化抗精神病药和抗抑郁药的大脑水平。目前几个研究小组的数据表明,19F磁共振光谱有潜力成为监测作用部位药物水平的有价值的工具。将动物研究扩展到人类可能有助于更好地治疗精神分裂症和抑郁症患者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection of psychoactive drugs using 19F MR spectroscopy.

In vivo 19F resonance spectroscopy measurements of trifluorinated neuroleptics (fluphenazine and trifluoperazine) and later trifluorinated antidepressants (fluoxetine and fluvoxamine) began with animal experiments in 1983. Using rats which have been treated with high oral doses of fluphenazine over a period of three weeks in the beginning of these experiments the measurement time was very long (up to 10 h). The application of better techniques using surface coils led to marked improvement of the signal noise ratio and measurement times in animal experiments could be reduced to minutes. These results encouraged us and other groups to perform experiments in humans to detect and try to estimate brain levels of trifluorinated neuroleptics and antidepressants. The present data of several research groups demonstrate that 19F MR spectroscopy has the potential of becoming a valuable tool for monitoring drug levels at the site of action. The extension of the animal studies to humans might facilitate a better treatment of schizophrenic and depressive patients.

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