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Mass Spectrometry Special Feature: Desorption electrospray ionization mass spectrometry: Imaging drugs and metabolites in tissues

机译:质谱特征:脱附电喷雾电离质谱:对组织中的药物和代谢物进行成像

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摘要

Ambient ionization methods for MS enable direct, high-throughput measurements of samples in the open air. Here, we report on one such method, desorption electrospray ionization (DESI), which is coupled to a linear ion trap mass spectrometer and used to record the spatial intensity distribution of a drug directly from histological sections of brain, lung, kidney, and testis without prior chemical treatment. DESI imaging provided identification and distribution of clozapine after an oral dose of 50 mg/kg by: i) measuring the abundance of the intact ion at m/z 327.1, and ii) monitoring the dissociation of the protonated drug compound at m/z 327.1 to its dominant product ion at m/z 270.1. In lung tissues, DESI imaging was performed in the full-scan mode over an m/z range of 200-1100, providing an opportunity for relative quantitation by using an endogenous lipid to normalize the signal response of clozapine. The presence of clozapine was detected in all tissue types, whereas the presence of the N-desmethyl metabolite was detected only in the lung sections. Quantitation of clozapine from the brain, lung, kidney, and testis, by using LC-MS/MS, revealed concentrations ranging from 0.05 μg/g (brain) to a high of 10.6 μg/g (lung). Comparisons of the results recorded by DESI with those by LC-MS/MS show good agreement and are favorable for the use of DESI imaging in drug and metabolite detection directly from biological tissues.
机译:MS的环境电离方法可实现露天样品的直接,高通量测量。在这里,我们报道了一种这样的方法,解吸电喷雾电离(DESI),该方法与线性离子阱质谱仪耦合,用于直接从脑,肺,肾和睾丸的组织学部分记录药物的空间强度分布无需事先化学处理。 DESI成像可通过以下方式提供口服剂量50 mg / kg时氯氮平的鉴定和分布:i)在m / z 327.1处测量完整离子的丰度,ii)在m / z 327.1处监测质子化药物化合物的解离到其主要产物离子m / z 270.1。在肺组织中,DESI成像以200-1100的m / z范围内的全扫描模式执行,通过使用内源性脂质使氯氮平的信号响应正常化,从而提供了相对定量的机会。在所有组织类型中均检测到氯氮平的存在,而仅在肺部中检测到N-去甲基代谢产物的存在。使用LC-MS / MS对脑,肺,肾和睾丸中的氯氮平进行定量,结果显示浓度范围为0.05μg/ g(脑)至10.6μg/ g(肺)。 DESI记录的结果与LC-MS / MS的结果比较显示出很好的一致性,有利于DESI成像在直接从生物组织中检测药物和代谢物的用途。

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