首页> 外文期刊>Journal of Chromatography, Biomedical Applications >Rapid quantification of the δ-opioid receptor selective enkephalin DPDPE in canine cerebrospinal fluid by liquid chromatography-mass spectrometry
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Rapid quantification of the δ-opioid receptor selective enkephalin DPDPE in canine cerebrospinal fluid by liquid chromatography-mass spectrometry

机译:液相色谱-质谱法快速定量犬脑脊髓液中δ-阿片受体选择性脑啡肽DPDPE

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摘要

An atmospheric pressure ionization liquid chromatographic-mass spectrometric assay was developed and validated for the determination of D-penicillamine~(2.5) enkephalin (DPDPE) in cerebrospinal fluid (CSF) from dog. DPDPE and internal standard (D-Ala~2,D-Leu~5 enkephalin=DADLE) were isolated from CSF by reversed-phase C_(18) solid-phase extraction with ZipTip micro-cartridges. Aliquots of extracted eluate were injected onto an Agilent Zorbax SB C_(18) column (30 * 2.2 mm; 3.5 μm) at a flow-rate of 0.4 ml/min. The isocratic mobile phase of methanol-10 mM ammonium formate (pH 3) (75:25, v/v) was then diverted to waste for 45 s after injection, after which time flow was directed to the single quadrupole mass spectrometer. DPDPE was detected by positive mode selected ion monitoring. Standard curves were linear (r~2 ≥ 0.991) over the concentration range 1-1000 ng/ml. The efficiency of extraction recovery was greater than 97%, and the intra-assay and inter-assay precisions were within 9% relative standard deviation. DPDPE and the internal standard were stable in the injection solvent at 4 ℃ for at least 48 h. The assay was applied to the pharmacokinetic study of intrathecal DPDPE administration in the dog animal model.
机译:建立了大气压电离液相色谱-质谱联用技术,用于狗脑脊液(CSF)中D-青霉胺〜(2.5)脑啡肽(DPDPE)的测定。通过ZipTip微型墨盒的反相C_(18)固相萃取从CSF中分离了DPDPE和内标(D-Ala〜2,D-Leu〜5脑啡肽= DADLE)。将提取的洗脱液的等分试样以0.4 ml / min的流速注入Agilent Zorbax SB C_(18)色谱柱(30 * 2.2 mm; 3.5μm)。进样后,将甲醇-10 mM甲酸铵(pH 3)(75:25,v / v)的等度流动相转移至废液中45 s,之后将时间流导至单四极杆质谱仪。通过正模式选择离子监测检测到DPDPE。在1-1000 ng / ml的浓度范围内,标准曲线是线性的(r〜2≥0.991)。提取回收率大于97%,批内和批间精密度在9%相对标准偏差内。 DPDPE和内标在4℃的注入溶剂中稳定至少48 h。该测定法用于在犬动物模型中鞘内施用DPDPE的药代动力学研究。

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