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开发并验证了一种快速超高效液相色谱-荧光法,用于定量测定狼疮患者体内羟氯喹及其代谢物的浓度。

Development and Validation of a Fast Ultra-High Performance Liquid Chromatography-Fluorescent Method for the Quantification of Hydroxychloroquine and Its Metabolites in Patients With Lupus.

机构信息

Department of Pharmacology and CIC-1421, AP-HP, Pitié-Salpêtrière Hospital.

Department of Internal Medicine 2, AP-HP, Pitié-Salpêtrière Hospital, French National Centre for Rare Systemic Diseases.

出版信息

Ther Drug Monit. 2019 Aug;41(4):476-482. doi: 10.1097/FTD.0000000000000614.

Abstract

BACKGROUND

Hydroxychloroquine (HCQ) is approved for the treatment of systemic lupus erythematosus (SLE). Therapeutic drug monitoring of HCQ is necessary to detect nonadherence and to improve treatment efficacy in patients with SLE. Liquid chromatographic-tandem mass spectroscopy and high performance liquid chromatography (HPLC)-fluorescent methods are currently used to measure whole blood concentrations of HCQ and its 2 main metabolites desethylhydroxychloroquine and desethylchloroquine in patients with SLE. This study reports the development and validation of an ultra-HPLC (U-HPLC) method with fluorescence detection for the simultaneous quantification of HCQ and its metabolites in whole blood.

METHODS

After adding chloroquine (internal standard) to the samples, a single-step protein precipitation and a subsequent filtration were used for blood sample preparation. Analytes were separated under isocratic elution on a U-HPLC RP18 column with a total run time of 7 minutes. The mobile phase consisted of piperazine buffer (46.4 mM, pH = 9.8) and acetonitrile (68:32, vol/vol), which was delivered at a flow rate of 0.4 mL/min. Fluorescence excitation and emission wavelengths were 335 and 390 nm, respectively. Assay performance parameters were evaluated per FDA bioanalytical guidelines.

RESULTS

The calibration curve was linear from 125 to 4000 ng/mL for HCQ. The lower limit of quantification was 10 ng/mL for all analytes. For HCQ, desethylchloroquine, and desethylhydroxychloroquine, accuracies and imprecisions ranged from -7.90% to 7.85% and 1.14% to 8.78%, respectively.

CONCLUSIONS

A sensitive, accurate, and fast U-HPLC-fluorescent method was validated and successfully applied to quantify whole blood concentrations to perform therapeutic drug monitoring of HCQ in pediatric and adult lupus patients.

摘要

背景

羟氯喹 (HCQ) 已获批准用于治疗系统性红斑狼疮 (SLE)。为了检测不依从性并提高 SLE 患者的治疗效果,有必要对 HCQ 进行治疗药物监测。目前,液相色谱-串联质谱法和高效液相色谱 (HPLC)-荧光法用于测量 SLE 患者全血中 HCQ 及其 2 种主要代谢物去乙基羟氯喹和去乙基氯喹的浓度。本研究报告了一种用于同时定量测定全血中 HCQ 及其代谢物的超高效液相色谱 (U-HPLC) 方法与荧光检测法的开发和验证。

方法

在向样品中加入氯喹(内标)后,采用一步蛋白沉淀和随后的过滤进行血样制备。分析物在 U-HPLC RP18 柱上进行等度洗脱,总运行时间为 7 分钟。流动相由哌嗪缓冲液(46.4 mM,pH = 9.8)和乙腈(68:32,体积/体积)组成,流速为 0.4 mL/min。荧光激发和发射波长分别为 335nm 和 390nm。根据 FDA 生物分析指南评估分析方法性能参数。

结果

HCQ 的校准曲线在 125 至 4000ng/mL 范围内呈线性。所有分析物的定量下限均为 10ng/mL。对于 HCQ、去乙基氯喹和去乙基羟氯喹,准确度和精密度范围分别为-7.90%至 7.85%和 1.14%至 8.78%。

结论

验证了一种灵敏、准确、快速的 U-HPLC-荧光法,并成功应用于定量测定全血浓度,以对儿科和成人狼疮患者进行 HCQ 的治疗药物监测。

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