Department of Pharmacy and Pharmaceutical Technology, School of Pharmacy, University of Navarra, C/Irunlarrea 1, E-31008 Pamplona, Spain.
J Chromatogr B Analyt Technol Biomed Life Sci. 2013 May 15;927:164-72. doi: 10.1016/j.jchromb.2013.02.001. Epub 2013 Feb 8.
Cyclosporine A (CyA) is an immunosuppressant cyclic undecapeptide used for the prevention of organ transplant rejection and in the treatment of several autoimmune disorders. An ultra high performance liquid chromatography-tandem mass spectrometry method (UHPLC-MS/MS) to quantify CyA in lipid nanosystems and mouse biological matrices (whole blood, kidneys, lungs, spleen, liver, heart, brain, stomach and intestine) was developed and fully validated. Chromatographic separation was performed on an Acquity UPLC(®) BEH C18 column with a gradient elution consisting of methanol and 2mM ammonium acetate aqueous solution containing 0.1% formic acid at a flow rate of 0.6mL/min. Amiodarone was used as internal standard (IS). Retention times of IS and CyA were 0.69min and 1.09min, respectively. Mass spectrometer operated in electrospray ionization positive mode (ESI+) and multiple reaction monitoring (MRM) transitions were detected, m/z 1220.69→1203.7 for CyA and m/z 646→58 for IS. The extraction method from biological samples consisted of a simple protein precipitation with 10% trichloroacetic acid aqueous solution and acetonitrile and 5μL of supernatant were directly injected into the UHPLC-MS/MS system. Linearity was observed between 0.001μg/mL-2.5μg/mL (r≥0.99) in all matrices. The precision expressed in coefficient of variation (CV) was below 11.44% and accuracy in bias ranged from -12.78% to 7.99% including methanol and biological matrices. Recovery in all cases was above 70.54% and some matrix effect was observed. CyA was found to be stable in post-extraction whole blood and liver homogenate samples exposed for 6h at room temperature and 72h at 4°C. The present method was successfully applied for quality control of lipid nanocarriers as well as in vivo studies in BALB/c mice.
环孢素 A(CyA)是一种免疫抑制剂环十一肽,用于预防器官移植排斥反应,并用于治疗几种自身免疫性疾病。本文建立并全面验证了一种超高效液相色谱-串联质谱法(UHPLC-MS/MS),用于定量脂质纳米系统和小鼠生物基质(全血、肾脏、肺、脾、肝、心脏、脑、胃和肠)中的 CyA。色谱分离在 Acquity UPLC(®)BEH C18 柱上进行,采用甲醇和 2mM 乙酸铵水溶液的梯度洗脱,流速为 0.6mL/min,其中含有 0.1%甲酸。胺碘酮被用作内标(IS)。IS 和 CyA 的保留时间分别为 0.69min 和 1.09min。质谱仪在电喷雾电离正模式(ESI+)下运行,检测到多重反应监测(MRM)转换,m/z 1220.69→1203.7 用于 CyA 和 m/z 646→58 用于 IS。生物样品的提取方法包括用 10%三氯乙酸水溶液和乙腈进行简单的蛋白质沉淀,然后直接将 5μL 上清液注入 UHPLC-MS/MS 系统。在所有基质中,0.001μg/mL-2.5μg/mL(r≥0.99)之间均观察到线性。以变异系数(CV)表示的精密度低于 11.44%,偏差在准确度范围内,范围为-12.78%至 7.99%,包括甲醇和生物基质。在所有情况下,回收率均高于 70.54%,并观察到一些基质效应。在室温下暴露 6 小时和在 4°C 下暴露 72 小时后,CyA 在提取后的全血和肝匀浆样品中稳定。该方法成功应用于脂质纳米载体的质量控制以及 BALB/c 小鼠的体内研究。