Laboratory of Pharmaceutical Technology/Centre of Research in Pharmaceutical Sciences (LTF/CICF), Faculty of Pharmacy, University of Porto, Porto, Portugal.
J Chromatogr B Analyt Technol Biomed Life Sci. 2012 Jan 1;880(1):100-7. doi: 10.1016/j.jchromb.2011.11.023. Epub 2011 Nov 20.
A simple, sensitive and specific high-performance liquid chromatography (HPLC) assay for the quantification of camptothecin (CPT), a potent anticancer candidate, incorporated into solid lipid nanoparticles (SLN) in several rat organs (brain, heart, kidneys liver, lung, spleen) and serum was developed and validated. The sample pre-treatment involved organs homogenisation followed by CPT extraction. The samples were injected onto an analytical reversed-phase (RP) Mediterranea™ Sea18 column maintained at 30°C. The chromatographic separation was achieved by gradient elution consisting of triethyamine buffer pH 5.5 and acetonitrile at a flow rate of 1.2 mL/min in 16 min of run time and retention time of 9.8 min (lactone). Fluorescence detection was used at the excitation and emission of 360 and 440 nm, respectively. The calibration curves in the different organs, serum and in PB3 were linear (r(2)>0.9999) over CPT concentrations ranging from 1 to 200 ng/mL or 0.5 to 200 ng/mL (n=6), respectively. The method was shown to be specific, accurate (between 94.4±4.5% and 108.9±0.6%) and precise at the intra-day and inter-day levels as reflected by the coefficient of variation (CV<6.3%) at three different concentrations (10, 50 and 100 ng/mL) in all matrices. Stability studies showed that CPT was stable in all matrices after 24h of incubation at room temperature (RT), after 24 h in the autosampler or after three freeze/thaw cycles. The mean recoveries of CPT in suspension, loaded into SLN and in a physical mixture with SLN at three concentrations of 10, 50 and 200 ng/mL were higher than 86.4%. The detection limit (DL) was ≤0.2 ng/mL and the quantification limit (QL) was ≤0.5 ng/mL. The method developed is reliable, precise and accurate and can be used in the determination of CPT amount in rat organ samples after i.v. administration of CPT in suspension, in physical mixture with SLN and incorporated in SLN.
建立并验证了一种简单、灵敏、专属性强的高效液相色谱(HPLC)分析方法,用于定量测定荷瘤宁(CPT),CPT 是一种有效的抗癌候选药物,被包裹在几种大鼠器官(脑、心、肾、肝、肺、脾)和血清中的固体脂质纳米粒(SLN)中。样品预处理包括器官匀浆,然后进行 CPT 提取。将样品注入 Mediterranea™ Sea18 分析反相(RP)柱中,在 30°C 下保持。通过梯度洗脱实现色谱分离,洗脱液由三乙胺缓冲液 pH 5.5 和乙腈组成,流速为 1.2mL/min,运行时间为 16min,内酯的保留时间为 9.8min。荧光检测的激发和发射波长分别为 360nm 和 440nm。在不同的器官、血清和 PB3 中,CPT 浓度范围为 1-200ng/mL 或 0.5-200ng/mL 时,校准曲线均呈线性(r(2)>0.9999)(n=6)。该方法具有特异性,在大鼠器官、血清和 PB3 中的准确度(94.4±4.5%至 108.9±0.6%)和精密度(日内和日间变异系数(CV)<6.3%)在三个不同浓度(10、50 和 100ng/mL)下均得到验证。稳定性研究表明,CPT 在室温下孵育 24 小时后、在自动进样器中孵育 24 小时或经过三个冻融循环后,在所有基质中均稳定。CPT 在悬浮液、负载到 SLN 中和以 10、50 和 200ng/mL 三个浓度与 SLN 物理混合的回收率均高于 86.4%。检测限(DL)为≤0.2ng/mL,定量限(QL)为≤0.5ng/mL。该方法可靠、准确,可用于测定静脉注射悬浮液、与 SLN 物理混合和负载到 SLN 中的 CPT 后大鼠器官样品中的 CPT 量。