Validation of Analytical Methods for Tacrolimus Determination in Poly(ε-caprolactone) Nanocapsules and Identification of Drug Degradation Products.

Guilherme A Camargo, Amanda M Lyra, Fernanda M Barboza, Barbara C Fiorin, Flávio L Beltrame, Jessica M Nadal, Andressa Novatski, Paulo V Farago
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引用次数: 6

Abstract

The aim of this paper was to use chromatographic tools for validating an analytical method for the tacrolimus (TAC) determination in polymeric nanocapsules and for identifying the drug degradation products after alkaline stress. A rapid Ultra-High-Performance Liquid Chromatography coupled with photo-diode array (UHPLC-PDA) method was successfully performed using the following chromatographic conditions: the Shimadzu Shim-pack XR-ODS III C18 column (100 mm×2.00 mm, 2.2 μm), the mobile phase consisting of methanol and acidified ultrapure water (89:11 v/v), the flow rate of 0.55 mL·min-1, and the ultraviolet (UV) detection at 235 nm. This method was validated as per International Council for Harmonisation (ICH) guidelines. In addition, a TAC forced degradation assay was carried out after alkaline stress and its degradation products were investigated using Liquid Chromatography coupled tandem mass spectroscopy (LC-MS/MS). The calibration curve was linear in the range of 100.0-300.0 μg·mL-1 (r >0.9999). Accuracy was confirmed by the TAC recovery of 96.55 to 98.19%. Precision (intraday and interday) were demonstrated by relative standard deviation lower than 0.89% and 3.25%, respectively. Selectivity and robustness were also proved. The method developed it was successfully applied to quantify TAC from polymeric nanocapsules, showing a high loading efficiency rate (>96.47%). The main drug degradation product observed in a multiple reaction monitoring (MRM) experiment was m/z 844, confirming the susceptibility of TAC under alkaline conditions; this finding was first time described.

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聚ε-己内酯纳米胶囊中他克莫司含量分析方法的验证及降解产物鉴定。
利用色谱方法对聚合物纳米胶囊中他克莫司(TAC)的含量测定及碱胁迫后药物降解产物的鉴定方法进行了验证。采用岛津Shimadzu Shim-pack XR-ODS III C18色谱柱(100 mm×2.00 mm, 2.2 μm),流动相为甲醇-酸化超纯水(89:11 v/v),流速为0.55 mL·min-1,紫外(UV)检测波长为235 nm,建立了高效液相色谱-光电二极管阵列(UHPLC-PDA)方法。该方法根据国际协调理事会(ICH)指南进行了验证。此外,采用液相色谱-串联质谱(LC-MS/MS)对TAC进行了碱性胁迫后的强制降解实验,并对其降解产物进行了研究。在100.0 ~ 300.0 μg·mL-1范围内呈线性关系(r >0.9999)。准确度为96.55 ~ 98.19%。精密度(日内、日间)相对标准偏差分别小于0.89%和3.25%。证明了该方法的选择性和鲁棒性。该方法成功地应用于聚合物纳米胶囊中TAC的定量,具有较高的负载效率(>96.47%)。多重反应监测(MRM)实验观察到的主要药物降解产物为m/z 844,证实了TAC在碱性条件下的敏感性;这一发现是首次被描述。
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来源期刊
Journal of nanoscience and nanotechnology
Journal of nanoscience and nanotechnology 工程技术-材料科学:综合
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审稿时长
3.6 months
期刊介绍: JNN is a multidisciplinary peer-reviewed journal covering fundamental and applied research in all disciplines of science, engineering and medicine. JNN publishes all aspects of nanoscale science and technology dealing with materials synthesis, processing, nanofabrication, nanoprobes, spectroscopy, properties, biological systems, nanostructures, theory and computation, nanoelectronics, nano-optics, nano-mechanics, nanodevices, nanobiotechnology, nanomedicine, nanotoxicology.
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