Capsaicin is the most abundant pungent molecule present in red peppers and it is widely used for food flavoring, in pepper spray in self-defense devices and more recently in ointments for the relief of neuropathic pain. Capsaicin is a selective agonist of transient receptor potential channel, vanilloid subfamily member 1. A selective and sensitive quantitative method for the determination of capsaicin by LC-ESI/MS/MS was developed. The method consisted of a protein precipitation extraction followed by analysis using liquid chromatography electrospray quadrupole ion trap mass spectrometry. The chromatographic separation was achieved using a 100 x 2 mm C(18) Waters Symmetry column combined with a gradient mobile phase composed of acetonitrile and 0.1% formic acid aqueous solution at a flow rate of 220 microL/min. The mass spectrometer was operating in full-scan MS/MS mode using two-segment analysis. An analytical range of 10-5000 ng/mL was used in the calibration curve constructed in rat plasma. The interbatch precision and accuracy observed were 6.5, 6.7, 5.3 and 101.2, 102.7, 103.5% at 50, 500 and 5000 ng/mL, respectively. An in vitro metabolic stability study was performed in rat, dog and mouse liver microsomes and the novel analytical method was adapted and used to determine intrinsic clearance of capsaicin. Results suggest very rapid degradation with T(1/2) ranging from 2.3 to 4.1 min and high clearance values suggesting that drug bioavailability will be considerably reduced, consequently affecting drug response and efficacy.

译文

辣椒素:辣椒素是红辣椒中最丰富的刺激性分子,广泛用于食品调味料,自卫器械的胡椒喷雾中,以及最近用于缓解神经性疼痛的药膏。辣椒素是瞬态受体电位通道(类香草素亚家族成员1)的选择性激动剂。建立了一种通过LC-ESI / MS / MS测定辣椒素的选择性灵敏定量方法。该方法包括蛋白质沉淀提取,然后使用液相色谱电喷雾四极杆离子阱质谱分析。使用100 x 2 mm C(18)Waters Symmetry色谱柱和梯度流动相(由乙腈和0.1%甲酸水溶液组成)以220 microL / min的流速进行色谱分离。质谱仪使用两段分析以全扫描MS / MS模式运行。在大鼠血浆中构建的校准曲线中使用的分析范围为10-5000 ng / mL。在50、500和5000 ng / mL下观察到的批间精密度和准确度分别为6.5、6.7、5.3和101.2、102.7、103.5%。在大鼠,狗和小鼠的肝微粒体中进行了体外代谢稳定性研究,并采用了新的分析方法并确定了辣椒素的固有清除率。结果表明,T(1/2)的降解速度非常快,范围为2.3至4.1分钟,清除率较高,这表明药物的生物利用度将大大降低,从而影响药物的反应和疗效。

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