首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >An optimized reverse-phase high performance liquid chromatographic method for evaluating percutaneous absorption of glucosamine hydrochloride.
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An optimized reverse-phase high performance liquid chromatographic method for evaluating percutaneous absorption of glucosamine hydrochloride.

机译:一种优化的反相高效液相色谱方法,用于评估盐酸氨基葡萄糖的经皮吸收。

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摘要

A relatively simple, selective, precise and accurate high performance liquid chromatography (HPLC) method based on a reaction of phenylisothiocyanate (PITC) with glucosamine (GL) in alkaline media was developed and validated to determine glucosamine hydrochloride permeating through human skin in vitro. It is usually problematic to develop an accurate assay for chemicals traversing skin because the excellent barrier properties of the tissue ensure that only low amounts of the material pass through the membrane and skin components may leach out of the tissue to interfere with the analysis. In addition, in the case of glucosamine hydrochloride, chemical instability adds further complexity to assay development. The assay, utilising the PITC-GL reaction was refined by optimizing the reaction temperature, reaction time and PITC concentration. The reaction produces a phenylthiocarbamyl-glucosamine (PTC-GL) adduct which was separated on a reverse-phase (RP) column packed with 5 microm ODS (C18) Hypersil particles using a diode array detector (DAD) at 245 nm. The mobile phase was methanol-water-glacial acetic acid (10:89.96:0.04 v/v/v, pH 3.5) delivered to the column at 1 ml min-1 and the column temperature was maintained at 30 degrees C. Galactosamine hydrochloride (Gal-HCl) was used as an internal standard. Using a saturated aqueous solution of glucosamine hydrochloride, in vitro permeation studies were performed at 32+/-1 degrees C over 48 h using human epidermal membranes prepared by a heat separation method and mounted in Franz-type diffusion cells with a diffusional area 2.15+/-0.1 cm2. The optimum derivatisation reaction conditions for reaction temperature, reaction time and PITC concentration were found to be 80 degrees C, 30 min and 1% v/v, respectively. PTC-Gal and GL adducts eluted at 8.9 and 9.7 min, respectively. The detector response was found to be linear in the concentration range 0-1000 microg ml-1. The assay was robust with intra- and inter-day precisions (described as a percentage of relative standard deviation, %R.S.D.) <12. Intra- and inter-day accuracy (as a percentage of the relative error, %RE) was
机译:开发了一种相对简单,选择性,精确和准确的高效液相色谱(HPLC)方法,该方法基于异硫氰酸苯酯(PITC)与氨基葡萄糖(GL)在碱性介质中的反应,并已被确定用于测定葡萄糖胺盐酸盐在人体皮肤中的渗透能力。通常,对穿过皮肤的化学物质进行准确的分析是有问题的,因为组织的优异阻隔性能可确保仅少量物质通过膜,而皮肤成分可能会浸出组织,从而干扰分析。另外,在氨基葡萄糖盐酸盐的情况下,化学不稳定性增加了测定开发的复杂性。通过优化反应温度,反应时间和PITC浓度来优化利用PITC-GL反应的分析方法。该反应产生苯基硫代氨基甲酰基-葡糖胺(PTC-GL)加合物,使用二极管阵列检测器(DAD)在245 nm下在装有5微米ODS(C18)Hypersil颗粒的反相(RP)色谱柱上进行分离。流动相是在1 ml min-1的流速下将甲醇-水-冰醋酸(10:89.96:0.04 v / v / v,pH 3.5)输送至色谱柱,并将色谱柱温度保持在30摄氏度。半乳糖胺盐酸盐( (Gal-HCl)用作内标。使用氨基葡萄糖盐酸盐的饱和水溶液,使用热分离法制备的人类表皮膜,在32 +/- 1摄氏度下,于48小时内进行体外渗透研究,并将其安装在扩散面积为2.15+的Franz型扩散池中/-0.1平方厘米。发现反应温度,反应时间和PITC浓度的最佳衍生化反应条件分别为80℃,30分钟和1%v / v。 PTC-Gal和GL加合物分别在8.9和9.7分钟时洗脱。发现检测器响应在0-1000 microg ml-1的浓度范围内是线性的。该测定法具有日间和日间精度(描述为相对标准偏差的百分比,%R.S.D。)<12的鲁棒性。日内和日间准确度(以相对误差的百分比%RE)分别为

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