Rizk M, Belal F, Ibrahim F, Ahmed S, Sheribah Z A
Faculty of Pharmacy, Department of Analytical Chemistry, University of Mansoura, Mansoura, Egypt.
J Pharm Biomed Anal. 2002 Feb 1;27(5):813-20. doi: 10.1016/s0731-7085(01)00504-0.
An accurate, sensitive, and selective reversed phase high performance liquid chromatographic (HPLC) method was developed for the analysis of two halogenated 8-hydroxyquinoline derivatives; clioquinol (CQN) and iodoquinol (IQN). The proposed method depends on the complexation ability of the studied compounds with Pd(II) ions. Reversed phase chromatography was conducted using a 300 x 3.9 mm i.d. stainless steel column packed with 10 microm Bondclone phenyl at ambient temperature. A solution containing 0.005% w/v of Pd(II)-chloride in a mixture of acetonitrile-methanol-water (3:3:4 v/v/v) of pH 3.7 as a mobile phase pumped at a flow rate of 0.75 ml min(-1). UV-detection was performed at 282 and 285 nm for CQN and IQN, respectively. The method showed excellent linearity in the range 0.05-1.8 and 0.1-3.0 microg ml(-1) with limit of detection (S/N=2) 4.8 ng ml(-1) (1.57 x 10(-8) M) and 6.4 ng ml(-1) (1.61 x 10(-8) M) for CQN and IQN, respectively. The suggested method was successfully applied for the analysis of the studied drugs in bulk with average% recoveries of 99.68+/-0.44 for CQN and 99.65+/-0.53 for IQN. The proposed method was successfully applied for the analysis of the studied drugs in single or combined dosage forms with average% recoveries of 99.41+/-0.51-100.02+/-0.63. The proposed method could be used successfully for the determination of the studied compounds in the presence of their degradation product as they could be eluted with different retention times. The presence of metronidazole (MNZ) or tolnaftate (TFT) with the studied drugs does not affect their accurate determination. The results obtained were favorably compared with those obtained by the reference method. The results were satisfactorily, accurate, and precise.
建立了一种准确、灵敏且具有选择性的反相高效液相色谱(HPLC)法,用于分析两种卤代8-羟基喹啉衍生物:氯碘喹啉(CQN)和碘喹啉(IQN)。该方法基于所研究化合物与钯(II)离子的络合能力。反相色谱分析在室温下使用内径为3.9 mm、长300 mm的不锈钢柱,柱内填充10 µm的Bondclone苯基固定相。以pH 3.7的乙腈 - 甲醇 - 水(3:3:4 v/v/v)混合溶液作为流动相,其中含有0.005% w/v的氯化钯(II),流速为0.75 ml min⁻¹。分别在282 nm和285 nm波长处对CQN和IQN进行紫外检测。该方法在0.05 - 1.8和0.1 - 3.0 µg ml⁻¹范围内呈现出良好的线性关系,CQN和IQN的检测限(S/N = 2)分别为4.8 ng ml⁻¹(1.57×10⁻⁸ M)和6.4 ng ml⁻¹(1.61×10⁻⁸ M)。所建议的方法成功应用于原料药中所研究药物的分析,CQN的平均回收率为99.68 ± 0.44%,IQN的平均回收率为99.65 ± 0.53%。该方法成功应用于单一或复方剂型中所研究药物的分析,平均回收率为99.41 ± 0.51% - 100.02 ± 0.63%。所建议的方法能够成功用于在所研究化合物存在其降解产物的情况下对其进行测定,因为它们可以在不同的保留时间被洗脱。甲硝唑(MNZ)或萘替芬(TFT)与所研究药物共存时,不影响对它们的准确测定。所得结果与参考方法获得的结果进行了良好的比较。结果令人满意,准确且精密。