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Stability-Indicating RP-HPLC Methods for the Determination of Fluorometholone in Its Mixtures with Sodium Cromoglycate and Tetrahydrozoline Hydrochloride

机译:指示性的RP-HPLC法测定溴乙酸钠和盐酸四氢唑啉混合物中的氟甲龙

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Two stability-indicating reversed-phase liquid chromatographic methods were developed and validated for the determination of fluorometholone (FLU) in its mixtures with sodium cromoglycate (SCG) and tetrahydrozoline hydrochloride (THZ). The first HPLC method (Method 1) was based on isocratic elution of FLU and SCG along with their alkaline degradation products on a reversed phase C18 column (250 x 4.6 mm id)-ACE Generix 5, using a mobile phase consisting of methanol-water (70 : 30, v/v), pH adjusted to 2.5 using orthophosphoric acid at a flow rate of 1.2 mL min(-1). Quantitation was achieved with UV detection at 240 nm. The second HPLC method (Method 2) was based on isocratic elution of FLU, its alkaline degradation product and THZ on a reversed phase C8 column (250 x 4.6 mm)-ACE Generix 5, using a mobile phase consisting of acetonitrile-50 mM potassium dihydrogen orthophosphate (40 : 60, v/v) at a flow rate of 2 mL min(-1). Quantitation was achieved by applying dual-wavelength detection, where FLU and its alkaline degradation product were detected at 240 nm and THZ was detected at 215 nm at ambient temperatures. Linearity, accuracy and precision were found to be acceptable over the concentration range of 5-50 and 10-500 mu g mL(-1) for FLU and SCG (Method 1) and over the concentration range of 5-80 and 5-60 mu g mL(-1) for FLU and THZ (Method 2), respectively. Besides, the FLU alkaline degradation product was verified using IR, NMR and LC-MS spectroscopy. The two proposed methods could be successfully applied for the routine analysis of the studied drugs either in their pure bulk powders or in their pharmaceutical preparations without any preliminary separation step.
机译:开发了两种指示稳定性的反相液相色谱方法,并验证了其与色甘酸钠(SCG)和盐酸四氢唑啉(THZ)的混合物中氟美洛龙(FLU)的测定。第一种HPLC方法(方法1)是基于FLU和SCG及其碱降解产物在反相C18柱(250 x 4.6 mm内径)-ACE Generix 5上的等度洗脱,使用流动相为甲醇-水(70:30,v / v),使用正磷酸将pH调节至2.5,流速为1.2 mL min(-1)。通过在240 nm处进行UV检测实现定量。第二种HPLC方法(方法2)基于FLU,其碱性降解产物和THZ在反相C8柱(250 x 4.6 mm)-ACE Generix 5上的等度洗脱,使用乙腈50 mM钾组成的流动相正磷酸二氢(40:60,v / v),流速为2 mL min(-1)。通过使用双波长检测实现定量,其中在环境温度下,在240 nm处检测到FLU及其碱降解产物,在215 nm下检测到THZ。对于FLU和SCG(方法1),在5-50和10-500μgmL(-1)的浓度范围内以及在5-80和5-60的浓度范围内,线性,准确性和精密度均可接受分别为FLU和THZ(方法2)的微克mL(-1)。此外,利用IR,NMR和LC-MS光谱法验证了FLU碱性降解产物。所提出的两种方法可以成功地将所研究药物的纯散装粉剂或药物制剂进行常规分析,而无需任何初步分离步骤。

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