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达格列净的反相高效液相色谱法分析方法开发、验证和强制降解研究。

Analytical Method Development, Validation and Forced Degradation Study of Dapagliflozin by RP-HPLC.

机构信息

School of Pharmacy & Technology Management, SVKM's NMIMS (Deemed to be University), Shirpur, Distt - Dhule (Maharashtra), 425405, India.

出版信息

Drug Metab Bioanal Lett. 2023;16(2):140-152. doi: 10.2174/2949681016666230823091112.

Abstract

BACKGROUND

Worldwide, it is projected that 285 million individuals have diabetes, and by 2030, this number is expected to climb to 438 million. About 90% of cases of diabetes mellitus are type 2 (T2DM). Insulin sensitizers, such as metformin and thiazolidinediones; insulin secretagogues, such as sulfonylureas and glinides; dipeptidyl peptidase 4 (DPP-4) inhibitors; glucosidase inhibitors, or oral combination therapy are currently available treatments for type 2 diabetes. Some of these drugs exhibit serious limitations; thus, it is crucial to design an innovative therapy that is efficient and depends on a new channel.

AIM

In the current work, a stability-indicating reverse phase HPLC (RP-HPLC) technique was developed and subsequently validated for the detection of dapagliflozin in its API.

METHODS

The stability-indicating HPLC method for assay included the use of Kromasil 100-5-C8 (100 mm × 4.6 mm) column, UV detector 224 nm, mobile phase composition involving a mixture of acetonitrile:water (52:48), and a flow rate of 1.0 mL/min. ICH guidelines were followed for the method's validation. To assess the method's specificity and stability in showing characteristics, stress degradation studies were carried out. The working standard solution of dapagliflozin was exposed to 1 and 2 N HCl by refluxing 1 and 2 N NaOH with 30% hydrogen peroxide by volume and UV radiation in order to conduct a degradation study.

RESULTS

All system suitability parameters were determined to be within the intended ranges, and the drug's retention duration was discovered to be 1.67 minutes. It was also investigated as to how the drug degraded under various circumstances. The drug was discovered to be stable under situations of photolytic, thermal, neutral, alkaline, and oxidative deterioration. The developed stabilityindicating HPLC technique was validated in accordance with ICH Q2 recommendations, and the validation parameters, such as linearity, precision, and robustness, were achieved within the approved standards.

CONCLUSION

It may be concluded that this method is stability-indicating and specific, and it can be successfully applied to analyze tablet dosage forms containing dapagliflozin.

摘要

背景

全球预计有 2.85 亿人患有糖尿病,到 2030 年,这一数字预计将攀升至 4.38 亿。大约 90%的糖尿病病例为 2 型(T2DM)。目前可用于治疗 2 型糖尿病的药物有胰岛素增敏剂,如二甲双胍和噻唑烷二酮类;胰岛素分泌剂,如磺酰脲类和格列奈类;二肽基肽酶 4(DPP-4)抑制剂;葡萄糖苷酶抑制剂,或口服联合治疗。这些药物中的一些存在严重的局限性;因此,设计一种高效且依赖新通道的创新疗法至关重要。

目的

在本工作中,开发并随后验证了一种用于检测 dapagliflozin 在其原料药中的反相高效液相色谱(RP-HPLC)稳定性指示法。

方法

用于测定的稳定性指示 HPLC 方法包括使用 Kromasil 100-5-C8(100mm×4.6mm)柱、UV 检测器 224nm、流动相组成为乙腈:水(52:48)的混合物,流速为 1.0mL/min。方法验证遵循 ICH 指南。为了评估方法在显示特征方面的专属性和稳定性,进行了稳定性降解研究。通过回流 1N 和 2N HCl 以及体积 30%的过氧化氢来使 dapagliflozin 的工作标准溶液分别与 1N 和 2N NaOH 接触,以进行降解研究。

结果

所有系统适用性参数均被确定在预期范围内,并且发现药物的保留时间为 1.67 分钟。还研究了药物在各种情况下的降解情况。在光解、热、中性、碱性和氧化降解等情况下,药物被发现是稳定的。所开发的稳定性指示 HPLC 技术按照 ICH Q2 建议进行了验证,并且验证参数,如线性、精密度和稳健性,均达到了批准的标准。

结论

可以得出结论,该方法具有专属性和稳定性,可以成功应用于分析含有 dapagliflozin 的片剂剂型。

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