Analysis of Forced Degradation Products in Rilpivirine using RP-HPLC and Peak Purity Evaluation

IF 0.3 Q4 CHEMISTRY, MULTIDISCIPLINARY Oriental Journal Of Chemistry Pub Date : 2023-12-27 DOI:10.13005/ojc/390613
Abburi Ramarao, Guttikonda Venkata Rao, S. Chinnamaneni, Komati Navya Sri, Mandava Bhagya Tej, Gollammudi Padma Rao, V. Abbaraju, Mandava Venkata Basaveswarao RaoBasaveswarao Rao
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Abstract

The primary objective of this research was to delve into the forced degradation products of Rilpivirine hydrochloride (RLP HCl), a crucial non-nucleoside reverse transcriptase inhibitor employed inmanagement of epidemic disease named HIV-1. The investigation utilised the probable of RP-HPLC in tandem with peak purity assessment .In order to simulate conceivable degradation pathways, the study encompassed a gamut of stress conditions like acidic, alkaline, oxidative , thermal and photolytic environments. Authors used Agilent zorbaxEclipse XDB C18 column (150x2.1mm, 1.8µm), RLP and impurities were separated. Buffer as pH of 3.0 and acetonitrile in gradient mode (68:32v/v), flow rate of 0.55ml/min. Volume injected is 3µL and detection wavelength is 220 nm. Temperature is maintained at 55oC by 70:30v/v mixture of water and acetonitrile.System suitability was erect to be within the limits. The average percentage recoveries for impurities were 98% to 101%.The outcomes of this meticulous study unveiled the susceptibilities of RLP to a spectrum of stress factors, in the generation of impurity profile RLP-Amide A, RLP-Amide Band Z-RLP with peak purities. The forced degradation tests demonstrate that the peak of RP-HPLC is spectroscopically pure in all stressed conditions. All degradation products are separated from the main peak and do not interfere with main substance. This exploration not only augments the comprehension of RLP’s stability profile but also underscores the pivotal role of analytical techniques in upholding the safety and efficacy benchmarks of pharmaceutical formulations.
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利用 RP-HPLC 和峰值纯度评估分析利匹韦林中的强制降解产物
本研究的主要目的是深入研究盐酸利匹韦林(RLP HCl)的强制降解产物,它是一种重要的非核苷类逆转录酶抑制剂,用于治疗名为 HIV-1 的流行病。为了模拟可能的降解途径,研究涵盖了各种压力条件,如酸性、碱性、氧化、热和光解环境。作者使用安捷伦 zorbaxEclipse XDB C18 色谱柱(150x2.1 毫米,1.8 微米)分离 RLP 和杂质。缓冲液 pH 值为 3.0,乙腈为梯度模式(68:32v/v),流速为 0.55 毫升/分钟。进样量为 3µL,检测波长为 220 nm。温度保持在 55 摄氏度,水和乙腈的混合比例为 70:30v/v。这项细致研究的结果揭示了 RLP 对各种应力因素的敏感性,产生了 RLP-Amide A、RLP-Amide Band Z-RLP 等杂质谱图,并具有峰值纯度。强制降解测试表明,在所有应力条件下,RP-HPLC 的峰值在光谱上都是纯的。所有降解产物都与主峰分离,不会干扰主物质。这项研究不仅加深了人们对 RLP 稳定性的理解,还强调了分析技术在维护药物制剂安全性和有效性基准方面的关键作用。
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来源期刊
Oriental Journal Of Chemistry
Oriental Journal Of Chemistry CHEMISTRY, MULTIDISCIPLINARY-
自引率
20.00%
发文量
172
期刊介绍: Oriental Journal of Chemistry was started in 1985 with the aim to promote chemistry research. The journal consists of articles which are rigorously peer-reviewed. The journal was indexed in Emerging Science citation index in 2016. The Editorial board member consists of eminent international scientist in all fields of Chemistry. Details of each member and their contact information is mentioned in website. The journal has thorough ethics policies and uses plagiarism detection software(ithenticate) to screen each submission. The journal has recently partnered with publons as a part of making our reviews more transparent. The journal has recently incorporated PlumX for article level matrix. The journal is promoting research on all social and academic platforms mentioned in PlumX guidelines. The journal uses google maps to improve on the geographical distribution of Editorial board members as well as authors.
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