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光谱法研究芦可替尼与氯代邻苯二甲酸和 2,3-二氯-5,6-二氰基-1,4-苯醌的荷移络合物:一种应用于开发绿色高通量微井法测定芦可替尼药物制剂含量的方法。

Spectrophotometric Study of Charge-Transfer Complexes of Ruxolitinib with Chloranilic Acid and 2,3-Dichloro-5,6-dicyano-1,4-benzoquinone: An Application to the Development of a Green and High-Throughput Microwell Method for Quantification of Ruxolitinib in Its Pharmaceutical Formulations.

机构信息

Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, P.O. Box 2457, Riyadh 11451, Saudi Arabia.

出版信息

Molecules. 2023 Nov 30;28(23):7877. doi: 10.3390/molecules28237877.

Abstract

Ruxolitinib (RUX) is a potent drug that has been approved by the Food and Drug Administration for the treatment of myelofibrosis, polycythemia vera, and graft-versus-host disease. This study describes the formation of colored charge-transfer complexes (CTCs) of RUX, an electron donor, with chloranilic acid (CLA) and 2,3-dichloro-5,6-dicyano-1,4-benzoquinone (DDQ), the π-electron acceptors. The CTCs were characterized using UV-visible spectrophotometry. The formation of CTCs in methanol was confirmed via formation of new absorption bands with maximum absorption at 530 and 470 nm for CTCs with CLA and DDQ, respectively. The molar absorptivity and other physicochemical and electronic properties of CTCs were determined. The molar ratio was found to be 1:1 for both CTCs with CLA and CTCs with DDQ. The site of interaction on RUX molecules was assigned and the mechanisms of the reactions were postulated. The reactions were employed as basis for the development of a novel green and one-step microwell spectrophotometric method (MW-SPM) for high-throughput quantitation of RUX. Reactions of RUX with CLA and DDQ were carried out in 96-well transparent plates, and the absorbances of the colored CTCs were measured by an absorbance microplate reader. The MW-SPM was validated according to the ICH guidelines. The limits of quantitation were 7.5 and 12.6 µg/mL for the methods involving reactions with CLA and DDQ, respectively. The method was applied with great reliability to the quantitation of RUX content in Jakavi tablets and Opzelura cream. The greenness of the MW-SPM was assessed by three different metric tools, and the results proved that the method fulfills the requirements of green analytical approaches. In addition, the one-step reactions and simultaneous handling of a large number of samples with micro-volumes using the proposed method enables the high-throughput analysis. In conclusion, this study describes the first MW-SPM, a valuable analytical tool for the quality control of pharmaceutical formulations of RUX.

摘要

芦可替尼(RUX)是一种强效药物,已被美国食品和药物管理局批准用于治疗骨髓纤维化、真性红细胞增多症和移植物抗宿主病。本研究描述了 RUX(电子供体)与氯代邻苯二甲酸(CLA)和 2,3-二氯-5,6-二氰基-1,4-苯醌(DDQ),这两种π-电子受体,形成有色电荷转移配合物(CTC)。通过紫外-可见分光光度法对 CTC 进行了表征。在甲醇中形成 CTC 得到了证实,因为与 CLA 和 DDQ 形成的 CTC 分别在 530nm 和 470nm 处出现了新的吸收带。确定了 CTC 的摩尔吸光率和其他物理化学和电子性质。发现与 CLA 和 DDQ 形成的 CTC 的摩尔比均为 1:1。确定了 RUX 分子上的相互作用位点,并提出了反应的机制。这些反应被用作开发新型绿色一步微孔板分光光度法(MW-SPM)的基础,用于高通量定量 RUX。在 96 孔透明板中进行 RUX 与 CLA 和 DDQ 的反应,并通过吸光微板读数器测量有色 CTC 的吸光度。MW-SPM 根据 ICH 指南进行了验证。涉及与 CLA 和 DDQ 反应的方法的定量限分别为 7.5 和 12.6μg/mL。该方法用于定量测定 Jakavi 片剂和 Opzelura 乳膏中的 RUX 含量,具有很好的可靠性。通过三种不同的度量工具评估了 MW-SPM 的绿色度,结果证明该方法符合绿色分析方法的要求。此外,该方法的一步反应和同时处理大量微体积样品,实现了高通量分析。总之,本研究描述了第一个 MW-SPM,这是一种用于控制 RUX 药物制剂质量的有价值的分析工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/633f/10708051/a68aa968c7fe/molecules-28-07877-g001.jpg

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