Independent concentration extraction as a novel green approach resolving overlapped UV–Vis binary spectra and HPTLC-densitometric methods for concurrent determination of levocloperastine and chlorpheniramine

IF 4.3 2区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY BMC Chemistry Pub Date : 2024-08-28 DOI:10.1186/s13065-024-01260-w
Ekram H. Mohamed, Hany A. Batakoushy, Adel Ehab Ibrahim, Zeinab Adel Nasr, Marwa M. Soliman, Sona S. Barghash, Tahany F. Mohamed, Fatma A. Fouad
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Abstract

Background

The proposed research study introduces independent concentration extraction (ICE) as a novel UV–Vis spectrophotometric approach. The approach can be used for extracting the concentration of two analytes with severely overlapped spectra from their binary mixtures. ICE is based on spectral extraction platform involving simple smart successive methods that can directly extract the original zero order spectra of the analytes at their characteristic (λmax). Chlorpheniramine maleate (CPM) and Levocloperastine fendizoate (LCF) are two commonly co-formulated drugs in cough preparations. The combined mixture was used to confirm the validity of the developed ICE tool. Another less green HPTLC was developed for the first time to separate both drugs and help also in confirming the proposed tool.

Methods

For the simultaneous determination of CPM and LCF, two ecologically friendly techniques were employed. The first approach encompasses the use of the ICE spectrophotometric method that could be successively applied for extracting the concentration of two analytes with severely overlapped unresolved spectra in their binary mixtures. Other complementary methods aiming at original spectral extraction; including spectrum subtraction (SS) and unity subtraction (US) were also successfully employed to resolve the zero order spectra of the combined drugs with all their characteristic features and peaks. The second technique used, a high-performance TLC-densitometric one, was performed on silica plates with silica plates F254 and a mobile phase with a ratio of 3:3:3:1 by volume of toluene, ethanol, acetone, and ammonia as a developing system at 230 nm.

Results

The presented extraction approach was executed without any optimization steps or sample pretreatment for the simultaneous determination of CPM and LCF. The method was found to be valid for their determination within concentration range of 3.0–30.0 μg mL−1 for both drugs. For HPTLC method, the resulting Rf values of CPM and LCF were 0.37 and 0.78, within concentration ranges of 0.3–4.0 μg/spot and 0.8–10.0 μg/spot, respectively. Greenness assessment of both developed methodologies showed that the HPTLC method is less green than the spectrophotometric method, yet with comparable sustainability when it comes to the used technique.

Conclusion

The procedures were found to be selective, accurate, and precise for analysis of the studied binary mixture. Furthermore, the environmental impact of the introduced methods was assessed using novel greenness metrics, namely AGREE and Green Analytical Procedure Index (GAPI) to prove their ecological safety. In addition, white analytical chemistry (WAC) evaluation metric was employed to ensure the synergy and coherence of analytical, practical, and ecological attributes.

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独立浓缩萃取作为一种新型绿色方法,解决了同时测定左旋氯哌嗪和氯苯那敏的重叠紫外-可见二元光谱和 HPTLC 密度计方法的问题
背景本研究提出了一种新型紫外可见分光光度法--独立浓度萃取法(ICE)。该方法可用于从二元混合物中提取光谱严重重叠的两种分析物的浓度。ICE 基于光谱提取平台,涉及简单的智能连续方法,可直接提取分析物在其特征值(λmax)处的原始零阶光谱。马来酸氯苯那敏(CPM)和左氯哌嗪芬地佐酯(LCF)是咳嗽制剂中两种常见的复方药物。我们使用这两种药物的混合物来确认所开发的 ICE 工具的有效性。为了同时测定 CPM 和 LCF,我们采用了两种生态友好型技术。第一种方法包括使用 ICE 分光光度法,该方法可连续用于提取二元混合物中未分辨光谱严重重叠的两种分析物的浓度。其他旨在提取原始光谱的补充方法,包括光谱减法(SS)和统一减法(US),也被成功地用于解析混合药物的零阶光谱及其所有特征和峰值。采用的第二种技术是高效液相色谱-密度测定技术,该技术在硅胶板上进行,硅胶板为 F254,流动相为甲苯、乙醇、丙酮和氨水,体积比为 3:3:3:1,显色波长为 230 纳米。结果表明,该方法可在 3.0-30.0 μg mL-1 的浓度范围内有效测定这两种药物。对于 HPTLC 方法,在 0.3-4.0 μg/spot 和 0.8-10.0 μg/spot 的浓度范围内,CPM 和 LCF 的 Rf 值分别为 0.37 和 0.78。对这两种方法进行的绿色评估表明,HPTLC 方法的绿色程度低于分光光度法,但在所使用技术的可持续性方面具有可比性。此外,还使用新的绿色指标(即 AGREE 和绿色分析程序指数 (GAPI))评估了所引入方法对环境的影响,以证明其生态安全性。此外,还采用了白色分析化学(WAC)评价指标,以确保分析、实用和生态属性的协同性和一致性。
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来源期刊
BMC Chemistry
BMC Chemistry Chemistry-General Chemistry
CiteScore
5.30
自引率
2.20%
发文量
92
审稿时长
27 weeks
期刊介绍: BMC Chemistry, formerly known as Chemistry Central Journal, is now part of the BMC series journals family. Chemistry Central Journal has served the chemistry community as a trusted open access resource for more than 10 years – and we are delighted to announce the next step on its journey. In January 2019 the journal has been renamed BMC Chemistry and now strengthens the BMC series footprint in the physical sciences by publishing quality articles and by pushing the boundaries of open chemistry.
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