Development of validated HPTLC and UHPLC methods for quantification of Withanolide in extract and formulation

Sufiyan Ahmad, Mahendra Ganbase, Nitin Deshmukh, K. Patil, Lokesh Barde, Mahesh Deshpande, Asmita Gaikwad, P. Tajane
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Abstract

High performance thin layer chromatography (HPTLC) and Ultra-High-Performance Liquid Chromatography (UHPLC) techniques were developed and validated to quantify Withanolide in extract and formulation. On Al-backed silica gel 60 F254 TLC plates (10 cm × 10 cm, layer thickness 0.2 mm), which had been prewashed with methanol, HPTLC separation was carried out. Dichloromethane: Methanol: Toluene: Acetone in various ratios produced good separation in mobile phase (5:1:1:0.5 v/v). Camag TLC scanner densitometric scanning at 365 nm determined and quantified. This approach produced compact Withanolide spots at Rf 0.48. ICH guidelines verified HPTLC's precision, reproducibility, and accuracy. Withanolide linearity was 500-3000 ng/spot with R2= 0.9994. LOD & LOQ were found to be 9.48 & 28.73 ng respectively. For UHPLC, Cosmosil C18 was used with acetonitrile: water (0.2 % OPA) (70:30, v/v) mobile phase. Flow rate was 1.5 mL/min. Under optimal chromatographic conditions, Withanolide was retained for 5.9 min and detected at 254 nm. ICH guidelines verified UHPLC's precision, repeatability, and accuracy. Withanolide linearity was 10-60 μg/mL with R2= 0.9994. LOD along with LOQ were 0.411 and 1.245 μg. HPTLC and UHPLC procedures utilized for regular quality control and quick screening of active components from plant extracts.
建立高效液相色谱法和高效液相色谱法测定提取液和制剂中威纳醇内酯的含量
建立了高效薄层色谱(HPTLC)和超高效液相色谱(UHPLC)技术,并对其进行了定量分析。在甲醇预洗的Al-backed硅胶60f254 TLC plates (10 cm × 10 cm,层厚0.2 mm)上进行HPTLC分离。二氯甲烷:甲醇:甲苯:丙酮以不同的比例在流动相(5:1:1:0.5 v/v)中分离效果良好。Camag TLC扫描仪在365 nm密度扫描进行测定和定量。该方法在Rf 0.48处产生致密的威纳醇内酯斑点。ICH指南验证了HPTLC的精密度、重现性和准确性。在500 ~ 3000 ng/spot的线性范围内,R2= 0.9994。LOD和LOQ分别为9.48和28.73 ng。在UHPLC中,Cosmosil C18以乙腈:水(0.2% OPA) (70:30, v/v)为流动相。流速1.5 mL/min。在最佳色谱条件下,威纳醇内酯保留时间5.9 min,检测波长254 nm。ICH指南验证了UHPLC的精密度、可重复性和准确性。Withanolide在10 ~ 60 μg/mL的线性范围内,R2= 0.9994;定量限和定量限分别为0.411和1.245 μg。高效液相色谱法和高效液相色谱法用于定期质量控制和快速筛选植物提取物的有效成分。
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