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Response surface methodology-based optimization of ultrasound-assisted extraction of β-sitosterol and lupeol from Astragalus atropilosus(roots) and validation by HPTLC method

机译:基于响应表面方法的超声辅助提取β-谷甾醇和碱的优化来自黄芪(根)和HPTLC方法的验证

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Objective:To optimize the ultrasonication method for efficient extraction ofβ-sitosterol and lupeol from the roots of Astragalus atropilosus using Box-Behnken design of response surface methodology(RSM),and its validation by high performance thin layer chromatography(HPTLC)method.Methods:Ultrasonication method was used to extractβ-sitosterol and lupeol from Astragalus atropilosus(roots).RSM was used to optimize the different extraction parameters viz.liquid to solid ratio(10–14 m L/g),temperature(60-80℃)and time(40–60 min)to maximize the yield ofβ-sitosterol and lupeol.The quantitative estimation ofβ-sitosterol and lupeol was done in chloroform extract of Astragalus atropilosus by validated HPTLC method on 10 cm×20 cm glass-backed silica gel 60 F254 plate using hexane and ethyl acetate(8:2,v/v)as mobile phase.Results:A quadratic polynomial model was found to be most appropriate with regard to R1(yield of total extraction;R2/%CV=0.9948/0.28),R2(β-sitosterol yield;R2/%CV=0.9923/0.39)and R3(lupeol yield;R2/%CV=0.9942/0.97).The values of adjusted R2/predicted R2/signal to noise ratio for R1,R2,and R3 were 0.9782/0.9551/48.77,0.9904/0.9110/31.33,and 0.9927/0.9401/36.08,respectively,indicating a high degree of correlation and adequate signal.The linear correlation plot between the predicted and experimental values for R1,R2,and R3 showed high values of R2 ranging from 0.9905-0.9973.β-sitosterol and lupeol in chloroform extract of Astragalus atropilosus were detected at Rf values of 0.22 and 0.34,respectively,atλmax=518 nm.The optimized ultrasonic extraction produced 8.462%w/w of R1,0.451%w/w of R2 and 0.172%w/w of R3 at 13.5 m L/g liquid to solid ratio,78℃of temperature and 60 min of time.Conclusions:The experimental findings of RSM optimized extraction and HPTLC analysis can be further applied for the efficient extraction ofβ-sitosterol and lupeol in other species of Astragalus.
机译:目的:利用Box-Behnken设计从Astragalus Atropilosus的Roots of Astragalus Atropilosus的β-谷胱甘肽和Lupeols的高效提取方法(RSM),以及高性能薄层色谱(HPTLC)方法的验证。超声处理方法用于提取黄芪阿胃醇(根)的β-谷甾醇和卢河(ROOTS).RSM用于优化不同的提取参数viz.liquid与实心比(10-14 m l / g),温度(60-80℃)和时间(40-60分钟)最大化β-谷甾醇和卢美醇的产量。通过验证的HPTLC方法在10cm×20cm玻璃背衬硅胶60 f254上通过验证的HPTLC方法在Astragalus Atropilosus的氯仿提取物中进行量化估计。使用己烷和乙酸乙酯(8:2,v / v)作为流动相的板。结果,发现二次多项式模型对R1最适合(总萃取的产率; R2 /%CV = 0.9948 / 0.28) ,R2(β-谷甾醇产率; R2 /%CV = 0.9923 / 0.39)和R3(Lupeol产量; R2 /%CV = 0.9942 / 0.97)。R1,R2和R3的调节R2 /预测R2 /信号与噪声比的值为0.9782 / 0.9551 / 48.77,0.9904 / 0.9110 / 31.33和0.9927 / 0.9401/36.08,抑制高度相关性和足够的信号。R1,R2和R3的预测和实验值之间的线性相关曲线表现为R2的高值,范围为0.9905-0.9973.β-谷甾醇和卢博尔在黄芪的氯仿提取物分别在0.22和0.34的RF值下检测到Atλmax= 518nm。优化的超声萃取产生8.462%w / w的R1,0.451%w / w的R2和0.172%w / w R3以13.5 m l / g液体为实心比,温度78℃和60分钟时间。结论:RSM优化提取和HPTLC分析的实验结果可以进一步应用于其他物种中的β-谷甾醇和卢普尔的有效提取黄芪。

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