首页> 外文期刊>生薬学雑誌 >原子吸光光度法によるォゥレン(末),黄連解毒湯エキス 及び柴胡桂枝湯エキスの鉛分析と小青竜湯エキスの力ドミゥム分析
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原子吸光光度法によるォゥレン(末),黄連解毒湯エキス 及び柴胡桂枝湯エキスの鉛分析と小青竜湯エキスの力ドミゥム分析

机译:奥伦(粉末),黄仁排毒热水提取物和西光溪石热水提取物的原子吸收法和强力龙热水提取物的功率圆顶分析的铅分析

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摘要

Coptis Rhizome is known to have a relatively high heavy metal content, and in Japanese Pharmacopoeia Supplement Two of the 16th edition, the Heavy Metal Limit Test is added for the purity test of Coptis Rhizome and Powdered Coptis Rhizome. In this Heavy Metal Limit Test, it states that when decision is difficult by the conventional colorimetric method, one should perform lead analysis by flame type Atomic absorption spectrophotometry (ASS) using the colorimetric test solution. However, the concentration of this colorimetric test solution is sometimes insufficient for the A AS test solution, so a new preparation method for the A AS test solution was investigated. The solvent extraction method, dry ashing method, and dry ashing with sulfuric acid method were examined, and the lead recovery rates of all three methods were 70% or more. Among these, the dry ashing method had the largest lead content amounts and lead recovery rate, and was also safe and easy. As a result of lead validation of analytical procedures by AAS using the dry ashing method, no problem was identified in terms of linearity, detection limit, or quantitation limit. In addition, a lead recovery test using Coptis Rhizome, Orengedokuto Extract, which is a mixture of Coptis Rhizome, and Saikokeishito Extract, in which a slightly higher lead content in the actual condition survey was confirmed, was performed; The lead recovery rate was 70% or more at ashing temperatures of 450-550°C. Furthermore for cadmium, as a result of validation of the analytical procedures by AAS using the dry ashing method, no issues were identified in terms of linearity, detection limit, or quantitation limit. In addition, in a cadmium recovery test using Shoseiryuto Extract, which was confirmed to have a slightly higher cadmium content in the actual condition survey, it was confirmed that the cadmium recovery rate was 70% or more at an ashing temperature of 450°C. From the above, by using the dry ashing method, lead analysis of Coptis Rhizome, Orengedokuto Extract, and Saikokeishito Extract, and cadmium analysis of Shoseiryuto Extract by AAS have become possible.
机译:已知黄连有较高的重金属含量,在第16版的日本药典增刊2中,添加了重金属限量试验,用于黄连和粉状黄连的纯度测试。在该重金属极限测试中,声明了当用常规比色法难以决定时,应使用比色测试溶液通过火焰型原子吸收分光光度法(ASS)进行铅分析。然而,这种比色测试溶液的浓度有时不足以用于AAS测试溶液,因此研究了一种新的AS测试溶液的制备方法。考察了溶剂萃取法,干灰化法和硫酸干灰化法,三种方法的铅回收率均在70%以上。在这些方法中,干灰化方法具有最大的铅含量和铅回收率,并且安全且容易。通过使用干灰法的AAS对分析程序进行铅验证的结果,在线性,检测限或定量限方面均未发现问题。此外,还进行了使用黄连,黄连提取物和西乐石藤提取物的混合物的铅回收测试,在实际情况调查中确认铅含量稍高。在450-550℃的灰化温度下,铅的回收率为70%以上。此外,对于镉,由于使用干灰化方法通过AAS验证了分析程序,因此没有发现线性,检测限或定量限方面的问题。另外,在实际情况调查中确认的使用Shoseiryuto提取物的镉回收试验中,镉含量稍高,在灰化温度为450℃下,镉回收率为70%以上。综上所述,通过使用干灰化方法,可以用AAS对黄连,Orengedokuto提取物和Saikokeishito提取物进行铅分析,以及对Shoseiryuto提取物进行镉分析。

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