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1.江西中医药大学药学院,南昌 330004
2.江西省药品检验检测研究院/国家药品监督管理局中成药质量评价重点实验室/江西省药品与医疗器械质量工程技术研究中心,南昌 330029
硕士研究生。研究方向:药物分析。E-mail:2547912536@qq.com
主任中药师,硕士生导师。研究方向:药物分析。 E-mail:13474608@qq.com
收稿日期:2024-12-04,
修回日期:2025-02-19,
录用日期:2025-03-11,
纸质出版日期:2025-05-15
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吴倩颖,刘德鸿,陈伟康,等.不同基原枳实的多组分含量测定及差异性成分分析 [J].中国药房,2025,36(09):1071-1075.
WU Qianying,LIU Dehong,CHEN Weikang,et al.Determination of multi-component content and analysis of differential components in Aurantii Fructus Immaturus from different origins[J].ZHONGGUO YAOFANG,2025,36(09):1071-1075.
吴倩颖,刘德鸿,陈伟康,等.不同基原枳实的多组分含量测定及差异性成分分析 [J].中国药房,2025,36(09):1071-1075. DOI: 10.6039/j.issn.1001-0408.2025.09.09.
WU Qianying,LIU Dehong,CHEN Weikang,et al.Determination of multi-component content and analysis of differential components in Aurantii Fructus Immaturus from different origins[J].ZHONGGUO YAOFANG,2025,36(09):1071-1075. DOI: 10.6039/j.issn.1001-0408.2025.09.09.
目的
2
测定不同基原(酸橙、香橙、臭橙、脐橙、甜橙)枳实中15种成分的含量,筛选差异性成分,为枳实的质量评价提供参考。
方法
2
采用高效液相色谱法对46批不同基原枳实中辛弗林、
N
-甲基酪胺、5,7-二羟基色酮-7-新橙皮糖苷、新北美圣草苷、柚皮芸香苷、柚皮苷、橙皮苷、新橙皮苷、柚皮素、橙皮素、甜橙黄酮、川陈皮素、橘皮素、5-去甲川陈皮素、橙皮油素的含量进行测定。色谱条件采用Waters Symmetry C
18
色谱柱,以乙腈-0.1%甲酸溶液为流动相进行梯度洗脱;流速为1.0 mL/min;柱温为40 ℃;检测波长为284 nm;进样量为5 μL。采用聚类分析、主成分分析(PCA)、正交偏最小二乘-判别分析(OPLS-DA)法分析不同基原枳实样品间的差异,并筛选差异性成分。
结果
2
上述15种成分在其检测质量浓度范围内线性关系均良好(
r
均大于0.999 0),精密度、稳定性(24 h)及重复性试验的RSD均小于2.00%,平均加样回收率为91.1%~103.9%(RSD均小于3.10%)。聚类分析、PCA、OPLS-DA结果显示,甜橙、脐橙基原枳实聚为一类,酸橙、香橙、臭橙基原枳实聚为另一类;新橙皮苷、橙皮油素、柚皮苷、新北美圣草苷、橘皮素、橙皮苷、甜橙黄酮、5,7-二羟基色酮-7-新橙皮糖苷的变量重要性投影值大于1。
结论
2
本研究测定了不同基原枳实中15种成分的含量,并筛选出了包括新橙皮苷、橙皮油素、柚皮苷、新北美圣草苷等在内的8种差异性成分。
OBJECTIVE
2
To determine the contents of 15 components in Aurantii Fructus Immaturus from different origins (
Citrus aurantium
,
C. junos
,
C. aurantium
Linn.,
C. sinensis
Osb
.
,
C. sinensis
), screen differential components, and provide references for the quality evaluation of Aurantii Fructus Immaturus.
METHODS
2
HPLC method was adopted to determine the contents of synephrine,
N
-methyltyramine, 5,7-dihydroxychromone-7-neohesperidoside, neoponcirin, narirutin, naringin, hesperidin, neohesperidin, naringenin, hesperetin, sinensetin, nobiletin, tangeretin, 5-demethylnobiletin, and auraptene in 46 batches of Aurantii Fructus Immaturus from different origins. The determination was performed on Waters Symmetry C
18
column with mobile phase consisted of acetonitrile-0.1% formic acid (gradient elution) at the flow rate of 1.0 mL/min; column temperature was set at 40 ℃, detection wavelength was 284 nm, and sample injection volume was 5 μL. The differences between different origins of Aurantii Fructus Immaturus were analyzed by cluster analysis, principal component analysis (PCA) and orthogonal partial l
east squares-discriminant analysis (OPLS-DA), and differential components were screened.
RESULTS
2
The linear relationships of the aforementioned 15 components were all good within the tested mass concentration ranges (all
r
>0.999 0). The RSDs for precision, stability (24 h), and repeatability tests were all less than 2.00%. The average recovery rate ranged from 91.1% to 103.9% (all RSDs<3.10%). Cluster analysis, PCA, and OPLS-DA revealed that
C. sinensis
Osb. and
C. sinensis
were clustered into one category, while
C. aurantium
,
C. junos
and
C. aurantium
Linn. were clustered into another category. The variable importance projection values for neohesperidin, auraptene, naringin, neoponcirin, tangeretin, hesperidin, sinensetin, and 5,7-dihydroxychromone-7-neohesperidoside were all greater than 1.
CONCLUSIONS
2
In this study, the contents of 15 components in Aurantii Fructus Immaturus from different origins are determined, and 8 differential components, including neohesperidin, auraptene, naringin, and neoponcirin, are screened out.
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