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[栀子非西红花苷类成分与其外在特性的相关性]

[Correlation of non-crocin components of Gardeniae Fructus with its external properties].

作者信息

Ye Xiao, Feng Wei-Hong, Zhang Dong, Liu Xiao-Qian, Liang Yao-Hua, Li Chun, Wang Zhi-Min

机构信息

National Engineering Laboratory of Quality Control Technology of Chinese Materia Medica, Institute of Chinese Materia Medica, China Academy of Chinese Medical Sciences Beijing 100700, China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2022 Aug;47(15):4098-4109. doi: 10.19540/j.cnki.cjcmm.20220208.201.

Abstract

This study aimed to explore the correlation of the content of 15 non-crocin components of Gardeniae Fructus with its external properties(shape and color). The fruit shape was quantified according to the length/diameter measured by ruler and vernier calliper and the chromaticity values L*, a, b~, and ΔE* of all samples were determined by chroma meter. Chromatographic separation was conducted on a Welch Ultimate XB C_(18) column(4.6 mm×250 mm, 5 μm) under gradient elution with acetonitrile solution(A) and 0.1% formic acid aqueous solution(B) as the mobile phase at a flow rate of 1.0 mL·min(-1). The column temperature was 30 ℃ and the detection wavelength was 238 nm. The high-performance liquid chromatography(HPLC) method was established for simultaneous determination of the content of eight iridoid glycosides, six phenolic acids, and one flavonoid in 21 batches of Gardeniae Fructus samples. The correlation of the content of the 15 components with shapes and chromaticity values in each sample was analyzed by multivariate statistical analysis. According to the circulation situation and traditional experience, 21 batches of Gardeniae Fructus samples were divided into three categories, namely 14 batches of Jiangxi products(small and round, red and yellow), 4 batches of Fujian products(oval, red) and 3 batches of Shuizhizi(Gardenia jasminoides, longest, reddest). The Gardeniae Fructus samples were sequenced as Jiangxi products(1.71) < Fujian products(1.99) < Shuizhizi(2.55) in terms of the length/diameter average, Jiangxi products(17.7) < Fujian products(19.7) ≈ Shuizhizi(19.6) in terms of average value of a*(red and green), Jiangxi products(24.4) > Fujian products(19.2) ≈ Shuizhizi(19.3) in terms of b(yellow and blue), and Jiangxi products(49.8) > Fujian products(48.0) ≈ Shuizhizi(47.8) in terms of L~(brightness). The total content of the 15 components, 8 iridoid glycosides, 6 phenolic acids, and rutin in Jiangxi products was in the ranges of 65.53-99.64, 52.15-89.16, 6.10-11.83, and 0.145-1.81 mg·g(-1), respectively. The total amount of the 15 components, 8 iridoid glycosides, 6 phenolic acids, and rutin in Fujian products was in the ranges of 69.33-94.35, 63.52-85.19, 5.39-8.41, and 0.333-0.757 mg·g(-1), respectively. In Shuizhizi, the total content of the 15 components, 8 iridoid glycosides, 6 phenolic acids, and rutin was in the ranges of 77.35-85.98, 68.69-76.56, 7.30-9.05, and 0.368-0.697 mg·g~(-1), respectively. Pearson correlation analysis revealed that Gardeniae Fructus with leaner and longer fruit shape possessed lower content of total phenolic acids(the sum of the six phenolic acids) and rutin, but the correlation with iridoid glycosides was not high. Additionally, the higher content of total phenolic acids and rutin denoted the yellow coloration of Gardeniae Fructus, and the higher content of cryptochlorogenic acid, chlorogenic acid, and rutin meant the brighter color of Gardeniae Fructus. However, the higher content of geniposide and neochlorogenic acid and the lower content of deacetyl asperulosidic acid methyl ester led to the red coloration of Gardeniae Fructus. The results indicated that the morphological characters of Gardeniae Fructus were closely related to its chemical components. The more round shape and the yellower color reflected the higher content of phenolic acids and flavonoid, and Gardeniae Fructus with redder color had higher content of geniposide. OPLA-DA showed that the length/diameter and the content of six iridoid glycosides(gardoside, shanzhiside, gardenoside, genipin 1-gentiobioside, 6β-hydroxy geniposide, and deacetyl asperulosidic acid methyl ester), two phenolic acids(neochlorogenic acid and cryptochlorogenic acid) and rutin could be used as markers to distinguish three types of samples. This study provided experimental data for the scientific connotation of "quality evaluation through morphological identification" of Gardeniae Fructus.

摘要

本研究旨在探讨栀子15种非西红花苷类成分的含量与其外在性状(形状和颜色)之间的相关性。果实形状通过直尺和游标卡尺测量的长径比进行量化,所有样品的色度值L*、a*、b和ΔE由色差仪测定。采用Welch Ultimate XB C18色谱柱(4.6 mm×250 mm,5 μm),以乙腈溶液(A)和0.1%甲酸水溶液(B)为流动相进行梯度洗脱,流速为1.0 mL·min-1,柱温为30℃,检测波长为238 nm,建立了同时测定21批栀子样品中8种环烯醚萜苷、6种酚酸和1种黄酮含量的高效液相色谱(HPLC)法。通过多元统计分析,分析了各样品中15种成分的含量与形状和色度值之间的相关性。根据流通情况和传统经验,将21批栀子样品分为三类,即14批江西产栀子(小而圆,红黄)、4批福建产栀子(椭圆形,红色)和3批水栀子(栀子,最长,最红)。栀子样品的长径比平均值排序为江西产栀子(1.71)<福建产栀子(1.99)<水栀子(2.55);a*(红绿)平均值排序为江西产栀子(17.7)<福建产栀子(19.7)≈水栀子(19.6);b*(黄蓝)平均值排序为江西产栀子(24.4)>福建产栀子(19.2)≈水栀子(19.3);L*(亮度)平均值排序为江西产栀子(49.8)>福建产栀子(48.0)≈水栀子(47.8)。江西产栀子中15种成分、8种环烯醚萜苷、6种酚酸和芦丁的总含量分别在65.53 - 99.64、52.15 - 89.16、6.10 - 11.83和0.145 - 1.81 mg·g-1范围内。福建产栀子中15种成分、8种环烯醚萜苷、6种酚酸和芦丁的总含量分别在69.33 - 94.35、63.52 - 85.19、5.39 - 8.41和0.33

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