Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610041, China.
Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610041, China; University of Chinese Academy of Sciences, Beijing 100041, China.
J Chromatogr B Analyt Technol Biomed Life Sci. 2020 Mar 1;1140:122017. doi: 10.1016/j.jchromb.2020.122017. Epub 2020 Feb 3.
Dendrobium nobile is an important medicinal food beneficial for human health, well known for polysaccharides and dendrobine. For fast, accurate, and comprehensive comparison of its quality, high performance liquid chromatography (HPLC) fingerprinting method was constructed. Firstly, spring frost stressed D. nobile herb was observed for assessment. Decreased leaf thickness, chlorophyll, and drying rate, and increased free-proline indicated heavy damages on growth. But, the content of polysaccharides increased significantly in during-frost (DF), and dropped significantly in after-frost (AF). The content of dendrobine accumulated significantly in AF. Then, low similarity among HPLC fingerprints of before-frost (BF), DF, and AF, and 75.82% of significantly variant peaks indicated the changing of much more components. Especially, some less-polar components increased significantly in DF, but not in AF. Moreover, the highest suppression rates (SRs) to A549 lung cancer cells were up to 33.08% in DF, but only 15.63% and 12.12% in BF and AF. After association analysis, eleven less-polar components were found to be significantly and positively correlated to SRs under relatively high concentration. The result shows that frost stress not only causes damages to plant growth, but also promotes the accumulation of some health-beneficial bioactive metabolites. HPLC based fingerprinting method shows good applicability on quality evaluation and bioactivity correlation analysis of complexed agricultural products.
铁皮石斛是一种有益于人类健康的重要药食同源植物,其主要功效成分为多糖和石斛碱。为了快速、准确、全面地比较其质量,构建了高效液相色谱(HPLC)指纹图谱法。首先,观察春霜胁迫对铁皮石斛药材的影响。结果表明,春霜胁迫导致叶片变薄、叶绿素含量降低、失水率增加、脯氨酸含量升高,严重影响铁皮石斛的生长。然而,在春霜期(DF)铁皮石斛多糖含量显著增加,而在春霜后(AF)则显著下降。在 AF 期,石斛碱的含量显著增加。然后,对 BF、DF 和 AF 的 HPLC 指纹图谱进行比较,发现相似度较低,且有 75.82%的峰发生显著变化,表明有更多的成分发生了变化。特别是一些极性较小的成分在 DF 期显著增加,但在 AF 期没有增加。此外,DF 期对 A549 肺癌细胞的最高抑制率(SR)可达 33.08%,而 BF 和 AF 期的 SR 分别为 15.63%和 12.12%。通过关联分析,发现 11 种极性较小的成分在相对较高浓度下与 SR 呈显著正相关。结果表明,霜胁迫不仅会对植物生长造成损害,还会促进一些有益健康的生物活性代谢物的积累。基于 HPLC 的指纹图谱法在复杂农产品的质量评价和生物活性相关性分析方面具有良好的适用性。