College of Food and Bioengineering, Henan University of Science and Technology, Luoyang, China.
Department of Pharmacology, Jinling Hospital, Nanjing, China.
Biomed Chromatogr. 2020 Jun;34(6):e4823. doi: 10.1002/bmc.4823. Epub 2020 Mar 26.
A rapid and efficient analysis and screening method is adopted for cell affinity capture coupled with HPLC-MS (CAC-HPLC-MS) analysis of bioactive components that have possible efficiency against cardiovascular diseases. This method involves affinity capture, concentration, and separation of bioactive components from Danshen library using oxidatively damaged endothelial cells induced by H O , as well as analysis and identification of targeted compounds with HPLC and MS. It combines the specific interaction between cell membrane receptors and bioactive components with the powerful analysis and identification function of HPLC-MS. The CAC-HPLC-MS method was also used for analysis and screening of bioactive components from crude extracts of Danshen. A total of 19 components were found to be bound to oxidatively damaged endothelial cells with seven of these identified. Existing literature confirms that these seven components have many activities related to cardioprotective diseases. Therefore, the combination of biological affinity capture with HPLC-MS should be regarded as an attractive method with great potential for rapid and efficient screening of bioactive components related to anti-cardiovascular diseases from natural product libraries.
采用快速高效的分析筛选方法,即细胞亲和捕获与高效液相色谱-质谱联用(CAC-HPLC-MS)分析,对具有抗心血管疾病作用的生物活性成分进行分析和筛选。该方法采用氧化损伤的人脐静脉内皮细胞(HUVEC)作为亲和捕获剂,从丹参库中对生物活性成分进行亲和捕获、浓缩和分离,并用 HPLC 和 MS 对靶向化合物进行分析和鉴定。该方法将细胞膜受体与生物活性成分的特异性相互作用与 HPLC-MS 的强大分析鉴定功能相结合。该 CAC-HPLC-MS 方法还用于分析和筛选丹参粗提取物中的生物活性成分。结果发现,共有 19 种成分与氧化损伤的内皮细胞结合,其中 7 种成分得到了鉴定。现有文献证实,这 7 种成分具有许多与心脏保护疾病相关的活性。因此,将生物亲和捕获与 HPLC-MS 相结合,应被视为一种具有吸引力的方法,可用于从天然产物库中快速高效筛选与抗心血管疾病相关的生物活性成分。