Department of Food Science, Stellenbosch University, Private Bag X1, Matieland-Stellenbosch 7602, South Africa.
Molecules. 2013 May 2;18(5):5072-90. doi: 10.3390/molecules18055072.
Phenolic compounds are abundant secondary metabolites in plums, with potential health benefits believed to be due to their antioxidant activity, amongst others. Phenolic characterisation of South African Prunus salicina Lindl. plums is necessary to fully evaluate their potential health benefits. An HPLC method using diode-array detection (DAD) for quantification of phenolic compounds was improved and fluorescence detection (FLD) was added for quantification of flavan-3-ols. Validation of the HPLC-DAD-FLD method showed its suitability for quantification of 18 phenolic compounds, including flavan-3-ols using FLD, and phenolic acids, anthocyanins and flavonols using DAD. The method was suitable for characterisation of the phenolic composition of 11 South African plum cultivars and selections, including various types with yellow and red skin and flesh. The method was used in conjunction with mass spectrometry (MS) to identify 24 phenolic compounds. Neochlorogenic acid and cyanidin-3-O-glucoside were the major compounds in most of the plums, while cyanidin-3-O-glucoside was absent in Sun Breeze plums with yellow skin and flesh. Post-column on-line coupling of the ABTS•+ scavenging assay with HPLC-DAD enabled qualitative evaluation of the relative contribution of individual phenolic compounds to the antioxidant activity. The flavan-3-ols, neochlorogenic acid and cyanidin-3-O-glucoside displayed the largest antioxidant response peaks.
酚类化合物是李属植物中丰富的次生代谢产物,其具有抗氧化活性等潜在的健康益处。南非西洋李中酚类化合物的特征分析对于充分评估其潜在的健康益处是必要的。本研究采用二极管阵列检测(DAD)的 HPLC 方法对酚类化合物进行定量,并添加荧光检测(FLD)对黄烷-3-醇进行定量。HPLC-DAD-FLD 方法的验证表明,该方法适用于 18 种酚类化合物的定量分析,包括使用 FLD 对黄烷-3-醇进行定量,以及使用 DAD 对酚酸、花青素和类黄酮进行定量。该方法适用于 11 种南非李品种和选系的酚类成分特征分析,包括各种黄皮和红皮果肉的品种。该方法与质谱联用(MS)一起用于鉴定 24 种酚类化合物。新绿原酸和矢车菊素-3-O-葡萄糖苷是大多数李属植物中的主要化合物,而 Sun Breeze 黄皮黄肉李属植物中则不存在矢车菊素-3-O-葡萄糖苷。ABTS•+清除测定的柱后在线偶联与 HPLC-DAD 相结合,能够定性评价单个酚类化合物对抗氧化活性的相对贡献。黄烷-3-醇、新绿原酸和矢车菊素-3-O-葡萄糖苷显示出最大的抗氧化响应峰。