Key Laboratory of Food Processing and Quality Control, College of Food Science and Technology, Nanjing Agricultural University, Nanjing, China.
College of Horticulture, Zhongkai University of Agriculture and Engineering, Guangzhou, China.
J Food Sci. 2023 Aug;88(8):3341-3356. doi: 10.1111/1750-3841.16682. Epub 2023 Jul 8.
During the processing of maize, Stigma maydis, also known as corn silk, is normally discarded as waste. Phytochemical research was carried out on the S. maydis to use it as a valuable source of bioactive components. This research aimed to maximize the recovery of free and bound phenolic compounds from corn silk under optimal experimental conditions. Response surface design was operated to optimize the alkaline hydrolysis extraction of bound phytochemicals from corn silk based on total phenolic content and DPPH radical scavenging activity. The optimum conditions (i.e., NaOH concentration 2 M, digestion time 135 min, digestion temperature of 37.5°C, the solid-to-solvent ratio of 1:17.5, and acetone) were obtained. The optimum parameters were used to extract the corn silk. The structures of two compounds isolated from ethyl acetate extracts were then identified as friedelin (1) and (E)-4-(4-hydroxy-3-methoxyphenyl) but-3-en-2-one (2). The DPPH, H O , and ABTS % inhibition of the compounds is as follows: compound (1) 74.81%, 76.8%, 70.33% and compound (2) 70.37%, 56.70% and 57.46%, respectively. The current study has opened previously unexplored perspectives of the composition of bound compounds in corn silk and established the foundations for more effective processing and utilization of corn waste. PRACTICAL APPLICATION: Bound phenolic compounds from corn silk under optimal experimental conditions were obtained. Corn silk can be utilized as a type of medicinal herb as well as a source of inexpensive natural antioxidants.
在玉米加工过程中,玉米须通常作为废物丢弃。对玉米须进行植物化学研究,将其用作生物活性成分的有价值来源。本研究旨在根据总酚含量和 DPPH 自由基清除活性,最大限度地从玉米须中回收游离和结合酚类化合物。采用响应面设计,优化了基于总酚含量和 DPPH 自由基清除活性的玉米须中结合型植物化学物质的碱性水解提取条件。获得最佳条件(即 NaOH 浓度 2 M、消化时间 135 min、消化温度 37.5°C、固液比 1:17.5 和丙酮)。最佳参数用于提取玉米须。然后从乙酸乙酯提取物中分离出两种化合物的结构鉴定为friedelin(1)和(E)-4-(4-羟基-3-甲氧基苯基)-3-丁烯-2-酮(2)。化合物的 DPPH、HO 和 ABTS%抑制率如下:化合物(1)为 74.81%、76.8%、70.33%,化合物(2)为 70.37%、56.70%和 57.46%。本研究为玉米须中结合型化合物的组成开辟了以前未知的视角,并为更有效地处理和利用玉米废物奠定了基础。实际应用:从玉米须中获得最佳实验条件下的结合酚类化合物。玉米须可用作药草和廉价天然抗氧化剂的来源。