Kaur Bhupinder, Maity Himadri Sekhar, Rakshit Madhulekha, Srivastav Prem Prakash, Nag Ahindra
Agricultural and Food Engineering Department, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal 721302, India.
Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal 721302, India.
ACS Food Sci Technol. 2021 Oct 10;1(10):1776-1786. doi: 10.1021/acsfoodscitech.1c00179. eCollection 2021 Nov 19.
Mango processing waste (MPW) is an inexpensive and rich source of valuable substances. Hence, the mango kernel powder (MKP) from four cultivars (Chausa, Neelum, Barahmasi, and Dashehari) was characterized for the selection of the best cultivar. The MKP of the best cultivar (Dashehari) was analyzed for the profiling of polyphenols using LC-MS/MS in both modes of ionization (positive and negative) and indicated the presence of 50 compounds with specific retention times. After identification, gallic acid (GA), an important industrial compound, was targeted and purified followed by its confirmation using NMR (600 MHz) and HRMS. The antioxidant activity (IC: 1.96 μg/mL) of extracted GA proposes its use as a natural antioxidant in novel food formulations. Additionally, SARS-CoV-2 main protease (M) was selected for molecular docking based virtual screening of seven major polyphenols (MKP), and the results were compared with hydroxychloroquine. The docking scores of targeted polyphenols revealed that three compounds (epicatechin, mangiferin, and quercetin) exhibited appreciable proteolytic activity against M. In this way, it is a favorable approach toward environmental safety on the standpoint of green chemistry owing to the use of food processing waste and elimination of the waste dumping/composting problems.
芒果加工废弃物(MPW)是一种价格低廉且富含宝贵物质的来源。因此,对四个品种(乔萨、尼尔姆、巴拉马西和达舍哈里)的芒果核粉(MKP)进行了特性分析,以选择最佳品种。使用LC-MS/MS在两种电离模式(正离子和负离子)下对最佳品种(达舍哈里)的MKP进行了多酚谱分析,结果表明存在50种具有特定保留时间的化合物。鉴定后,将重要的工业化合物没食子酸(GA)作为目标进行纯化,随后使用NMR(600 MHz)和HRMS进行确认。提取的GA的抗氧化活性(IC:1.96μg/mL)表明其可作为新型食品配方中的天然抗氧化剂。此外,选择了严重急性呼吸综合征冠状病毒2主要蛋白酶(M)用于基于分子对接的七种主要多酚(MKP)虚拟筛选,并将结果与羟氯喹进行比较。目标多酚的对接分数显示,三种化合物(表儿茶素、芒果苷和槲皮素)对M表现出明显的蛋白水解活性。从绿色化学的角度来看,由于利用了食品加工废弃物并消除了废弃物倾倒/堆肥问题,这是一种有利于环境安全的方法。