Faculty of Medicine, Udayana University, Denpasar 80361, Indonesia.
Department of Biological Sciences, State Islamic University of Sunan Kalijaga (UIN Sunan Kalijaga), Yogyakarta 55281, Indonesia.
Molecules. 2023 Oct 11;28(20):7037. doi: 10.3390/molecules28207037.
Coffee became a beverage that was in demand in the world and consequently produced millions of tons of coffee byproducts namely coffee silverskin (CS). Unutilized CS will be waste and cause environmental pollution such as greenhouse gas emissions, landfill waste, and groundwater contamination. This is a research concern at this time, although many studies have been conducted to find newer applications of CS, exploration of its benefits in the health sector is still limited. Therefore, exploring the benefits of CS to prevent or delay aging will be very interesting to develop in functional food industry technology. Therefore, this study aims to report profiling metabolites or phytochemicals, biological activities in terms of antioxidant activity, and potential anti-aging of CS via molecular docking simulation and in vitro modulation of the mTOR/AMPK/SIRT1 pathway. Something new has been obtained from this work, the profile of phytocompounds, and biological activities both in molecular docking simulation and in vitro studies. Some of the compounds observed in Robusta CS extract (rCSE) such as Epicatechin, Kaempferol, and Quercitrin, and Arabica CS extract (aCSE) such as (+)-Catechin dan Naringin have promising potential as inhibitors of iNOS, mTOR, and HIF-1α via molecular docking simulation. Interestingly, the in vitro biological activity assay of antioxidant and anti-aging activity, rCSE showed the same promising potential as the results of a molecular docking simulation. More interestingly, AMPK/SIRT1/mTOR expressions are well modulated by rCSE compared to aCSE significantly ( < 0.05). This makes the rCSE have promising biological activity as a candidate for functional food development and/or treatment agent in combating free radicals that cause the aging process. In vivo studies and human trials are certainly needed to see the further efficacy of the rCSE in the future.
咖啡成为一种在世界范围内需求旺盛的饮料,因此产生了数以百万吨计的咖啡副产物,即咖啡银皮(CS)。未被利用的 CS 将成为废物,并造成环境污染,如温室气体排放、垃圾填埋场废物和地下水污染。这是当前研究关注的问题,尽管已经进行了许多研究来寻找 CS 的新应用,但 CS 在健康领域的益处仍在探索之中。因此,探索 CS 预防或延缓衰老的益处将非常有趣,可以开发功能性食品行业技术。因此,本研究旨在报告 CS 中代谢物或植物化学物质的特征、抗氧化活性方面的生物活性,以及通过分子对接模拟和体外调节 mTOR/AMPK/SIRT1 通路的潜在抗衰老作用。从这项工作中获得了一些新的发现,包括分子对接模拟和体外研究中植物化合物的特征和生物活性。在罗布斯塔 CS 提取物(rCSE)中观察到的一些化合物,如表儿茶素、山奈酚和槲皮素,以及阿拉比卡 CS 提取物(aCSE)中的(+)-儿茶素和柚皮苷,具有作为 iNOS、mTOR 和 HIF-1α抑制剂的潜在潜力通过分子对接模拟。有趣的是,体外抗氧化和抗衰老活性的生物活性测定表明,rCSE 具有与分子对接模拟结果相当的潜在潜力。更有趣的是,rCSE 对 AMPK/SIRT1/mTOR 表达的调节作用明显优于 aCSE(<0.05)。这使得 rCSE 作为功能性食品开发和/或治疗剂的候选物具有潜在的生物活性,用于对抗导致衰老过程的自由基。未来肯定需要进行体内研究和人体试验,以进一步观察 rCSE 的疗效。