Sevindik Mustafa, Gürgen Ayşenur, Khassanov Vadim Tagirovich, Bal Celal
Department of Biology, Engineering and Natural Sciences Faculty, Osmaniye Korkut Ata University, 80000 Osmaniye, Türkiye.
Department of Industrial Engineering, Engineering and Natural Sciences Faculty, Osmaniye Korkut Ata University, 80000 Osmaniye, Türkiye.
Foods. 2024 May 16;13(10):1560. doi: 10.3390/foods13101560.
Mushrooms are one of the indispensable elements of human diets. Edible mushrooms stand out with their aroma and nutritional properties. In this study, some biological activities of the wild edible mushroom were determined. In this context, firstly, the most suitable extraction conditions of the fungus in terms of biological activity were determined. First, 64 different experiments were performed with the Soxhlet device under 40-70 °C extraction temperature, 3-9 h extraction time, and 0.5-2 mg/mL extraction conditions. As a result, a total antioxidant status (TAS) analysis was performed, and the extraction conditions were optimized so that the objective function was the maximum TAS value. The data obtained from the experimental study were modeled with artificial neural networks (ANNs), one of the artificial intelligence methods, and optimized with a genetic algorithm (GA). All subsequent tests were performed using the extract obtained under optimum extraction conditions. The antioxidant capacity of the mushroom was assessed using Rel assay kits and the DPPH and FRAP techniques. The agar dilution method was used to measure the antimicrobial activity. The anti-Alzheimer activity was assessed based on the activities of acetylcholinesterase (AChE) and butyrylcholinesterase (BChE). The antiproliferative activity was assessed against the A549 cancer cell line. The total phenolic content was measured using the Folin-Ciocalteu reagent. The measurement of total flavonoids was conducted using the aluminum chloride test. LC-MS/MS equipment was used to screen for the presence of standard chemicals. The optimum extraction conditions were found to be a 60.667 °C temperature, 7.833 h, and 1.98 mg/mL. It was determined that the mushroom has high antioxidant potential. It was determined that the substance was successful at combating common bacterial and fungal strains when used at dosages ranging from 25 to 200 µg/mL. The high antiproliferative effect of the substance was attributed to its heightened concentration. The anti-AChE value was found to be 13.85 μg/mL, while the anti-BChE value was confirmed to be 28.00 μg/mL. The phenolic analysis of the mushroom revealed the presence of 13 chemicals. This investigation found that exhibits robust biological activity when extracted under appropriate circumstances.
蘑菇是人类饮食中不可或缺的元素之一。可食用蘑菇以其香气和营养特性脱颖而出。在本研究中,测定了野生可食用蘑菇的一些生物活性。在此背景下,首先确定了该真菌在生物活性方面最合适的提取条件。首先,使用索氏提取器在40 - 70°C的提取温度、3 - 9小时的提取时间和0.5 - 2毫克/毫升的提取条件下进行了64次不同的实验。结果,进行了总抗氧化状态(TAS)分析,并对提取条件进行了优化,以使目标函数为最大TAS值。从实验研究中获得的数据用人工智能方法之一的人工神经网络(ANNs)进行建模,并用遗传算法(GA)进行优化。所有后续测试均使用在最佳提取条件下获得的提取物进行。使用Rel检测试剂盒以及DPPH和FRAP技术评估了蘑菇的抗氧化能力。采用琼脂稀释法测定抗菌活性。基于乙酰胆碱酯酶(AChE)和丁酰胆碱酯酶(BChE)的活性评估抗阿尔茨海默病活性。针对A549癌细胞系评估抗增殖活性。使用福林 - 酚试剂测定总酚含量。使用氯化铝试验进行总黄酮的测定。使用LC - MS/MS设备筛选标准化学物质的存在。发现最佳提取条件为温度60.667°C、时间7.833小时和浓度1.98毫克/毫升。确定该蘑菇具有高抗氧化潜力。确定该物质在25至200微克/毫升的剂量范围内使用时,对常见细菌和真菌菌株具有抗菌成功效果。该物质的高抗增殖作用归因于其浓度升高。发现抗AChE值为13.85微克/毫升,而抗BChE值经确认 为28.00微克/毫升。对蘑菇的酚类分析揭示了13种化学物质的存在。本研究发现,在适当条件下提取时,该蘑菇具有强大的生物活性。