Piskov Sergey, Timchenko Lyudmila, Grimm Wolf-Dieter, Rzhepakovsky Igor, Avanesyan Svetlana, Sizonenko Marina, Kurchenko Vladimir
.Institute of Live Science, North Caucasus Federal University, 355017 Stavropol, Russia.
.Witten/Herdecke University, Periodontology, School of Dentistry, Faculty of Health, A.-Herrhausen-Street 50, 58448 Witten, Germany.
Foods. 2020 Feb 7;9(2):160. doi: 10.3390/foods9020160.
In food biotechnology, is of great interest as a source of natural antioxidants and angiotensin-converting enzyme (ACE) inhibitors. However, research in this area has not yet been completed. The effect of various drying methods on the structural properties and the rehydration capacity of mushrooms was investigated in this paper. The content of secondary metabolites, the peptide profile, and the antioxidative effect and ACE inhibitory activity of dry mushrooms were investigated in vitro, simulating the process of gastrointestinal digestion. X-ray microtomography has confirmed that structure of lyophilic and sun-dried mushrooms is dominated by open pores, and in mushrooms dried with hot air and microwave, closed pores. Experiments have shown that the conditions of freeze drying and sun drying of provide a higher rehydration capacity of dried mushrooms. The maximum activity of radical absorption of the oyster mushroom after microwave drying was observed. The iron restoring capacity of the mushrooms is maximally maintained with microwave drying and hot-air drying. The properties of the antioxidant product with an emphasis on the high activity of inhibiting lipid oxidation of the mushroom maximized after drying in the sun. Mushrooms dried lyophilically and in the sun showed the highest ACE inhibitory activity.
在食品生物技术领域,作为天然抗氧化剂和血管紧张素转换酶(ACE)抑制剂的来源备受关注。然而,该领域的研究尚未完成。本文研究了各种干燥方法对蘑菇结构特性和复水能力的影响。体外模拟胃肠道消化过程,研究了干蘑菇中次生代谢产物的含量、肽谱以及抗氧化作用和ACE抑制活性。X射线显微断层扫描证实,亲水性干燥和晒干的蘑菇结构以开孔为主,而热风干燥和微波干燥的蘑菇以闭孔为主。实验表明,蘑菇的冷冻干燥和晒干条件能使干蘑菇具有更高的复水能力。观察到微波干燥后的平菇自由基吸收活性最高。微波干燥和热风干燥能最大程度地保持蘑菇的铁还原能力。抗氧化产品的特性,尤其是蘑菇抑制脂质氧化的高活性,在晒干后达到最大化。冷冻干燥和晒干的蘑菇表现出最高的ACE抑制活性。