Romero-Márquez Jose M, Navarro-Hortal María D, Orantes Francisco J, Esteban-Muñoz Adelaida, Pérez-Oleaga Cristina M, Battino Maurizio, Sánchez-González Cristina, Rivas-García Lorenzo, Giampieri Francesca, Quiles José L, Forbes-Hernández Tamara Y
Department of Physiology, Institute of Nutrition and Food Technology "José Mataix Verdú", Biomedical Research Centre, University of Granada, 18016 Armilla, Spain.
Apinevada Analytical Laboratory of Bee Products, 18420 Lanjarón, Spain.
Antioxidants (Basel). 2023 Feb 7;12(2):404. doi: 10.3390/antiox12020404.
There is growing evidence that Alzheimer's disease (AD) can be prevented by reducing risk factors involved in its pathophysiology. Food-derived bioactive molecules can help in the prevention and reduction of the progression of AD. Honey, a good source of antioxidants and bioactive molecules, has been tied to many health benefits, including those from neurological origin. Monofloral avocado honey (AH) has recently been characterized but its biomedical properties are still unknown. The aim of this study is to further its characterization, focusing on the phenolic profile. Moreover, its antioxidant capacity was assayed both and . Finally, a deep analysis on the pathophysiological features of AD such as oxidative stress, amyloid-β aggregation, and protein-tau-induced neurotoxicity were evaluated by using the experimental model . AH exerted a high antioxidant capacity and . No toxicity was found in at the dosages used. AH prevented ROS accumulation under AAPH-induced oxidative stress. Additionally, AH exerted a great anti-amyloidogenic capacity, which is relevant from the point of view of AD prevention. AH exacerbated the locomotive impairment in a model of tauopathy, although the real contribution of AH remains unclear. The mechanisms under the observed effects might be attributed to an upregulation of daf-16 as well as to a strong ROS scavenging activity. These results increase the interest to study the biomedical applications of AH; however, more research is needed to deepen the mechanisms under the observed effects.
越来越多的证据表明,阿尔茨海默病(AD)可以通过减少其病理生理学中涉及的风险因素来预防。食物来源的生物活性分子有助于预防和减少AD的进展。蜂蜜是抗氧化剂和生物活性分子的良好来源,与许多健康益处相关,包括那些源于神经方面的益处。单花鳄梨蜂蜜(AH)最近已被表征,但其生物医学特性仍不清楚。本研究的目的是进一步对其进行表征,重点关注酚类成分。此外,还测定了其抗氧化能力。最后,通过实验模型对AD的病理生理特征如氧化应激、淀粉样β蛋白聚集和tau蛋白诱导的神经毒性进行了深入分析。AH具有较高的抗氧化能力。在所使用的剂量下,未在中发现毒性。AH可预防AAPH诱导的氧化应激下ROS的积累。此外,AH具有很强的抗淀粉样蛋白生成能力,从AD预防的角度来看这是相关的。在tau病变模型中,AH加剧了运动功能障碍,尽管AH的实际作用仍不清楚。观察到的效应背后的机制可能归因于daf-16的上调以及强大的ROS清除活性。这些结果增加了对研究AH生物医学应用的兴趣;然而,需要更多的研究来深入了解观察到的效应背后的机制。