Sie Yi-Yan, Chen Liang-Chieh, Li Cai-Wei, Wang Ching-Chiung, Li Cai-Jhen, Liu Der-Zen, Lee Mei-Hsien, Chen Lih-Geeng, Hou Wen-Chi
Ph.D. Program in Clinical Drug Development of Herbal Medicine, College of Pharmacy, Taipei Medical University, Taipei 110, Taiwan.
School of Medicine, College of Medicine, National Sun Yat-sen University, Kaohsiung 804, Taiwan.
Antioxidants (Basel). 2023 Nov 29;12(12):2058. doi: 10.3390/antiox12122058.
In this paper, the seeds and rinds of passion fruit, which are the agricultural waste of juice processing, were recycled to investigate their biological activities for sustainable use. De-oiled seed powders (S) were successively extracted by refluxing 95% ethanol (95E), 50E, and hot water (HW), respectively, to obtain S-95EE, S-50EE, and S-HWE. Dried rind powders were successively extracted by refluxing HW and 95E to obtain rind-HWE and rind-95EE, respectively. S-50EE and S-95EE showed the most potent extracts, such as anti-amyloid-β aggregations and anti-acetylcholinesterase inhibitors, and they exhibited neuroprotective activities against amyloid-β-treated or HO-treated SH-SY5Y cells. Scirpusin B and piceatannol were identified in S-95EE, S-50EE, and rind-HWE, and they showed anti-acetylcholinesterase activity at 50% inhibitory concentrations of 62.9 and 258.9 μM, respectively. Daily pretreatments of de-oiled seed powders and rind-HWE (600 mg/kg), S-95EE, and S-50EE (250 mg/kg) or scirpusin B (40 mg/kg) for 7 days resulted in improved learning behavior in passive avoidance tests and had significant differences ( < 0.05) compared with those of the control in scopolamine-induced ICR mice. The seeds and rinds of passion fruit will be recycled as materials for the development of functional foods, promoting neuroprotection and delaying the onset of cognitive dysfunctions.
在本文中,西番莲的种子和果皮作为果汁加工的农业废弃物被回收利用,以研究它们的生物活性,实现可持续利用。分别用95%乙醇(95E)、50%乙醇(50E)和热水(HW)对脱油种子粉(S)进行回流提取,得到S - 95EE、S - 50EE和S - HWE。干燥的果皮粉分别用HW和95E回流提取,得到果皮 - HWE和果皮 - 95EE。S - 50EE和S - 95EE表现出最强的提取物活性,如抗淀粉样蛋白 - β聚集和抗乙酰胆碱酯酶抑制作用,并且它们对经淀粉样蛋白 - β处理或HO处理的SH - SY5Y细胞表现出神经保护活性。在S - 95EE、S - 50EE和果皮 - HWE中鉴定出了水麦冬素B和白皮杉醇,它们的50%抑制浓度分别为62.9 μM和258.9 μM时表现出抗乙酰胆碱酯酶活性。对脱油种子粉和果皮 - HWE(600 mg/kg)、S - 95EE和S - 50EE(250 mg/kg)或水麦冬素B(40 mg/kg)进行每日预处理,持续7天,结果显示在东莨菪碱诱导的ICR小鼠被动回避试验中学习行为得到改善,与对照组相比有显著差异(<0.05)。西番莲的种子和果皮将被回收用作开发功能性食品材料,促进神经保护并延缓认知功能障碍的发生。