Nishida Takumi, Horita Chihoko, Imagawa Mikiya, Hibarino Momoka, Tateno Sayaka, Kubo Yurina, Kawabe Momoko, Morishita Naoki, Endo Shin, Shiozaki Kazuhiro
Department of Food Life Sciences, Faculty of Fisheries, Kagoshima University, Kagoshima, Japan.
Course of Biological Science and Technology, The United Graduate School of Agricultural Sciences, Kagoshima University, Kagoshima, Japan.
Front Pharmacol. 2023 Aug 17;14:1213252. doi: 10.3389/fphar.2023.1213252. eCollection 2023.
Anxiety is a symptom of various mental disorders, including depression. Severe anxiety can significantly affect the quality of life. Hesperidin (Hes), a flavonoid found in the peel of citrus fruits, reportedly has various functional properties, one of which is its ability to relieve acute and chronic stress. However, Hes is insoluble in water, resulting in a low absorption rate in the body and low bioavailability. Glucosyl hesperidin (GHes) is produced by adding one glucose molecule to hesperidin. Its water solubility is significantly higher than that of Hes, which is expected to improve its absorption into the body and enhance its effects. However, its efficacy in alleviating anxiety has not yet been investigated. Therefore, in this study, the anxiolytic effects of GHes were examined in a zebrafish model of anxiety. Long-term administration of diets supplemented with GHes did not cause any toxicity in the zebrafish. In the novel tank test, zebrafish in the control condition exhibited an anxious behavior called freezing, which was significantly suppressed in GHes-fed zebrafish. In the black-white preference test, which also induces visual stress, GHes-fed zebrafish showed significantly increased swimming time in the white side area. Furthermore, in tactile (low water-level stress) and olfactory-mediated stress (alarm substance administration test) tests, GHes suppressed anxious behavior, and these effects were stronger than those of Hes. Increased noradrenaline levels in the brain generally cause freezing; however, in zebrafish treated with GHes, the amount of noradrenaline after stress was lower than that in the control group. Activation of c-fos/ERK/Th, which is upstream of the noradrenaline synthesis pathway, was also suppressed, while activation of the CREB/BDNF system, which is vital for neuroprotective effects, was significantly increased. These results indicate that GHes has a more potent anxiolytic effect than Hes , which may have potential applications in drug discovery and functional food development.
焦虑是包括抑郁症在内的多种精神障碍的一种症状。严重焦虑会显著影响生活质量。橙皮苷(Hes)是一种存在于柑橘类水果果皮中的黄酮类化合物,据报道具有多种功能特性,其中之一是其缓解急性和慢性应激的能力。然而,Hes不溶于水,导致其在体内的吸收率低且生物利用度低。葡萄糖基橙皮苷(GHes)是通过向橙皮苷添加一个葡萄糖分子而产生的。其水溶性明显高于Hes,预计可提高其在体内的吸收并增强其效果。然而,其缓解焦虑的功效尚未得到研究。因此,在本研究中,在斑马鱼焦虑模型中检测了GHes的抗焦虑作用。长期给予添加了GHes的饲料对斑马鱼没有造成任何毒性。在新鱼缸试验中,处于对照条件下的斑马鱼表现出一种称为僵住的焦虑行为,而在喂食GHes的斑马鱼中这种行为得到了显著抑制。在同样会引发视觉应激的黑白偏好试验中,喂食GHes的斑马鱼在白色区域的游泳时间显著增加。此外,在触觉(低水位应激)和嗅觉介导应激(警报物质给药试验)试验中,GHes抑制了焦虑行为,且这些作用比Hes更强。大脑中去甲肾上腺素水平升高通常会导致僵住;然而,在用GHes处理的斑马鱼中,应激后的去甲肾上腺素量低于对照组。去甲肾上腺素合成途径上游的c-fos/ERK/Th的激活也受到抑制,而对神经保护作用至关重要的CREB/BDNF系统的激活则显著增加。这些结果表明,GHes具有比Hes更强的抗焦虑作用,这可能在药物发现和功能性食品开发中具有潜在应用。