Antifatigue Effects of the Aqueous Extracts of Myrtle Berries, Apple and Clove: An Animal Study

IF 1.8 4区 医学 Q3 PHARMACOLOGY & PHARMACY Iranian Journal of Pharmaceutical Research Pub Date : 2023-11-11 DOI:10.5812/ijpr-140323
Akram Alembagheri, Homa Hajimehdipour, Mona Khoramjouy, Somayeh Esmaeili, Mehrdad Faizi
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Abstract

Background: Fatigue is one of the most prevalent symptoms, increasing worldwide with no specific medication for fatigue. Iranian traditional medicine (ITM), or Persian medicine, is a reliable source for discovering natural medicine for diseases and their symptoms. Myrtus communis L. (Myrtle), Malus domestica Borkh. (Apple), and Syzygium aromaticum (L.) Merr. & L. M. Perry (Clove) have been utilized as brain and heart tonics in ITM. Based on ITM, cardiac tonics decrease fatigue by enhancing heart function and increasing blood flow to tissues. These plants, particularly myrtle berries, have been utilized as potent enlivening agents that reduce mental fatigue. Objectives: This study aims to investigate the effects of aqueous extracts of these plants on weight-loaded forced swimming (WLFS) tests and three doses of aqueous myrtle extract in an animal model of chronic sleep deprivation-induced fatigue. Methods: Five groups of rats (n = 6) were evaluated: sham, control, apple-treated, clove-treated, and myrtle-treated groups. After 28 days of treatment, the WLFS test was performed, and swimming time was recorded. Subsequently, central fatigue was induced in rats by chronic sleep deprivation for 21 days. Five groups of rats (n = 6) were evaluated: sham, control (sleep-deprived, which received water), and three sleep-deprived + treatment groups, which received aqueous myrtle extract (350, 700, and 1000 mg/kg). An open field test on the 20th day and a WLFS test on the 21st day were performed. Results: The myrtle berries significantly increased glucose, reduced lactate dehydrogenase (LDH) levels, and enhanced swimming time. Fatigue caused by chronic sleep deprivation increased malondialdehyde (MDA), tumor necrosis factor-α (TNF-α), interleukin-1β (IL-1β), and LDH while decreased superoxide dismutase (SOD), glucose, and swimming time. In all treatment groups, SOD levels and swimming time were increased, whereas MDA, IL-1β, and TNF-α levels were decreased significantly. Only the 1000 mg/kg dose significantly reduced LDH levels (P < 0.001). The treatment significantly improved the velocity and the total distance moved in the open-field test. Conclusions: According to the results, the myrtle berries reduced fatigue in two animal models, probably due to its phenolic compounds, flavonoids, and polysaccharides.
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桃金娘浆果、苹果和丁香水提物抗疲劳作用的动物研究
背景:疲劳是最普遍的症状之一,在世界范围内增加,没有特定的药物治疗疲劳。伊朗传统医学(ITM)或波斯医学是发现治疗疾病及其症状的天然药物的可靠来源。桃金娘(Myrtus communis L.);(苹果)和Syzygium aromaticum (L.)稳定。,L. M. Perry(丁香)在ITM中被用作大脑和心脏的滋补品。根据ITM,心脏补药通过增强心脏功能和增加组织血流量来减少疲劳。这些植物,特别是桃金娘浆果,已经被用作有效的提神剂,减少精神疲劳。目的:本研究旨在探讨这些植物的水提取物对慢性睡眠剥夺性疲劳动物模型负重强迫游泳(WLFS)试验和三种剂量的桃金娘水提取物的影响。方法:将大鼠分为5组(n = 6):假手术组、对照组、苹果组、丁香组、桃金娘组。治疗28 d后进行WLFS试验,记录游泳时间。随后,慢性睡眠剥夺大鼠21天诱导中枢疲劳。评估五组大鼠(n = 6):假手术组、对照组(剥夺睡眠,给予水)和3个剥夺睡眠+治疗组,给予桃金娘水提取物(350、700和1000 mg/kg)。第20天进行野外试验,第21天进行WLFS试验。结果:桃金娘果实显著提高葡萄糖,降低乳酸脱氢酶(LDH)水平,延长游泳时间。慢性睡眠剥夺引起的疲劳增加丙二醛(MDA)、肿瘤坏死因子-α (TNF-α)、白细胞介素-1β (IL-1β)和LDH,降低超氧化物歧化酶(SOD)、葡萄糖和游泳时间。在所有治疗组中,SOD水平和游泳时间均升高,MDA、IL-1β和TNF-α水平均显著降低。只有1000mg /kg剂量显著降低LDH水平(P <0.001)。该处理显著提高了裸地试验中的速度和总移动距离。结论:桃金娘果实具有明显的抗疲劳作用,可能与桃金娘果实中的酚类化合物、黄酮类化合物和多糖有关。
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来源期刊
CiteScore
3.40
自引率
6.20%
发文量
52
审稿时长
2 months
期刊介绍: The Iranian Journal of Pharmaceutical Research (IJPR) is a peer-reviewed multi-disciplinary pharmaceutical publication, scheduled to appear quarterly and serve as a means for scientific information exchange in the international pharmaceutical forum. Specific scientific topics of interest to the journal include, but are not limited to: pharmaceutics, industrial pharmacy, pharmacognosy, toxicology, medicinal chemistry, novel analytical methods for drug characterization, computational and modeling approaches to drug design, bio-medical experience, clinical investigation, rational drug prescribing, pharmacoeconomics, biotechnology, nanotechnology, biopharmaceutics and physical pharmacy.
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