Mangifera indica

印度芒果
  • 文章类型: Journal Article
    本研究旨在评估芒果对龋齿的影响。整个工厂,包括树叶,水果,根,和鲜花,具有几个世纪以来用于治疗各种疾病的各种治疗特征。这项系统的审查旨在确定一种廉价的,简单,防治龋齿的有效方法。搜索是在用英语写的研究中进行的,ThedatabaseofabstractsconcentratingontheeffectsofMangiferaindica(Mango)ondentalcarriesdetectedinPubmed,Scopus,谷歌学者,和中央。总的来说,我们找到了37篇文章。收集了截至2022年8月发表的相关英语文章,筛选,并审查。搜索字词包含\"Mangiferaindica\"和\"龋齿\"或\"变形链球菌\"或\"牙齿脱矿。“对于我们的系统回顾分析,我们纳入了3项随机对照试验研究,共研究130人,其中110人为8至14岁的儿童,20人为20至25岁的成年人。这些实验都使用含有来自印度芒果提取物的漱口水。总之,在两项独立的研究中已经证明,唾液的PH会显著增加。此外,在另一项研究中已经观察到S.突变体的减少。总的来说,结论是芒果提取物漱口水对减少引起龋齿的细菌非常有效。然而,我们坚信,开展更详细的体内研究,以进一步证实在龋齿治疗中对Mangiferaindica的影响是必要的.
    The present study aimed to evaluate the effect of Mangifera indica (mango) on dental caries. The entire plant, including the leaves, fruit, roots, and flowers, has various therapeutic characteristics used for centuries to cure various illnesses. This systematic review aimed to identify an inexpensive, simple, and effective method of preventing and controlling dental caries. The search was performed among the studies written in English, the database of abstracts concentrating on the effects of Mangifera indica (Mango) on dental caries detected in Pubmed, Scopus, Google Scholar, and Central. In total, we find 37 articles. The relevant English language articles published up to August 2022 were collected, screened, and reviewed. Search words contained \"Mangifera indica\" and \"dental caries\" or \"Streptococcus mutans\" or \"tooth demineralization.\" For our systematic review analysis, we included 3 randomized controlled trial studies studying a total of 130 people, of whom 110 were children aged 8 to 14 and 20 were adults aged 20 to 25. These experiments all employed mouthwash containing an extract from Mangifera indica. In conclusion, it has been proven in 2 separate studies that saliva\'s PH will increase significantly. In addition, a reduction of S. mutants has been observed in another research. Overall, it was concluded that mango extract mouthwash is highly effective in decreasing the bacteria that can cause dental caries. however, we firmly believe that conduction of more detailed in vivo studies regarding Mangifera indica implications in dental caries treatment is essentially needed for further confirmation.
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  • 文章类型: Journal Article
    由于天然产物比合成化合物具有相对较低的毒性,因此在利用天然产物作为有效的药物治疗剂方面的研究发展有所变化。在天然产品中,芒果苷是一种天然的C-葡萄糖基黄原酸多酚,具有显著的药理活性。新的证据表明芒果苷对各种肾脏疾病的治疗益处,包括肾损伤,糖尿病肾病,肾纤维化,高尿酸性肾病,和狼疮性肾炎,在实验动物模型中。芒果苷诱导的抗氧化反应导致重要的功能,例如防止肾脏炎症,抑制肾细胞凋亡,激活自噬,引起免疫调节,调节肾尿酸转运蛋白和调节细胞信号通路。这篇综述的目的是简要概述芒果苷的体外/体内肾脏保护作用以及预防肾脏疾病的潜在机制。由于芒果苷在治疗肾脏疾病方面具有出色的治疗潜力,因此了解芒果苷的药理作用非常重要。因此,除了这次审查,针对核因子κB(NF-κB)和可溶性环氧化物水解酶(sEH)进行计算机分子对接,以研究芒果苷的作用机理。认为芒果苷是安全的肾保护分子。观察到的积极作用归因于抑制由NF-κB和sEH上调引起的炎症和氧化应激激活。进一步需要对芒果苷在临床试验中的功效和安全性进行研究,以证实其作为人类肾脏疾病治疗剂的潜在药物。
    There is a swing in research developments concerning the utilization of natural products as effective pharmacotherapeutic agents due to their comparatively lower toxicities than synthetic compounds. Among natural products, mangiferin is a natural C-glucosyl xanthonoid polyphenol with remarkable pharmacological activities. Emerging evidence indicates the therapeutic benefits of mangiferin against various kidney disorders, including renal injury, diabetic nephropathy, renal fibrosis, hyperuricemic nephropathy, and lupus nephritis, in experimental animal models. The mangiferin induced antioxidant response resulting in vital functions, such as protection against renal inflammation, inhibits renal cell apoptosis, activates autophagy, causes immunomodulation, regulates renal urate transporters and modulates cell signalling pathways. The purpose of this review provide a brief overview of the in vitro/in vivo reno-protective effect of mangiferin and the underlying mechanism(s) in protecting against kidney disorders. Understanding the pharmacological actions of mangiferin is prominence due to its excellent therapeutic potential in managing kidney disorders. Thus, in addition to this review, in-silico molecular docking is performed against nuclear factor kappa B (NF-κB) and soluble epoxide hydrolase (sEH) to study the mechanism of action of mangiferin. It is believed that mangiferin is a safe reno-protective molecule. The observed positive effects are attributed to the inhibition of inflammation caused by NF-κB and sEH upregulation and oxidative stress activation. Studies on the efficacy and safety of mangiferin in clinical trials are further warranted to confirm its medicinal potential as therapeutic agent for kidney disorders in humans.
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  • 文章类型: Journal Article
    骨关节炎(OA)是影响老年人和中年人群的最常见的关节炎形式。尽管已经开发了各种疗法来阻止软骨的结构恶化,目前的治疗方法仅限于临床上延缓OA的进展。因此,研究新的软骨保护和预防软骨退变的治疗药物是关键。近年来,含有可水解单宁(HT)的食品因其相关的抗炎作用而引起了人们的极大兴趣。本范围审查的重点是概述HT及其代谢物在预防或缓解OA过程中的治疗潜力的证据。对PubMed和Scopus数据库进行了广泛的搜索,得出了156篇文章。排除审查而非相关记录后,共检索到31篇文章。虽然只有一些论文没有考虑HTs的生物转化,最近的研究还研究了HT代谢物的作用。更大规模的临床试验,通过对HT代谢的深入分析,仍然需要解开这些化合物在OA中的潜在益处,为改善促炎细胞因子诱导的软骨细胞功能障碍和损伤的饮食策略的发展铺平了道路。
    Osteoarthritis (OA) is the most common form of arthritis affecting both the elderly and the middle-aged population. Although various therapeutics have been developed to arrest the structural deterioration of cartilage, the current treatments are limited to delay the progress of OA clinically. Therefore, it is pivotal to study new therapeutic agents for chondroprotection and the prevention of cartilage degeneration. Hydrolyzable tannin (HT)-containing foods aroused considerable interest in recent years for their relevant anti-inflammatory effects. The focus of this scoping review is to provide an overview of the evidence of the therapeutic potential of HTs and their metabolites in preventing or alleviating the course of OA. A broad search of PubMed and Scopus databases on this topic resulted in 156 articles. After the exclusion of reviews and not relevant records, 31 articles were retrieved. Although only some papers did not consider the biotransformation of HTs, most recent studies also have investigated the effect of HT metabolites. Further larger clinical trials, with an in-deep analysis of HT metabolization, are still needed to unravel the potential benefits of these compounds in OA, paving the way towards the development of a dietary strategy for the improvement of pro-inflammatory cytokine-induced chondrocyte dysfunctions and injuries.
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  • 文章类型: Journal Article
    芒果(Mangiferaindica)已被认为是具有潜在药物和营养应用的生物活性化合物的丰富来源,并吸引了越来越多的研究兴趣。植物化学研究表明,酚类化合物是M的最重要的生物活性成分之一。超声和微波辅助提取和超临界流体已被用来获得生物活性分子,如酚酸,萜类化合物,类胡萝卜素,和脂肪酸。这些植物化学物质表现出抗氧化剂,抗菌,抗炎,和抗癌活性,根据来源(树皮,叶子,种子,鲜花,或果皮)和提取方法会在结构和生物活性上存在差异。这篇综述探讨了生物活性化合物,提取技术,和不同部分的生物功能,作为营养品和功能化合物,具有潜在的治疗药物和功能食品的应用。©2021年化学工业学会。
    Mango (Mangifera indica) has been recognized as a rich source of bioactive compounds with potential pharmaceutical and nutraceutical applications and has attracted increasing interest from research. Phytochemistry studies have demonstrated that phenolic compounds are one of the most important biologically active components of M. indica extracts. Ultrasound- and microwave-assisted extractions and supercritical fluids have been employed to obtain bioactive molecules, such as phenolic acids, terpenoids, carotenoids, and fatty acids. These phytochemicals exhibit antioxidant, antimicrobial, anti-inflammatory, and anticancer activity, and depending on the source (bark, leaves, seeds, flowers, or peel) and extraction method there will be differences in the structure and bioactivity. This review examines the bioactive compounds, extraction techniques, and biological function of different parts of M. indica of great importance as nutraceuticals and functional compounds with potential application as therapeutic agents and functional foods. © 2021 Society of Chemical Industry.
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  • 文章类型: Journal Article
    Memory impairment (MI) is one of the predominant criteria generally used to identify schizophrenia, dementia and amnesia that are associated with neurodegenerative disorders by evaluating patient\'s cognitive symptoms. To date, there is no available treatment that can completely mitigate MI. Currently, there is a trend in recent investigations towards symptomatic therapy approaches using a variety of natural compounds. Mangiferin is one of them that have been investigated extensively. Mangiferin is a naturally occurring potent glucoxilxanthone and is mainly isolated from the Mangifera indica (Mango) plant. This review is aimed at providing a comprehensive overview on the efficacy of mangiferin on MI, based on in-vivo animal studies. After screening through articles identified from Scopus and PubMed based on the inclusion and exclusion criteria, a total of 11 articles between 2009 and 2019 were included. The minimum and maximum dose of mangiferin were 10 and 200 mg/kg respectively and administered over the period of 12-154 days. The results of 11 articles showed that mangiferin effectively improved spatial recognition, episodic aversive events, short- and long-term memories primarily occurring via its antioxidant and anti-inflammatory effects. The outcomes of the review revealed that mangiferin improves memory and cognitive impairment in different animal models, indicating that it has potential preventive and therapeutic roles in MI.
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