Md Atiar Rahman, Abida Sultana, Mohammad Forhad Khan, Rachasak Boonhok, Sharmin Afroz
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引用次数: 2
摘要
在过去的几十年里,补充和替代疗法在世界范围内越来越受欢迎。天然产品的所谓治疗特性在体外和体内都受到越来越多的审查,作为使其使用合法化的努力的一部分。其中一种产品是茶树油(TTO),这是一种挥发性精油,主要从澳大利亚本土植物千层莲(Melaleuca alternifolia)中提取,具有多种传统和工业应用,例如用于治疗皮肤感染的局部制剂。其抗炎相关的免疫调节作用也有报道。本文系统综述了TTO的抗炎作用及其主要成分,这些成分已显示出强大的免疫调节潜力。在全球公认的科学数据库(如Web of Science、Google Scholar、PubMed、ScienceDirect、Scopus)和Elsevier、Springer、Frontiers和Taylor & Francis等知名出版商上进行了广泛的电子文献检索,以进行数据管理。考虑到大多数药理研究仅在原油上进行,因此对提取的数据进行了严格分析,以进一步了解TTO作为药物配方或膳食补充剂用作神经保护剂的前景。此外,TTO的活性成分尚未得到很好的证明,其核心机制需要揭示,特别是抗炎和免疫调节作用导致神经保护。因此,本文试图将TTO的抗炎和免疫调节活性与其神经保护机制联系起来。
Tea tree oil, a vibrant source of neuroprotection via neuroinflammation inhibition: a critical insight into repurposing Melaleuca alternifolia by unfolding its characteristics.
Over the past few decades, complementary and alternative treatments have become increasingly popular worldwide. The purported therapeutic characteristics of natural products have come under increased scrutiny both in vitro and in vivo as part of efforts to legitimize their usage. One such product is tea tree oil (TTO), a volatile essential oil primarily obtained from the native Australian plant, Melaleuca alternifolia, which has diverse traditional and industrial applications such as topical preparations for the treatment of skin infections. Its anti-inflammatory-linked immunomodulatory actions have also been reported. This systematic review focuses on the anti-inflammatory effects of TTO and its main components that have shown strong immunomodulatory potential. An extensive literature search was performed electronically for data curation on worldwide accepted scientific databases, such as Web of Science, Google Scholar, PubMed, ScienceDirect, Scopus, and esteemed publishers such as Elsevier, Springer, Frontiers, and Taylor & Francis. Considering that the majority of pharmacological studies were conducted on crude oils only, the extracted data were critically analyzed to gain further insight into the prospects of TTO being used as a neuroprotective agent by drug formulation or dietary supplement. In addition, the active constituents contributing to the activity of TTO have not been well justified, and the core mechanisms need to be unveiled especially for anti-inflammatory and immunomodulatory effects leading to neuroprotection. Therefore, this review attempts to correlate the anti-inflammatory and immunomodulatory activity of TTO with its neuroprotective mechanisms.