路依保斯的多靶点作用可防止缺血性中风引起的神经功能缺失和内皮功能障碍

IF 4.8 2区 医学 Q1 CHEMISTRY, MEDICINAL Journal of ethnopharmacology Pub Date : 2024-09-10 DOI:10.1016/j.jep.2024.118822
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引用次数: 0

摘要

民族药理学的相关性南非西开普省(Western Cape)的土著社区(Aspalathus linearis (Brum.f) R.Dahlgren)或称路依布斯(rooibos)自然生长在该地区,使用路依布斯作为药用植物的历史悠久。除了众所周知的抗氧化作用外,塞德伯格社区还特别将路依保斯用作治疗高血压的药物。鉴于高血压对血管内皮细胞的有害影响,路依保斯可能会直接或间接地影响血管健康。该研究旨在评估急性服用未发酵的路依保斯对中风幼虫斑马鱼模型血管健康的潜在益处。材料和方法通过 24 小时的泊纳替尼暴露诱导中风,在有或没有未发酵的路依保斯乙醇提取物(GreenOxithin™)水溶液的情况下进行。通过监测幼虫的运动和血栓的形成来评估中风的程度。结果 路依保斯限制了血栓的形成,防止了中风引起的幼虫运动障碍。在氧化还原状态方面,路依保斯处理可防止最初中风诱导 3 天后的脂质过氧化,从而减少了内源性抗氧化机制显著上调的需要。中风诱导的神经元(NeuroD1和TH)蛋白表达变化在罗布麻存在的情况下恢复正常,这表明罗布麻具有神经保护作用。在紧密连接蛋白方面,中风相关的 ZO-1 表达下降也被路依保斯所阻止。结论综合来看,活性数据和生理学评估表明,未发酵的路依保斯确实可以通过对多个靶点的作用对中风有益。因此,目前的数据进一步加深了我们对路易波士作用机制的了解,值得在未来开展研究,以确认路易波士在哺乳动物系统的目标组织中具有足够的生物利用度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Multi-targeted action of rooibos may protect against ischaemic stroke-induced neurological deficit and endothelial dysfunction

Ethnopharmacological relevance

Indigenous use communities in the Western Cape (South Africa) where Aspalathus linearis (Brum.f) R.Dahlgren - or rooibos - grows naturally, has a long history of using rooibos for medicinal purposes. Apart from its well-known antioxidant effect, the Cederberg community in particular has been using rooibos as a treatment for high blood pressure. Given the detrimental effects of high blood pressure on endothelial cells, rooibos may either directly or indirectly affect vascular health. This, together with more recent reports of neuroprotective effects, may position rooibos as complementary medicine in related vascular conditions such as ischaemic stroke.

Aims of the study

The study aimed to evaluate the potential benefit of acute administration of unfermented rooibos, on vascular health in a larval zebrafish model of stroke.

Materials and methods

Stroke was induced via 24-h ponatinib exposure, in the presence or absence of an aqueous solution of an ethanolic extract of unfermented Rooibos (GreenOxithin™). The magnitude of stroke was assessed by monitoring larval locomotion and thrombus formation. In terms of specific mechanisms probed, changes in redox status (MDA and TEAC), neurological markers (TH and NeuroD1) and endothelial health (tight/adhesion junction protein expression) were assessed.

Results

Rooibos treatment limited thrombus formation and prevented stroke-induced deficits on larval motility. In terms of redox status, rooibos treatment prevented lipid peroxidation 3 days after initial stroke induction, reducing the need for significant upregulation of endogenous antioxidant mechanisms. Stroke-induced changes in neuronal (NeuroD1 and TH) protein expression were normalized in the presence of rooibos, suggesting a neuroprotective role. In terms of tight junction proteins, stroke-related decreases in ZO-1 expression were again prevented by rooibos treatment. In addition, rooibos treatment may beneficially modulate levels of claudin-5 and VE-cadherin, to indirectly limit stroke-associated vascular dysfunction.

Conclusions

Taken together, activity data and physiological assessments suggest that unfermented rooibos may indeed have benefit in the context of stroke, via action at multiple targets. Thus, current data further our understanding of the mechanisms of actions of rooibos and warrant future research to confirm sufficient bioavailability of rooibos in target tissues, in mammalian systems.

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来源期刊
Journal of ethnopharmacology
Journal of ethnopharmacology 医学-全科医学与补充医学
CiteScore
10.30
自引率
5.60%
发文量
967
审稿时长
77 days
期刊介绍: The Journal of Ethnopharmacology is dedicated to the exchange of information and understandings about people''s use of plants, fungi, animals, microorganisms and minerals and their biological and pharmacological effects based on the principles established through international conventions. Early people confronted with illness and disease, discovered a wealth of useful therapeutic agents in the plant and animal kingdoms. The empirical knowledge of these medicinal substances and their toxic potential was passed on by oral tradition and sometimes recorded in herbals and other texts on materia medica. Many valuable drugs of today (e.g., atropine, ephedrine, tubocurarine, digoxin, reserpine) came into use through the study of indigenous remedies. Chemists continue to use plant-derived drugs (e.g., morphine, taxol, physostigmine, quinidine, emetine) as prototypes in their attempts to develop more effective and less toxic medicinals.
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