{"title":"薄荷中薄荷醇的抗肥厚作用——心脏肥厚综述","authors":"Anitha Nagarajan, Doss Va","doi":"10.2174/2210315512666220429110704","DOIUrl":null,"url":null,"abstract":"\n\nThe abnormal enlargement or thickening of the heart muscle leads to diminishment of ventricular wall tension which helps to keep up the outstanding task at hand in terms of capacity and effectiveness. There are two kinds of hypertrophy: physiological and pathological. Initially, what evolves as an adaptive reaction, advances to heart failure. Different cellular signaling pathways control each type of hypertrophy. Peppermint - Mentha x piperita, a hybrid of Mentha spicata and Mentha aquatica belongs to the family of Lamiaceae. The peppermint oil has high menthol content and has many useful targets in cardiovascular disorders, such as hypertension, coronary heart disease, etc.,\n\n\n\nThe objective of this review article is to investigate the antihypertrophic activity of Mentha x piperita which is not yet established\n\n\n\nFor manuscript preparation, we had used all accessible international databases, traditional books (Regular books in English), and electronic resources (Google Scholar, PubMed, Science Direct, Springer, Wiley, etc.,), unpublished data (thesis, R&D reports, and dissertations).\n\n\n\nMenthol may activate Transient receptor potential cation channel subfamily M (melastatin) member 8 (TRMP8) channels resulting in increased cytosolic calcium concentration and vasorelaxation activity. Menthol is known to stimulate the elevation of TRPM8 protein in the endothelium, Vascular Smooth Muscle (VSM), and vascular afferent nerve strands, while obstructing VSM L-type Calcium Channels (LCC), contributing to both the cardiovascular and vasoactive properties of peppermint. In vivo experiments proved that glucagon plays a significant role in the preventive effect of menthol (as TRPM8 modulator) against a high-fat diet (HFD) induced weight gain and related complications.\n\n\n\nDue to the efficacy of Menthol (Mentha x piperita) in its cardioprotective properties, understanding the actual mechanisms related to the efficacy of Menthol on CVD can be the subject of future studies.\n","PeriodicalId":56153,"journal":{"name":"Natural Products Journal","volume":" ","pages":""},"PeriodicalIF":0.7000,"publicationDate":"2022-04-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":"{\"title\":\"Antihypertrophic Effect of Menthol from Mentha x piperita - Cardiac Hypertrophy Review\",\"authors\":\"Anitha Nagarajan, Doss Va\",\"doi\":\"10.2174/2210315512666220429110704\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"\\n\\nThe abnormal enlargement or thickening of the heart muscle leads to diminishment of ventricular wall tension which helps to keep up the outstanding task at hand in terms of capacity and effectiveness. There are two kinds of hypertrophy: physiological and pathological. Initially, what evolves as an adaptive reaction, advances to heart failure. Different cellular signaling pathways control each type of hypertrophy. Peppermint - Mentha x piperita, a hybrid of Mentha spicata and Mentha aquatica belongs to the family of Lamiaceae. The peppermint oil has high menthol content and has many useful targets in cardiovascular disorders, such as hypertension, coronary heart disease, etc.,\\n\\n\\n\\nThe objective of this review article is to investigate the antihypertrophic activity of Mentha x piperita which is not yet established\\n\\n\\n\\nFor manuscript preparation, we had used all accessible international databases, traditional books (Regular books in English), and electronic resources (Google Scholar, PubMed, Science Direct, Springer, Wiley, etc.,), unpublished data (thesis, R&D reports, and dissertations).\\n\\n\\n\\nMenthol may activate Transient receptor potential cation channel subfamily M (melastatin) member 8 (TRMP8) channels resulting in increased cytosolic calcium concentration and vasorelaxation activity. Menthol is known to stimulate the elevation of TRPM8 protein in the endothelium, Vascular Smooth Muscle (VSM), and vascular afferent nerve strands, while obstructing VSM L-type Calcium Channels (LCC), contributing to both the cardiovascular and vasoactive properties of peppermint. 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引用次数: 1
摘要
心肌的异常增大或增厚导致心室壁张力减弱,这有助于在能力和有效性方面保持手头的突出任务。肥大有两种:生理性和病理性。最初,作为一种适应性反应发展为心力衰竭。不同的细胞信号通路控制每种类型的肥大。薄荷薄荷,薄荷和水薄荷的杂交种,属于唇形科。薄荷油具有高薄荷醇含量,在高血压、冠心病等心血管疾病中有许多有用的靶点。本文的目的是研究尚未建立的薄荷的抗高血压活性。为了编写手稿,我们使用了所有可访问的国际数据库,传统书籍(英文普通书籍)和电子资源(Google Scholar、PubMed、Science Direct、Springer、Wiley等)、未发表的数据(论文、研发报告和学位论文)。薄荷醇可激活瞬时受体电位阳离子通道亚家族M(美司他汀)成员8(TRMP8)通道,导致胞浆钙浓度和血管舒张活性增加。众所周知,薄荷醇可刺激内皮、血管平滑肌(VSM)和血管传入神经链中TRPM8蛋白的升高,同时阻断VSM L型钙通道(LCC),有助于薄荷的心血管和血管活性特性。体内实验证明,胰高血糖素在薄荷醇(作为TRPM8调节剂)对高脂肪饮食(HFD)诱导的体重增加和相关并发症的预防作用中发挥着重要作用。由于薄荷醇(Mentha x piperita)具有心脏保护特性,了解薄荷醇治疗心血管疾病的实际机制可能是未来研究的主题。
Antihypertrophic Effect of Menthol from Mentha x piperita - Cardiac Hypertrophy Review
The abnormal enlargement or thickening of the heart muscle leads to diminishment of ventricular wall tension which helps to keep up the outstanding task at hand in terms of capacity and effectiveness. There are two kinds of hypertrophy: physiological and pathological. Initially, what evolves as an adaptive reaction, advances to heart failure. Different cellular signaling pathways control each type of hypertrophy. Peppermint - Mentha x piperita, a hybrid of Mentha spicata and Mentha aquatica belongs to the family of Lamiaceae. The peppermint oil has high menthol content and has many useful targets in cardiovascular disorders, such as hypertension, coronary heart disease, etc.,
The objective of this review article is to investigate the antihypertrophic activity of Mentha x piperita which is not yet established
For manuscript preparation, we had used all accessible international databases, traditional books (Regular books in English), and electronic resources (Google Scholar, PubMed, Science Direct, Springer, Wiley, etc.,), unpublished data (thesis, R&D reports, and dissertations).
Menthol may activate Transient receptor potential cation channel subfamily M (melastatin) member 8 (TRMP8) channels resulting in increased cytosolic calcium concentration and vasorelaxation activity. Menthol is known to stimulate the elevation of TRPM8 protein in the endothelium, Vascular Smooth Muscle (VSM), and vascular afferent nerve strands, while obstructing VSM L-type Calcium Channels (LCC), contributing to both the cardiovascular and vasoactive properties of peppermint. In vivo experiments proved that glucagon plays a significant role in the preventive effect of menthol (as TRPM8 modulator) against a high-fat diet (HFD) induced weight gain and related complications.
Due to the efficacy of Menthol (Mentha x piperita) in its cardioprotective properties, understanding the actual mechanisms related to the efficacy of Menthol on CVD can be the subject of future studies.
期刊介绍:
The Natural Products Journal a peer reviewed journal, aims to publish all the latest and outstanding developments in natural products. The Natural Products Journal publishes original research articles, full-length/mini reviews, letters and guest edited issues on all aspects of research and development in the field including: isolation, purification, structure elucidation, synthesis and bioactivity of chemical compounds found in nature.