阿育吠陀草药抗衰老治疗的机制作用和潜力。

Q2 Pharmacology, Toxicology and Pharmaceutics Drug metabolism and personalized therapy Pub Date : 2023-06-01 DOI:10.1515/dmdi-2023-0024
Kirti Raina, Ruchika Kumari, Palak Thakur, Rohit Sharma, Randeep Singh, Abhinay Thakur, Vikas Anand, Rohit Sharma, Ashun Chaudhary
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引用次数: 4

摘要

药用植物和草药是阿育吠陀最重要的部分。《Charaka Samhita》中的罗萨耶那(Rasayana)一词赋予人长寿、年轻、强壮的身体、免于疾病,而罗萨耶那中提到的植物具有抗衰老的特性。衰老是一个集合术语,用于复杂的有害的生理变化,降低细胞的功能能力。氧化应激、端粒缩短、炎症和线粒体功能障碍是调节衰老过程的主要因素。时间衰老是一个不可逆的过程,但导致生物衰老的因素是可以控制的。阿育吠陀草药更适合治疗与年龄有关的问题。植物中有几种天然的生物活性物质可以延缓人类的衰老过程。它们触发诸如延长基因寿命和端粒酶活性、清除活性氧以及组织再生等行为。内容:阿育吠陀罗萨亚那中提到的植物具有抗衰老的潜力,可以用来解决与衰老有关的现代问题。本文介绍了一些阿育吠陀植物及其抗衰老潜力。本文综述了衰老的主要原因、药用植物及其作为潜在抗衰老介质的应用。衰老的过程仍然是一个谜。它是一个复杂的、不可挽回的动态过程,涉及许多因素,并受到一些环境和遗传影响。在临床试验中,Rasayana方面的研究还不多。衰老被认为是自由基损伤的结果。根据《查拉卡》,罗萨耶那药物打开部分或完全堵塞的通道。许多Rasayanas显示自由基清除活性,并有可能减轻衰老的影响。它概述了阿育吠陀药用植物作为灵感来源的重要性,以及这些植物作为抗衰老药物的使用。展望:本研究简要概述了衰老的原因,以及如何使用药用植物来逆转衰老过程。在本研究中,我们讨论了阿育吠陀草药的抗衰老潜力和机制作用。这些草药具有减缓自然衰老过程的特性,可以成功地解决常见的与年龄有关的问题。
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Mechanistic role and potential of Ayurvedic herbs as anti-aging therapies.

Introduction: Medicinal plants and herbs are the most important part of the Ayurveda. The term Rasayana in Charaka Samhita confers long life, youthfulness, strong body, freedom from diseases and the plants mentioned in Rsayana possess antiaging property. Aging is the collective term used for the complex detrimental physiological changes that reduce the functional ability of the cell. Oxidative stress, telomeres shortening, inflammation, and mitochondrial dysfunction are the main factors that regulate the aging process. Chronological aging is an irreversible process but the factors causing biological aging can be controlled. Ayurvedic herbs are better for the management of age-related problems. There are several natural bioactive agents present in plants that can delay the aging process in humans. They trigger actions like enhancing gene longevity and telomerase activity, ROS scavenging furthermore regeneration of tissues.

Content: The plants mentioned in the Rasayana of Ayurveda have antiaging potential and can be used to solve modern problems related to aging. Some Ayurvedic plants and their antiaging potential has explained in this review. The main causes of aging, medicinal plants and their use as potential antiaging mediator are covered in this study.

Summary: The process of aging is still an enigma. It is a complex, irretrievable, dynamic process that involves a number of factors and is subject to a number of environmental and genetic influences. Rasayana aspect has not been much investigated in clinical trials. Aging is considered to result from free radical damage. According to Charaka, Rasayana drugs open the partially or fully blocked channels. Many Rasayanas show free radical scavenging activity and has the potential to mitigate the effects of aging. It gives an overview of the significance of Ayurvedic medicinal plants as a source of inspiration and the use of these plants as remedies for antiaging.

Outlook: This study briefly outlooks the causes of aging and how medicinal plants can be used to reverse the aging process. In this study, we discussed the antiaging potential and mechanistic roles of Ayurvedic herbs. These herbs have the properties to slow down the natural process of aging and can successfully manage common age-related problems.

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来源期刊
Drug metabolism and personalized therapy
Drug metabolism and personalized therapy Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (all)
CiteScore
2.30
自引率
0.00%
发文量
35
期刊介绍: Drug Metabolism and Personalized Therapy (DMPT) is a peer-reviewed journal, and is abstracted/indexed in relevant major Abstracting Services. It provides up-to-date research articles, reviews and opinion papers in the wide field of drug metabolism research, covering established, new and potential drugs, environmentally toxic chemicals, the mechanisms by which drugs may interact with each other and with biological systems, and the pharmacological and toxicological consequences of these interactions and drug metabolism and excretion. Topics: drug metabolizing enzymes, pharmacogenetics and pharmacogenomics, biochemical pharmacology, molecular pathology, clinical pharmacology, pharmacokinetics and drug-drug interactions, immunopharmacology, neuropsychopharmacology.
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