In-silico Study of Phytochemicals of Ethnobotanical Plant Cannabis sativa for Anti-Diabetic Potential

Arti Chauhan, Priyanka Sharma, Anjala Durgapal, Subhash Chandra
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Abstract

Ethnobotany is an applied multidisciplinary science in which we not only systemically study inter-relations between human and plant kingdom but also has applications in many fields, including food industry, climate change, biodiversity conservation, and human health. Ethnobotanical plants form an integral part of human life. Many medicinal and aromatic plants are used by locals and nomadic people, which come from a wild source. According to Atharva-Veda, Cannabis is one of the most sacred plants.Perfect development provides insurance for health and healthy life and maintains stability in the ecosystem. If we deeply observe our different traditions, we will find that every ritual shows the close relationship of humans with nature. There are a number of natural ingredients used for performing different rituals. Cannabis is the plant that is commonly known as “Bhang”. Cannabis has been traditionally associated with lord “Shiva” worship. There are various stories behind these rituals mentioned in various mythology books. In this research, we focus on this plant’s ethnomedicinal value and assessed the antidiabetic potential of Cannabis sativa, an ethnobotanical plant of Ranikhet tehsil, by in-silico method. Hence, we conducted molecular docking of phytochemicals with molecular antidiabetic targets, alpha-amylase. The aim of this paper is an in-silico study of the C. sativa’s phytochemicals on the glucose metabolism related to alpha-amylase. From our study, we hope to find potential phytochemicals which could be useful in treating diabetes problems
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民族植物大麻抗糖尿病潜能化学物质的计算机研究
民族植物学是一门应用的多学科科学,它不仅系统地研究人类与植物之间的相互关系,而且在食品工业、气候变化、生物多样性保护和人类健康等许多领域都有应用。民族植物学植物是人类生活不可分割的一部分。许多药用和芳香植物被当地人和游牧民族使用,它们来自野生资源。根据《阿闼婆吠陀》,大麻是最神圣的植物之一。完善的发展为健康和健康生活提供了保障,保持了生态系统的稳定。如果我们深入观察我们不同的传统,我们会发现,每一个仪式都表现出人与自然的密切关系。有许多天然成分用于执行不同的仪式。大麻是一种俗称“Bhang”的植物。传统上,大麻与对湿婆神的崇拜有关。在各种神话书中提到的这些仪式背后有各种各样的故事。本研究以该植物的民族药用价值为研究重点,采用计算机模拟的方法对其抗糖尿病潜能进行了评价。因此,我们进行了植物化学物质与分子抗糖尿病靶点α -淀粉酶的分子对接。本文的目的是在计算机上研究苜蓿植物化学物质对α -淀粉酶相关的葡萄糖代谢的影响。从我们的研究中,我们希望找到可能对治疗糖尿病有用的潜在植物化学物质
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