Department of Pharmaceutical Sciences, Sam Higginbottom University of Agriculture, Technology and Sciences, Prayagraj, Uttar Pradesh, India.
Drug Metab Bioanal Lett. 2022;15(3):150-158. doi: 10.2174/2949681015666220609100336.
Humans have a long history of the uses of plant based products, including extracts and pure phytoconstituents for the treatment of human diseases in the different system of medicine. In the developing countries, phytoproducts play an important role in the healthcare systems due to their medicinal importance and pharmacological activities. Flavonoids class phytochemicals are beneficial for human beings because of their free radical scavenging properties and trace metals chelating potential. Flavonoids have inhibitory potential for the growth of bacteria and virus mainly through enzyme inhibition functions and viral translation. Rhamnocitrin is also called 7- methyl-kaempferol is important flavonoids, which has been isolated from different medicinal plants and has pharmacological activities in the medicine.
Present paper describes the biological potential and health beneficial aspects of rhamnocitrin in the medicine through the data analysis of published papers in the recent years in the field of medicine and modern medical sciences. Scientific data on rhamnocitrin have been collected from electronic databases such as PubMed, Google Scholar, Google, Scopus and Science Direct in the present investigation and analyzed to know the biological importance and pharmacological activities of rhamnocitrin. Pharmacological scientific data of rhamnocitrin have been collected and analyzed in the present work with their analytical aspects.
Literature data analysis of different scientific work on rhamnocitrin revealed the biological importance of rhamnocitrin in medicine. Rhamnocitrin is known to be a promising phytoconstituents found to be present in medicinal plants with a wide range of biological activities. Rhamnocitrin was found to have pharmacological activities, including anti-atherogenic, anti-oxidant, anti-cancer, anti-bacterial, anti-inflammatory, enzymatic and neuroprotective potential. Further biological effect of rhamnocitrin on adipocyte differentiation has been also studied in the present work. Analytical data on rhamnocitrin signified the application of different analytical techniques for the separation, isolation and identification of rhamnocitrin in medicine.
Literature data analysis of different scientific research works revealed the biological importance and therapeutic benefit of rhamnocitrin in medicine.
人类使用植物产品的历史悠久,包括提取物和纯植物成分,用于不同医学体系的人类疾病治疗。在发展中国家,由于药用重要性和药理学活性,植物产品在医疗保健系统中发挥着重要作用。类黄酮类植物化学物质对人类有益,因为它们具有自由基清除特性和痕量金属螯合潜力。类黄酮类化合物通过酶抑制功能和病毒翻译对细菌和病毒的生长具有抑制潜力。鼠李糖苷也称为 7-甲基山柰酚,是一种重要的类黄酮,已从不同药用植物中分离出来,并在医学中具有药理学活性。
本论文通过分析近年来医学和现代医学领域发表的论文中的数据,描述了鼠李糖苷在医学中的生物潜力和健康有益方面。在本研究中,从 PubMed、Google Scholar、Google、Scopus 和 Science Direct 等电子数据库中收集了关于鼠李糖苷的科学数据,并进行了分析,以了解鼠李糖苷的生物学重要性和药理学活性。在本工作中,收集和分析了鼠李糖苷的药理学科学数据,并对其分析方面进行了分析。
对不同关于鼠李糖苷的科学工作的文献数据分析揭示了鼠李糖苷在医学中的生物学重要性。鼠李糖苷被认为是一种很有前途的植物成分,在具有广泛生物学活性的药用植物中发现。鼠李糖苷具有药理学活性,包括抗动脉粥样硬化、抗氧化、抗癌、抗菌、抗炎、酶和神经保护潜力。在本工作中还研究了鼠李糖苷对脂肪细胞分化的生物学效应。关于鼠李糖苷的分析数据表明,在医学中已经应用了不同的分析技术来分离、分离和鉴定鼠李糖苷。
对不同科学研究工作的文献数据的分析揭示了鼠李糖苷在医学中的生物学重要性和治疗益处。