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物种抗菌和抗氧化潜力的机制洞察:一种疾病管理的草药方法。

Mechanistic Insight into Antimicrobial and Antioxidant Potential of Species: A Herbal Approach for Disease Management.

作者信息

Balkrishna Acharya, Rohela Akansha, Kumar Abhishek, Kumar Ashwani, Arya Vedpriya, Thakur Pallavi, Oleksak Patrik, Krejcar Ondrej, Verma Rachna, Kumar Dinesh, Kuca Kamil

机构信息

Patanjali Herbal Research Department, Patanjali Research Institute, Haridwar 249405, Uttarakhand, India.

Department of Chemistry, Faculty of Science, University of Hradec Kralove, 50003 Hradec Kralove, Czech Republic.

出版信息

Plants (Basel). 2021 May 28;10(6):1089. doi: 10.3390/plants10061089.

Abstract

Drug resistance among microbial pathogens and oxidative stress caused by reactive oxygen species are two of the most challenging global issues. Firstly, drug-resistant pathogens cause several fatalities every year. Secondly aging and a variety of diseases, such as cardiovascular disease and cancer, are associated with free radical generated oxidative stress. The treatments currently available are limited, ineffective, or less efficient, so there is an immediate need to tackle these issues by looking for new therapies to resolve resistance and neutralize the harmful effects of free radicals. In the 21st century, the best way to save humans from them could be by using plants as well as their bioactive constituents. In this specific context, is a major plant genus that is used in the Ayurvedic system of medicine to treat a variety of ailments. The information in this review was gathered from a variety of sources, including books, websites, and databases such as Science Direct, PubMed, and Google Scholar. In this review, a total of 14 species of have been found to be efficient and effective against a wide variety of microbial pathogens. In addition, 14 species were found to be active free radical scavengers. The review is also focused on the disorders related to oxidative stress, and it was concluded that and normalized various parameters that were elevated by free radical generation. Alkaloids, flavonoids (rutoside), terpenes, phenols, and iridoid glucosides are among the main phytoconstituents found in various species. Furthermore, this review also provides insight into the mechanistic basis of drug resistance, the generation of free radicals, and the role of plants in combating resistance and neutralizing free radicals.

摘要

微生物病原体的耐药性和活性氧引起的氧化应激是两个最具挑战性的全球性问题。首先,耐药病原体每年导致数人死亡。其次,衰老以及各种疾病,如心血管疾病和癌症,都与自由基产生的氧化应激有关。目前可用的治疗方法有限、无效或效率较低,因此迫切需要通过寻找新的疗法来解决耐药性问题并中和自由基的有害影响。在21世纪,拯救人类免受这些问题困扰的最佳方法可能是利用植物及其生物活性成分。在这种特定背景下,[植物属名]是阿育吠陀医学体系中用于治疗多种疾病的主要植物属。本综述中的信息来自各种来源,包括书籍、网站以及诸如科学Direct、PubMed和谷歌学术等数据库。在本综述中,共发现[植物属名]的14个物种对多种微生物病原体有效。此外,还发现14个物种是活跃的自由基清除剂。该综述还关注与氧化应激相关的疾病,并得出结论,[植物属名]和[植物属名]使因自由基产生而升高的各种参数恢复正常。生物碱、黄酮类化合物(芦丁)、萜类、酚类和环烯醚萜苷是在各种[植物属名]物种中发现的主要植物成分。此外,本综述还深入探讨了耐药性的机制基础、自由基的产生以及[植物属名]植物在对抗耐药性和中和自由基方面的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1572/8227019/9523d2b15049/plants-10-01089-g001.jpg

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