Department of Molecular and Cellular Engineering, Jacob Institute of Biotechnology and Bioengineering, Sam Higginbottom University of Agriculture, Technology and Sciences, Prayagraj, Uttar Pradesh, 211007, India.
Ethnopharmacology and Natural Product Research Laboratory, Department of Life Sciences, Presidency University, 86/1 College Street, Kolkata, 700073, India.
Drug Resist Updat. 2020 Jul;51:100695. doi: 10.1016/j.drup.2020.100695. Epub 2020 Apr 8.
Accelerated emergence of drug- resistant pathogenic microbes, their unbeatable virulence and a gradual loss of efficacy of currently used antimicrobial agents over the last decade, have expanded the scope of herbal medicine to combat this emerging challenge to have a wide spectrum of activity to develop effective medicines with lesser untoward side effects. Plant-based natural products should be of utmost interest to today's pharmaceutical industries since they are a primary source of new chemical entities directed at new drug targets. Apocynaceae or 'Dogbane' family has attained a global reputation as a source of some life-saving plant-derived products and novel compounds. Members of this family have also been extensively investigated against several nosocomial pathogenic microbes through in vitro and in vivo experimental settings. Several plant-derived components obtained from members of this family have also exhibited remarkable microbial growth inhibitory properties. Popular and widely accepted international databases such as PubMed, Science Direct, ResearchGate, Scopus, Google Scholar, JSTOR and more were searched using the various search strings such as Apocynaceae, antimicrobials, multidrug resistance, resistance modifying agents and pathogenic microorganisms were used in various combinations to retrieve several citations related to the topic. The current review encompasses recent developments in experimental studies and phytochemical analyses which correlates with antimicrobial efficacy of selected Apocynaceous plants along with synergistic mechanism and structural details. The present review recognizes and leverages the importance of Apocynaceae plants, which could be of significant interest in the development of more effective and less toxic antimicrobial drugs which may surmount multidrug resistance. Three different paradigm models harnessing clinical antimicrobial resistance (AMR) including the plant family Apocynaceae, Gram-positive and Gram-negative bacterial species have been broadly discussed in this review. In a nutshell, the present review represents a comprehensive account on the antimicrobials and resistance modifying agents obtained from the members of the plant family Apocynaceae and derived phytochemicals. It also gives an insight into the underlying mode of action of these phytochemicals against an array of pathogenic bacteria, their mechanism of antibiosis, plant parts from which the phytochemicals were isolated or the extracts was prepared with a critical discussion on the botanically-derived antibiotics as a template for antimicrobial drug development.
耐药性致病微生物的快速出现、它们无法击败的毒力以及过去十年中目前使用的抗菌药物疗效逐渐降低,扩大了草药的范围,以对抗这一新兴挑战,开发具有更广泛活性的有效药物,减少不良副作用。由于植物源性天然产物是针对新药物靶点的新化学实体的主要来源,因此应该成为当今制药行业的首要关注点。夹竹桃科或“狗牙花科”作为一些救命的植物衍生产品和新型化合物的来源,在全球享有盛誉。通过体外和体内实验设置,该科的许多成员也被广泛研究用于对抗几种医院获得性致病微生物。从该科成员中获得的几种植物源性成分也表现出显著的微生物生长抑制特性。使用各种搜索字符串,如夹竹桃科、抗菌剂、多药耐药性、耐药性调节剂和致病微生物,在流行且广泛接受的国际数据库(如 PubMed、Science Direct、ResearchGate、Scopus、Google Scholar、JSTOR 等)中进行了搜索,这些搜索字符串以各种组合使用,以检索与主题相关的多个引用。本综述涵盖了实验研究和植物化学分析的最新进展,这些进展与选定夹竹桃科植物的抗菌功效以及协同机制和结构细节相关。本综述认识到并利用了夹竹桃科植物的重要性,这可能对开发更有效和毒性更低的抗菌药物具有重要意义,这些药物可能克服多药耐药性。本综述广泛讨论了利用临床抗菌耐药性(AMR)的三种不同范式模型,包括植物科夹竹桃科、革兰氏阳性和革兰氏阴性细菌。简而言之,本综述代表了对夹竹桃科植物成员获得的抗菌剂和耐药性调节剂以及衍生植物化学物质的全面描述。它还深入了解了这些植物化学物质对一系列致病菌的作用方式、它们的抗菌机制、分离这些植物化学物质的植物部位或用批判性讨论准备提取物,将植物来源的抗生素作为抗菌药物开发的模板。