Davies-Bolorunduro O F, Osuolale O, Saibu S, Adeleye I A, Aminah N S
Microbiology Department, Nigerian Institute of Medical Research, Lagos, Nigeria.
Postdoc Fellow Department of Chemistry, Faculty of Science and Technology, Universitas Airlangga, Komplek Kampus C, Jl. Mulyorejo, Surabaya, 60115, Indonesia.
Heliyon. 2021 Aug 2;7(8):e07710. doi: 10.1016/j.heliyon.2021.e07710. eCollection 2021 Aug.
Revived analysis interests in natural products in the hope of discovering new and novel antileishmanial drug leads have been driven partially by the increasing incidence of drug resistance. However, the search for novel chemotherapeutics to combat drug resistance had previously concentrated on the terrestrial environment. As a result, the marine environment was often overlooked. For example, actinomycetes are an immensely important group of bacteria for antibiotic production, producing two-thirds of the known antibiotics. However, these bacteria have been isolated primarily from terrestrial sources. Consequently, there have been revived efforts to discover new compounds from uncharted or uncommon environments like the marine ecosystem. Isolation, purification and structure elucidation of target compounds from complex metabolic extract are major challenges in natural products chemistry. As a result, marine-derived natural products from actinomycetes that have antileishmanial bioactivity potentials have been understudied. This review highlights metagenomic and bioassay approaches which could help streamline the drug discovery process thereby greatly reducing time and cost of dereplication to identify suitable antileishmanial drug candidates.
对天然产物重新燃起的分析兴趣,希望发现新的和新颖的抗利什曼原虫药物先导物,部分原因是耐药性发病率的不断上升。然而,此前寻找对抗耐药性的新型化学治疗药物的工作主要集中在陆地环境。因此,海洋环境常常被忽视。例如,放线菌是一类对抗生素生产极为重要的细菌,生产了三分之二的已知抗生素。然而,这些细菌主要是从陆地来源分离出来的。因此,人们重新努力从海洋生态系统等未知或不常见的环境中发现新化合物。从复杂的代谢提取物中分离、纯化和阐明目标化合物的结构是天然产物化学中的主要挑战。因此,来自放线菌的具有抗利什曼原虫生物活性潜力的海洋天然产物一直未得到充分研究。本综述重点介绍了宏基因组学和生物测定方法,这些方法有助于简化药物发现过程,从而大大减少去重复的时间和成本,以确定合适的抗利什曼原虫药物候选物。