Department of Microbiology & Biotechnology, University School of Sciences, Gujarat University, Ahmedabad, Gujarat, 380009, India.
Department of Biological Sciences & Biotechnology, Indian Institute of Advanced Research, Gandhinagar, Gujarat, 382426, India.
Sci Rep. 2021 Nov 17;11(1):22421. doi: 10.1038/s41598-021-01845-8.
There persists a constant threat from multidrug resistance being acquired by all human pathogens that challenges the well-being of humans. This phenomenon is predominantly led by Pseudomonas aeruginosa which is already resistant to the current generations of antibiotic by altering its metabolic pathways to survive. Specifically for this microbe the phenomenon of quorum sensing (QS) plays a crucial role in acquiring virulence and pathogenicity. QS is simply the cross talk between the bacterial community driven by signals that bind to receptors, enabling the entire bacterial microcosm to function as a single unit which has led to control P. aeruginosa cumbersome even in presence of antibiotics. Inhibition of QS can, therefore, be of a significant importance to curb such virulent and pathogenic strains of P. aeruginosa. Natural compounds are well known for their antimicrobial properties, of which, information on their mode of action is scarce. There can be many antimicrobial phytochemicals that act by hindering QS-pathways. The rationale of the current study is to identify such natural compounds that can inhibit QS in P. aeruginosa driven by LasR, PhzR, and RhlR dependent pathways. To achieve this rationale, in silico studies were first performed to identify such natural compounds which were then validated by in vitro experiments. Gingerol and Curcumin were identified as QS-antagonists (QSA) which could further suppress the production of biofilm, EPS, pyocyanin, and rhamnolipid along with improving the susceptibility to antibiotics.
所有人类病原体都存在获得多药耐药性的持续威胁,这对人类的健康福祉构成挑战。这种现象主要是由铜绿假单胞菌引起的,它已经通过改变其代谢途径来生存而对当前几代抗生素产生了耐药性。特别是对于这种微生物,群体感应 (QS) 现象在获得毒力和致病性方面起着至关重要的作用。QS 只是由与受体结合的信号驱动的细菌群落之间的交流,使整个细菌微观世界能够作为一个单一单元发挥作用,这导致即使在使用抗生素的情况下,对铜绿假单胞菌的控制也很棘手。因此,抑制 QS 对于遏制铜绿假单胞菌的这种毒力和致病性菌株可能非常重要。天然化合物以其抗菌特性而闻名,但其作用机制的信息却很少。可能有许多抗菌植物化学物质通过阻碍 QS 途径发挥作用。目前研究的基本原理是确定可以抑制 LasR、PhzR 和 RhlR 依赖性途径驱动的铜绿假单胞菌中 QS 的天然化合物。为了实现这一基本原理,首先进行了计算机模拟研究以鉴定出这种天然化合物,然后通过体外实验进行了验证。姜酚和姜黄素被鉴定为 QS 拮抗剂 (QSA),它们可以进一步抑制生物膜、EPS、绿脓菌素和鼠李糖脂的产生,并提高对抗生素的敏感性。