抗菌剂
组合化学
对接(动物)
化学
齿合度
立体化学
克霉唑
脚手架
配体(生物化学)
最小抑制浓度
计算生物学
生物化学
微生物学
有机化学
生物
医学
受体
晶体结构
生物医学工程
抗真菌
护理部
作者
Youri Cortat,Miroslava Nedyalkova,Kevin Schindler,Parth Kadakia,Gözde Demirci,Sara Nasiri Sovari,Aurélien Crochet,Stefan Salentinig,Marco Lattuada,Olimpia Mamula,Fabio Zobi
出处
期刊:Antibiotics
[MDPI AG]
日期:2023-03-20
卷期号:12 (3): 619-619
被引量:14
标识
DOI:10.3390/antibiotics12030619
摘要
In the context of the global health issue caused by the growing occurrence of antimicrobial resistance (AMR), the need for novel antimicrobial agents is becoming alarming. Inorganic and organometallic complexes represent a relatively untapped source of antibiotics. Here, we report a computer-aided drug design (CADD) based on a 'scaffold-hopping' approach for the synthesis and antibacterial evaluation of fac-Re(I) tricarbonyl complexes bearing clotrimazole (ctz) as a monodentate ligand. The prepared molecules were selected following a pre-screening in silico analysis according to modification of the 2,2'-bipyridine (bpy) ligand in the coordination sphere of the complexes. CADD pointed to chiral 4,5-pinene and 5,6-pinene bipyridine derivatives as the most promising candidates. The corresponding complexes were synthesized, tested toward methicillin-sensitive and -resistant S. aureus strains, and the obtained results evaluated with regard to their binding affinity with a homology model of the S. aureus MurG enzyme. Overall, the title species revealed very similar minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) values as those of the reference compound used as the scaffold in our approach. The obtained docking scores advocate the viability of 'scaffold-hopping' for de novo design, a potential strategy for more cost- and time-efficient discovery of new antibiotics.
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