Boles Jessica E, Bennett Charlotte, Baker Jennifer, Hilton Kira L F, Kotak Hiral A, Clark Ewan R, Long Yifan, White Lisa J, Lai Hin Yuk, Hind Charlotte K, Sutton J Mark, Garrett Michelle D, Cheasty Anne, Ortega-Roldan Jose L, Charles Mark, Haynes Cally J E, Hiscock Jennifer R
School of Chemistry and Forensics, University of Kent Canterbury CT2 7NH UK
School of Biosciences, University of Kent Canterbury CT2 7NJ UK.
Chem Sci. 2022 Aug 10;13(33):9761-9773. doi: 10.1039/d2sc02630a. eCollection 2022 Aug 24.
The rise of antimicrobial resistance remains one of the greatest global health threats facing humanity. Furthermore, the development of novel antibiotics has all but ground to a halt due to a collision of intersectional pressures. Herein we determine the antimicrobial efficacy for 14 structurally related supramolecular self-associating amphiphiles against clinically relevant Gram-positive methicillin resistant and Gram-negative . We establish the ability of these agents to selectively target phospholipid membranes of differing compositions, through a combination of computational host:guest complex formation simulations, synthetic vesicle lysis, adhesion and membrane fluidity experiments, alongside our novel H NMR CPMG nanodisc coordination assays, to verify a potential mode of action for this class of compounds and enable the production of evermore effective next-generation antimicrobial agents. Finally, we select a 7-compound subset, showing two lead compounds to exhibit 'druggable' profiles through completion of a variety of and DMPK studies.
抗生素耐药性的增加仍然是人类面临的最大全球健康威胁之一。此外,由于多种压力的相互作用,新型抗生素的研发几乎陷入停滞。在此,我们确定了14种结构相关的超分子自缔合两亲物对临床相关革兰氏阳性耐甲氧西林菌和革兰氏阴性菌的抗菌效果。我们通过计算宿主 - 客体复合物形成模拟、合成囊泡裂解、粘附和膜流动性实验以及我们新颖的核磁共振CPMG纳米盘配位测定法相结合,确定了这些药剂选择性靶向不同组成磷脂膜的能力,以验证这类化合物的潜在作用模式,并助力生产更有效的下一代抗菌剂。最后,我们选择了一个包含7种化合物的子集,通过完成各种药物代谢动力学(DMPK)研究,显示出两种先导化合物具有“可成药”特性。