连接器
抗菌剂
结合
药品
肽
抗菌药物
抗生素
劈理(地质)
化学
细菌
抗生素耐药性
行动方式
效力
抗菌肽
微生物学
最小抑制浓度
药理学
组合化学
体外
抗菌活性
抗药性
立体化学
行动地点
毒性
治疗指标
抗菌剂
结构-活动关系
抗菌肽
生物化学
作者
Tomáš Deingruber,Josephine Gaynord,Bee‐Ha Gan,Kristina A. Kostadinova,Thomas O’Brien,Yaw Sing Tan,Jeremy S. Parker,Thomas A. Hunt,Jason S. Carroll,Martin Welch,David R. Spring
出处
期刊:Chemical Science
[Royal Society of Chemistry]
日期:2025-01-01
卷期号:16 (41): 19288-19295
摘要
Antimicrobial resistance attracts a considerable amount of attention as it threatens the efficiency of current antibacterial treatments. Besides a more considerate use of current antibiotics to slow down the spread of antimicrobial resistance, there is ample need for new therapeutic avenues to treat already resistant strains. Here, we describe the use of a cleavable peptide-drug conjugate to target bacteria with diverse resistance strategies. The conjugate consists of three main components: a β-lactamase cleavable linker, a positively charged stapled antimicrobial peptide, and an antibiotic. The linker ensures selective cleavage and provides the prospect of lowering systemic toxicity of the conjugate. The positively charged peptide targets the negatively charged bacterial membrane, and stapling pre-organises it in a helical structure. Finally, the drug provides another, distinct mode of action to the peptide, which should overall reduce the development of resistance. A series of peptides was prepared and the most promising one was then developed into a stapled conjugate. The factors affecting the activity of this conjugate were investigated, proving cleavage by β-lactamase and superior potency compared to the non-cleavable control, as shown by its minimal inhibitory concentrations.
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