抗菌剂
生物膜
抗生素
木犀草素
微生物学
细菌
生物
抗菌活性
致病菌
化学
群体感应
抗生素耐药性
抗感染药
抗菌剂
药品
药物开发
药物发现
植物化学
计算生物学
行动方式
作者
Kushagra Khanna,Mogana Rajagopal,Pankaj Kumar,Ravishankar Ram Mani,K. Oganeswary Kobi,Fariha Shagufta,Retno Wahyuningrum
标识
DOI:10.1080/1040841x.2025.2584072
摘要
Novel antibacterial agents are critically needed in light of the constant menace posed by bacterial infections and subsequent emergence of antibiotic-resistant strains. Quality of life has been improved remarkably through antibiotics that have fought microbial pathogens. . Luteolin has shown effectiveness against both gram-positive and gram negative bacteria. Luteolin and its derivatives, as novel phytochemical antimicrobial agents, exhibit activity against both Gram-positive and Gram-negative bacteria . Luteolin target bacteria by disrupting their cell membranes, inhibiting nucleic acid synthesis, and interfering with key enzymes. It also blocks quorum sensing and biofilm formation, crucial for bacterial virulence and resistance. Luteolin, despite its therapeutic potential, has limited clinical use due to poor water solubility and low bioavailability, leading to reduced absorption and rapid metabolism in the body. To address these issues, researchers are exploring advanced formulations like nanoparticles and liposomes to improve its solubility and effectiveness. Recent formulation advancements aim to enhance luteolin's delivery and efficacy as an antibacterial agent. However, in-depth in vivo studies are essential to unlock its full therapeutic potential for clinical use. This review highlights luteolin's antibacterial capabilities, usage challenges, and recent progress, stressing the importance of further research to fully leverage its benefits.
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