[1]史玉敏, 严恒, 王俊, 等. 氟喹诺酮类杂合体的抗耐药菌活性[J]. 中国抗生素杂志, 2023, 48(11):1273-1280.
[2]ZhangL L, Bao M, Liu B, et al. Effect of andrographolide and its analogs on bacterial infection: A review[J]. Pharmacology, 2020, 105(3/4): 123-134.
[3]GaoW W, Thamphiwatana S, Angsantikul P, et al. Nanoparticle approaches against bacterial infections[J]. Nanomedicine and Nanobiotechnology, 2014, 6(6): 532-547.
[4]LuC B, Xiao Y, Liu Y Y, et al. Hyaluronic acid-based levofloxacin nanomicelles for nitric oxide-triggered drug delivery to treat bacterial infections[J]. Carbohydrate Polymers, 2020, 229: 115479.
[5]DouaferH, Andrieu V, Phanstiel O, et al. Antibiotic adjuvants: Make antibiotics great again![J]. Journal of Medicinal Chemistry, 2019, 62(19): 8665-8681.
[6]CoatesA R M, Hu Y, Holt J, et al. Antibiotic combination therapy against resistant bacterial infections: Synergy, rejuvenation and resistance reduction[J]. Expert Review of Anti-infective Therapy, 2020, 18(1): 5-15.
[7]SullivanG J, Delgado N N, Maharjan R, et al. How antibiotics work together: Molecular mechanisms behind combination therapy[J]. Current Opinion in Microbiology, 2020, 57: 31-40.
[8]HardieK R, Fenn S J. JMM profile: Rifampicin: A broad-spectrum antibiotic[J]. Journal of Medical Microbiology, 2022, 71(8):1566-1571.
[9]QiaoZ W, Yuan Z, Zhang W P, et al. Preparation, in vitro release and antibacterial activity evaluation of rifampicin and moxifloxacin-loaded poly(d,l-lactide-co-glycolide)microspheres[J]. Artificial Cells Nanomedicine and Biotechnology, 2019, 47(1): 790-798.
[10]KangY R, Chung D R, Ko J H, et al. Comparing the synergistic and antagonistic interactions of ciprofloxacin and levofloxacin combined with rifampin against drug-resistant staphylococcus aureus: A time-kill assay[J]. Antibiotics, 2023, 12(4): 711-723.