Jorge Paula, Grzywacz Daria, Kamysz Wojciech, Lourenço Anália, Pereira Maria Olívia
CEB - Centre of Biological Engineering, LIBRO - Laboratory of Research in Biofilms Rosário Oliveira, University of Minho, Braga, Portugal.
Lipopharm.pl, Zblewo, Poland.
PLoS One. 2017 Mar 29;12(3):e0174654. doi: 10.1371/journal.pone.0174654. eCollection 2017.
Antimicrobial research is being pressured to look for more effective therapeutics for the ever-growing antibiotic-resistant infections, and antimicrobial peptides (AMP) and antimicrobial combinations are promising solutions. This work evaluates colistin-AMP combinations against two major pathogens, Pseudomonas aeruginosa and Staphylococcus aureus, encompassing non- and resistant strains. Colistin (CST) combined with the AMP temporin A (TEMP-A), citropin 1.1 (CIT-1.1) and tachyplesin I linear analogue (TP-I-L) was tested against planktonic, single- and double-species biofilm cultures. Overall synergy for planktonic P. aeruginosa and synergy/additiveness for planktonic S. aureus were observed. Biofilm growth prevention was achieved with synergy and additiveness. Pre-established 24 h-old biofilms were harder to eradicate, especially for S. aureus and double-species biofilms; still, some synergy and addictiveness was observed for higher concentrations, including for the biofilms of resistant strains. Different treatment times and growth media did not greatly influence AMP activity. CST revealed low toxicity compared with the other AMP but its combinations were toxic for high concentrations. Overall, combinations reduced effective AMP concentrations, mainly in prevention scenarios. Improvement of effectiveness and toxicity of therapeutic strategies will be further investigated.
抗微生物研究面临着为日益增多的抗生素耐药性感染寻找更有效治疗方法的压力,抗菌肽(AMP)和抗菌组合是很有前景的解决方案。这项工作评估了黏菌素与AMP组合对两种主要病原体——铜绿假单胞菌和金黄色葡萄球菌(包括非耐药菌株和耐药菌株)的作用。测试了黏菌素(CST)与AMP天蚕抗菌肽A(TEMP-A)、柑橘肽1.1(CIT-1.1)和鲎素I线性类似物(TP-I-L)对浮游菌、单菌种和双菌种生物膜培养物的作用。观察到对浮游铜绿假单胞菌有总体协同作用,对浮游金黄色葡萄球菌有协同/相加作用。通过协同和相加作用实现了生物膜生长的预防。预先形成24小时的生物膜更难根除,尤其是金黄色葡萄球菌和双菌种生物膜;不过,对于较高浓度,包括耐药菌株的生物膜,仍观察到一些协同和相加作用。不同的处理时间和生长培养基对AMP活性影响不大。与其他AMP相比,CST显示出低毒性,但其组合在高浓度时具有毒性。总体而言,组合降低了有效的AMP浓度,主要是在预防情况下。治疗策略的有效性和毒性的改善将进一步研究。