Efficient Reduction of Pseudomonas aeruginosa Biofilms Using the Myoviridae Lytic Bacteriophage vBPaeM MLG

Muhammad Fayaz Khan, Aamer Ali Khattak, Afshan Saleem, Muhammad Rizwan, Muhammad Asif, Iqbal Ahmad Alvi
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Abstract

Pseudomonas aeruginosa biofilm infections pose significant challenges in clinical settings due to their increased resistance to conventional antibiotics. Bacteriophages, viruses that infect and kill bacteria, have emerged as promising agents for combating biofilm-related infections. This study aimed to isolate and characterize a potent bacteriophage with antibiofilm activity against P. aeruginosa. Hospital sewage was utilized to isolate a bacteriophage targeting P. aeruginosa. Quantification of phages was conducted through spot tests and doublelayer agar methods. The stability of the isolated phage was assessed under varying pH and temperature conditions. Furthermore, the bacteriophage's ability to reduce bacterial growth and exhibit antibiofilm activity was evaluated at different Multiplicity of Infection (MOI) levels. The isolated bacteriophage, named MLG, was identified as a member of the Myoviridae family within the Caudovirales order. MLG effectively reduced bacterial growth over a 14-hour period. It displayed tolerance to a pH range of 5 to 9 and temperatures spanning 25 to 60°C. Moreover, MLG demonstrated efficient inhibition of biofilm formation across various MOI levels. Given its demonstrated in vitro capacity for bacterial growth reduction and antibiofilm activity, MLG holds potential for combatting P. aeruginosa biofilm infections. This study suggests a promising avenue for the development of alternative antibiofilm strategies using bacteriophages.
利用肌病毒科裂解噬菌体vBPaeM MLG高效还原铜绿假单胞菌生物膜
铜绿假单胞菌生物膜感染由于对常规抗生素的耐药性增加,在临床环境中构成了重大挑战。噬菌体,一种感染并杀死细菌的病毒,已经成为对抗生物膜相关感染的有希望的药物。本研究旨在分离和鉴定一种具有抗铜绿假单胞菌活性的强效噬菌体。利用医院污水分离出一种针对铜绿假单胞菌的噬菌体。通过斑点试验和双层琼脂法对噬菌体进行定量。在不同的pH和温度条件下评估分离噬菌体的稳定性。此外,在不同的感染多重性(MOI)水平下,评估了噬菌体减少细菌生长和表现出抗生物膜活性的能力。分离的噬菌体,命名为MLG,被确定为Caudovirales目肌病毒科的成员。MLG在14小时内有效地减少了细菌的生长。它对pH值范围为5至9,温度范围为25至60°C。此外,MLG在不同的MOI水平上都能有效地抑制生物膜的形成。鉴于其体外抑制细菌生长和抗生物膜活性的能力,MLG具有对抗铜绿假单胞菌生物膜感染的潜力。这项研究为利用噬菌体开发替代抗生素膜策略提供了一条有希望的途径。
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