Alyahya Khalid, Baillie Les
Department of Pharmaceutics, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.
School of Pharmacy and Pharmaceutical Sciences, Cardiff University, Cardiff CF10 3NB, UK.
Microorganisms. 2023 Jun 24;11(7):1651. doi: 10.3390/microorganisms11071651.
is a Gram-positive, anaerobic, spore-forming bacillus and is a major cause of healthcare-associated infections. Whereas the vegetative form of the pathogen is susceptible to treatment with antibiotics, its ability to persist in the gut as antibiotic-resistant spores means that reinfection can occur in cases were the individual fails to re-establish a protective microflora. Bacteriophages and their lysins are currently being explored as treatment options due to their specificity, which minimizes the disruption to the other members of the gut microflora that are protective. The feasibility of employing recombinant endolysins to target the vegetative form of has been demonstrated in animal models. In this study, we cloned and expressed the enzyme active domain of LysCD6356 and confirmed its ability to lyse the vegetative forms of a diverse range of clinical isolates of which included members of the hypervirulent 027 ribotype. Lytic activity was adversely affected by calcium, which is naturally found in the gut and is released from the spore upon germination. Our results suggests that a strategy in which the triggering of spore germination is separated in time from the application of the lysin could be developed as a strategy to reduce the risk of relapsing infections.
是一种革兰氏阳性、厌氧、产芽孢杆菌,是医疗保健相关感染的主要原因。虽然病原体的营养形式对抗生素治疗敏感,但其作为耐抗生素芽孢在肠道中持续存在的能力意味着,在个体未能重新建立保护性微生物群的情况下可能会再次感染。由于噬菌体及其溶素具有特异性,可将对肠道中具有保护作用的其他微生物群的破坏降至最低,目前正在探索将其作为治疗选择。在动物模型中已证明使用重组内溶素靶向的营养形式的可行性。在本研究中,我们克隆并表达了LysCD6356的酶活性结构域,并证实其能够裂解多种临床分离株的营养形式,其中包括高毒力027核糖体分型的成员。肠道中天然存在的钙以及芽孢萌发时释放的钙会对裂解活性产生不利影响。我们的结果表明,可以制定一种策略,将芽孢萌发的触发与溶素的应用在时间上分开,作为降低感染复发风险的策略。