González-Alsina Alex, Mateu-Borrás Margalida, Doménech-Sánchez Antonio, Albertí Sebastián
Instituto Universitario de Investigación en Ciencias de la Salud, Universidad de las Islas Baleares, 07122 Palma de Mallorca, Spain.
Instituto de Investigación Sanitaria de les Illes Balears, 07122 Palma de Mallorca, Spain.
Microorganisms. 2023 Mar 6;11(3):664. doi: 10.3390/microorganisms11030664.
The increasing emergence of multidrug resistant isolates of causes major problems in hospitals worldwide. This concern is particularly significant in bloodstream infections that progress rapidly, with a high number of deaths within the first hours and without time to select the most appropriate treatment. In fact, despite improvements in antimicrobial therapy and hospital care, bacteremia remains fatal in about 30% of cases. The complement system is a main defensive mechanism in blood against this pathogen. This system can mark bacteria for phagocytosis or directly lyse it via the insertion of a membrane attack complex in the bacterial membrane. exploits different strategies to resist complement attack. In this review for the special issue on "bacterial pathogens associated with bacteriemia", we present an overview of the interactions between and the complement components and strategies used by this pathogen to prevent recognition and killing by the complement system. A thorough understanding of these interactions will be critical in order to develop drugs to counteract bacterial evasion mechanisms.
多重耐药菌株的不断出现给全球医院带来了重大问题。这种担忧在血流感染中尤为突出,血流感染进展迅速,在最初几小时内就有大量死亡病例,且没有时间选择最合适的治疗方法。事实上,尽管抗菌治疗和医院护理有所改善,但[病原体名称]菌血症在约30%的病例中仍然致命。补体系统是血液中对抗这种病原体的主要防御机制。该系统可以标记细菌以便吞噬,或通过在细菌膜中插入膜攻击复合物直接裂解细菌。[病原体名称]利用不同策略抵抗补体攻击。在本次关于“与菌血症相关的细菌病原体”特刊的综述中,我们概述了[病原体名称]与补体成分之间的相互作用,以及该病原体用于防止被补体系统识别和杀伤的策略。全面了解这些相互作用对于开发对抗细菌逃避机制的药物至关重要。