Impact of nitric oxide donors on capsule, biofilm and resistance profiles of Klebsiella pneumoniae

被引:0
作者
Nguyen, Huan K. [1 ]
Duke, Magdalena M. [1 ]
Grayton, Quincy E. [1 ]
Broberg, Christopher A. [1 ]
Schoenfisch, Mark H. [1 ,2 ]
机构
[1] Univ N Carolina, Dept Chem, Chapel Hill, NC 27599 USA
[2] Univ N Carolina, Eshelman Sch Pharm, Chapel Hill, NC 27599 USA
基金
美国国家卫生研究院;
关键词
Nitric oxide; Klebsiella pneumoniae; Biofilm; Capsule; O SIDE-CHAIN; CARBAPENEM-RESISTANT; IN-VITRO; ACINETOBACTER-BAUMANNII; CHEMICAL BIOLOGY; POLYSACCHARIDE; BACTEREMIA; INFECTION; VIRULENCE; COLISTIN;
D O I
10.1016/j.ijantimicag.2024.107339
中图分类号
R51 [传染病];
学科分类号
100401 ;
摘要
Klebsiella pneumoniae is considered to be a critical public health threat due to its ability to cause fatal, multi-drug-resistant infections in the bloodstream and key organs. The polysaccharide-based capsule layer that shields K. pneumoniae from clearance via innate immunity is a prominent virulence factor. K. pneumoniae also forms biofilms on biotic and abiotic surfaces. These biofilms significantly reduce penetration by, and antibacterial activity from, traditional antibiotics. Nitric oxide (NO), an endogenous molecule involved in the innate immune system, is equally effective at eradicating bacteria but without engendering resistance. This study investigated the effects of NO-releasing small molecules capable of diverse release kinetics on the capsule and biofilm formation characteristics of multiple K. pneumoniae strains. The use of NO donors with moderate and extended NO-release properties (i.e., half-life > 1.8 h) inhibited bacterial growth. Additionally, treatment with NO decreased capsule mucoviscosity in K. pneumoniae strains that normally exhibit hypermucoviscosity. The NO donors were also effective against K. pneumoniae biofilms at the same minimum biocidal concentrations that eliminated planktonic bacteria, while meropenem showed little antibacterial action in the same experiments. These results represent the first account of exogenous NO affecting biomarkers involved in K. pneumoniae infections, and may therefore inform future development of NO-based therapeutics for treating such infections. (c) 2024 Elsevier Ltd and International Society of Antimicrobial Chemotherapy. All rights are reserved, including those for text and data mining, AI training, and similar technologies.
引用
收藏
页数:13
相关论文
共 82 条
[1]   Capsular polysaccharide is a major complement resistance factor in lipopolysaccharide O side chain-deficient Klebsiella pneumoniae clinical isolates [J].
Alvarez, D ;
Merino, S ;
Tomás, JM ;
Benedí, VJ ;
Albertí, S .
INFECTION AND IMMUNITY, 2000, 68 (02) :953-955
[2]   Role of antibiotic penetration limitation in Klebsiella pneumoniae biofilm resistance to ampicillin and ciprofloxacin [J].
Anderl, JN ;
Franklin, MJ ;
Stewart, PS .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2000, 44 (07) :1818-1824
[3]   Risk Factors and Outcomes of Fungal Ventricular-Assist Device Infections [J].
Aslam, Saima ;
Hernandez, Maria ;
Thornby, John ;
Zeluff, Barry ;
Darouiche, Rabih O. .
CLINICAL INFECTIOUS DISEASES, 2010, 50 (05) :664-671
[4]   Genomic Definition of Hypervirulent and Multidrug-Resistant Klebsiella pneumoniae Clonal Groups [J].
Bialek-Davenet, Suzanne ;
Criscuolo, Alexis ;
Ailloud, Florent ;
Passet, Virginie ;
Jones, Louis ;
Delannoy-Vieillard, Anne-Sophie ;
Garin, Benoit ;
Le Hello, Simon ;
Arlet, Guillaume ;
Nicolas-Chanoine, Marie-Helene ;
Decre, Dominique ;
Brisse, Sylvain .
EMERGING INFECTIOUS DISEASES, 2014, 20 (11) :1812-1820
[5]   Genetic and biochemical analyses of the Pseudomonas aeruginosa Psl exopolysaccharide reveal overlapping roles for polysaccharide synthesis enzymes in Psl and LPS production [J].
Byrd, Matthew S. ;
Sadovskaya, Irina ;
Vinogradov, Evgueny ;
Lu, Haiping ;
Sprinkle, April B. ;
Richardson, Stephen H. ;
Ma, Luyan ;
Ralston, Brad ;
Parsek, Matthew R. ;
Anderson, Erin M. ;
Lam, Joseph S. ;
Wozniak, Daniel J. .
MOLECULAR MICROBIOLOGY, 2009, 73 (04) :622-638
[6]   Pan-Resistant New Delhi Metallo-Beta-Lactamase-Producing Klebsiella pneumoniae - Washoe County, Nevada, 2016 [J].
Chen, Lei ;
Todd, Randall ;
Kiehlbauch, Julia ;
Walters, Maroya ;
Kallen, Alexander .
MMWR-MORBIDITY AND MORTALITY WEEKLY REPORT, 2017, 66 (01) :33-33
[7]   Activity of Imipenem against Klebsiella pneumoniae Biofilms In Vitro and In Vivo [J].
Chen, Ping ;
Seth, Akhil K. ;
Abercrombie, Johnathan J. ;
Mustoe, Thomas A. ;
Leung, Kai P. .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2014, 58 (02) :1208-1213
[8]   Cephalosporin-3′-Diazeniumdiolate NO Donor Prodrug PYRRO-C3D Enhances Azithromycin Susceptibility of Nontypeable Haemophilus influenzae Biofilms [J].
Collins, Samuel A. ;
Kelso, Michael J. ;
Rineh, Ardeshir ;
Yepuri, Nageshwar R. ;
Coles, Janice ;
Jackson, Claire L. ;
Halladay, Georgia D. ;
Walker, Woolf T. ;
Webb, Jeremy S. ;
Hall-Stoodley, Luanne ;
Connett, Gary J. ;
Feelisch, Martin ;
Faust, Saul N. ;
Lucas, Jane S. A. ;
Allan, Raymond N. .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 2017, 61 (02)
[9]   Nitric oxide release: Part III. Measurement and reporting [J].
Coneski, Peter N. ;
Schoenfisch, Mark H. .
CHEMICAL SOCIETY REVIEWS, 2012, 41 (10) :3753-3758
[10]   Molecular analysis of the contribution of the capsular polysaccharide and the lipopolysaccharide O side chain to the virulence of Klebsiella pneumoniae in a murine model of pneumonia [J].
Cortés, G ;
Borrell, N ;
de Astorza, B ;
Gómez, C ;
Sauleda, J ;
Albertí, S .
INFECTION AND IMMUNITY, 2002, 70 (05) :2583-2590