Publication:
IgM-enriched immunoglobulin improves colistin efficacy in a pneumonia model by Pseudomonas aeruginosa.

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2022-06-21

Authors

Cebrero-Cangueiro, Tania
Labrador-Herrera, Gema
Carretero-Ledesma, Marta
Herrera-Espejo, Soraya
Alvarez-Marin, Rocio
Pachon, Jeronimo
Cisneros, Jose Miguel
Pachon-Ibañez, Maria Eugenia

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Life Science Alliance LLC
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Abstract

We evaluated the efficacy of ceftazidime or colistin in combination with polyclonal IgM-enriched immunoglobulin (IgM-IG), in an experimental pneumonia model (C57BL/6J male mice) using two multidrug-resistant Pseudomonas aeruginosa strains, both ceftazidime-susceptible and one colistin-resistant. Pharmacodynamically optimised antimicrobials were administered for 72 h, and intravenous IgM-IG was given as a single dose. Bacterial tissues count and the mortality were analysed. Ceftazidime was more effective than colistin for both strains. In mice infected with the colistin-susceptible strain, ceftazidime reduced the bacterial concentration in the lungs and blood (-2.42 and -3.87 log10 CFU/ml) compared with colistin (-0.55 and -1.23 log10 CFU/ml, respectively) and with the controls. Colistin plus IgM-IG reduced the bacterial lung concentrations of both colistin-susceptible and resistant strains (-2.91 and -1.73 log10 CFU/g, respectively) and the bacteraemia rate of the colistin-resistant strain (-44%). These results suggest that IgM-IG might be useful as an adjuvant to colistin in the treatment of pneumonia caused by multidrug-resistant P. aeruginosa.

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MeSH Terms

Animals
Colistin
Immunoglobulin M
Male
Mice
Pseudomonas Infections
Pseudomonas aeruginosa

DeCS Terms

Colistina
Inmunoglobulina M
Inmunoglobulinas
Neumonía
Pseudomonas aeruginosa
Mortalidad
Dosis Única

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Keywords

Anti-Bacterial Agents, Ceftazidime, Drug Resistance, Multiple, Bacterial, Mice, Inbred C57BL, Pneumonia

Citation

Cebrero-Cangueiro T, Labrador-Herrera G, Carretero-Ledesma M, Herrera-Espejo S, Álvarez-Marín R, Pachón J, et al. IgM-enriched immunoglobulin improves colistin efficacy in a pneumonia model by Pseudomonas aeruginosa. Life Sci Alliance. 2022 Jun 21;5(10):e202101349.