抗菌剂
医学
肺炎
抗生素
抗生素耐药性
内科学
抗生素治疗
呼吸机相关性肺炎
重症监护医学
呼吸道感染
呼吸系统
微生物学
生物
作者
Christian Leli,Paolo Bottino,Lidia Ferrara,Luigi Di Matteo,Franca Gotta,Daria Vay,Elisa Cornaglia,Mattia Zenato,Chiara Di Bella,Elisabetta Scomparin,Cesare Bolla,Valeria Bonato,Laura Savi,Annalisa Roveta,Antonio Maconi,Andrea Rocchetti
出处
期刊:Microorganisms
[Multidisciplinary Digital Publishing Institute]
日期:2025-07-16
卷期号:13 (7): 1678-1678
标识
DOI:10.3390/microorganisms13071678
摘要
Molecular methods allow for a rapid identification of the main causative agents of pneumonia along with the most frequent resistance genes. Prolonged broad-spectrum antibiotic therapy without microbiological evidence of infection drives antimicrobial resistance. We evaluated if the result provided by the molecular method is helpful for antimicrobial de-escalation. All respiratory samples collected and directly processed via Real-Time PCR from patients with suspected pneumonia, of whom clinical data were available, were included in this study. In 82 patients out of a total of 174 (47.1%), antimicrobial therapy was modified after the molecular test, and in 28/82 (34.1%), antimicrobial de-escalation was carried out. Among the 92 patients in whom therapy was not modified, 33 (35.9%) were did not receive any antimicrobial therapy before the molecular test and no antibiotics were prescribed after the test. Therefore, in 61 (28 + 33) out of the 174 (35%) patients, unnecessary antimicrobials were discontinued or avoided. The syndromic panel used at our institution can be of help in better choosing when empiric antibiotic de-escalation therapy could be feasible.
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