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1.
J Clin Pharm Ther ; 47(10): 1585-1590, 2022 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-36196509

RESUMEN

WHAT IS KNOWN AND OBJECTIVE: The frequency of multidrug-resistant bacterial infections is increasing worldwide. Tigecycline may be an important option for children with life-threatening nosocomial infections due to multidrug-resistant bacteria. However, there are few published data on the use of tigecycline in paediatric patients. By examining the results of tigecycline use in children, we aimed to draw attention to the fact that tigecycline may be an alternative in the treatment of resistant infections in children. METHODS: Paediatric patients treated with tigecycline from 1 January 2010 to 31 October 2018 at Eskisehir Osmangazi University Medical Faculty, which is a tertiary hospital, were analysed retrospectively to assess the efficacy and safety of tigecycline treatment in children. Patients using tigecycline were identified using the pharmacy database. Clinical and laboratory data were obtained from the files. RESULTS AND DISCUSSION: This study included 91 children aged 7 months to 17.5 years; 52 were female (57.1%). At least one predisposing factor was present in 98.9% of the patients. Fifty-one bacteria were isolated from 44 patients. The tigecycline resistance rate was 3.9%. Only 2 of 91 patients experienced one or more side effects of tigecycline. Tigecycline can be used as salvage therapy in resistant infections where options are limited, although definitive conclusions about the efficacy and safety of tigecycline in children cannot be reached. WHAT IS NEW AND CONCLUSION: Tigecycline may be a safe and important option in paediatric nosocomial infections due to resistant bacteria. Resistant bacterial infections have become more common in recent years, its treatment becomes a difficult problem. Tigecycline has a broad-spectrum antibacterial activity including resistant pathogens.


Asunto(s)
Infecciones Bacterianas , Infección Hospitalaria , Antibacterianos/efectos adversos , Infecciones Bacterianas/tratamiento farmacológico , Niño , Infección Hospitalaria/tratamiento farmacológico , Farmacorresistencia Bacteriana Múltiple , Femenino , Humanos , Masculino , Pruebas de Sensibilidad Microbiana , Estudios Retrospectivos , Tigeciclina
2.
Diagnostics (Basel) ; 13(12)2023 Jun 06.
Artículo en Inglés | MEDLINE | ID: mdl-37370879

RESUMEN

Microbiota composition might play a role in the pathophysiology and course of sepsis, and understanding its dynamics is of clinical interest. Invasive meningococcal disease (IMD) is an important cause of community-acquired serious infection, and there is no information regarding microbiota composition in children with meningococcemia. In this study, we aimed to evaluate the intestinal and nasopharyngeal microbiota composition of children with IMD. Materials and Methods: In this prospective, multi-center study, 10 children with meningococcemia and 10 age-matched healthy controls were included. Nasopharyngeal and fecal samples were obtained at admission to the intensive care unit and on the tenth day of their hospital stay. The V3 and V4 regions of the 16S rRNA gene were amplified following the 16S Metagenomic Sequencing Library Preparation. Results: Regarding the alpha diversity on the day of admission and on the tenth day at the PICU, the Shannon index was significantly lower in the IMD group compared to the control group (p = 0.002 at admission and p = 0.001, on the tenth day of PICU). A statistical difference in the stool samples was found between the IMD group at Day 0 vs. the controls in the results of the Bray-Curtis and Jaccard analyses (p = 0.005 and p = 0.001, respectively). There were differences in the intestinal microbiota composition between the children with IMD at admission and Day 10 and the healthy controls. Regarding the nasopharyngeal microbiota analysis, in the children with IMD at admission, at the genus level, Neisseria was significantly more abundant compared to the healthy children (p < 0.001). In the children with IMD at Day 10, genera Moraxella and Neisseria were decreased compared to the healthy children. In the children with IMD on Day 0, for paired samples, Moraxella, Neisseria, and Haemophilus were significantly more abundant compared to the children with IMD at Day 10. In the children with IMD at Day 10, the Moraxella and Neisseria genera were decreased, and 20 different genera were more abundant compared to Day 0. Conclusions: We first found alterations in the intestinal and nasopharyngeal microbiota composition in the children with IMD. The infection itself or the other care interventions also caused changes to the microbiota composition during the follow-up period. Understanding the interaction of microbiota with pathogens, e.g., N. meningitidis, could give us the opportunity to understand the disease's dynamics.

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