Person: Araos Bralic, Rafael Ignacio
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Araos Bralic
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Rafael Ignacio
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Publication High Burden of Intestinal Colonization With Antimicrobial-Resistant Bacteria in Chile: An Antibiotic Resistance in Communities and Hospitals (ARCH) Study(2023) Araos Bralic, Rafael Ignacio; Smith, Rachel; Styczynski, Ashley; Sánchez, Felipe; Acevedo, Johanna; Maureira, Lea; Paredes, Catalina; González, Maite; Rivas Jiménez, Lina María; Spencer, Maria; Peters, Anne Sophie; Khan, Ayesha; Sepulveda, Dino; Rojas, Loreto; Rioseco, María; Usedo, Pedro; Rojas, Pamela; Huidobro, Laura; Ferreccio, Catterina; Park, Benjamin; Undurraga, Eduardo; D'Agata, Erika; Jara, Alejandro; Munita, Jose M.Background: Antimicrobial resistance is a global threat, heavily impacting low- and middle-income countries. This study estimated antimicrobial-resistant gram-negative bacteria (GNB) fecal colonization prevalence in hospitalized and community-dwelling adults in Chile before the coronavirus disease 2019 pandemic. Methods: From December 2018 to May 2019, we enrolled hospitalized adults in 4 public hospitals and community dwellers from central Chile, who provided fecal specimens and epidemiological information. Samples were plated onto MacConkey agar with ciprofloxacin or ceftazidime added. All recovered morphotypes were identified and characterized according to the following phenotypes: fluoroquinolone-resistant (FQR), extended-spectrum cephalosporin-resistant (ESCR), carbapenem-resistant (CR), or multidrug-resistant (MDR; as per Centers for Disease Control and Prevention criteria) GNB. Categories were not mutually exclusive. Results: A total of 775 hospitalized adults and 357 community dwellers were enrolled. Among hospitalized subjects, the prevalence of colonization with FQR, ESCR, CR, or MDR-GNB was 46.4% (95% confidence interval [CI], 42.9-50.0), 41.2% (95% CI, 37.7-44.6), 14.5% (95% CI, 12.0-16.9), and 26.3% (95% CI, 23.2-29.4). In the community, the prevalence of FQR, ESCR, CR, and MDR-GNB colonization was 39.5% (95% CI, 34.4-44.6), 28.9% (95% CI, 24.2-33.6), 5.6% (95% CI, 3.2-8.0), and 4.8% (95% CI, 2.6-7.0), respectively. Conclusions: A high burden of antimicrobial-resistant GNB colonization was observed in this sample of hospitalized and community-dwelling adults, suggesting that the community is a relevant source of antibiotic resistance. Efforts are needed to understand the relatedness between resistant strains circulating in the community and hospitals.Publication Antibiotic Consumption During the Coronavirus Disease 2019 Pandemic and Emergence of Carbapenemase-Producing Klebsiella pneumoniae Lineages Among Inpatients in a Chilean Hospital: A Time-Series Study and Phylogenomic Analysis(2023) Allel, Kasim; Peters, Anne Sophie; Conejeros, José; Martínez, José; Spencer, Maria; Riquelme, Roberto; Rivas Jiménez, Lina María; Rojas, Pamela; Orellana, Cristian; García, Patricia; Araos Bralic, Rafael Ignacio; McGovern, Olivia; Patel, Twisha; Arias, Cesar; Lessa, Fernanda; Undurraga, Eduardo; Munita, Jose M.Background: The impact of coronavirus disease 2019 (COVID-19) on antimicrobial use (AU) and resistance has not been well evaluated in South America. These data are critical to inform national policies and clinical care. Methods: At a tertiary hospital in Santiago, Chile, between 2018 and 2022, subdivided into pre- (3/2018-2/2020) and post-COVID-19 onset (3/2020-2/2022), we evaluated intravenous AU and frequency of carbapenem-resistant Enterobacterales (CRE). We grouped monthly AU (defined daily doses [DDD]/1000 patient-days) into broad-spectrum β-lactams, carbapenems, and colistin and used interrupted time-series analysis to compare AU during pre- and post-pandemic onset. We studied the frequency of carbapenemase-producing (CP) CRE and performed whole-genome sequencing analyses of all carbapenem-resistant (CR) Klebsiella pneumoniae (CRKpn) isolates collected during the study period. Results: Compared with pre-pandemic, AU (DDD/1000 patient-days) significantly increased after the pandemic onset, from 78.1 to 142.5 (P < .001), 50.9 to 110.1 (P < .001), and 4.1 to 13.3 (P < .001) for broad-spectrum β-lactams, carbapenems, and colistin, respectively. The frequency of CP-CRE increased from 12.8% pre-COVID-19 to 51.9% after pandemic onset (P < .001). The most frequent CRE species in both periods was CRKpn (79.5% and 76.5%, respectively). The expansion of CP-CRE harboring blaNDM was particularly noticeable, increasing from 40% (n = 4/10) before to 73.6% (n = 39/53) after pandemic onset (P < .001). Our phylogenomic analyses revealed the emergence of two distinct genomic lineages of CP-CRKpn: ST45, harboring blaNDM, and ST1161, which carried blaKPC. Conclusions: AU and the frequency of CP-CRE increased after COVID-19 onset. The increase in CP-CRKpn was driven by the emergence of novel genomic lineages. Our observations highlight the need to strengthen infection prevention and control and antimicrobial stewardship efforts.Publication Multispecies emergence of dual blaKPC/NDM carbapenemase-producing Enterobacterales recovered from invasive infections in Chile(2025) Quesille, Ana; Solar, Camila; Martínez, Jose; Rivas Jiménez, Lina María; Quiroz, Valeria; González, Ana; Riquelme, Roberto; Ugalde, Juan; Peters, Anne; Ortega, Oscar; Araos Bralic, Rafael Ignacio; García, Patricia; Lebreton, Francois; Munita, Jose M.; Diaz, LorenaCarbapenemase-producing carbapenem-resistant Enterobacterales (CP-CRE) represent a significant global threat. The emergence of dual CP-CRE is particularly alarming, as they can potentially compromise the efficacy of newer antibiotics, further decreasing therapeutic alternatives. Herein, we report the emergence of multiple species of CP-CRE recovered from invasive infections in Chile that simultaneously harbor blaKPC and blaNDM and provide an in-depth genomic characterization of these worrisome pathogens. We collected carbapenem-resistant Enterobacterales (CRE) isolates from invasive infections over a 4-year period, across 11 healthcare centers in Chile. Bacterial species and the presence of carbapenemase genes were confirmed using MALDI-TOF and PCR assays, respectively. Antimicrobial susceptibility testing was conducted through disk diffusion and broth microdilution methods. Dual CP-CRE isolates were subjected to short- and long-read whole genome sequencing to perform a detailed genomic characterization of the isolates and of the mobile genetic elements harboring the enzymes. From a total of 1,335 CRE isolates, we observed an increase in the prevalence of CP-CRE, from 11% in 2019 to 38% in 2022. A total of 11 dual CP-CRE isolates were recovered, all of them harboring blaKPC and blaNDM. Species corresponded to Escherichia coli (n = 6), Klebsiella pneumoniae (n = 2), Klebsiella oxytoca (n = 2), and Citrobacter freundii (n = 1). Dual CP-CRE isolates exhibited resistance to all tested β-lactams except for cefiderocol. The blaKPC and blaNDM encoding genes were located on independent plasmids. Platforms harboring blaKPC were diverse and included IncN, IncF, and IncFIB plasmids. In contrast, blaNDM-7 was only found on fairly conserved IncX3 plasmids. We report that a rapid increase of CP-CRE in Chile, alongside with the emergence of multiple bacterial species of CP-CRE co-harboring blaKPC-2/3 and blaNDM-7, underscores a critical public health challenge. Our data suggest that the dissemination of blaNDM-7 was predominantly facilitated by IncX3 plasmids, whereas the spread of blaKPC involved multiple plasmid backbones. Active surveillance and genomic monitoring are critical to inform public policy and curtail the spread of these highly resistant pathogens.Publication Geographic divergence of methicillin-resistant Staphylococcus aureus ST5-SCCmecI in the aftermath of a major earthquake and tsunami: impact of a plasmid harboring heavy metal resistance genes(2025) Martínez, Jose; Alcalde, Manuel; Jara, Estefanía; Reyes, Jinnethe; Carvajal, Lina; Rincon, Sandra; Ríos, Rafael; Diaz, Lorena; Quesille, Ana; Riquelme, Roberto; Rivas Jiménez, Lina María; Moustafa, Ahmed; Hanson, Blake; Undurraga, Eduardo; Olivares, Jorge; García, Patricia; Araos Bralic, Rafael Ignacio; Planet, Paul; Arias, César; Munita, Jose M.El Staphylococcus aureus resistente a la meticilina (SARM) es una importante amenaza para la salud pública. La propagación global del SARM se caracteriza por sucesivas oleadas de clones epidémicos que dominan regiones geográficas específicas. Se cree que la adquisición de genes que codifican la resistencia a metales pesados (GMMP) es una característica clave en la divergencia geográfica del SARM. Sin embargo, la relación causa-efecto entre la presencia de GMMP y la divergencia de los clones de SARM aún no se ha dilucidado. En este estudio, evaluamos el papel que los GMMP pudieron haber desempeñado en la divergencia evolutiva del linaje ST5-SCC mec I del SARM en Latinoamérica. Realizamos una caracterización genómica de 113 aislamientos clínicos de SARM de seis centros de salud latinoamericanos, incluyendo 53 aislamientos recolectados en dos ciudades de Chile (Santiago y Concepción). Encontramos un plásmido (pSCL4752) que alberga genes de resistencia al arsénico, cadmio y mercurio en el 65% ( n = 71) de los aislados ST5-SCC mec I. También observamos una divergencia geográfica asociada a la presencia de pSCL4752 en aislados chilenos, con una mayor frecuencia en aislados de Concepción (88%) en comparación con Santiago (29%). Curiosamente, un análisis de reloj molecular reveló que esta divergencia se produjo tras el terremoto y tsunami de magnitud 8,8 Mw que azotó la zona de Concepción en 2010. Además, nuestros resultados demuestran que la presencia de pSCL4752 puede ser beneficiosa o perjudicial para los aislados ST5-SCC mec I, dependiendo de la disponibilidad ambiental de estos metales pesados. Nuestros resultados sugieren que la divergencia del linaje ST5-SCC mec I MRSA en América Latina podría haber sido fomentada por desastres ambientales e influenciada por la presencia/ausencia de HMRG albergados en un plásmido. IMPORTANCIA El Staphylococcus aureus resistente a la meticilina (MRSA) es una de las principales causas de infecciones potencialmente mortales en todo el mundo y una creciente preocupación para la salud pública. El aumento de bacterias resistentes a los antibióticos, como el MRSA, a menudo está vinculado a adaptaciones genéticas que mejoran su supervivencia. Nuestra investigación arroja luz sobre cómo los cambios ambientales, como los desencadenados por un desastre natural, pueden influir en la evolución y la propagación geográfica de un linaje de MRSA altamente resistente en América Latina. Identificamos un plásmido que porta genes de resistencia al arsénico, cadmio y mercurio, el cual se asoció con la divergencia geográfica del ST5-SCC mec.Se ha identificado un linaje de SARM con diferencias notables en su prevalencia entre las regiones afectadas por un gran terremoto y tsunami. Al vincular los eventos ambientales con la evolución del patógeno, nuestro estudio destaca el papel de las presiones ecológicas en la propagación del SARM. Estos hallazgos subrayan la necesidad de integrar el monitoreo ambiental en las estrategias de salud pública para comprender mejor el desafío global de la resistencia a los antimicrobianos.