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55321“…RESULTS: A total of 36 CPE were isolated from 31 participants, of which 15 (41.7%) were Escherichia coli and 8 (22.2%) Klebsiella pneumoniae. All isolates were susceptible to amikacin and tigecycline but an alarmingly high percentage (38.9%) were non-susceptible to colistin. …”
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55322por Chuki, Pem, Bianchini, Monica L, Tshering, Thupten, Sharma, Ragunath, Yangzom, Pema, Dema, Ugyen, Kenney, Rachel, Maki, Gina, Zervos, Marcus“…Antimicrobial susceptibility of Klebsiella pneumoniae and Escheriachia coli blood isolates to carbapenems and ceftriaxone increased from 2016 to 2017: 50/61 (82%) vs. 45/49 (92%) and 24/91 (26%) vs. 31/92 (34%), respectively. …”
Publicado 2019
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55323509. The Prevalence of Carbapenem-Resistant Enterobacteriaceae (CRE) in a Community Hospital Setting“…For the 18 cases with likely colonization, urine was the most common site. Klebsiella pneumoniae was the most common organism identified with carbapenem-resistance. …”
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55324por Mena Lora, Alfredo J, Rodriguez Abreu, Julia, Blanco, Claudia, de Lara, Jacquelin, Bleasdale, Susan C“…The most common organisms were Escherichia coli (43%) and Klebsiella pneumoniae (23%). Fluoroquinolone resistance was present in 70% of E. coli. …”
Publicado 2019
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55325por Rothe, Kathrin, Wantia, Nina, Spinner, Christoph D., Schneider, Jochen, Lahmer, Tobias, Waschulzik, Birgit, Schmid, Roland M., Busch, Dirk H., Katchanov, Juri“…The most frequently isolated relevant microorganisms were Enterobacterales (n = 439, 59.3%), Staphylococcus aureus (n = 92, 12.4%), Streptococcus pneumoniae (n = 34, 4.6%), Pseudomonas aeruginosa (n = 32, 4.3%), Streptococcus pyogenes (n = 16, 2.2%), Enterococcus faecalis (n = 18, 2.4%), and Enterococcus faecium (n = 12, 1.6%). …”
Publicado 2019
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55326Publicado 2017“…In humans, there was a statistically‐significant association between AMC and AMR for carbapenems and polymyxins in Klebsiella pneumoniae. Consumption of macrolides in animals was significantly associated with macrolide resistance in Campylobacter coli in animals and humans. …”
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55327por Lo, Stephanie W, Gladstone, Rebecca A, van Tonder, Andries J, Du Plessis, Mignon, Cornick, Jennifer E, Hawkins, Paulina A, Madhi, Shabir A, Nzenze, Susan A, Kandasamy, Rama, Ravikumar, K L, Elmdaghri, Naima, Kwambana-Adams, Brenda, Almeida, Samanta Cristine Grassi, Skoczynska, Anna, Egorova, Ekaterina, Titov, Leonid, Saha, Samir K, Paragi, Metka, Everett, Dean B, Antonio, Martin, Klugman, Keith P, Li, Yuan, Metcalf, Benjamin J, Beall, Bernard, McGee, Lesley, Breiman, Robert F, Bentley, Stephen D, von Gottberg, Anne“…OBJECTIVES: We reported tet(S/M) in Streptococcus pneumoniae and investigated its temporal spread in relation to nationwide clinical interventions. …”
Publicado 2020
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55328por Villeret, Berengère, Solhonne, Brigitte, Straube, Marjolène, Lemaire, Flora, Cazes, Aurélie, Garcia-Verdugo, Ignacio, Sallenave, Jean-Michel“…It has been known for many years that infection with IAV predisposes the host to secondary bacterial infections (such as Streptococcus pneumoniae or Staphylococcus aureus), and there is an abundance of mechanistic studies, including those studying the role of desensitization of TLR signaling, type I IFN- mediated impairment of neutrophil chemokines and antimicrobial production, attenuation of IL1β production etc., showing this. …”
Publicado 2020
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55329“…In culture medium supplemented with tryptophan, P9 (Klebsiella pneumoniae) produced the greatest amount of IAA. Inoculation with the bacterial combination K14 + 176 + P9 + N8 + P5 increased the alkali-hydrolysed nitrogen, available phosphorus and available potassium in the soil by 49.46, 99.51 and 19.38%, respectively, and enhanced the N, P, and K content of wheat by 97.7, 96.4 and 42.1%, respectively. …”
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55330por Lakoh, Sulaiman, Li, Letian, Sevalie, Stephen, Guo, Xuejun, Adekanmbi, Olukemi, Yang, Guang, Adebayo, Oladimeji, Yi, Le, Coker, Joshua M., Wang, Shuchao, Wang, Tiecheng, Sun, Weiyang, Habib, Abdulrazaq G., Klein, Eili Y.“…The most common isolates were Escherichia coli and Klebsiella pneumoniae; 29.2% and 19.0% in urine samples and 18.8% and 31.3% in sputum samples, respectively. …”
Publicado 2020
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55331“…(MIC: 250 μg/ml) and had bactericidal effect on eight of the clinical strains (MSSA,MRSA, oxacillin-resistant CONS, oxacillin-sensitive CONS, Enterococcus faecalis, Klebsiela species, Kleb pneumoniae ESBL and Candida parapsilosis). Further phytochemical investigation of the water fraction of the crude ethanol extract of leaves afforded compound 7 (hyperin) and compound 8 (cynaroside) that had bactericidal activity against tested bacterial species (MIC 50 μg/ml and 100 μg/ml). …”
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55332por Zhang, Lingdi, Forst, Christian V., Gordon, Aubree, Gussin, Gabrielle, Geber, Adam B., Fernandez, Porfirio J., Ding, Tao, Lashua, Lauren, Wang, Minghui, Balmaseda, Angel, Bonneau, Richard, Zhang, Bin, Ghedin, Elodie“…We also analyzed antibiotic resistance gene expression and determined that approximately 25% of the sequence reads that corresponded to antibiotic resistance genes mapped to Streptococcus pneumoniae and Staphylococcus aureus. Following construction of an integrated network of ARG expression with host gene co-expression, we identified several host key regulators involved in the host response to influenza virus and bacterial infections, and host gene pathways associated with specific antibiotic resistance genes. …”
Publicado 2020
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55333por LIU, Gao Shan, LI, Hong, ZHAO, Sheng Cang, LU, Rou Jian, NIU, Pei Hua, TAN, Wen Jie“…The most commonly detected pathogens were influenza virus (IFV; 37.39%; 123/329), adenovirus (AdV; 17.02%; 56/329), human coronaviruses (HCoVs; 10.94%; 36/329), rhinovirus/enterovirus (RV/EV; 10.03%; 33/329), parainfluenza viruses (PIVs; 8.51%; 28/329), and Mycoplasma pneumoniae (M. pneu; 8.51%; 28/329), respectively. Among the co-infected cases (17.53%; 78/445), IFV/AdV and IFV/M. pneu were the most common co-infections. …”
Publicado 2019
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55334por Anderson, Jeremy, Do, Lien Anh Ha, Toh, Zheng Quan, Hoe, Edwin, Reitsma, Andrea, Mulholland, Kim, Licciardi, Paul V.“…Streptococcus pneumoniae (pneumococcus) and respiratory syncytial virus (RSV) are the leading causes of respiratory infections amongst children <5 years of age. …”
Publicado 2020
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55335por Zhang, Zhao, Li, Daixi, Shi, Xing, Zhai, Yao, Guo, Yatao, Zheng, Yali, Zhao, Lili, He, Yukun, Chen, Yusheng, Wang, Zhanwei, Su, Jianrong, Kang, Yu, Gao, Zhancheng“…RESULTS: The isolate grew very slowly but conferred strong protection for the co-infected cephalosporin-sensitive Klebsiella pneumoniae. As the initial laboratory testing failed to identify the taxonomy of the strain, great perplexity was caused in the etiological diagnosis and anti-infection treatment for the patient. …”
Publicado 2020
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55336“…URI was more common in late Fall and Winter and was caused by various agents, including influenza, Mycoplasma pneumoniae, respiratory syncytial virus, and parainfluenza viruses. …”
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55337por Labi, Appiah-Korang, Bjerrum, Stephanie, Enweronu-Laryea, Christabel C, Ayibor, Prosper K, Nielsen, Karen L, Marvig, Rasmus L, Newman, Mercy J, Andersen, Leif P, Kurtzhals, Jorgen A L“…Whole-genome sequencing was used to characterize carbapenemase-producing Klebsiella pneumoniae. Typing was done by multilocus sequence typing (MLST) and single nucleotide polymorphism (SNP) analysis. …”
Publicado 2020
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55338por Kuch, Alicja, Zieniuk, Bartłomiej, Żabicka, Dorota, Van de Velde, Sebastien, Literacka, Elżbieta, Skoczyńska, Anna, Hryniewicz, Waleria“…We tested 400 isolates: 260 extended-spectrum β-lactamase (ESBL)- and/or ampC β-lactamase (AmpC)-producing isolates; 40 Klebsiella pneumoniae carbapenemase (KPC)-producing isolates; and 100 ESBL-, AmpC-, and KPC-negative isolates. …”
Publicado 2020
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55339“…Initially, he was hospitalized on the diagnosis of cerebral meningitis caused by Streptococcus pneumoniae. However, culture of the spinal fluid revealed the β-hemolytic colonies on blood agar. …”
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55340por Rezaie, Ali, Leite, Gabriela G. S., Melmed, Gil Y., Mathur, Ruchi, Villanueva-Millan, Maria Jesus, Parodi, Gonzalo, Sin, Jon, Germano, Juliana F., Morales, Walter, Weitsman, Stacy, Kim, Seung Young, Park, Jae Ho, Sakhaie, Siamak, Pimentel, Mark“…Controlled UVA exposure yielded significant reductions in Pseudomonas aeruginosa, Klebsiella pneumoniae, Escherichia coli, Enterococcus faecalis, Clostridioides difficile, Streptococcus pyogenes, Staphylococcus epidermidis, Proteus mirabilis and Candida albicans. …”
Publicado 2020
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