يعرض 1 - 10 نتائج من 33 نتيجة بحث عن '"Antibiótico"', وقت الاستعلام: 1.03s تنقيح النتائج
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    دورية أكاديمية

    المساهمون: Congresso Brasileiro de Engenharia Sanitária e Ambiental (32. : 2023 : Belo Horizonte, MG)

    وصف الملف: application/pdf

    العلاقة: Congresso Brasileiro de Engenharia Sanitária e Ambiental ( 32. : 2023 : Belo Horizonte, MG). Anais [recurso eletrônico]. Rio de Janeiro : Abes, 2023; http://hdl.handle.net/10183/263791Test; 001173564

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    دورية أكاديمية
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    دورية أكاديمية
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    دورية أكاديمية
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    رسالة جامعية

    المساهمون: Husserl Orjuela, Johana, Saldarriaga Elorza, Juan Fernando, Pedraza Leal, Juan Manuel

    وصف الملف: 29 páginas; application/pdf

    العلاقة: [1] J.-I. Alós, «Resistencia bacteriana a los antibióticos: una crisis global,» Enfermedades Infecciosas y Microbiología Clínica, vol. 33, nº 10, pp. 692-699, 2015.; [2] E. Etebu y I. Arikekpar, «Antibiotics: Classification and mechanisms of action with emphasis on molecular perspectives,» International Journal of Applied Microbiology and Biotechnology Research, vol. 4, pp. 90-101, 2016.; [3] V. Seija y R. Vignoli, «Principales grupos de antibiótico,» Temas de bacteriología y virología médica, vol. 2, pp. 631-633, 2006.; [4] P. Reeves, «Antibiotics: Groups and properties,» Chemical Analysis of Antibiotic Residues in Food, vol. 1, pp. 1-60, 2012.; [5] J. Calvo y L. Martínez-Martínez, «Mecanismos de acción de los antimicrobianos,» Enfermedades Infecciosas y Microbiología Clínica, vol. 27, nº 1, pp. 44-52, 2009.; [6] J. Béahdy, «Recent Developments of Antibiotic Research and Classification of Antibiotics According to Chemical Structure,» Advances in Applied Microbiology, vol. 18, pp. 309-406, 1974.; [7] S. Ragnar, «CARBAPENEMS,» Medical Clinics of North America, vol. 79, nº 4, pp. 745-759, 1995.; [8] K. Knapp y B. Keith, «Carbapenems,» Seminars in Pediatric Infectious Diseases, vol. 12, nº 3, pp. 175-185, 2001.; [9] K. Papp-Wallace, A. Endimiani, M. Taracila y R. Bonomo, «Carbapenems: Past, Present, and Future,» Antimicrobial Agents and Chemotherapy, vol. 55, nº 11, 2011.; [10] J. Gonzáles, C. Maguiña y F. González, «La resistencia a los antibióticos: un problema muy serio,» Acta Médica Peruana, vol. 36, nº 2, pp. 145-151, 2019.; [11] Organización Mundial de la Salud (OMS), «Resistencia a los antimicrobianos,» OMS, 17 11 2021. [En línea]. Available: https://www.who.int/es/news-room/fact-sheets/detail/antimicrobial-resistanceTest. [Último acceso: 16 08 2023].; [12] T. Li, Z. Wang, J. Guo, C. Fuente-Nunes, J. Wang, B. Han, H. Tao, J. Liu y X. Wang, «Bacterial resistance to antibacterial agents: Mechanisms, control strategies, and implications for global healthS,» Science of The Total Environment, vol. 860, 2023.; [13] O. Zeon y L. Kibe, «Antimicrobial Drug Resistance and Antimicrobial Resistant Threats,» Physician Assistant Clinics, vol. 8, nº 3, pp. 411-420, 2023.; [14] S. Prakash, S. Misbahul, A. Kumar, M. Arif y M. Mohan, «Chapter 10 - Human health hazards due to antimicrobial resistance spread,» Antimicrobial Resistance in Wastewater and Human Health, pp. 225-240, 2023.; [15] X. Hu, M. Logue y N. Robinson, «Antimicrobial resistance is a global problem – a UK perspective,» European Journal of Integrative Medicine, vol. 36, 2020.; [16] C. ONeill, «Tackling drug-resistant infections globally: final report and recomendations,» The review on antimicrobial resistace, 2016.; [17] A. Peleg y D. Hooper, «Hospital-Acquired Infections Due to Gram-Negative Bacteria,» New England Journal of Medicine, vol. 362, nº 19, pp. 1804-1813, 2010.; [18] D. Tadesse, S. Zhao, E. Tong, S. Ayers, A. Singh, M. Bartholomew y P. McDermott, «Antimicrobial Drug Resistance in Escherichia coli from Humans and Food Animals, United States, 1950–2002,» Emerging Infectious Diseases, vol. 18, nº 5, pp. 741-749, 2012.; [19] A. Manges, J. Johnson, B. Foxman, T. OBryan, K. Fullerton y L. Riley, «Widespread Distribution of Urinary Tract Infections Caused by a Multidrug-Resistant Escherichia coli Clonal Group,» The New England Journal of Medicine, vol. 345, pp. 1007-1013, 2001.; [20] N. Puvaca y R. de LLanos, «Antimicrobial Resistance in Escherichia coli Strains Isolated from Humans and Pet Animals,» Antibiotics, vol. 10, nº 1, 2021.; [21] A. Bryce, A. Hay, I. Lane, H. Thornton, M. Wootton y C. Costelloe, «CCBYNC Open access,» Global prevalence of antibiotic resistance in paediatric urinary tract infections caused by Escherichia coli and association with routine use of antibiotics in primary care: systematic review and meta-analysis, vol. 352, p. BMJ, 2016.; [22] L. Poirel, J. Madec, A. Lupo, A. Schink, N. Kieffer, P. Nordmann y S. Schwarz, «Antimicrobial Resistance in Escherichia coli,» American Society for Microbiology, vol. 6, nº 4, 2018.; [23] F. Reinthaler, J. Posch, G. Wüst, D. Haas, G. Ruckenbauer, F. Mascher y E. Marth, «Antibiotic resistance of E. coli in sewage and sludge,» Water Research, vol. 37, nº 8, pp. 1685-1690, 2003.; [24] G. Da Silva y N. Mendonça, «Association between antimicrobial resistance and virulence in Escherichia coli,» Virulence, vol. 3, nº 1, 2012.; [25] J. Hur, C. Jawale y J. Lee, «Antimicrobial resistance of Salmonella isolated from food animals: A review,» Food Research International, vol. 45, nº 2, pp. 819-830, 2012.; [26] J. Crump, M. Sjölund-Karlsson, M. Gordon y C. Parry, «Epidemiology, Clinical Presentation, Laboratory Diagnosis, Antimicrobial Resistance, and Antimicrobial Management of Invasive Salmonella Infections,» American Society for Microbiology, vol. 28, nº 4, 2015.; [27] S. Kariuki, M. Gordon, N. Feasey y C. Parry, «Antimicrobial resistance and management of invasive Salmonella disease,» Vaccine, vol. 33, nº 3, pp. C21-C29, 2015.; [28] M. Abushaheen, Muzaheed, A. Fatabib, M. Alosaimi, W. Mansy, M. George, S. Acharya, S. Rathod, D. Devang, C. Jhugroo, S. Vellappally, A. Khan, J. Shaik y P. Jhgroo, «Antimicrobial resistance, mechanisms and its clinical significance,» Disease-a-Month, vol. 66, nº 6, 2020.; [29] E. Casto-Sánchez, L. Moore, F. Husson y A. Holmes, «What are the factors driving antimicrobial resistance? Perspectives from a public event in London, England,» BMC Infectious Diseases, vol. 16, nº 465, 2016.; [30] M. Akiba, H. Senba, H. Otagiri, V. Prabhasankar, S. Taniyasu, N. Yamashita, K. Lee, T. Yamamoto, T. Tsutsui, D. Joshua, K. Balakrishna, I. Bairy, T. Iwata, M. Kusumoto, K. Kannan y K. Guruje, «Impact of wastewater from different sources on the prevalence of antimicrobial-resistant Escherichia coli in sewage treatment plants in South India,» Ecotoxicology and Environmental Safety, vol. 115, pp. 203-208, 2015.; [31] D. Hocquet, A. Muller y X. Bertrand, «What happens in hospitals does not stay in hospitals: antibiotic-resistant bacteria in hospital wastewater systems,» Journal of Hospital Infection, vol. 93, nº 4, pp. 395-402, 2016.; [32] A. Hlacdicz, C. Kittinger y G. Zarfel, «Tigecycline Resistant Klebsiella pneumoniae Isolated from Austrian River Water,» International Journal Environmental Resistance Public Health, vol. 14, nº 10, 2017.; [33] L. Rizzo, C. Manaia, C. Merlin, T. Schwartz, C. Dagot, M. Ploye, I. Michael y D. Fatta-kassinos, «Urban wastewater treatment plants as hotspots for antibiotic resistant bacteria and genes spread into the environment: A review,» Science of The Total Environment, vol. 447, pp. 345-360, 2013.; [34] A. Tamhankar y C. Stalsby, «settingsOrder Article Reprints,» Antimicrobials and Antimicrobial Resistance in the Environment and Its Remediation: A Global One Health Perspective, vol. 16, nº 23, 2019.; [35] J. Wang, L. Chu, L. Wojnárovits y E. Takács, «Occurrence and fate of antibiotics, antibiotic resistant genes (ARGs) and antibiotic resistant bacteria (ARB) in municipal wastewater treatment plant: An overview,» Science of The Total Environment, vol. 744, 2020.; [36] A. Turolla, M. Cattaneo, F. Marazzi, V. Mezzanotte y M. Antonelli, «Antibiotic resistant bacteria in urban sewage: Role of full-scale wastewater treatment plants on environmental spreading,» Chemosphere, vol. 191, pp. 761-769, 2018.; [37] D. Larsson y C. Flach, «Antibiotic resistance in the environment,» Nature Reviews Microbiology, vol. 20, pp. 257-269, 2022.; [38] M. Despotovic, L. deNies, S. Bhanu y P. Wilmes, «Reservoirs of antimicrobial resistance in the context of One Health,» Current Opinion in Microbiology, vol. 73, 2023.; [39] N. Ashbolt, A. Amézquita, T. Backhaus, P. Borriello, K. Brandt, P. Collignon, A. Coors, R. Finley, W. Gaze, T. Heberer, J. Lawrence, J. Larsson, J. Ryan, J. Schönfeld, P. Silley, J. Snape, C. Van den Eede y E. Topp, «Human Health Risk Assessment (HHRA) for Environmental Development and Transfer of Antibiotic Resistance,» Environmental Health Perspectives, vol. 121, nº 9, pp. 993-1001, 2013.; [40] J. Bengtsson-Palme, E. Kristiansson y J. Larsson, «Environmental factors influencing the development and spread of antibiotic resistance,» FEMS Microbiology Reviews, vol. 42, nº 1, 2018.; [41] N. Devarajan, T. Köhler, P. Sivalingam, C. Van Delden, C. Mulaji, P. Mpiana, B. Ibelings y J. Poté, «Antibiotic resistant Pseudomonas spp. in the aquatic environment: A prevalence study under tropical and temperate climate conditions,» Water Research, vol. 115, pp. 256-265, 2017.; [42] S. Maamar, J. Hu y E. Hartmann, «Implications of indoor microbial ecology and evolution on antibiotic resistance,» Journal of Exposure Science & Environmental Epidemiology, vol. 30, pp. 1-15, 2020.; [43] C. Uruén, G. Chopo-Escuin, J. Tommassen, R. Mainar-Jaime y J. Arenas, «Biofilms as Promoters of Bacterial Antibiotic Resistance and Tolerance,» New Insights on Biofilm Antimicrobial Strategies, vol. 10, nº 1, 2021.; [44] S. Bungau, D. Mirela, T. Behl, L. Aleya y D. Zaha, «Aspects of excessive antibiotic consumption and environmental influences correlated with the occurrence of resistance to antimicrobial agents,» Current Opinion in Environmental Science & Health, vol. 19, 2021.; [45] E. Toprak, A. Veres, S. Yildiz, J. Pedraza, R. Chait, J. paulsson y R. Kishony, «Building a morbidostat: an automated continuous-culture device for studying bacterial drug resistance under dynamically sustained drug inhibition,» Nature Protocols, vol. 8, nº 3, pp. 555-567, 2013.; [46] W. Hellinger y N. Brewer, «Imipenem,» Mayo Clinic Proceedings, vol. 66, nº 10, pp. 1074-1081, 1991.; [47] S. Jaramillo, «Effect of primary wastewater treatment on enterobacteriaceae resistance to third generation cephalosporins and carbapenems,» 2020. [En línea]. Available: https://uniandes.primo.exlibrisgroup.com/discovery/fulldisplay?docid=alma991005027059707681&context=L&vid=57U_UDLA:UDLA&lang=es&search_scope=MyInst_and_CI&adaptor=Local%20Search%20Engine&tab=Todo&query=any,contains,imipenemTest. [Último acceso: 10 11 2023].; [48] L. Henao, «Caracterización del riesgo por exposición a cepas de Salmonella spp. provenientes del río Bogotá,» 2015. [En línea]. Available: https://sie.car.gov.co/handle/20.500.11786/33612?show=fullTest. [Último acceso: 10 11 2023].; [49] J. García, R. Cantón, E. García, M. Gómez, L. Martínez, C. Rodríguez y J. Vila, «Métodos básicos para el estudio de la sensibilidad a los antimicrobianos,» s.f. [En línea]. Available: https://www.seimc.org/contenidos/documentoscientificos/procedimientosmicrobiologia/seimc-procedimientomicrobiologia11.pdfTest. [Último acceso: 10 11 2023].; [50] ThermoFisher SCIENTIFIC, «LB Broth,» 2023. [En línea]. Available: https://www.seimc.org/contenidos/documentoscientificos/procedimientosmicrobiologia/seimc-procedimientomicrobiologia11.pdfTest. [Último acceso: 20 11 2023].; [51] Britania Lab, «Salmonella Shigella Agar,» 2021. [En línea]. Available: https://www.britanialab.com/back/public/upload/productos/upl_6070900c78db3.pdfTest. [Último acceso: 11 20 2023].; [52] W. Spark, «El clima y el tiempo promedio en todo el año en Colombia,» 2023. [En línea]. Available: https://es.weatherspark.com/y/23310/Clima-promedio-en-Colombia-durante-todo-el-a%C3%B1o#Figures-SummaryTest. 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Garcia, «Calidad del Recurso Hídrico,» 2004. [En línea]. Available: https://repositorio.uniandes.edu.co/server/api/core/bitstreams/a59950e8-1754-48a6-a373-e7c0dec6b642/contentTest. [Último acceso: 1 11 2023].; [58] Y. Rosabal-Carbonell, L. Chang-Huerta, N. Perez-Aballe y J. Morales-León, «Evaluación de la demanda química de oxígeno en aguas de la provincia de Granma, Cuba,» Revista Latinoamericana de Recursos Naturales, vol. 8, nº 1, pp. 15-20, 2012.; [59] Y. Barahona, J. Luna y I. Romero, «CALIDAD BACTERIOLÓGICA DEL AGUA DE LOS RÍOS MANAURE Y CASACARÁ, DEPARTAMENTO DEL CESAR, COLOMBIA,» 2017. [En línea]. Available: http://lunazul.ucaldas.edu.co/index.php/english-version/91-coleccion-articulos-espanol/275-calidad-bacteriologica-del-agua-de-los-riosTest. [Último acceso: 4 11 2023].; [60] Organización Panamericana de la Salud, «GUÍA PARA EL DISEÑO DE DESARENADORES YSEDIMENTADORES,» 2005. [En línea]. 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Kaur, «Imipenem-metal complexes: Computational analysis and toxicity studies with wastewater model microorganisms,» Environmental Research, vol. 239, 2023.; [65] D. Camero, «Cuantificación de resistencia antibiótica en las plantas de tratamiento de aguas residuales del Edificio Mario Laserna y el Centro Deportivo de la Universidad de los Andes.,» 2021. [En línea]. Available: https://repositorio.uniandes.edu.co/entities/publication/6f679f8f-2b0b-4187-8e22-b9fd262f9b48Test. [Último acceso: 22 11 2023].; [66] D. Cubillo y J. Delgado, «INCIDENCIA DE LA CONTAMINACION DE LA CUENCA ALTA DEL RÍO BOGOTÁ EN LA SIMETRIA DE LAS FRÚSTULAS DE LAS DIATOMEAS PRESENTES EN EL SUSTRATO ROCOSO,» 2016. [En línea]. Available: https://repository.usta.edu.co/bitstream/handle/11634/2901/2016dianacubillos.pdf?sequence=4Test. [Último acceso: 22 11 2023].; [67] C. Rodríguez, «Quebrada ‘La Vieja’: Recorrido por el pulmón oculto de la capital,» EL ESPECTADOR, 2015. [En línea]. 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    رسالة جامعية
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    المصدر: Research, Society and Development; Vol. 11 No. 8; e30711830846
    Research, Society and Development; Vol. 11 Núm. 8; e30711830846
    Research, Society and Development; v. 11 n. 8; e30711830846
    Research, Society and Development
    Universidade Federal de Itajubá (UNIFEI)
    instacron:UNIFEI

    وصف الملف: application/pdf