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Artykuły w czasopismach na temat "Serratia marcescens characteristics"

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Yan, Kejing, Kunyu Liu, Jiaqi Chang, et al. "Inhibition Mechanism of Water-Soluble Chitosan–Curdlan Composite Coating on the Postharvest Pathogens of Serratia marcescens and Pseudomonas syringae in Cherry Tomatoes." Microorganisms 12, no. 6 (2024): 1149. http://dx.doi.org/10.3390/microorganisms12061149.

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Cherry tomatoes, a very popular fruit, are highly susceptible to microbial infestation, which cause significant economic losses. In order to preserve cherry tomatoes better, we treat them with a Chitosan (CTS) and Curdlan (CUR) composite coating. The lowest inhibitory concentration of CTS/CUR composite coating on Serratia marcescens and Pseudomonas syringae, the growth curves, and the changes of the cell lysis rate were determined to explore the inhibitory mechanism of CTS/CUR composite coating on Serratia marcescens and Pseudomonas syringae and the microscopic morphology of Serratia marcescen
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Bhadra, Bhaskar, Pradosh Roy, and Ranadhir Chakraborty. "Serratia ureilytica sp. nov., a novel urea-utilizing species." International Journal of Systematic and Evolutionary Microbiology 55, no. 5 (2005): 2155–58. http://dx.doi.org/10.1099/ijs.0.63674-0.

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A Gram-negative, rod-shaped, urea-dissolving and non-spore-forming bacterium, designated strain NiVa 51T, was isolated from water of the River Torsa in Hasimara, Jalpaiguri district, West Bengal, India. On the basis of 16S rRNA gene sequence similarity, strain NiVa 51T was shown to belong to the γ-Proteobacteria and to be related to Serratia marcescens subsp. sakuensis (98·35 %) and S. marcescens subsp. marcescens (98·30 %); however, strain NiVa 51T exhibited only 43·7 % similarity to S. marcescens by DNA–DNA hybridization. The G+C content of the genomic DNA of the isolate was 60 mol%. Both bi
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Sadeeva, Zulfirya Z., Irina E. Novikova, Natalya M. Alyabyeva, et al. "Characteristics and properties of Serratia marcescens isolated in bacteremia in children." Russian Pediatric Journal 23, no. 2 (2023): 118–24. http://dx.doi.org/10.46563/1560-9561-2023-26-2-118-124.

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Introduction. Serratia marcescens is an opportunistic gram-negative microorganism, currently has been detected with increasing frequency in various clinical biomaterials from sick persons is the causative agent of nosocomial infections.
 The aim of the work is to determine microbiological and clinical features of S. marcescens in bloodstream infections in children. 
 Materials and methods. Nineteen isolates of S. marcescens were isolated from blood cultures. Antibiotic sensitivity was determined by broth microdilution method. Carbapenemase gene were determined using real-time polymer
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Marin, Luis, Raymond Rowan, Ana Mantilla, Bamidele Olupona, and Ann MacIntyre. "Lower-Extremity Infections Caused by Serratia marcescens." Journal of the American Podiatric Medical Association 107, no. 3 (2017): 231–39. http://dx.doi.org/10.7547/15-180.

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Serratia marcescens is a ubiquitous, facultatively anaerobic, gram-negative bacillus that has been cited to cause infection in immunocompromised populations. In the literature, S marcescens infections of the lower extremity have presented as granulomatous ulceration, abscess, bullous cellulitis, and necrotizing fasciitis. Herein we present a series of three cases of lower-extremity infections in which S marcescens was the sole or a contributing pathogen. We discuss the commonalities of these three cases as well as with those previously cited. All three patients presented with some combination
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Mayar Hezam, Abbas, and Ahmed Majeed Abd Zaid. "Serratia marcescens isolated from newborn meningitis in the Iraqi city of Diwaniyah: Molecular characterization." Sumer 2 8, CSS 2 (2023): 1–8. http://dx.doi.org/10.21931/rb/css/2023.08.02.94.

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Our study was conducted to detect virulence genes in Serratia marcescens. It has many virulence genes that cause nosocomal infections in immunocompromised persons and neonates. A total of 24/100 (24%) S. marcescens were obtained from neonates suffering from meningitis, and they were identified using culture characteristics biochemical- tests and confirmed by Polymerase chain reaction (PCR) technique, using the 16S rRNA gene. All virulence factors, including the fimA gene that encodes type-1 fimbria, the bsmB gene that encodes exo polysaccharide production, and ampC that encodes ß-lactamase enz
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Fisher, Matthew, Elizabeth Diago-Navarro, Olga Kaplun, Eric Sin, and Bettina C. Fries. "1196. Serratia marcescens Strains Carrying blaKPC-2 and blaKPC-3 Carbapenemase Associated With Chronic Mechanical Ventilation." Open Forum Infectious Diseases 5, suppl_1 (2018): S362. http://dx.doi.org/10.1093/ofid/ofy210.1029.

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Abstract Background Carbapenem resistance (CR) in Enterobacteriaceae is a growing concern which the CDC has designated as an urgent threat. At our institution we have noted emergence of CR strains in clinical isolates including a growing number of Serratia marcescens. CR in Serratia marcescens in the United States is mostly reported to be encoded by the SME family of chromosomally encoded carbapenemases, while in Asia it has been described being mediated by transmissible plasmids such as KPC. Here we describe the emergence and characteristics of CR Serratia marcescens at an academic tertiary c
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Trivedi, Mahendra Kumar, Alice Branton, Dahryn Trivedi, Gopal Nayak, Mayank Gangwar, and Snehasis Jana. "Assessment of Antibiogram of Biofield Energy Treated Serratia marcescens." European Journal of Preventive Medicine 3, no. 6 (2015): 201–8. https://doi.org/10.11648/j.ejpm.20150306.18.

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Serratia marcescens (S. marcescens) has become an important nosocomial pathogens and increased resistant isolates were reported. The current study evaluates the impact of an alternate energy medicine i.e. Mr. Trivedi’s biofield energy treatment on S. marcescens for changes in sensitivity pattern of antimicrobial, biochemical characteristics, and biotype number. S. marcescens cells were procured from MicroBioLogics Inc., USA in sealed pack bearing the American Type Culture Collection (ATCC 13880) number and divided into two groups, Group (Gr.) I: control and Gr. II: treated. Gr. II was fu
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Trivedi, Mahendra Kumar, Alice Branton, Dahryn Trivedi, Gopal Nayak, Mayank Gangwar, and Snehasis Jana. "Assessment of Antibiogram of Biofield Energy Treated Serratia marcescens." European Journal of Preventive Medicine 3, no. 6 (2015): 201–8. https://doi.org/10.5281/zenodo.192898.

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Serratia marcescens (S. marcescens) has become an important nosocomial pathogens and increased resistant isolates were reported. The current study evaluates the impact of an alternate energy medicine i.e. Mr. Trivedi’s biofield energy treatment on S. marcescens for changes in sensitivity pattern of antimicrobial, biochemical characteristics, and biotype number. S. marcescens cells were procured from MicroBioLogics Inc., USA in sealed pack bearing the American Type Culture Collection (ATCC 13880) number and divided into two groups, Group (Gr.) I: control
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Mei, Henny C. Van der, Marjorie M. Cowan, Michel J. Genet, Paul G. Rouxhet, and Henk J. Busscher. "Structural and physicochemical surface properties of Serratia marcescens strains." Canadian Journal of Microbiology 38, no. 10 (1992): 1033–41. http://dx.doi.org/10.1139/m92-170.

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Serratia marcescens is an important pathogen with noteworthy hydrophobicity characteristics as assessed by microbial adhesion to hydrocarbons. However, the present knowledge on the surface characteristics of S. marcescens strains does not include physicochemical properties relevant for adhesion such as surface free energy and zeta potential. Also, little attention has been paid hitherto to the structural features and chemical composition of the cell surface. Therefore, as a primary aim of this paper, we characterized S. marcescens strains by means of contact angle and zeta potential measuremen
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Khalil, M. I., M. A. Al-Tobje, and Rayan Faisal. "Molecular detection of virulence genes of Serratia marcescens isolates from diverse clinical sources." UNEC Journal of Engineering and Applied Sciences 4, no. 2 (2024): 99–105. https://doi.org/10.61640/ujeas.2024.1210.

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Serratia marcescens is a rare opportunistic pathogen that produces a red pigment and possess a serious threat to vulnerable people in healthcare settings. This study aimed to identify the virulence genes (cnfI, sat, hlyA, PhIA, ShIA, ShIB, swr, and sepA) in clinical isolates of S. marcescens. For that purpose, 152 samples were collected from various clinical sources including burns, wounds, and urinary tract infections. Cultural characteristics and biochemical tests were relied upon for the initial diagnosis. The diagnosis was confirmed using the Vitek-2 system and the final determination for
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Rozprawy doktorskie na temat "Serratia marcescens characteristics"

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Looney, Erin E. "Characteristics of the elkhorn coral pathogen PDL-100 (Serratia marcescens)." 2008. http://purl.galileo.usg.edu/uga%5Fetd/looney%5Ferin%5Fe%5F200812%5Fms.

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Thesis (M.S.)--University of Georgia, 2008.<br>Directed by Erin Lipp. Includes articles submitted to Marine pollution bulletin, and Applied and environmental microbiology. Includes bibliographical references.
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