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Träfflista för sökning "WFRF:(Kahles Andre) ;pers:(Noushmehr Houtan)"

Search: WFRF:(Kahles Andre) > Noushmehr Houtan

  • Result 1-3 of 3
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1.
  • Chng, Kern Rei, et al. (author)
  • Cartography of opportunistic pathogens and antibiotic resistance genes in a tertiary hospital environment
  • 2020
  • In: Nature Medicine. - : Springer Science and Business Media LLC. - 1078-8956 .- 1546-170X. ; 26, s. 941-951
  • Journal article (peer-reviewed)abstract
    • Although disinfection is key to infection control, the colonization patterns and resistomes of hospital-environment microbes remain underexplored. We report the first extensive genomic characterization of microbiomes, pathogens and antibiotic resistance cassettes in a tertiary-care hospital, from repeated sampling (up to 1.5 years apart) of 179 sites associated with 45 beds. Deep shotgun metagenomics unveiled distinct ecological niches of microbes and antibiotic resistance genes characterized by biofilm-forming and human-microbiome-influenced environments with corresponding patterns of spatiotemporal divergence. Quasi-metagenomics with nanopore sequencing provided thousands of high-contiguity genomes, phage and plasmid sequences (>60% novel), enabling characterization of resistome and mobilome diversity and dynamic architectures in hospital environments. Phylogenetics identified multidrug-resistant strains as being widely distributed and stably colonizing across sites. Comparisons with clinical isolates indicated that such microbes can persist in hospitals for extended periods (>8 years), to opportunistically infect patients. These findings highlight the importance of characterizing antibiotic resistance reservoirs in hospitals and establish the feasibility of systematic surveys to target resources for preventing infections. Spatiotemporal characterization of microbial diversity and antibiotic resistance in a tertiary-care hospital reveals broad distribution and persistence of antibiotic-resistant organisms that could cause opportunistic infections in a healthcare setting.
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2.
  • Danko, David, et al. (author)
  • A global metagenomic map of urban microbiomes and antimicrobial resistance
  • 2021
  • In: Cell. - : Elsevier BV. - 0092-8674 .- 1097-4172. ; 184:13, s. 3376-3393
  • Journal article (peer-reviewed)abstract
    • We present a global atlas of 4,728 metagenomic samples from mass-transit systems in 60 cities over 3 years, representing the first systematic, worldwide catalog of the urban microbial ecosystem. This atlas provides an annotated, geospatial profile of microbial strains, functional characteristics, antimicrobial resistance (AMR) markers, and genetic elements, including 10,928 viruses, 1,302 bacteria, 2 archaea, and 838,532 CRISPR arrays not found in reference databases. We identified 4,246 known species of urban microorganisms and a consistent set of 31 species found in 97% of samples that were distinct from human commensal organisms. Profiles of AMR genes varied widely in type and density across cities. Cities showed distinct microbial taxonomic signatures that were driven by climate and geographic differences. These results constitute a high-resolution global metagenomic atlas that enables discovery of organisms and genes, highlights potential public health and forensic applications, and provides a culture-independent view of AMR burden in cities.
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3.
  • Weinstein, John N., et al. (author)
  • The cancer genome atlas pan-cancer analysis project
  • 2013
  • In: Nature Genetics. - : Springer Science and Business Media LLC. - 1061-4036 .- 1546-1718. ; 45:10, s. 1113-1120
  • Research review (peer-reviewed)abstract
    • The Cancer Genome Atlas (TCGA) Research Network has profiled and analyzed large numbers of human tumors to discover molecular aberrations at the DNA, RNA, protein and epigenetic levels. The resulting rich data provide a major opportunity to develop an integrated picture of commonalities, differences and emergent themes across tumor lineages. The Pan-Cancer initiative compares the first 12 tumor types profiled by TCGA. Analysis of the molecular aberrations and their functional roles across tumor types will teach us how to extend therapies effective in one cancer type to others with a similar genomic profile. © 2013 Nature America, Inc. All rights reserved.
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  • Result 1-3 of 3
Type of publication
journal article (2)
research review (1)
Type of content
peer-reviewed (3)
Author/Editor
Kahles, André (3)
Bhattacharya, Chandr ... (2)
Castro-Nallar, Eduar ... (2)
Deng, Youping (2)
Desnues, Christelle (2)
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Dias-Neto, Emmanuel (2)
Elhaik, Eran (2)
Iraola, Gregorio (2)
Jang, Soojin (2)
Łabaj, Paweł P. (2)
Mason, Christopher E ... (2)
Nagarajan, Niranjan (2)
Suzuki, Haruo (2)
Bhattacharyya, Malay (2)
Udekwu, Klas (2)
Kelly, Frank J. (2)
Danko, David (2)
Hajirasouliha, Iman (2)
Green, David C. (2)
Kyrpides, Nikos C. (2)
Rätsch, Gunnar (2)
Ossowski, Stephan (2)
Graf, Alexandra B. (2)
Moraes, Milton Ozori ... (2)
Shi, Leming (2)
Richard, Hugues (2)
Semmler, Torsten (2)
Dybwad, Marius (2)
Oliveira, Manuela (2)
Bezdan, Daniela (2)
Chatziefthimiou, Asp ... (2)
Schriml, Lynn M. (2)
Hernandez, Mark (2)
Chng, Kern Rei (2)
Ahsanuddin, Sofia (2)
Butler, Daniel J. (2)
De Filippis, Frances ... (2)
Hecht, Jochen (2)
Karasikov, Mikhail (2)
Leung, Marcus H. Y. (2)
Meleshko, Dmitry (2)
Mustafa, Harun (2)
Mutai, Beth (2)
Neches, Russell Y. (2)
Ng, Amanda (2)
Nieto-Caballero, Mar ... (2)
Nikolayeva, Olga (2)
Nikolayeva, Tatyana (2)
Png, Eileen (2)
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University
Stockholm University (2)
University of Gothenburg (1)
Lund University (1)
Chalmers University of Technology (1)
Karolinska Institutet (1)
Swedish University of Agricultural Sciences (1)
Language
English (3)
Research subject (UKÄ/SCB)
Natural sciences (3)
Medical and Health Sciences (2)

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