Model Systems to Study the Chronic, Polymicrobial Infections in Cystic Fibrosis: Current Approaches and Exploring Future Directions
A recent workshop titled “Developing Models to Study Polymicrobial Infections,” sponsored by the Dartmouth Cystic Fibrosis Center (DartCF), explored the development of new models to study the polymicrobial infections associated with the airways of persons with cystic fibrosis (CF). The workshop gath...
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Published in | mBio Vol. 12; no. 5; p. e0176321 |
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Main Authors | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
Format | Journal Article |
Language | English |
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United States
American Society for Microbiology
26.10.2021
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Abstract | A recent workshop titled “Developing Models to Study Polymicrobial Infections,” sponsored by the Dartmouth Cystic Fibrosis Center (DartCF), explored the development of new models to study the polymicrobial infections associated with the airways of persons with cystic fibrosis (CF). The workshop gathered 35+ investigators over two virtual sessions.
A recent workshop titled “Developing Models to Study Polymicrobial Infections,” sponsored by the Dartmouth Cystic Fibrosis Center (DartCF), explored the development of new models to study the polymicrobial infections associated with the airways of persons with cystic fibrosis (CF). The workshop gathered 35+ investigators over two virtual sessions. Here, we present the findings of this workshop, summarize some of the challenges involved with developing such models, and suggest three frameworks to tackle this complex problem. The frameworks proposed here, we believe, could be generally useful in developing new model systems for other infectious diseases. Developing and validating new approaches to study the complex polymicrobial communities in the CF airway could open windows to new therapeutics to treat these recalcitrant infections, as well as uncovering organizing principles applicable to chronic polymicrobial infections more generally. |
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AbstractList | A recent workshop titled “Developing Models to Study Polymicrobial Infections,” sponsored by the Dartmouth Cystic Fibrosis Center (DartCF), explored the development of new models to study the polymicrobial infections associated with the airways of persons with cystic fibrosis (CF). The workshop gathered 35+ investigators over two virtual sessions. Here, we present the findings of this workshop, summarize some of the challenges involved with developing such models, and suggest three frameworks to tackle this complex problem. The frameworks proposed here, we believe, could be generally useful in developing new model systems for other infectious diseases. Developing and validating new approaches to study the complex polymicrobial communities in the CF airway could open windows to new therapeutics to treat these recalcitrant infections, as well as uncovering organizing principles applicable to chronic polymicrobial infections more generally. A recent workshop titled "Developing Models to Study Polymicrobial Infections," sponsored by the Dartmouth Cystic Fibrosis Center (DartCF), explored the development of new models to study the polymicrobial infections associated with the airways of persons with cystic fibrosis (CF). The workshop gathered 35+ investigators over two virtual sessions. Here, we present the findings of this workshop, summarize some of the challenges involved with developing such models, and suggest three frameworks to tackle this complex problem. The frameworks proposed here, we believe, could be generally useful in developing new model systems for other infectious diseases. Developing and validating new approaches to study the complex polymicrobial communities in the CF airway could open windows to new therapeutics to treat these recalcitrant infections, as well as uncovering organizing principles applicable to chronic polymicrobial infections more generally.A recent workshop titled "Developing Models to Study Polymicrobial Infections," sponsored by the Dartmouth Cystic Fibrosis Center (DartCF), explored the development of new models to study the polymicrobial infections associated with the airways of persons with cystic fibrosis (CF). The workshop gathered 35+ investigators over two virtual sessions. Here, we present the findings of this workshop, summarize some of the challenges involved with developing such models, and suggest three frameworks to tackle this complex problem. The frameworks proposed here, we believe, could be generally useful in developing new model systems for other infectious diseases. Developing and validating new approaches to study the complex polymicrobial communities in the CF airway could open windows to new therapeutics to treat these recalcitrant infections, as well as uncovering organizing principles applicable to chronic polymicrobial infections more generally. A recent workshop titled “Developing Models to Study Polymicrobial Infections,” sponsored by the Dartmouth Cystic Fibrosis Center (DartCF), explored the development of new models to study the polymicrobial infections associated with the airways of persons with cystic fibrosis (CF). The workshop gathered 35+ investigators over two virtual sessions. A recent workshop titled “Developing Models to Study Polymicrobial Infections,” sponsored by the Dartmouth Cystic Fibrosis Center (DartCF), explored the development of new models to study the polymicrobial infections associated with the airways of persons with cystic fibrosis (CF). The workshop gathered 35+ investigators over two virtual sessions. A recent workshop titled “Developing Models to Study Polymicrobial Infections,” sponsored by the Dartmouth Cystic Fibrosis Center (DartCF), explored the development of new models to study the polymicrobial infections associated with the airways of persons with cystic fibrosis (CF). The workshop gathered 35+ investigators over two virtual sessions. Here, we present the findings of this workshop, summarize some of the challenges involved with developing such models, and suggest three frameworks to tackle this complex problem. The frameworks proposed here, we believe, could be generally useful in developing new model systems for other infectious diseases. Developing and validating new approaches to study the complex polymicrobial communities in the CF airway could open windows to new therapeutics to treat these recalcitrant infections, as well as uncovering organizing principles applicable to chronic polymicrobial infections more generally. |
Author | Hunter, Ryan Ashare, Alix Harrison, Freya Sheppard, Donald C. Whiteson, Katrine Price-Whelan, Alexa Prince, Alice Schultz, Daniel Khursigara, Cezar M. Rivett, Damian W. O’Toole, George A. Whitaker, Rachel LiPuma, John J. Nadell, Carey Henson, Michael A. Hampton, Thomas H. Schwartzman, Joseph D. Bomberger, Jennifer M. Whelan, Fiona J. van der Gast, Chris Crabbé, Aurélie Phelan, Vanessa V. Cramer, Robert A. DePas, William H. Bliska, James B. Madden, Dean R. Dietrich, Lars E. Spero, Melanie A. Davies, Jane C. Smyth, Alan R. Goldberg, Joanna B. Mayers, Jared R. Stanton, Bruce A. Kümmerli, Rolf Limoli, Dominique Hogan, Deborah A. Newman, Dianne Turner, Paul E. |
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Dartmouth College, Hanover, New Hampshire, USA – sequence: 25 givenname: Dianne orcidid: 0000-0003-1647-1918 surname: Newman fullname: Newman, Dianne organization: Caltech, Pasadena, California, USA – sequence: 26 givenname: Alice surname: Prince fullname: Prince, Alice organization: Columbia University, New York, New York, USA – sequence: 27 givenname: Damian W. orcidid: 0000-0002-1852-6137 surname: Rivett fullname: Rivett, Damian W. organization: Manchester Metropolitan University, Manchester, United Kingdom – sequence: 28 givenname: Joseph D. surname: Schwartzman fullname: Schwartzman, Joseph D. organization: Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA – sequence: 29 givenname: Daniel surname: Schultz fullname: Schultz, Daniel organization: Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA – sequence: 30 givenname: Donald C. surname: Sheppard fullname: Sheppard, Donald C. organization: McGill University, Montreal, Canada – sequence: 31 givenname: Alan R. surname: Smyth fullname: Smyth, Alan R. organization: University of Nottingham, Nottingham, United Kingdom – sequence: 32 givenname: Melanie A. surname: Spero fullname: Spero, Melanie A. organization: University of Oregon, Eugene, Oregon, USA – sequence: 33 givenname: Bruce A. surname: Stanton fullname: Stanton, Bruce A. organization: Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA – sequence: 34 givenname: Paul E. surname: Turner fullname: Turner, Paul E. organization: Yale University, New Haven, Connecticut, USA – sequence: 35 givenname: Chris orcidid: 0000-0003-1101-4048 surname: van der Gast fullname: van der Gast, Chris organization: Manchester Metropolitan University, Manchester, United Kingdom – sequence: 36 givenname: Fiona J. surname: Whelan fullname: Whelan, Fiona J. organization: University of Nottingham, Nottingham, United Kingdom – sequence: 37 givenname: Rachel surname: Whitaker fullname: Whitaker, Rachel organization: University of Illinois, Urbana-Champaign, Illinois, USA – sequence: 38 givenname: Katrine orcidid: 0000-0002-5423-6014 surname: Whiteson fullname: Whiteson, Katrine organization: University of California, Irvine, California, USA |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/34544277$$D View this record in MEDLINE/PubMed |
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Snippet | A recent workshop titled “Developing Models to Study Polymicrobial Infections,” sponsored by the Dartmouth Cystic Fibrosis Center (DartCF), explored the... A recent workshop titled "Developing Models to Study Polymicrobial Infections," sponsored by the Dartmouth Cystic Fibrosis Center (DartCF), explored the... |
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SubjectTerms | Animals Biofilms Coinfection - complications Cystic Fibrosis - complications Host-Microbial Interactions Humans Microbial Interactions Models, Biological Opinion/Hypothesis Persistent Infection - complications Respiratory System - microbiology |
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Title | Model Systems to Study the Chronic, Polymicrobial Infections in Cystic Fibrosis: Current Approaches and Exploring Future Directions |
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