836 Murine fecal microbiota transfer models colonize human microbes selectively and reveal transcriptional pathways associated with response to neoadjuvant checkpoint inhibitors

Bibliographic Details
Main Authors: James White, Patrick Forde, Juan Fu, Drew Pardoll, Franck Housseau, Cynthia Sears, Richard Blosser, Sudipto Ganguly, Fyza Shaikh, Joell Gills, Fuad Mohammad, Courtney Stevens, Hua Ding, Tatianna Larman
Format: Article
Language:English
Published: BMJ Publishing Group 2021-11-01
Series:Journal for ImmunoTherapy of Cancer
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author James White
Patrick Forde
Juan Fu
Drew Pardoll
Franck Housseau
Cynthia Sears
Richard Blosser
Sudipto Ganguly
Fyza Shaikh
Joell Gills
Fuad Mohammad
Courtney Stevens
Hua Ding
Tatianna Larman
author_facet James White
Patrick Forde
Juan Fu
Drew Pardoll
Franck Housseau
Cynthia Sears
Richard Blosser
Sudipto Ganguly
Fyza Shaikh
Joell Gills
Fuad Mohammad
Courtney Stevens
Hua Ding
Tatianna Larman
author_sort James White
collection DOAJ
first_indexed 2024-12-20T13:12:53Z
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institution Directory Open Access Journal
issn 2051-1426
language English
last_indexed 2024-12-20T13:12:53Z
publishDate 2021-11-01
publisher BMJ Publishing Group
record_format Article
series Journal for ImmunoTherapy of Cancer
spelling doaj.art-ee9bff57d8bc45e5b2ebce5c484ea7002022-12-21T19:39:38ZengBMJ Publishing GroupJournal for ImmunoTherapy of Cancer2051-14262021-11-019Suppl 210.1136/jitc-2021-SITC2021.836836 Murine fecal microbiota transfer models colonize human microbes selectively and reveal transcriptional pathways associated with response to neoadjuvant checkpoint inhibitorsJames White0Patrick Forde1Juan Fu2Drew Pardoll3Franck Housseau4Cynthia Sears5Richard Blosser6Sudipto Ganguly7Fyza Shaikh8Joell Gills9Fuad Mohammad10Courtney Stevens11Hua Ding12Tatianna Larman136 The Centre for the Development and Evaluation of Complex Interventions for Public Health Improvement (DECIPHer), Cardiff University, Cardiff, UKAff1 grid.7872.a0000000123318773Cork Cancer Research Centre Cork City IrelandAff1 grid.21107.350000000121719311Department of Otolaryngology - Head & Neck SurgeryJohns Hopkins University, School of Medicine Baltimore MD USA1Johns Hopkins University School of Medicine, Baltimore, MD, USADepartment of Oncology, Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore, Maryland, USAAff1 grid.411935.b0000000121922723OncologyJohns Hopkins Hospital Baltimore MD USADepartment of Oncology, Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University School of Medicine, Baltimore, Maryland, USAAff40 grid.21107.350000000121719311Johns Hopkins University Baltimore MD USA1Johns Hopkins School of Medicine, Baltimore, MD, USA1Johns Hopkins School of Medicine, Baltimore, MD, USA2Johns Hopkins University School of Medic, Baltimore, MD, USA2Johns Hopkins University School of Medic, Baltimore, MD, USA2Johns Hopkins University School of Medic, Baltimore, MD, USA2Johns Hopkins University School of Medic, Baltimore, MD, USA
spellingShingle James White
Patrick Forde
Juan Fu
Drew Pardoll
Franck Housseau
Cynthia Sears
Richard Blosser
Sudipto Ganguly
Fyza Shaikh
Joell Gills
Fuad Mohammad
Courtney Stevens
Hua Ding
Tatianna Larman
836 Murine fecal microbiota transfer models colonize human microbes selectively and reveal transcriptional pathways associated with response to neoadjuvant checkpoint inhibitors
Journal for ImmunoTherapy of Cancer
title 836 Murine fecal microbiota transfer models colonize human microbes selectively and reveal transcriptional pathways associated with response to neoadjuvant checkpoint inhibitors
title_full 836 Murine fecal microbiota transfer models colonize human microbes selectively and reveal transcriptional pathways associated with response to neoadjuvant checkpoint inhibitors
title_fullStr 836 Murine fecal microbiota transfer models colonize human microbes selectively and reveal transcriptional pathways associated with response to neoadjuvant checkpoint inhibitors
title_full_unstemmed 836 Murine fecal microbiota transfer models colonize human microbes selectively and reveal transcriptional pathways associated with response to neoadjuvant checkpoint inhibitors
title_short 836 Murine fecal microbiota transfer models colonize human microbes selectively and reveal transcriptional pathways associated with response to neoadjuvant checkpoint inhibitors
title_sort 836 murine fecal microbiota transfer models colonize human microbes selectively and reveal transcriptional pathways associated with response to neoadjuvant checkpoint inhibitors
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