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C Bonner

Showing results (171-180 of 184) with videos related to

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FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|November 29, 2013
Genetic susceptibility to interstitial pulmonary fibrosis in mice induced by vanadium pentoxide (V2O5)Dianne M Walters, Kevin M White, Ushma Patel, et al.
Patient Education and Counseling|April 4, 2022
Main COVID-19 information sources in a culturally and linguistically diverse community in Sydney, Australia: A cross-sectional surveyJ Ayre, D M Muscat, O Mac, et al.
Inhalation Toxicology|July 27, 2019
Inhalation exposure to multi-walled carbon nanotubes alters the pulmonary allergic response of mice to house dust mite allergenMark D Ihrie, Alexia J Taylor-Just, Nigel J Walker, et al.
American Journal of Respiratory Cell and Molecular Biology|May 7, 2013
Role of cyclooxygenase-2 in exacerbation of allergen-induced airway remodeling by multiwalled carbon nanotubesBrian C Sayers, Alexia J Taylor, Ellen E Glista-Baker, et al.
American Journal of Transplantation : Official Journal of the American Society of Transplantation and the American Society of Transplant Surgeons|September 24, 2017
Purity of islet preparations and 5-year metabolic outcome of allogenic islet transplantationK Benomar, M Chetboun, S Espiard, et al.
Nature Nanotechnology|November 7, 2009
Inhaled carbon nanotubes reach the subpleural tissue in miceJessica P Ryman-Rasmussen, Mark F Cesta, Arnold R Brody, et al.
ACS Nano|November 4, 2011
Dispersal state of multiwalled carbon nanotubes elicits profibrogenic cellular responses that correlate with fibrogenesis biomarkers and fibrosis in the murine lungXiang Wang, Tian Xia, Susana Addo Ntim, et al.
Environmental Health Perspectives|May 8, 2013
Interlaboratory evaluation of rodent pulmonary responses to engineered nanomaterials: the NIEHS Nano GO ConsortiumJames C Bonner, Rona M Silva, Alexia J Taylor, et al.
Archives of Toxicology|April 29, 2016
Expert consensus on an in vitro approach to assess pulmonary fibrogenic potential of aerosolized nanomaterialsAmy J Clippinger, Arti Ahluwalia, David Allen, et al.
Nanotoxicology|October 16, 2018
Role of p53 in the chronic pulmonary immune response to tangled or rod-like multi-walled carbon nanotubesKatherine S Duke, Elizabeth A Thompson, Mark D Ihrie, et al.
Pageof 19

Showing results (171-180 of 184) with videos related to

Sort By:
Pageof 19
FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|November 29, 2013
Genetic susceptibility to interstitial pulmonary fibrosis in mice induced by vanadium pentoxide (V2O5)Dianne M Walters, Kevin M White, Ushma Patel, et al.
Patient Education and Counseling|April 4, 2022
Main COVID-19 information sources in a culturally and linguistically diverse community in Sydney, Australia: A cross-sectional surveyJ Ayre, D M Muscat, O Mac, et al.
Inhalation Toxicology|July 27, 2019
Inhalation exposure to multi-walled carbon nanotubes alters the pulmonary allergic response of mice to house dust mite allergenMark D Ihrie, Alexia J Taylor-Just, Nigel J Walker, et al.
American Journal of Respiratory Cell and Molecular Biology|May 7, 2013
Role of cyclooxygenase-2 in exacerbation of allergen-induced airway remodeling by multiwalled carbon nanotubesBrian C Sayers, Alexia J Taylor, Ellen E Glista-Baker, et al.
American Journal of Transplantation : Official Journal of the American Society of Transplantation and the American Society of Transplant Surgeons|September 24, 2017
Purity of islet preparations and 5-year metabolic outcome of allogenic islet transplantationK Benomar, M Chetboun, S Espiard, et al.
Nature Nanotechnology|November 7, 2009
Inhaled carbon nanotubes reach the subpleural tissue in miceJessica P Ryman-Rasmussen, Mark F Cesta, Arnold R Brody, et al.
ACS Nano|November 4, 2011
Dispersal state of multiwalled carbon nanotubes elicits profibrogenic cellular responses that correlate with fibrogenesis biomarkers and fibrosis in the murine lungXiang Wang, Tian Xia, Susana Addo Ntim, et al.
Environmental Health Perspectives|May 8, 2013
Interlaboratory evaluation of rodent pulmonary responses to engineered nanomaterials: the NIEHS Nano GO ConsortiumJames C Bonner, Rona M Silva, Alexia J Taylor, et al.
Archives of Toxicology|April 29, 2016
Expert consensus on an in vitro approach to assess pulmonary fibrogenic potential of aerosolized nanomaterialsAmy J Clippinger, Arti Ahluwalia, David Allen, et al.
Nanotoxicology|October 16, 2018
Role of p53 in the chronic pulmonary immune response to tangled or rod-like multi-walled carbon nanotubesKatherine S Duke, Elizabeth A Thompson, Mark D Ihrie, et al.
Pageof 19