[HTML][HTML] Human lung stem cell-based alveolospheres provide insights into SARS-CoV-2-mediated interferon responses and pneumocyte dysfunction

H Katsura, V Sontake, A Tata, Y Kobayashi… - Cell stem cell, 2020 - cell.com
Coronavirus infection causes diffuse alveolar damage leading to acute respiratory distress
syndrome. The absence of ex vivo models of human alveolar epithelium is hindering an …

Human Lung Stem Cell-Based Alveolospheres Provide Insights into SARS-CoV-2-Mediated Interferon Responses and Pneumocyte Dysfunction

H Katsura, V Sontake, A Tata, Y Kobayashi… - Cell Stem …, 2020 - cdr.lib.unc.edu
Tata and colleagues report defined conditions for long-term expansion and differentiation of
adult human primary alveolar stem cells. Cultured AT2s are conducive to SARS-CoV-2 …

Human lung stem cell-based alveolospheres provide insights into SARS-CoV-2 mediated interferon responses and pneumocyte dysfunction

H Katsura, V Sontake, A Tata, Y Kobayashi… - paper.sciencenet.cn
Coronavirus infection causes diffuse alveolar damage leading to acute respiratory distress
syndrome. The absence of ex vivo models of human alveolar epithelium is hindering an …

[HTML][HTML] Human Lung Stem Cell-Based Alveolospheres Provide Insights into SARS-CoV-2-Mediated Interferon Responses and Pneumocyte Dysfunction

H Katsura, V Sontake, A Tata, Y Kobayashi… - Cell Stem …, 2020 - ncbi.nlm.nih.gov
Coronavirus infection causes diffuse alveolar damage leading to acute respiratory distress
syndrome. The absence of ex vivo models of human alveolar epithelium is hindering an …

[PDF][PDF] Human Lung Stem Cell-Based Alveolospheres Provide Insights into SARS-CoV-2-Mediated Interferon Responses and Pneumocyte Dysfunction

H Katsura, V Sontake, A Tata, SH Randell, RS Baric… - dukespace.lib.duke.edu
Coronavirus infection causes diffuse alveolar damage leading to acute respiratory distress
syndrome. The absence of ex vivo models of human alveolar epithelium is hindering an …

[引用][C] Human Lung Stem Cell-Based Alveolospheres Provide Insights into SARS-CoV-2-Mediated Interferon Responses and Pneumocyte Dysfunction

H Katsura, V Sontake, A Tata, Y Kobayashi… - Cell Stem Cell, 2020 - cir.nii.ac.jp
Human Lung Stem Cell-Based Alveolospheres Provide Insights into SARS-CoV-2-Mediated
Interferon Responses and Pneumocyte Dysfunction | CiNii Research CiNii 国立情報学 …

[HTML][HTML] Human Lung Stem Cell-Based Alveolospheres Provide Insights into SARS-CoV-2-Mediated Interferon Responses and Pneumocyte Dysfunction

H Katsura, V Sontake, A Tata, Y Kobayashi… - Cell Stem Cell, 2020 - cell.com
Coronavirus infection causes diffuse alveolar damage leading to acute respiratory distress
syndrome. The absence of ex vivo models of human alveolar epithelium is hindering an …

[HTML][HTML] Human Lung Stem Cell-Based Alveolospheres Provide Insights into SARS-CoV-2-Mediated Interferon Responses and Pneumocyte Dysfunction

H Katsura, V Sontake, A Tata, Y Kobayashi… - Cell Stem Cell, 2020 - Elsevier
Coronavirus infection causes diffuse alveolar damage leading to acute respiratory distress
syndrome. The absence of ex vivo models of human alveolar epithelium is hindering an …

[PDF][PDF] Human Lung Stem Cell-Based Alveolospheres Provide Insights into SARS-CoV-2-Mediated Interferon Responses and Pneumocyte Dysfunction

H Katsura, V Sontake, A Tata, Y Kobayashi… - scholar.archive.org
Coronavirus infection causes diffuse alveolar damage leading to acute respiratory distress
syndrome. The absence of ex vivo models of human alveolar epithelium is hindering an …

Human Lung Stem Cell-Based Alveolospheres Provide Insights into SARS-CoV-2-Mediated Interferon Responses and Pneumocyte Dysfunction

H Katsura, V Sontake, A Tata, Y Kobayashi… - Cell stem …, 2020 - pubmed.ncbi.nlm.nih.gov
Coronavirus infection causes diffuse alveolar damage leading to acute respiratory distress
syndrome. The absence of ex vivo models of human alveolar epithelium is hindering an …