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Ex vivo lung perfusion as a human platform for preclinical small molecule testing.
Weathington, Nathaniel M; Álvarez, Diana; Sembrat, John; Radder, Josiah; Cárdenes, Nayra; Noda, Kentaro; Gong, Qiaoke; Wong, Hesper; Kolls, Jay; D'Cunha, Jonathan; Mallampalli, Rama K; Chen, Bill B; Rojas, Mauricio.
Afiliação
  • Weathington NM; Department of Medicine, Division of Pulmonary, Allergy, and Critical Care Medicine.
  • Álvarez D; Department of Medicine, Division of Pulmonary, Allergy, and Critical Care Medicine.
  • Sembrat J; Simmons Center for Interstitial Lung Disease, and.
  • Radder J; Department of Medicine, Division of Pulmonary, Allergy, and Critical Care Medicine.
  • Cárdenes N; Simmons Center for Interstitial Lung Disease, and.
  • Noda K; Department of Medicine, Division of Pulmonary, Allergy, and Critical Care Medicine.
  • Gong Q; Department of Medicine, Division of Pulmonary, Allergy, and Critical Care Medicine.
  • Wong H; Simmons Center for Interstitial Lung Disease, and.
  • Kolls J; Department of Cardiothoracic Surgery, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
  • D'Cunha J; Department of Medicine, Division of Pulmonary, Allergy, and Critical Care Medicine.
  • Mallampalli RK; Department of Medicine, Division of Pulmonary, Allergy, and Critical Care Medicine.
  • Chen BB; Department of Medicine, Tulane University, New Orleans, Louisiana.
  • Rojas M; Department of Cardiothoracic Surgery, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
JCI Insight ; 3(19)2018 10 04.
Article em En | MEDLINE | ID: mdl-30282819
ABSTRACT
The acute respiratory distress syndrome (ARDS) causes an estimated 70,000 US deaths annually. Multiple pharmacologic interventions for ARDS have been tested and failed. An unmet need is a suitable laboratory human model to predictively assess emerging therapeutics on organ function in ARDS. We previously demonstrated that the small molecule BC1215 blocks actions of a proinflammatory E3 ligase-associated protein, FBXO3, to suppress NF-κB signaling in animal models of lung injury. Ex vivo lung perfusion (EVLP) is a clinical technique that maintains lung function for possible transplant after organ donation. We used human lungs unacceptable for transplant to model endotoxemic injury with EVLP for 6 hours. LPS infusion induced inflammatory injury with impaired oxygenation of pulmonary venous circulation. BC1215 treatment after LPS rescued oxygenation and decreased inflammatory cytokines in bronchoalveolar lavage. RNA sequencing transcriptomics from biopsies taken during EVLP revealed robust inflammatory gene induction by LPS with a strong signal for NF-κB-associated transcripts. BC1215 treatment reduced the LPS induction of genes associated with inflammatory and host defense gene responses by Gene Ontology (GOterm) and pathways analysis. BC1215 also significantly antagonized LPS-mediated NF-κB activity. EVLP may provide a unique human platform for preclinical study of chemical entities such as FBXO3 inhibitors on tissue physiology.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Perfusão / Piridinas / Síndrome do Desconforto Respiratório / Benzilaminas / Proteínas F-Box / Pulmão Tipo de estudo: Prognostic_studies Limite: Adolescent / Adult / Female / Humans / Male / Middle aged Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Perfusão / Piridinas / Síndrome do Desconforto Respiratório / Benzilaminas / Proteínas F-Box / Pulmão Tipo de estudo: Prognostic_studies Limite: Adolescent / Adult / Female / Humans / Male / Middle aged Idioma: En Ano de publicação: 2018 Tipo de documento: Article