Literature DB >> 32240596

Nanoparticle Delivery of Proangiogenic Transcription Factors into the Neonatal Circulation Inhibits Alveolar Simplification Caused by Hyperoxia.

Craig Bolte1,2, Vladimir Ustiyan1,2, Xiaomeng Ren1,2, Andrew W Dunn1,2,3, Arun Pradhan1,2, Guolun Wang1,2, Olena A Kolesnichenko1,2, Zicheng Deng1,2,3, Yufang Zhang1,2, Donglu Shi3, James M Greenberg1,4, Alan H Jobe1,4, Tanya V Kalin1,4, Vladimir V Kalinichenko1,2,4,5.   

Abstract

Rationale: Advances in neonatal critical care have greatly improved the survival of preterm infants, but the long-term complications of prematurity, including bronchopulmonary dysplasia (BPD), cause mortality and morbidity later in life. Although VEGF (vascular endothelial growth factor) improves lung structure and function in rodent BPD models, severe side effects of VEGF therapy prevent its use in patients with BPD.
Objectives: To test whether nanoparticle delivery of proangiogenic transcription factor FOXM1 (forkhead box M1) or FOXF1 (forkhead box F1), both downstream targets of VEGF, can improve lung structure and function after neonatal hyperoxic injury.
Methods: Newborn mice were exposed to 75% O2 for the first 7 days of life before being returned to a room air environment. On Postnatal Day 2, polyethylenimine-(5) myristic acid/polyethylene glycol-oleic acid/cholesterol nanoparticles containing nonintegrating expression plasmids with Foxm1 or Foxf1 cDNAs were injected intravenously. The effects of the nanoparticles on lung structure and function were evaluated using confocal microscopy, flow cytometry, and the flexiVent small-animal ventilator.Measurements and Main
Results: The nanoparticles efficiently targeted endothelial cells and myofibroblasts in the alveolar region. Nanoparticle delivery of either FOXM1 or FOXF1 did not protect endothelial cells from apoptosis caused by hyperoxia but increased endothelial proliferation and lung angiogenesis after the injury. FOXM1 and FOXF1 improved elastin fiber organization, decreased alveolar simplification, and preserved lung function in mice reaching adulthood.Conclusions: Nanoparticle delivery of FOXM1 or FOXF1 stimulates lung angiogenesis and alveolarization during recovery from neonatal hyperoxic injury. Delivery of proangiogenic transcription factors has promise as a therapy for BPD in preterm infants.

Entities:  

Keywords:  FOX transcription factors; VEGF signaling; bronchopulmonary dysplasia; nanoparticle gene delivery systems; neonatal hyperoxic lung injury

Mesh:

Substances:

Year:  2020        PMID: 32240596      PMCID: PMC7328311          DOI: 10.1164/rccm.201906-1232OC

Source DB:  PubMed          Journal:  Am J Respir Crit Care Med        ISSN: 1073-449X            Impact factor:   21.405


  50 in total

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Authors:  Craig Bolte; Jeffrey A Whitsett; Tanya V Kalin; Vladimir V Kalinichenko
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2.  Functional characterization of evolutionarily conserved DNA regions in forkhead box f1 gene locus.

Authors:  Il-Man Kim; Yan Zhou; Sneha Ramakrishna; Douglas E Hughes; Julian Solway; Robert H Costa; Vladimir V Kalinichenko
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Authors:  Vladimir Ustiyan; Craig Bolte; Yufang Zhang; Lu Han; Yan Xu; Katherine E Yutzey; Aaron M Zorn; Tanya V Kalin; John M Shannon; Vladimir V Kalinichenko
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4.  Vascular endothelial growth factor gene therapy increases survival, promotes lung angiogenesis, and prevents alveolar damage in hyperoxia-induced lung injury: evidence that angiogenesis participates in alveolarization.

Authors:  Bernard Thébaud; Faruqa Ladha; Evangelos D Michelakis; Monika Sawicka; Gavin Thurston; Farah Eaton; Kyoko Hashimoto; Gwyneth Harry; Alois Haromy; Greg Korbutt; Stephen L Archer
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Journal:  Cancer Res       Date:  2007-07-01       Impact factor: 12.701

8.  Postnatal Alveologenesis Depends on FOXF1 Signaling in c-KIT+ Endothelial Progenitor Cells.

Authors:  Xiaomeng Ren; Vladimir Ustiyan; Minzhe Guo; Guolun Wang; Craig Bolte; Yufang Zhang; Yan Xu; Jeffrey A Whitsett; Tanya V Kalin; Vladimir V Kalinichenko
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9.  Foxf genes integrate tbx5 and hedgehog pathways in the second heart field for cardiac septation.

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10.  Forkhead transcription factor FoxF1 interacts with Fanconi anemia protein complexes to promote DNA damage response.

Authors:  Arun Pradhan; Vladimir Ustiyan; Yufang Zhang; Tanya V Kalin; Vladimir V Kalinichenko
Journal:  Oncotarget       Date:  2016-01-12
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2.  In vivo generation of bone marrow from embryonic stem cells in interspecies chimeras.

Authors:  Bingqiang Wen; Guolun Wang; Enhong Li; Olena A Kolesnichenko; Zhaowei Tu; Senad Divanovic; Tanya V Kalin; Vladimir V Kalinichenko
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4.  Update in Pediatrics 2020.

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Review 7.  Therapeutic Potential of Endothelial Progenitor Cells in Pulmonary Diseases.

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Review 8.  Nanoparticle Delivery Systems with Cell-Specific Targeting for Pulmonary Diseases.

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9.  Nanoparticle Delivery of STAT3 Alleviates Pulmonary Hypertension in a Mouse Model of Alveolar Capillary Dysplasia.

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10.  Nanoparticle Delivery of Angiogenic Gene Therapy. Save the Vessels, Save the Lung!

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