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Electroporation-mediated Delivery of FER Gene Enhances Innate Immune Response and Improves Survival in a Murine Model of Pneumonia

Previously, we reported that electroporation-mediated (EP) delivery of the FER gene improved survival in a combined trauma-pneumonia model. The mechanism of this protective effect is unknown. In this paper, we performed a pneumonia model in C57/BL6 mice with 500 CFU of Klebsiella pneumoniae. After i...

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Autores principales: Dolgachev, Vladislav, Panicker, Sreehari, Balijepalli, Sanjay, McCandless, Lane Kelly, Yin, Yue, Swamy, Samantha, Suresh, MV, Delano, Matthew J., Hemmila, Mark R., Raghavendran, Krishnan, Machado-Aranda, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6195832/
https://www.ncbi.nlm.nih.gov/pubmed/29907877
http://dx.doi.org/10.1038/s41434-018-0022-y
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author Dolgachev, Vladislav
Panicker, Sreehari
Balijepalli, Sanjay
McCandless, Lane Kelly
Yin, Yue
Swamy, Samantha
Suresh, MV
Delano, Matthew J.
Hemmila, Mark R.
Raghavendran, Krishnan
Machado-Aranda, David
author_facet Dolgachev, Vladislav
Panicker, Sreehari
Balijepalli, Sanjay
McCandless, Lane Kelly
Yin, Yue
Swamy, Samantha
Suresh, MV
Delano, Matthew J.
Hemmila, Mark R.
Raghavendran, Krishnan
Machado-Aranda, David
author_sort Dolgachev, Vladislav
collection PubMed
description Previously, we reported that electroporation-mediated (EP) delivery of the FER gene improved survival in a combined trauma-pneumonia model. The mechanism of this protective effect is unknown. In this paper, we performed a pneumonia model in C57/BL6 mice with 500 CFU of Klebsiella pneumoniae. After inoculation, a plasmid encoding human FER was delivered by EP into the lung (PNA/pFER-EP). Survival of FER-treated vs. controls (PNA; PNA/EP-pcDNA) was recorded. In parallel cohorts, bronchial alveolar lavage (BAL) and lung were harvested at 24 and 72 h with markers of infection measured. FER-EP-treated animals reduced bacterial counts and had better 5-day survival compared to controls (80 vs 20 vs 25%; p<0.05). Pre-treatment resulted in 100% survival. With FER, inflammatory monocytes were quickly recruited into BAL. These cells had increased surface expression for Toll-receptor 2 and 4, and increased phagocytic and myeloperoxidase activity at 24 h. Samples from FER electroporated animals had increased phosphorylation of STAT transcription factors, varied gene expression of IL1β, TNFα, Nrf2, Nlrp3, Cxcl2, HSP90 and increased cytokine production of TNF-α, CCL-2, KC, IFN-γ and IL-1RA. In a follow-up experiment, using Methicillin-Resistant Staphylococcus aureus (MRSA) similar bacterial reduction effects were obtained with FER gene delivery. We conclude that FER overexpression improves survival through STAT activation enhancing innate immunity and accelerating bacterial clearance in the lung. This constitutes a novel mechanism of inflammatory regulation with therapeutic potential in the setting of hospital-acquired pneumonia.
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spelling pubmed-61958322018-12-15 Electroporation-mediated Delivery of FER Gene Enhances Innate Immune Response and Improves Survival in a Murine Model of Pneumonia Dolgachev, Vladislav Panicker, Sreehari Balijepalli, Sanjay McCandless, Lane Kelly Yin, Yue Swamy, Samantha Suresh, MV Delano, Matthew J. Hemmila, Mark R. Raghavendran, Krishnan Machado-Aranda, David Gene Ther Article Previously, we reported that electroporation-mediated (EP) delivery of the FER gene improved survival in a combined trauma-pneumonia model. The mechanism of this protective effect is unknown. In this paper, we performed a pneumonia model in C57/BL6 mice with 500 CFU of Klebsiella pneumoniae. After inoculation, a plasmid encoding human FER was delivered by EP into the lung (PNA/pFER-EP). Survival of FER-treated vs. controls (PNA; PNA/EP-pcDNA) was recorded. In parallel cohorts, bronchial alveolar lavage (BAL) and lung were harvested at 24 and 72 h with markers of infection measured. FER-EP-treated animals reduced bacterial counts and had better 5-day survival compared to controls (80 vs 20 vs 25%; p<0.05). Pre-treatment resulted in 100% survival. With FER, inflammatory monocytes were quickly recruited into BAL. These cells had increased surface expression for Toll-receptor 2 and 4, and increased phagocytic and myeloperoxidase activity at 24 h. Samples from FER electroporated animals had increased phosphorylation of STAT transcription factors, varied gene expression of IL1β, TNFα, Nrf2, Nlrp3, Cxcl2, HSP90 and increased cytokine production of TNF-α, CCL-2, KC, IFN-γ and IL-1RA. In a follow-up experiment, using Methicillin-Resistant Staphylococcus aureus (MRSA) similar bacterial reduction effects were obtained with FER gene delivery. We conclude that FER overexpression improves survival through STAT activation enhancing innate immunity and accelerating bacterial clearance in the lung. This constitutes a novel mechanism of inflammatory regulation with therapeutic potential in the setting of hospital-acquired pneumonia. 2018-06-15 2018-08 /pmc/articles/PMC6195832/ /pubmed/29907877 http://dx.doi.org/10.1038/s41434-018-0022-y Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Dolgachev, Vladislav
Panicker, Sreehari
Balijepalli, Sanjay
McCandless, Lane Kelly
Yin, Yue
Swamy, Samantha
Suresh, MV
Delano, Matthew J.
Hemmila, Mark R.
Raghavendran, Krishnan
Machado-Aranda, David
Electroporation-mediated Delivery of FER Gene Enhances Innate Immune Response and Improves Survival in a Murine Model of Pneumonia
title Electroporation-mediated Delivery of FER Gene Enhances Innate Immune Response and Improves Survival in a Murine Model of Pneumonia
title_full Electroporation-mediated Delivery of FER Gene Enhances Innate Immune Response and Improves Survival in a Murine Model of Pneumonia
title_fullStr Electroporation-mediated Delivery of FER Gene Enhances Innate Immune Response and Improves Survival in a Murine Model of Pneumonia
title_full_unstemmed Electroporation-mediated Delivery of FER Gene Enhances Innate Immune Response and Improves Survival in a Murine Model of Pneumonia
title_short Electroporation-mediated Delivery of FER Gene Enhances Innate Immune Response and Improves Survival in a Murine Model of Pneumonia
title_sort electroporation-mediated delivery of fer gene enhances innate immune response and improves survival in a murine model of pneumonia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6195832/
https://www.ncbi.nlm.nih.gov/pubmed/29907877
http://dx.doi.org/10.1038/s41434-018-0022-y
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