Cargando…

Cardiac-targeting magnetic lipoplex delivery of SH-IGF1R plasmid attenuate norepinephrine-induced cardiac hypertrophy in murine heart

Recent studies have demonstrated a number of molecular mechanisms contributing to the initiation of cardiac hypertrophy response to pressure overload. IGF1R (insulin-like growth factor-1 receptor), an important oncogene, is overexpressed in hypertrophic heart and mediates the hypertrophic pathology...

Descripción completa

Detalles Bibliográficos
Autores principales: Xu, Yiping, Li, Xuebiao, Kong, Minjian, Jiang, Daming, Dong, Aiqiang, Shen, Zhonghua, Duan, Qunjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4182904/
https://www.ncbi.nlm.nih.gov/pubmed/24965872
http://dx.doi.org/10.1042/BSR20130107
_version_ 1782337632365182976
author Xu, Yiping
Li, Xuebiao
Kong, Minjian
Jiang, Daming
Dong, Aiqiang
Shen, Zhonghua
Duan, Qunjun
author_facet Xu, Yiping
Li, Xuebiao
Kong, Minjian
Jiang, Daming
Dong, Aiqiang
Shen, Zhonghua
Duan, Qunjun
author_sort Xu, Yiping
collection PubMed
description Recent studies have demonstrated a number of molecular mechanisms contributing to the initiation of cardiac hypertrophy response to pressure overload. IGF1R (insulin-like growth factor-1 receptor), an important oncogene, is overexpressed in hypertrophic heart and mediates the hypertrophic pathology process. In this study, we applied with liposomal magnetofection that potentiated gene transfection by applying an external magnetic field to enhance its transfection efficiency. Liposomal magnetofection provided high efficiency in transgene expression in vivo. In vivo, IGF1R-specific-shRNA (small-hairpin RNA) by magnetofection inhibited IGF1R protein expression by 72.2±6.8, 80.7±9.6 and 84.5±5.6%, at 24, 48 and 72 h, respectively, after pGFPshIGF1R injection, indicating that liposomal magnetofection is a promising method that allows the targeting of gene therapy for heart failure. Furthermore, we found that the treated animals (liposomal magnetofection with shIGF1R) showed reduced septal and posterior wall thickness, reduced HW:BWs (heart weight-to-body weights) compared with controls. Moreover, we also found that liposomal magnetofection-based shIGF1R transfection decreased the expression level of p-ERK (phosphorylated extracellular-signal-regulated kinase)1/2, p-AKT1 (phosphorylated protein kinase B1) compared with untreated hearts. These results suggested that liposomal magnetofection-mediated IGF1R-specific-shRNA may be a promising method, and suppression the IGF1R expression inhibited norepinephrine-induced cardiac hypertrophic process via inhibiting PI3K (phosphoinositide 3-kinase)/AKT pathway.
format Online
Article
Text
id pubmed-4182904
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Portland Press Ltd.
record_format MEDLINE/PubMed
spelling pubmed-41829042014-10-17 Cardiac-targeting magnetic lipoplex delivery of SH-IGF1R plasmid attenuate norepinephrine-induced cardiac hypertrophy in murine heart Xu, Yiping Li, Xuebiao Kong, Minjian Jiang, Daming Dong, Aiqiang Shen, Zhonghua Duan, Qunjun Biosci Rep Original Paper Recent studies have demonstrated a number of molecular mechanisms contributing to the initiation of cardiac hypertrophy response to pressure overload. IGF1R (insulin-like growth factor-1 receptor), an important oncogene, is overexpressed in hypertrophic heart and mediates the hypertrophic pathology process. In this study, we applied with liposomal magnetofection that potentiated gene transfection by applying an external magnetic field to enhance its transfection efficiency. Liposomal magnetofection provided high efficiency in transgene expression in vivo. In vivo, IGF1R-specific-shRNA (small-hairpin RNA) by magnetofection inhibited IGF1R protein expression by 72.2±6.8, 80.7±9.6 and 84.5±5.6%, at 24, 48 and 72 h, respectively, after pGFPshIGF1R injection, indicating that liposomal magnetofection is a promising method that allows the targeting of gene therapy for heart failure. Furthermore, we found that the treated animals (liposomal magnetofection with shIGF1R) showed reduced septal and posterior wall thickness, reduced HW:BWs (heart weight-to-body weights) compared with controls. Moreover, we also found that liposomal magnetofection-based shIGF1R transfection decreased the expression level of p-ERK (phosphorylated extracellular-signal-regulated kinase)1/2, p-AKT1 (phosphorylated protein kinase B1) compared with untreated hearts. These results suggested that liposomal magnetofection-mediated IGF1R-specific-shRNA may be a promising method, and suppression the IGF1R expression inhibited norepinephrine-induced cardiac hypertrophic process via inhibiting PI3K (phosphoinositide 3-kinase)/AKT pathway. Portland Press Ltd. 2014-10-02 /pmc/articles/PMC4182904/ /pubmed/24965872 http://dx.doi.org/10.1042/BSR20130107 Text en © 2014 The Author(s) This is an Open Access article distributed under the terms of the Creative Commons Attribution Licence (CC-BY) (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution and reproduction in any medium, provided the original work is properly cited. http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Licence (CC-BY) (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Paper
Xu, Yiping
Li, Xuebiao
Kong, Minjian
Jiang, Daming
Dong, Aiqiang
Shen, Zhonghua
Duan, Qunjun
Cardiac-targeting magnetic lipoplex delivery of SH-IGF1R plasmid attenuate norepinephrine-induced cardiac hypertrophy in murine heart
title Cardiac-targeting magnetic lipoplex delivery of SH-IGF1R plasmid attenuate norepinephrine-induced cardiac hypertrophy in murine heart
title_full Cardiac-targeting magnetic lipoplex delivery of SH-IGF1R plasmid attenuate norepinephrine-induced cardiac hypertrophy in murine heart
title_fullStr Cardiac-targeting magnetic lipoplex delivery of SH-IGF1R plasmid attenuate norepinephrine-induced cardiac hypertrophy in murine heart
title_full_unstemmed Cardiac-targeting magnetic lipoplex delivery of SH-IGF1R plasmid attenuate norepinephrine-induced cardiac hypertrophy in murine heart
title_short Cardiac-targeting magnetic lipoplex delivery of SH-IGF1R plasmid attenuate norepinephrine-induced cardiac hypertrophy in murine heart
title_sort cardiac-targeting magnetic lipoplex delivery of sh-igf1r plasmid attenuate norepinephrine-induced cardiac hypertrophy in murine heart
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4182904/
https://www.ncbi.nlm.nih.gov/pubmed/24965872
http://dx.doi.org/10.1042/BSR20130107
work_keys_str_mv AT xuyiping cardiactargetingmagneticlipoplexdeliveryofshigf1rplasmidattenuatenorepinephrineinducedcardiachypertrophyinmurineheart
AT lixuebiao cardiactargetingmagneticlipoplexdeliveryofshigf1rplasmidattenuatenorepinephrineinducedcardiachypertrophyinmurineheart
AT kongminjian cardiactargetingmagneticlipoplexdeliveryofshigf1rplasmidattenuatenorepinephrineinducedcardiachypertrophyinmurineheart
AT jiangdaming cardiactargetingmagneticlipoplexdeliveryofshigf1rplasmidattenuatenorepinephrineinducedcardiachypertrophyinmurineheart
AT dongaiqiang cardiactargetingmagneticlipoplexdeliveryofshigf1rplasmidattenuatenorepinephrineinducedcardiachypertrophyinmurineheart
AT shenzhonghua cardiactargetingmagneticlipoplexdeliveryofshigf1rplasmidattenuatenorepinephrineinducedcardiachypertrophyinmurineheart
AT duanqunjun cardiactargetingmagneticlipoplexdeliveryofshigf1rplasmidattenuatenorepinephrineinducedcardiachypertrophyinmurineheart