In vivo silencing of amphiregulin by a novel effective Self-Assembled-Micelle inhibitory RNA ameliorates renal fibrosis via inhibition of EGFR signals
Abstract Amphiregulin (AREG) is a transmembrane glycoprotein recently implicated in kidney fibrosis. Previously, we reported that the AREG-targeting Self-Assembled-Micelle inhibitory RNA (SAMiRNA-AREG) alleviated fibrosis by stably silencing the AREG gene, and reduced the side effects of conventiona...
Main Authors: | , , , , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Nature Publishing Group
2021-01-01
|
Series: | Scientific Reports |
Online Access: | https://doi.org/10.1038/s41598-021-81726-2 |
id |
doaj-c609421cf4494492b4286f74344e1a48 |
---|---|
record_format |
Article |
spelling |
doaj-c609421cf4494492b4286f74344e1a482021-01-31T16:21:04ZengNature Publishing GroupScientific Reports2045-23222021-01-0111111410.1038/s41598-021-81726-2In vivo silencing of amphiregulin by a novel effective Self-Assembled-Micelle inhibitory RNA ameliorates renal fibrosis via inhibition of EGFR signalsSeung Seob Son0Soohyun Hwang1Jun Hong Park2Youngho Ko3Sung-Il Yun4Ji-Hye Lee5Beomseok Son6Tae Rim Kim7Han-Oh Park8Eun Young Lee9siRNAgen TherapeuticssiRNAgen TherapeuticssiRNAgen TherapeuticssiRNAgen TherapeuticsBioneer CorporationDepartment of Pathology, Soonchunhyang University Cheonan HospitalsiRNAgen TherapeuticssiRNAgen TherapeuticssiRNAgen TherapeuticsDepartment of Internal Medicine, Soonchunhyang University Cheonan HospitalAbstract Amphiregulin (AREG) is a transmembrane glycoprotein recently implicated in kidney fibrosis. Previously, we reported that the AREG-targeting Self-Assembled-Micelle inhibitory RNA (SAMiRNA-AREG) alleviated fibrosis by stably silencing the AREG gene, and reduced the side effects of conventional siRNA treatment of pulmonary fibrosis. However, the therapeutic effect of SAMiRNA-AREG in renal fibrosis has not been studied until now. We used two animal models of renal fibrosis generated by a unilateral ureteral obstruction (UUO) and an adenine diet (AD) to investigate whether SAMiRNA-AREG inhibited renal fibrosis. To investigate the delivery of SAMiRNA-AREG to the kidney, Cy5-labeled SAMiRNA-AREG was injected into UUO- and AD-induced renal fibrosis models. In both kidney disease models, SAMiRNA-AREG was delivered primarily to the damaged kidney. We also confirmed the protective effect of SAMiRNA-AREG in renal fibrosis models. SAMiRNA-AREG markedly decreased the UUO- and AD-induced AREG mRNA expression. Furthermore, the mRNA expression of fibrosis markers, including α-smooth muscle actin, fibronectin, α1(I) collagen, and α1(III) collagen in the UUO and AD-induced kidneys, was diminished in the SAMiRNA-AREG-treated mice. The transcription of inflammatory markers (tumor necrosis factor-α and monocyte chemoattractant protein-1) and adhesion markers (vascular cell adhesion molecule 1 and intercellular adhesion molecule 1) was attenuated. The hematoxylin and eosin, Masson’s trichrome, and immunohistochemical staining results showed that SAMiRNA-AREG decreased renal fibrosis, AREG expression, and epidermal growth factor receptor (EGFR) phosphorylation in the UUO- and AD-induced models. Moreover, we studied the effects of SAMiRNA-AREG in response to TGF-β1 in mouse and human proximal tubule cells, and mouse fibroblasts. TGF-β1-induced extracellular matrix production and myofibroblast differentiation were attenuated by SAMiRNA-AREG. Finally, we confirmed that upregulated AREG in the UUO or AD models was mainly localized in the distal tubules. In conclusion, SAMiRNA-AREG represents a novel siRNA therapeutic for renal fibrosis by suppressing EGFR signals.https://doi.org/10.1038/s41598-021-81726-2 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Seung Seob Son Soohyun Hwang Jun Hong Park Youngho Ko Sung-Il Yun Ji-Hye Lee Beomseok Son Tae Rim Kim Han-Oh Park Eun Young Lee |
spellingShingle |
Seung Seob Son Soohyun Hwang Jun Hong Park Youngho Ko Sung-Il Yun Ji-Hye Lee Beomseok Son Tae Rim Kim Han-Oh Park Eun Young Lee In vivo silencing of amphiregulin by a novel effective Self-Assembled-Micelle inhibitory RNA ameliorates renal fibrosis via inhibition of EGFR signals Scientific Reports |
author_facet |
Seung Seob Son Soohyun Hwang Jun Hong Park Youngho Ko Sung-Il Yun Ji-Hye Lee Beomseok Son Tae Rim Kim Han-Oh Park Eun Young Lee |
author_sort |
Seung Seob Son |
title |
In vivo silencing of amphiregulin by a novel effective Self-Assembled-Micelle inhibitory RNA ameliorates renal fibrosis via inhibition of EGFR signals |
title_short |
In vivo silencing of amphiregulin by a novel effective Self-Assembled-Micelle inhibitory RNA ameliorates renal fibrosis via inhibition of EGFR signals |
title_full |
In vivo silencing of amphiregulin by a novel effective Self-Assembled-Micelle inhibitory RNA ameliorates renal fibrosis via inhibition of EGFR signals |
title_fullStr |
In vivo silencing of amphiregulin by a novel effective Self-Assembled-Micelle inhibitory RNA ameliorates renal fibrosis via inhibition of EGFR signals |
title_full_unstemmed |
In vivo silencing of amphiregulin by a novel effective Self-Assembled-Micelle inhibitory RNA ameliorates renal fibrosis via inhibition of EGFR signals |
title_sort |
in vivo silencing of amphiregulin by a novel effective self-assembled-micelle inhibitory rna ameliorates renal fibrosis via inhibition of egfr signals |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2021-01-01 |
description |
Abstract Amphiregulin (AREG) is a transmembrane glycoprotein recently implicated in kidney fibrosis. Previously, we reported that the AREG-targeting Self-Assembled-Micelle inhibitory RNA (SAMiRNA-AREG) alleviated fibrosis by stably silencing the AREG gene, and reduced the side effects of conventional siRNA treatment of pulmonary fibrosis. However, the therapeutic effect of SAMiRNA-AREG in renal fibrosis has not been studied until now. We used two animal models of renal fibrosis generated by a unilateral ureteral obstruction (UUO) and an adenine diet (AD) to investigate whether SAMiRNA-AREG inhibited renal fibrosis. To investigate the delivery of SAMiRNA-AREG to the kidney, Cy5-labeled SAMiRNA-AREG was injected into UUO- and AD-induced renal fibrosis models. In both kidney disease models, SAMiRNA-AREG was delivered primarily to the damaged kidney. We also confirmed the protective effect of SAMiRNA-AREG in renal fibrosis models. SAMiRNA-AREG markedly decreased the UUO- and AD-induced AREG mRNA expression. Furthermore, the mRNA expression of fibrosis markers, including α-smooth muscle actin, fibronectin, α1(I) collagen, and α1(III) collagen in the UUO and AD-induced kidneys, was diminished in the SAMiRNA-AREG-treated mice. The transcription of inflammatory markers (tumor necrosis factor-α and monocyte chemoattractant protein-1) and adhesion markers (vascular cell adhesion molecule 1 and intercellular adhesion molecule 1) was attenuated. The hematoxylin and eosin, Masson’s trichrome, and immunohistochemical staining results showed that SAMiRNA-AREG decreased renal fibrosis, AREG expression, and epidermal growth factor receptor (EGFR) phosphorylation in the UUO- and AD-induced models. Moreover, we studied the effects of SAMiRNA-AREG in response to TGF-β1 in mouse and human proximal tubule cells, and mouse fibroblasts. TGF-β1-induced extracellular matrix production and myofibroblast differentiation were attenuated by SAMiRNA-AREG. Finally, we confirmed that upregulated AREG in the UUO or AD models was mainly localized in the distal tubules. In conclusion, SAMiRNA-AREG represents a novel siRNA therapeutic for renal fibrosis by suppressing EGFR signals. |
url |
https://doi.org/10.1038/s41598-021-81726-2 |
work_keys_str_mv |
AT seungseobson invivosilencingofamphiregulinbyanoveleffectiveselfassembledmicelleinhibitoryrnaamelioratesrenalfibrosisviainhibitionofegfrsignals AT soohyunhwang invivosilencingofamphiregulinbyanoveleffectiveselfassembledmicelleinhibitoryrnaamelioratesrenalfibrosisviainhibitionofegfrsignals AT junhongpark invivosilencingofamphiregulinbyanoveleffectiveselfassembledmicelleinhibitoryrnaamelioratesrenalfibrosisviainhibitionofegfrsignals AT younghoko invivosilencingofamphiregulinbyanoveleffectiveselfassembledmicelleinhibitoryrnaamelioratesrenalfibrosisviainhibitionofegfrsignals AT sungilyun invivosilencingofamphiregulinbyanoveleffectiveselfassembledmicelleinhibitoryrnaamelioratesrenalfibrosisviainhibitionofegfrsignals AT jihyelee invivosilencingofamphiregulinbyanoveleffectiveselfassembledmicelleinhibitoryrnaamelioratesrenalfibrosisviainhibitionofegfrsignals AT beomseokson invivosilencingofamphiregulinbyanoveleffectiveselfassembledmicelleinhibitoryrnaamelioratesrenalfibrosisviainhibitionofegfrsignals AT taerimkim invivosilencingofamphiregulinbyanoveleffectiveselfassembledmicelleinhibitoryrnaamelioratesrenalfibrosisviainhibitionofegfrsignals AT hanohpark invivosilencingofamphiregulinbyanoveleffectiveselfassembledmicelleinhibitoryrnaamelioratesrenalfibrosisviainhibitionofegfrsignals AT eunyounglee invivosilencingofamphiregulinbyanoveleffectiveselfassembledmicelleinhibitoryrnaamelioratesrenalfibrosisviainhibitionofegfrsignals |
_version_ |
1724316461367820288 |