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Targeted exosome-mediated delivery of opioid receptor Mu siRNA for the treatment of morphine relapse

Cell-derived exosomes have been demonstrated to be efficient carriers of small RNAs to neighbouring or distant cells, highlighting the preponderance of exosomes as carriers for gene therapy over other artificial delivery tools. In the present study, we employed modified exosomes expressing the neuro...

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Autores principales: Liu, Yuchen, Li, Dameng, Liu, Zhengya, Zhou, Yu, Chu, Danping, Li, Xihan, Jiang, Xiaohong, Hou, Dongxia, Chen, Xi, Chen, Yuda, Yang, Zhanzhao, Jin, Ling, Jiang, Waner, Tian, Chenfei, Zhou, Geyu, Zen, Ke, Zhang, Junfeng, Zhang, Yujing, Li, Jing, Zhang, Chen-Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4668387/
https://www.ncbi.nlm.nih.gov/pubmed/26633001
http://dx.doi.org/10.1038/srep17543
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author Liu, Yuchen
Li, Dameng
Liu, Zhengya
Zhou, Yu
Chu, Danping
Li, Xihan
Jiang, Xiaohong
Hou, Dongxia
Chen, Xi
Chen, Yuda
Yang, Zhanzhao
Jin, Ling
Jiang, Waner
Tian, Chenfei
Zhou, Geyu
Zen, Ke
Zhang, Junfeng
Zhang, Yujing
Li, Jing
Zhang, Chen-Yu
author_facet Liu, Yuchen
Li, Dameng
Liu, Zhengya
Zhou, Yu
Chu, Danping
Li, Xihan
Jiang, Xiaohong
Hou, Dongxia
Chen, Xi
Chen, Yuda
Yang, Zhanzhao
Jin, Ling
Jiang, Waner
Tian, Chenfei
Zhou, Geyu
Zen, Ke
Zhang, Junfeng
Zhang, Yujing
Li, Jing
Zhang, Chen-Yu
author_sort Liu, Yuchen
collection PubMed
description Cell-derived exosomes have been demonstrated to be efficient carriers of small RNAs to neighbouring or distant cells, highlighting the preponderance of exosomes as carriers for gene therapy over other artificial delivery tools. In the present study, we employed modified exosomes expressing the neuron-specific rabies viral glycoprotein (RVG) peptide on the membrane surface to deliver opioid receptor mu (MOR) siRNA into the brain to treat morphine addiction. We found that MOR siRNA could be efficiently packaged into RVG exosomes and was associated with argonaute 2 (AGO2) in exosomes. These exosomes efficiently and specifically delivered MOR siRNA into Neuro2A cells and the mouse brain. Functionally, siRNA-loaded RVG exosomes significantly reduced MOR mRNA and protein levels. Surprisingly, MOR siRNA delivered by the RVG exosomes strongly inhibited morphine relapse via the down-regulation of MOR expression levels. In conclusion, our results demonstrate that targeted RVG exosomes can efficiently transfer siRNA to the central nervous system and mediate the treatment of morphine relapse by down-regulating MOR expression levels. Our study provides a brand new strategy to treat drug relapse and diseases of the central nervous system.
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spelling pubmed-46683872015-12-09 Targeted exosome-mediated delivery of opioid receptor Mu siRNA for the treatment of morphine relapse Liu, Yuchen Li, Dameng Liu, Zhengya Zhou, Yu Chu, Danping Li, Xihan Jiang, Xiaohong Hou, Dongxia Chen, Xi Chen, Yuda Yang, Zhanzhao Jin, Ling Jiang, Waner Tian, Chenfei Zhou, Geyu Zen, Ke Zhang, Junfeng Zhang, Yujing Li, Jing Zhang, Chen-Yu Sci Rep Article Cell-derived exosomes have been demonstrated to be efficient carriers of small RNAs to neighbouring or distant cells, highlighting the preponderance of exosomes as carriers for gene therapy over other artificial delivery tools. In the present study, we employed modified exosomes expressing the neuron-specific rabies viral glycoprotein (RVG) peptide on the membrane surface to deliver opioid receptor mu (MOR) siRNA into the brain to treat morphine addiction. We found that MOR siRNA could be efficiently packaged into RVG exosomes and was associated with argonaute 2 (AGO2) in exosomes. These exosomes efficiently and specifically delivered MOR siRNA into Neuro2A cells and the mouse brain. Functionally, siRNA-loaded RVG exosomes significantly reduced MOR mRNA and protein levels. Surprisingly, MOR siRNA delivered by the RVG exosomes strongly inhibited morphine relapse via the down-regulation of MOR expression levels. In conclusion, our results demonstrate that targeted RVG exosomes can efficiently transfer siRNA to the central nervous system and mediate the treatment of morphine relapse by down-regulating MOR expression levels. Our study provides a brand new strategy to treat drug relapse and diseases of the central nervous system. Nature Publishing Group 2015-12-03 /pmc/articles/PMC4668387/ /pubmed/26633001 http://dx.doi.org/10.1038/srep17543 Text en Copyright © 2015, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Liu, Yuchen
Li, Dameng
Liu, Zhengya
Zhou, Yu
Chu, Danping
Li, Xihan
Jiang, Xiaohong
Hou, Dongxia
Chen, Xi
Chen, Yuda
Yang, Zhanzhao
Jin, Ling
Jiang, Waner
Tian, Chenfei
Zhou, Geyu
Zen, Ke
Zhang, Junfeng
Zhang, Yujing
Li, Jing
Zhang, Chen-Yu
Targeted exosome-mediated delivery of opioid receptor Mu siRNA for the treatment of morphine relapse
title Targeted exosome-mediated delivery of opioid receptor Mu siRNA for the treatment of morphine relapse
title_full Targeted exosome-mediated delivery of opioid receptor Mu siRNA for the treatment of morphine relapse
title_fullStr Targeted exosome-mediated delivery of opioid receptor Mu siRNA for the treatment of morphine relapse
title_full_unstemmed Targeted exosome-mediated delivery of opioid receptor Mu siRNA for the treatment of morphine relapse
title_short Targeted exosome-mediated delivery of opioid receptor Mu siRNA for the treatment of morphine relapse
title_sort targeted exosome-mediated delivery of opioid receptor mu sirna for the treatment of morphine relapse
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4668387/
https://www.ncbi.nlm.nih.gov/pubmed/26633001
http://dx.doi.org/10.1038/srep17543
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