Cargando…

Extracellular vesicles expressing a single-chain variable fragment of an HIV-1 specific antibody selectively target Env(+) tissues

Rationale: Antiretroviral therapy can effectively suppress HIV-1 replication in the peripheral blood to an undetectable level. However, elimination of the latent virus in reservoirs remains a challenge and is a major obstacle in the treatment of HIV-1-infected patients. Exosomes exhibit huge promise...

Descripción completa

Detalles Bibliográficos
Autores principales: Zou, Xue, Yuan, Meng, Zhang, Tongyu, Wei, Hongxia, Xu, Shijie, Jiang, Na, Zheng, Nan, Wu, Zhiwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6735399/
https://www.ncbi.nlm.nih.gov/pubmed/31534509
http://dx.doi.org/10.7150/thno.33925
_version_ 1783450350666121216
author Zou, Xue
Yuan, Meng
Zhang, Tongyu
Wei, Hongxia
Xu, Shijie
Jiang, Na
Zheng, Nan
Wu, Zhiwei
author_facet Zou, Xue
Yuan, Meng
Zhang, Tongyu
Wei, Hongxia
Xu, Shijie
Jiang, Na
Zheng, Nan
Wu, Zhiwei
author_sort Zou, Xue
collection PubMed
description Rationale: Antiretroviral therapy can effectively suppress HIV-1 replication in the peripheral blood to an undetectable level. However, elimination of the latent virus in reservoirs remains a challenge and is a major obstacle in the treatment of HIV-1-infected patients. Exosomes exhibit huge promise as an endogenous drug delivery nanosystem for delivering drugs to solid tissues given their unique properties, including low immunogenicity, innate stability, high delivery efficiency, and most importantly the ability to penetrate solid tissues due to their lipophilic properties. Methods: We engineered and expressed the scFv of a high affinity HIV-1-specific monoclonal antibody, 10E8, on the exosomal surface (10E8(scFv)-exos). Subsequently, the 10E8(scFv)-exos were loaded with curcumin (Cur), a chemical that kills HIV-1-infected cells, or miR-143, an apoptosis-inducing miRNA. We tested the ability of 10E8(scFv)-exos to deliver cargo to Env(+) target cells and tissues, as well as their ability to suppress HIV-1 infection. Results: 10E8(scFv)-exos efficiently targeted CHO cells expressing a trimeric gp140 on their surface (Env(+) cells) in vitro, as demonstrated by confocal imaging and flow cytometry. 10E8(scFv)-exos loaded with Cur or miR-143 showed specific killing of Env(+) cells. In addition, 10E8(scFv)-exos loaded with Cur or miR-143 could suppress p24 expression in an HIV-1 latency cell line ACH2 and in PBMCs from an ART-treated HIV-1-infected patient. In an NCG mouse model grafted with tumorigenic Env(+) CHO cells and which had developed solid tissue tumors, intravenously injected 10E8(scFv)-exos targeted the Env-expressing tissues and delivered Cur to induce a strong suppression of the Env(+) tumor growth with low toxicity. Conclusion: In principle, engineered exosomes can deliver anti-HIV agents to solid tissues by specifically targeting cells expressing viral envelop proteins and inducing cell killing, suggesting that such an approach could be developed for eradicating virus-infected cells in tissue reservoirs.
format Online
Article
Text
id pubmed-6735399
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-67353992019-09-18 Extracellular vesicles expressing a single-chain variable fragment of an HIV-1 specific antibody selectively target Env(+) tissues Zou, Xue Yuan, Meng Zhang, Tongyu Wei, Hongxia Xu, Shijie Jiang, Na Zheng, Nan Wu, Zhiwei Theranostics Research Paper Rationale: Antiretroviral therapy can effectively suppress HIV-1 replication in the peripheral blood to an undetectable level. However, elimination of the latent virus in reservoirs remains a challenge and is a major obstacle in the treatment of HIV-1-infected patients. Exosomes exhibit huge promise as an endogenous drug delivery nanosystem for delivering drugs to solid tissues given their unique properties, including low immunogenicity, innate stability, high delivery efficiency, and most importantly the ability to penetrate solid tissues due to their lipophilic properties. Methods: We engineered and expressed the scFv of a high affinity HIV-1-specific monoclonal antibody, 10E8, on the exosomal surface (10E8(scFv)-exos). Subsequently, the 10E8(scFv)-exos were loaded with curcumin (Cur), a chemical that kills HIV-1-infected cells, or miR-143, an apoptosis-inducing miRNA. We tested the ability of 10E8(scFv)-exos to deliver cargo to Env(+) target cells and tissues, as well as their ability to suppress HIV-1 infection. Results: 10E8(scFv)-exos efficiently targeted CHO cells expressing a trimeric gp140 on their surface (Env(+) cells) in vitro, as demonstrated by confocal imaging and flow cytometry. 10E8(scFv)-exos loaded with Cur or miR-143 showed specific killing of Env(+) cells. In addition, 10E8(scFv)-exos loaded with Cur or miR-143 could suppress p24 expression in an HIV-1 latency cell line ACH2 and in PBMCs from an ART-treated HIV-1-infected patient. In an NCG mouse model grafted with tumorigenic Env(+) CHO cells and which had developed solid tissue tumors, intravenously injected 10E8(scFv)-exos targeted the Env-expressing tissues and delivered Cur to induce a strong suppression of the Env(+) tumor growth with low toxicity. Conclusion: In principle, engineered exosomes can deliver anti-HIV agents to solid tissues by specifically targeting cells expressing viral envelop proteins and inducing cell killing, suggesting that such an approach could be developed for eradicating virus-infected cells in tissue reservoirs. Ivyspring International Publisher 2019-07-29 /pmc/articles/PMC6735399/ /pubmed/31534509 http://dx.doi.org/10.7150/thno.33925 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Zou, Xue
Yuan, Meng
Zhang, Tongyu
Wei, Hongxia
Xu, Shijie
Jiang, Na
Zheng, Nan
Wu, Zhiwei
Extracellular vesicles expressing a single-chain variable fragment of an HIV-1 specific antibody selectively target Env(+) tissues
title Extracellular vesicles expressing a single-chain variable fragment of an HIV-1 specific antibody selectively target Env(+) tissues
title_full Extracellular vesicles expressing a single-chain variable fragment of an HIV-1 specific antibody selectively target Env(+) tissues
title_fullStr Extracellular vesicles expressing a single-chain variable fragment of an HIV-1 specific antibody selectively target Env(+) tissues
title_full_unstemmed Extracellular vesicles expressing a single-chain variable fragment of an HIV-1 specific antibody selectively target Env(+) tissues
title_short Extracellular vesicles expressing a single-chain variable fragment of an HIV-1 specific antibody selectively target Env(+) tissues
title_sort extracellular vesicles expressing a single-chain variable fragment of an hiv-1 specific antibody selectively target env(+) tissues
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6735399/
https://www.ncbi.nlm.nih.gov/pubmed/31534509
http://dx.doi.org/10.7150/thno.33925
work_keys_str_mv AT zouxue extracellularvesiclesexpressingasinglechainvariablefragmentofanhiv1specificantibodyselectivelytargetenvtissues
AT yuanmeng extracellularvesiclesexpressingasinglechainvariablefragmentofanhiv1specificantibodyselectivelytargetenvtissues
AT zhangtongyu extracellularvesiclesexpressingasinglechainvariablefragmentofanhiv1specificantibodyselectivelytargetenvtissues
AT weihongxia extracellularvesiclesexpressingasinglechainvariablefragmentofanhiv1specificantibodyselectivelytargetenvtissues
AT xushijie extracellularvesiclesexpressingasinglechainvariablefragmentofanhiv1specificantibodyselectivelytargetenvtissues
AT jiangna extracellularvesiclesexpressingasinglechainvariablefragmentofanhiv1specificantibodyselectivelytargetenvtissues
AT zhengnan extracellularvesiclesexpressingasinglechainvariablefragmentofanhiv1specificantibodyselectivelytargetenvtissues
AT wuzhiwei extracellularvesiclesexpressingasinglechainvariablefragmentofanhiv1specificantibodyselectivelytargetenvtissues