Cargando…
Mononuclear phagocyte intercellular crosstalk facilitates transmission of cell-targeted nanoformulated antiretroviral drugs to human brain endothelial cells
Despite the successes of antiretroviral therapy (ART), HIV-associated neurocognitive disorders remain prevalent in infected people. This is due, in part, to incomplete ART penetration across the blood–brain barrier (BBB) and lymph nodes and to the establishment of viral sanctuaries within the centra...
Autores principales: | , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Dove Medical Press
2012
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3357981/ https://www.ncbi.nlm.nih.gov/pubmed/22661891 http://dx.doi.org/10.2147/IJN.S29454 |
_version_ | 1782233717647867904 |
---|---|
author | Kanmogne, Georgette D Singh, Sangya Roy, Upal Liu, Xinming McMillan, JoEllyn Gorantla, Santhi Balkundi, Shantanu Smith, Nathan Alnouti, Yazen Gautam, Nagsen Zhou, You Poluektova, Larisa Kabanov, Alexander Bronich, Tatiana Gendelman, Howard E |
author_facet | Kanmogne, Georgette D Singh, Sangya Roy, Upal Liu, Xinming McMillan, JoEllyn Gorantla, Santhi Balkundi, Shantanu Smith, Nathan Alnouti, Yazen Gautam, Nagsen Zhou, You Poluektova, Larisa Kabanov, Alexander Bronich, Tatiana Gendelman, Howard E |
author_sort | Kanmogne, Georgette D |
collection | PubMed |
description | Despite the successes of antiretroviral therapy (ART), HIV-associated neurocognitive disorders remain prevalent in infected people. This is due, in part, to incomplete ART penetration across the blood–brain barrier (BBB) and lymph nodes and to the establishment of viral sanctuaries within the central nervous system. In efforts to improve ART delivery, our laboratories developed a macrophage-carriage system for nanoformulated crystalline ART (nanoART) (atazanavir, ritonavir, indinavir, and efavirenz). We demonstrate that nanoART transfer from mononuclear phagocytes (MP) to human brain microvascular endothelial cells (HBMEC) can be realized through cell-to-cell contacts, which can facilitate drug passage across the BBB. Coculturing of donor MP containing nanoART with recipient HBMEC facilitates intercellular particle transfer. NanoART uptake was observed in up to 52% of HBMEC with limited cytotoxicity. Folate coating of nanoART increased MP to HBMEC particle transfer by up to 77%. To translate the cell assays into relevant animal models of disease, ritonavir and atazanavir nanoformulations were injected into HIV-1-infected NOD/scid-γ(c)(null) mice reconstituted with human peripheral blood lymphocytes. Atazanavir and ritonavir levels in brains of mice treated with folate-coated nanoART were three- to four-fold higher than in mice treated with noncoated particles. This was associated with decreased viral load in the spleen and brain, and diminished brain CD11b-associated glial activation. We postulate that monocyte-macrophage transfer of nanoART to brain endothelial cells could facilitate drug entry into the brain. |
format | Online Article Text |
id | pubmed-3357981 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2012 |
publisher | Dove Medical Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-33579812012-06-01 Mononuclear phagocyte intercellular crosstalk facilitates transmission of cell-targeted nanoformulated antiretroviral drugs to human brain endothelial cells Kanmogne, Georgette D Singh, Sangya Roy, Upal Liu, Xinming McMillan, JoEllyn Gorantla, Santhi Balkundi, Shantanu Smith, Nathan Alnouti, Yazen Gautam, Nagsen Zhou, You Poluektova, Larisa Kabanov, Alexander Bronich, Tatiana Gendelman, Howard E Int J Nanomedicine Original Research Despite the successes of antiretroviral therapy (ART), HIV-associated neurocognitive disorders remain prevalent in infected people. This is due, in part, to incomplete ART penetration across the blood–brain barrier (BBB) and lymph nodes and to the establishment of viral sanctuaries within the central nervous system. In efforts to improve ART delivery, our laboratories developed a macrophage-carriage system for nanoformulated crystalline ART (nanoART) (atazanavir, ritonavir, indinavir, and efavirenz). We demonstrate that nanoART transfer from mononuclear phagocytes (MP) to human brain microvascular endothelial cells (HBMEC) can be realized through cell-to-cell contacts, which can facilitate drug passage across the BBB. Coculturing of donor MP containing nanoART with recipient HBMEC facilitates intercellular particle transfer. NanoART uptake was observed in up to 52% of HBMEC with limited cytotoxicity. Folate coating of nanoART increased MP to HBMEC particle transfer by up to 77%. To translate the cell assays into relevant animal models of disease, ritonavir and atazanavir nanoformulations were injected into HIV-1-infected NOD/scid-γ(c)(null) mice reconstituted with human peripheral blood lymphocytes. Atazanavir and ritonavir levels in brains of mice treated with folate-coated nanoART were three- to four-fold higher than in mice treated with noncoated particles. This was associated with decreased viral load in the spleen and brain, and diminished brain CD11b-associated glial activation. We postulate that monocyte-macrophage transfer of nanoART to brain endothelial cells could facilitate drug entry into the brain. Dove Medical Press 2012 2012-05-08 /pmc/articles/PMC3357981/ /pubmed/22661891 http://dx.doi.org/10.2147/IJN.S29454 Text en © 2012 Kanmogne et al, publisher and licensee Dove Medical Press Ltd. This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited. |
spellingShingle | Original Research Kanmogne, Georgette D Singh, Sangya Roy, Upal Liu, Xinming McMillan, JoEllyn Gorantla, Santhi Balkundi, Shantanu Smith, Nathan Alnouti, Yazen Gautam, Nagsen Zhou, You Poluektova, Larisa Kabanov, Alexander Bronich, Tatiana Gendelman, Howard E Mononuclear phagocyte intercellular crosstalk facilitates transmission of cell-targeted nanoformulated antiretroviral drugs to human brain endothelial cells |
title | Mononuclear phagocyte intercellular crosstalk facilitates transmission of cell-targeted nanoformulated antiretroviral drugs to human brain endothelial cells |
title_full | Mononuclear phagocyte intercellular crosstalk facilitates transmission of cell-targeted nanoformulated antiretroviral drugs to human brain endothelial cells |
title_fullStr | Mononuclear phagocyte intercellular crosstalk facilitates transmission of cell-targeted nanoformulated antiretroviral drugs to human brain endothelial cells |
title_full_unstemmed | Mononuclear phagocyte intercellular crosstalk facilitates transmission of cell-targeted nanoformulated antiretroviral drugs to human brain endothelial cells |
title_short | Mononuclear phagocyte intercellular crosstalk facilitates transmission of cell-targeted nanoformulated antiretroviral drugs to human brain endothelial cells |
title_sort | mononuclear phagocyte intercellular crosstalk facilitates transmission of cell-targeted nanoformulated antiretroviral drugs to human brain endothelial cells |
topic | Original Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3357981/ https://www.ncbi.nlm.nih.gov/pubmed/22661891 http://dx.doi.org/10.2147/IJN.S29454 |
work_keys_str_mv | AT kanmognegeorgetted mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT singhsangya mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT royupal mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT liuxinming mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT mcmillanjoellyn mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT gorantlasanthi mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT balkundishantanu mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT smithnathan mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT alnoutiyazen mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT gautamnagsen mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT zhouyou mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT poluektovalarisa mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT kabanovalexander mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT bronichtatiana mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells AT gendelmanhowarde mononuclearphagocyteintercellularcrosstalkfacilitatestransmissionofcelltargetednanoformulatedantiretroviraldrugstohumanbrainendothelialcells |