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Macrophage–sensory neuronal interaction in HIV-1 gp120-induced neurotoxicity(‡)

BACKGROUND: Human immunodeficiency virus (HIV)-associated sensory neuropathy (SN) is the most frequent neurological complication of HIV disease. Among the probable mechanisms underlying HIV-SN are neurotoxicity induced by the HIV glycoprotein gp120 and antiretroviral therapies (ART). Since HIV-SN pr...

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Autores principales: Moss, P. J., Huang, W., Dawes, J., Okuse, K., McMahon, S. B., Rice, A. S. C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4332570/
https://www.ncbi.nlm.nih.gov/pubmed/25227937
http://dx.doi.org/10.1093/bja/aeu311
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author Moss, P. J.
Huang, W.
Dawes, J.
Okuse, K.
McMahon, S. B.
Rice, A. S. C.
author_facet Moss, P. J.
Huang, W.
Dawes, J.
Okuse, K.
McMahon, S. B.
Rice, A. S. C.
author_sort Moss, P. J.
collection PubMed
description BACKGROUND: Human immunodeficiency virus (HIV)-associated sensory neuropathy (SN) is the most frequent neurological complication of HIV disease. Among the probable mechanisms underlying HIV-SN are neurotoxicity induced by the HIV glycoprotein gp120 and antiretroviral therapies (ART). Since HIV-SN prevalence remains high in patients who have not been exposed to toxic ART drugs, here we focused on gp120-mediated mechanisms underlying HIV-SN. METHODS: We hypothesized that a direct gp120–sensory neurone interaction is not the cause of neurite degeneration; rather, an indirect interaction of gp120 with sensory neurones involving macrophages underlies axonal degeneration. Rat dorsal root ganglion (DRG) cultures were used to assess gp120 neurotoxicity. Rat bone marrow-derived macrophage (BMDM) cultures and qPCR array were used to assess gp120-associated gene expression changes. RESULTS: gp120 induced significant, but latent onset, neurite degeneration until 24 h after application. gp120–neurone interaction occurred within 1 h of application in <10% of DRG neurones, despite neurite degeneration having a global effect. Application of culture media from gp120-exposed BMDMs induced a significant reduction in DRG neurite outgrowth. Furthermore, gp120 significantly increased the expression of 25 cytokine-related genes in primary BMDMs, some of which have been implicated in other painful polyneuropathies. The C–C chemokine receptor type 5 (CCR5) antagonist, maraviroc, concentration-dependently inhibited gp120-induced tumour necrosis factor-α gene expression, indicating that these effects occurred via gp120 activation of CCR5. CONCLUSIONS: Our findings highlight macrophages in the pathogenesis of HIV-SN and upstream modulation of macrophage response as a promising therapeutic strategy.
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spelling pubmed-43325702015-02-26 Macrophage–sensory neuronal interaction in HIV-1 gp120-induced neurotoxicity(‡) Moss, P. J. Huang, W. Dawes, J. Okuse, K. McMahon, S. B. Rice, A. S. C. Br J Anaesth Translational Research BACKGROUND: Human immunodeficiency virus (HIV)-associated sensory neuropathy (SN) is the most frequent neurological complication of HIV disease. Among the probable mechanisms underlying HIV-SN are neurotoxicity induced by the HIV glycoprotein gp120 and antiretroviral therapies (ART). Since HIV-SN prevalence remains high in patients who have not been exposed to toxic ART drugs, here we focused on gp120-mediated mechanisms underlying HIV-SN. METHODS: We hypothesized that a direct gp120–sensory neurone interaction is not the cause of neurite degeneration; rather, an indirect interaction of gp120 with sensory neurones involving macrophages underlies axonal degeneration. Rat dorsal root ganglion (DRG) cultures were used to assess gp120 neurotoxicity. Rat bone marrow-derived macrophage (BMDM) cultures and qPCR array were used to assess gp120-associated gene expression changes. RESULTS: gp120 induced significant, but latent onset, neurite degeneration until 24 h after application. gp120–neurone interaction occurred within 1 h of application in <10% of DRG neurones, despite neurite degeneration having a global effect. Application of culture media from gp120-exposed BMDMs induced a significant reduction in DRG neurite outgrowth. Furthermore, gp120 significantly increased the expression of 25 cytokine-related genes in primary BMDMs, some of which have been implicated in other painful polyneuropathies. The C–C chemokine receptor type 5 (CCR5) antagonist, maraviroc, concentration-dependently inhibited gp120-induced tumour necrosis factor-α gene expression, indicating that these effects occurred via gp120 activation of CCR5. CONCLUSIONS: Our findings highlight macrophages in the pathogenesis of HIV-SN and upstream modulation of macrophage response as a promising therapeutic strategy. Oxford University Press 2015-03 2014-09-16 /pmc/articles/PMC4332570/ /pubmed/25227937 http://dx.doi.org/10.1093/bja/aeu311 Text en © The Author 2014. Published by Oxford University Press on behalf of the British Journal of Anaesthesia http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Translational Research
Moss, P. J.
Huang, W.
Dawes, J.
Okuse, K.
McMahon, S. B.
Rice, A. S. C.
Macrophage–sensory neuronal interaction in HIV-1 gp120-induced neurotoxicity(‡)
title Macrophage–sensory neuronal interaction in HIV-1 gp120-induced neurotoxicity(‡)
title_full Macrophage–sensory neuronal interaction in HIV-1 gp120-induced neurotoxicity(‡)
title_fullStr Macrophage–sensory neuronal interaction in HIV-1 gp120-induced neurotoxicity(‡)
title_full_unstemmed Macrophage–sensory neuronal interaction in HIV-1 gp120-induced neurotoxicity(‡)
title_short Macrophage–sensory neuronal interaction in HIV-1 gp120-induced neurotoxicity(‡)
title_sort macrophage–sensory neuronal interaction in hiv-1 gp120-induced neurotoxicity(‡)
topic Translational Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4332570/
https://www.ncbi.nlm.nih.gov/pubmed/25227937
http://dx.doi.org/10.1093/bja/aeu311
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