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HIV-1 integrase inhibitors are substrates for the multidrug transporter MDR1-P-glycoprotein

BACKGROUND: The discovery of diketoacid-containing derivatives as inhibitors of HIV-1 Integrase (IN) (IN inhibitors, IINs) has played a major role in validating this enzyme as an important target for antiretroviral therapy. Since the in vivo efficacy depends on access of these drugs to intracellular...

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Autores principales: Cianfriglia, Maurizio, Dupuis, Maria Luisa, Molinari, Agnese, Verdoliva, Antonio, Costi, Roberta, Galluzzo, Clementina Maria, Andreotti, Mauro, Cara, Andrea, Di Santo, Roberto, Palmisano, Lucia
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1828167/
https://www.ncbi.nlm.nih.gov/pubmed/17343726
http://dx.doi.org/10.1186/1742-4690-4-17
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author Cianfriglia, Maurizio
Dupuis, Maria Luisa
Molinari, Agnese
Verdoliva, Antonio
Costi, Roberta
Galluzzo, Clementina Maria
Andreotti, Mauro
Cara, Andrea
Di Santo, Roberto
Palmisano, Lucia
author_facet Cianfriglia, Maurizio
Dupuis, Maria Luisa
Molinari, Agnese
Verdoliva, Antonio
Costi, Roberta
Galluzzo, Clementina Maria
Andreotti, Mauro
Cara, Andrea
Di Santo, Roberto
Palmisano, Lucia
author_sort Cianfriglia, Maurizio
collection PubMed
description BACKGROUND: The discovery of diketoacid-containing derivatives as inhibitors of HIV-1 Integrase (IN) (IN inhibitors, IINs) has played a major role in validating this enzyme as an important target for antiretroviral therapy. Since the in vivo efficacy depends on access of these drugs to intracellular sites where HIV-1 replicates, we determined whether the IINs are recognized by the multidrug transporter MDR1-P-glycoprotein (P-gp) thereby reducing their intracellular accumulation. To address the effect of IINs on drug transport, nine quinolonyl diketo acid (DKA) derivatives active on the HIV-1 IN strand transfer (ST) step and with EC50 ranging from 1.83 to >50 μm in cell-based assays were tested for their in vitro interaction with P-gp in the CEM-MDR cell system. IINs were investigated for the inhibition and induction of the P-gp function and expression as well as for multidrug resistance (MDR) reversing ability. RESULTS: The HIV-1 IINs act as genuine P-gp substrates by inhibiting doxorubicin efflux and inducing P-gp functional conformation changes as evaluated by the modulation of UIC2 mAb epitope. Further, IINs chemosensitize MDR cells to vinblastine and induce P-gp expression in drug sensitive revertants of CEM-MDR cells. CONCLUSION: To our knowledge, this is the first demonstration that HIV-1 IINs are P-gp substrates. This biological property may influence the absorption, distribution and elimination of these novels anti HIV-1 compounds.
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spelling pubmed-18281672007-03-17 HIV-1 integrase inhibitors are substrates for the multidrug transporter MDR1-P-glycoprotein Cianfriglia, Maurizio Dupuis, Maria Luisa Molinari, Agnese Verdoliva, Antonio Costi, Roberta Galluzzo, Clementina Maria Andreotti, Mauro Cara, Andrea Di Santo, Roberto Palmisano, Lucia Retrovirology Research BACKGROUND: The discovery of diketoacid-containing derivatives as inhibitors of HIV-1 Integrase (IN) (IN inhibitors, IINs) has played a major role in validating this enzyme as an important target for antiretroviral therapy. Since the in vivo efficacy depends on access of these drugs to intracellular sites where HIV-1 replicates, we determined whether the IINs are recognized by the multidrug transporter MDR1-P-glycoprotein (P-gp) thereby reducing their intracellular accumulation. To address the effect of IINs on drug transport, nine quinolonyl diketo acid (DKA) derivatives active on the HIV-1 IN strand transfer (ST) step and with EC50 ranging from 1.83 to >50 μm in cell-based assays were tested for their in vitro interaction with P-gp in the CEM-MDR cell system. IINs were investigated for the inhibition and induction of the P-gp function and expression as well as for multidrug resistance (MDR) reversing ability. RESULTS: The HIV-1 IINs act as genuine P-gp substrates by inhibiting doxorubicin efflux and inducing P-gp functional conformation changes as evaluated by the modulation of UIC2 mAb epitope. Further, IINs chemosensitize MDR cells to vinblastine and induce P-gp expression in drug sensitive revertants of CEM-MDR cells. CONCLUSION: To our knowledge, this is the first demonstration that HIV-1 IINs are P-gp substrates. This biological property may influence the absorption, distribution and elimination of these novels anti HIV-1 compounds. BioMed Central 2007-03-07 /pmc/articles/PMC1828167/ /pubmed/17343726 http://dx.doi.org/10.1186/1742-4690-4-17 Text en Copyright © 2007 Cianfriglia et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Cianfriglia, Maurizio
Dupuis, Maria Luisa
Molinari, Agnese
Verdoliva, Antonio
Costi, Roberta
Galluzzo, Clementina Maria
Andreotti, Mauro
Cara, Andrea
Di Santo, Roberto
Palmisano, Lucia
HIV-1 integrase inhibitors are substrates for the multidrug transporter MDR1-P-glycoprotein
title HIV-1 integrase inhibitors are substrates for the multidrug transporter MDR1-P-glycoprotein
title_full HIV-1 integrase inhibitors are substrates for the multidrug transporter MDR1-P-glycoprotein
title_fullStr HIV-1 integrase inhibitors are substrates for the multidrug transporter MDR1-P-glycoprotein
title_full_unstemmed HIV-1 integrase inhibitors are substrates for the multidrug transporter MDR1-P-glycoprotein
title_short HIV-1 integrase inhibitors are substrates for the multidrug transporter MDR1-P-glycoprotein
title_sort hiv-1 integrase inhibitors are substrates for the multidrug transporter mdr1-p-glycoprotein
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1828167/
https://www.ncbi.nlm.nih.gov/pubmed/17343726
http://dx.doi.org/10.1186/1742-4690-4-17
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