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Novel Mechanism of N‐Solanesyl‐N,N′‐bis(3,4‐dimethoxybenzyl)ethylenediamine in Potentiation of Antitumor Drug Action on Multidrug‐resistant and Sensitive Chinese Hamster Cells

The mechanism of the synthetic isopremoid N‐solanesyl‐N,N′‐bis(3,4‐dimethoxybenzyl)ethylenediantine (SDB‐ethylenediamine) in potentiating antitumor drug action against multidrug‐resistant cells was comparatively studied with other potentiators such as verapamil and cepharanthine. SDB‐ethylenediamine...

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Detalles Bibliográficos
Autores principales: Tomida, Akihiro, Tatsuta, Tohru, Suzuki, Hideo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 1991
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5918209/
https://www.ncbi.nlm.nih.gov/pubmed/1671855
http://dx.doi.org/10.1111/j.1349-7006.1991.tb01755.x
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author Tomida, Akihiro
Tatsuta, Tohru
Suzuki, Hideo
author_facet Tomida, Akihiro
Tatsuta, Tohru
Suzuki, Hideo
author_sort Tomida, Akihiro
collection PubMed
description The mechanism of the synthetic isopremoid N‐solanesyl‐N,N′‐bis(3,4‐dimethoxybenzyl)ethylenediantine (SDB‐ethylenediamine) in potentiating antitumor drug action against multidrug‐resistant cells was comparatively studied with other potentiators such as verapamil and cepharanthine. SDB‐ethylenediamine increased the accumulation of [(3)H]daunorubicin (DNR) in Chinese hamster V79 (V79/S) and its multidrug‐resistant mutant (V79/ADM) cells. Even after SDB‐ethylenediamine was removed from the medium, its effect continued. But when verapamil was removed from the medium, its effect disappeared immediately. Unlike verapamil and cepharanthine, SDB‐ethylenediamine did not greatly inhibit the efflux of [(3)H]DNR from V79/ADM, the binding of [(3)H]vinblastine to membrane vesicles of V79/ADM, or the binding of [(3)H]azidopine to P‐glycoprotein in the cytoplasmic membrane of V79/ADM. It did stimulate the influx of [(3)H]DNR into the ATP‐depleted cells of V79/S and V79/ADM. Thus, SDB‐ethylenediamine uniquely potentiates antitumor drugs. The increased intracellular accumulation of antitumor drugs in the presence of SDB‐ethylenediamine is due not only to the inhibition of active efflux but also to the stimulation of the influx of antitumor drugs.
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spelling pubmed-59182092018-05-11 Novel Mechanism of N‐Solanesyl‐N,N′‐bis(3,4‐dimethoxybenzyl)ethylenediamine in Potentiation of Antitumor Drug Action on Multidrug‐resistant and Sensitive Chinese Hamster Cells Tomida, Akihiro Tatsuta, Tohru Suzuki, Hideo Jpn J Cancer Res Article The mechanism of the synthetic isopremoid N‐solanesyl‐N,N′‐bis(3,4‐dimethoxybenzyl)ethylenediantine (SDB‐ethylenediamine) in potentiating antitumor drug action against multidrug‐resistant cells was comparatively studied with other potentiators such as verapamil and cepharanthine. SDB‐ethylenediamine increased the accumulation of [(3)H]daunorubicin (DNR) in Chinese hamster V79 (V79/S) and its multidrug‐resistant mutant (V79/ADM) cells. Even after SDB‐ethylenediamine was removed from the medium, its effect continued. But when verapamil was removed from the medium, its effect disappeared immediately. Unlike verapamil and cepharanthine, SDB‐ethylenediamine did not greatly inhibit the efflux of [(3)H]DNR from V79/ADM, the binding of [(3)H]vinblastine to membrane vesicles of V79/ADM, or the binding of [(3)H]azidopine to P‐glycoprotein in the cytoplasmic membrane of V79/ADM. It did stimulate the influx of [(3)H]DNR into the ATP‐depleted cells of V79/S and V79/ADM. Thus, SDB‐ethylenediamine uniquely potentiates antitumor drugs. The increased intracellular accumulation of antitumor drugs in the presence of SDB‐ethylenediamine is due not only to the inhibition of active efflux but also to the stimulation of the influx of antitumor drugs. Blackwell Publishing Ltd 1991-01 /pmc/articles/PMC5918209/ /pubmed/1671855 http://dx.doi.org/10.1111/j.1349-7006.1991.tb01755.x Text en
spellingShingle Article
Tomida, Akihiro
Tatsuta, Tohru
Suzuki, Hideo
Novel Mechanism of N‐Solanesyl‐N,N′‐bis(3,4‐dimethoxybenzyl)ethylenediamine in Potentiation of Antitumor Drug Action on Multidrug‐resistant and Sensitive Chinese Hamster Cells
title Novel Mechanism of N‐Solanesyl‐N,N′‐bis(3,4‐dimethoxybenzyl)ethylenediamine in Potentiation of Antitumor Drug Action on Multidrug‐resistant and Sensitive Chinese Hamster Cells
title_full Novel Mechanism of N‐Solanesyl‐N,N′‐bis(3,4‐dimethoxybenzyl)ethylenediamine in Potentiation of Antitumor Drug Action on Multidrug‐resistant and Sensitive Chinese Hamster Cells
title_fullStr Novel Mechanism of N‐Solanesyl‐N,N′‐bis(3,4‐dimethoxybenzyl)ethylenediamine in Potentiation of Antitumor Drug Action on Multidrug‐resistant and Sensitive Chinese Hamster Cells
title_full_unstemmed Novel Mechanism of N‐Solanesyl‐N,N′‐bis(3,4‐dimethoxybenzyl)ethylenediamine in Potentiation of Antitumor Drug Action on Multidrug‐resistant and Sensitive Chinese Hamster Cells
title_short Novel Mechanism of N‐Solanesyl‐N,N′‐bis(3,4‐dimethoxybenzyl)ethylenediamine in Potentiation of Antitumor Drug Action on Multidrug‐resistant and Sensitive Chinese Hamster Cells
title_sort novel mechanism of n‐solanesyl‐n,n′‐bis(3,4‐dimethoxybenzyl)ethylenediamine in potentiation of antitumor drug action on multidrug‐resistant and sensitive chinese hamster cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5918209/
https://www.ncbi.nlm.nih.gov/pubmed/1671855
http://dx.doi.org/10.1111/j.1349-7006.1991.tb01755.x
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