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NC-6301, a polymeric micelle rationally optimized for effective release of docetaxel, is potent but is less toxic than native docetaxel in vivo

Drug release rate is an important factor in determining efficacy and toxicity of nanoscale drug delivery systems. However, optimization of the release rate in polymeric micellar nanoscale drug delivery systems has not been fully investigated. In this study NC-6301, a poly(ethylene glycol)-poly(aspar...

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Autores principales: Harada, Mitsunori, Iwata, Caname, Saito, Hiroyuki, Ishii, Kenta, Hayashi, Tatsuyuki, Yashiro, Masakazu, Hirakawa, Kosei, Miyazono, Kohei, Kato, Yasuki, Kano, Mitsunobu R
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3383288/
https://www.ncbi.nlm.nih.gov/pubmed/22745540
http://dx.doi.org/10.2147/IJN.S31247
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author Harada, Mitsunori
Iwata, Caname
Saito, Hiroyuki
Ishii, Kenta
Hayashi, Tatsuyuki
Yashiro, Masakazu
Hirakawa, Kosei
Miyazono, Kohei
Kato, Yasuki
Kano, Mitsunobu R
author_facet Harada, Mitsunori
Iwata, Caname
Saito, Hiroyuki
Ishii, Kenta
Hayashi, Tatsuyuki
Yashiro, Masakazu
Hirakawa, Kosei
Miyazono, Kohei
Kato, Yasuki
Kano, Mitsunobu R
author_sort Harada, Mitsunori
collection PubMed
description Drug release rate is an important factor in determining efficacy and toxicity of nanoscale drug delivery systems. However, optimization of the release rate in polymeric micellar nanoscale drug delivery systems has not been fully investigated. In this study NC-6301, a poly(ethylene glycol)-poly(aspartate) block copolymer with docetaxel (DTX) covalently bound via ester link, was synthesized with various numbers of DTX molecules bound to the polymer backbone. The number of DTX molecules was determined up to 14 to achieve an optimal release rate, based upon the authors’ own pharmacokinetic model using known patient data. Efficacy and toxicity of the formulation was then tested in animals. When administered three times at 4-day intervals, the maximum tolerated doses of NC-6301 and native DTX were 50 and 10 mg/kg, respectively, in nude mice. Tissue distribution studies of NC-6301 in mice at 50 mg/kg revealed prolonged release of free DTX in the tumor for at least 120 hours, thus supporting its effectiveness. Furthermore, in cynomolgus monkeys, NC-6301 at 6 mg/kg three times at 2-week intervals showed marginal toxicity, whereas native DTX, at 3 mg/kg with the same schedule, induced significant decrease of food consumption and neutrophil count. NC-6301 at 50 mg/kg in mice also regressed a xenografted tumor of MDA-MB-231 human breast cancer. Native DTX, on the other hand, produced only transient and slight regression of the same tumor xenograft. NC-6301 also significantly inhibited growth of OCUM-2MLN human scirrhous gastric carcinoma in an orthotopic mouse model. Total weight of metastatic lymph nodes was also reduced. In conclusion, NC-6301 with an optimized release rate improved the potency of DTX while reducing its toxicity.
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spelling pubmed-33832882012-06-28 NC-6301, a polymeric micelle rationally optimized for effective release of docetaxel, is potent but is less toxic than native docetaxel in vivo Harada, Mitsunori Iwata, Caname Saito, Hiroyuki Ishii, Kenta Hayashi, Tatsuyuki Yashiro, Masakazu Hirakawa, Kosei Miyazono, Kohei Kato, Yasuki Kano, Mitsunobu R Int J Nanomedicine Original Research Drug release rate is an important factor in determining efficacy and toxicity of nanoscale drug delivery systems. However, optimization of the release rate in polymeric micellar nanoscale drug delivery systems has not been fully investigated. In this study NC-6301, a poly(ethylene glycol)-poly(aspartate) block copolymer with docetaxel (DTX) covalently bound via ester link, was synthesized with various numbers of DTX molecules bound to the polymer backbone. The number of DTX molecules was determined up to 14 to achieve an optimal release rate, based upon the authors’ own pharmacokinetic model using known patient data. Efficacy and toxicity of the formulation was then tested in animals. When administered three times at 4-day intervals, the maximum tolerated doses of NC-6301 and native DTX were 50 and 10 mg/kg, respectively, in nude mice. Tissue distribution studies of NC-6301 in mice at 50 mg/kg revealed prolonged release of free DTX in the tumor for at least 120 hours, thus supporting its effectiveness. Furthermore, in cynomolgus monkeys, NC-6301 at 6 mg/kg three times at 2-week intervals showed marginal toxicity, whereas native DTX, at 3 mg/kg with the same schedule, induced significant decrease of food consumption and neutrophil count. NC-6301 at 50 mg/kg in mice also regressed a xenografted tumor of MDA-MB-231 human breast cancer. Native DTX, on the other hand, produced only transient and slight regression of the same tumor xenograft. NC-6301 also significantly inhibited growth of OCUM-2MLN human scirrhous gastric carcinoma in an orthotopic mouse model. Total weight of metastatic lymph nodes was also reduced. In conclusion, NC-6301 with an optimized release rate improved the potency of DTX while reducing its toxicity. Dove Medical Press 2012 2012-05-31 /pmc/articles/PMC3383288/ /pubmed/22745540 http://dx.doi.org/10.2147/IJN.S31247 Text en © 2012 Harada 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
Harada, Mitsunori
Iwata, Caname
Saito, Hiroyuki
Ishii, Kenta
Hayashi, Tatsuyuki
Yashiro, Masakazu
Hirakawa, Kosei
Miyazono, Kohei
Kato, Yasuki
Kano, Mitsunobu R
NC-6301, a polymeric micelle rationally optimized for effective release of docetaxel, is potent but is less toxic than native docetaxel in vivo
title NC-6301, a polymeric micelle rationally optimized for effective release of docetaxel, is potent but is less toxic than native docetaxel in vivo
title_full NC-6301, a polymeric micelle rationally optimized for effective release of docetaxel, is potent but is less toxic than native docetaxel in vivo
title_fullStr NC-6301, a polymeric micelle rationally optimized for effective release of docetaxel, is potent but is less toxic than native docetaxel in vivo
title_full_unstemmed NC-6301, a polymeric micelle rationally optimized for effective release of docetaxel, is potent but is less toxic than native docetaxel in vivo
title_short NC-6301, a polymeric micelle rationally optimized for effective release of docetaxel, is potent but is less toxic than native docetaxel in vivo
title_sort nc-6301, a polymeric micelle rationally optimized for effective release of docetaxel, is potent but is less toxic than native docetaxel in vivo
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3383288/
https://www.ncbi.nlm.nih.gov/pubmed/22745540
http://dx.doi.org/10.2147/IJN.S31247
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