Cargando…

Stimuli-responsive nanodrug self-assembled from amphiphilic drug-inhibitor conjugate for overcoming multidrug resistance in cancer treatment

Severe multidrug resistance (MDR) often develops in the process of chemotherapy for most small molecule anticancer drugs, which results in clinical chemotherapy failures. Methods: Here, a nanodrug is constructed through the self-assembly of amphiphilic drug-inhibitor conjugates (ADIC) containing a r...

Descripción completa

Detalles Bibliográficos
Autores principales: Huang, Ping, Wang, Guanchun, Su, Yue, Zhou, Yongfeng, Huang, Wei, Zhang, Rong, Yan, Deyue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6735370/
https://www.ncbi.nlm.nih.gov/pubmed/31534517
http://dx.doi.org/10.7150/thno.36163
_version_ 1783450343774879744
author Huang, Ping
Wang, Guanchun
Su, Yue
Zhou, Yongfeng
Huang, Wei
Zhang, Rong
Yan, Deyue
author_facet Huang, Ping
Wang, Guanchun
Su, Yue
Zhou, Yongfeng
Huang, Wei
Zhang, Rong
Yan, Deyue
author_sort Huang, Ping
collection PubMed
description Severe multidrug resistance (MDR) often develops in the process of chemotherapy for most small molecule anticancer drugs, which results in clinical chemotherapy failures. Methods: Here, a nanodrug is constructed through the self-assembly of amphiphilic drug-inhibitor conjugates (ADIC) containing a redox-responsive linkage for reversing the multidrug resistance (MDR) in cancer treatment. Specifically, hydrophilic anticancer irinotecan (Ir) and hydrophobic P-gp protein inhibitor quinine (Qu) are linked by a redox responsive bridge for overcoming MDR of tumors. Results: Ir-ss-Qu is able to self-assemble into nanoparticles (NPs) in water and shows the longer blood retention half-life compared with that of free Ir or Qu, which facilitates drug accumulation in tumor site. After endocytosis of Ir-ss-Qu NPs by drug-resistant tumor cells, the disulfide bond in the linkage between Ir and Qu is cleaved rapidly induced by glutathione (GSH) to release anticancer drug Ir and inhibitor Qu synchronously. The released Qu can markedly reduce the expression of P-gp in drug-resistant tumor cells and inhibits P-gp to pump Ir out of the cells. The increased concentration of intracellular Ir can effectively improve the therapeutic efficacy. Conclusions: Such redox-responsive Ir-ss-Qu NPs, as a drug delivery system, exhibit very high cytotoxicity and the most effective inhibitory to the growth of drug-resistant breast cancer compared with that of free therapeutic agents in vitro and in vivo.
format Online
Article
Text
id pubmed-6735370
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-67353702019-09-18 Stimuli-responsive nanodrug self-assembled from amphiphilic drug-inhibitor conjugate for overcoming multidrug resistance in cancer treatment Huang, Ping Wang, Guanchun Su, Yue Zhou, Yongfeng Huang, Wei Zhang, Rong Yan, Deyue Theranostics Research Paper Severe multidrug resistance (MDR) often develops in the process of chemotherapy for most small molecule anticancer drugs, which results in clinical chemotherapy failures. Methods: Here, a nanodrug is constructed through the self-assembly of amphiphilic drug-inhibitor conjugates (ADIC) containing a redox-responsive linkage for reversing the multidrug resistance (MDR) in cancer treatment. Specifically, hydrophilic anticancer irinotecan (Ir) and hydrophobic P-gp protein inhibitor quinine (Qu) are linked by a redox responsive bridge for overcoming MDR of tumors. Results: Ir-ss-Qu is able to self-assemble into nanoparticles (NPs) in water and shows the longer blood retention half-life compared with that of free Ir or Qu, which facilitates drug accumulation in tumor site. After endocytosis of Ir-ss-Qu NPs by drug-resistant tumor cells, the disulfide bond in the linkage between Ir and Qu is cleaved rapidly induced by glutathione (GSH) to release anticancer drug Ir and inhibitor Qu synchronously. The released Qu can markedly reduce the expression of P-gp in drug-resistant tumor cells and inhibits P-gp to pump Ir out of the cells. The increased concentration of intracellular Ir can effectively improve the therapeutic efficacy. Conclusions: Such redox-responsive Ir-ss-Qu NPs, as a drug delivery system, exhibit very high cytotoxicity and the most effective inhibitory to the growth of drug-resistant breast cancer compared with that of free therapeutic agents in vitro and in vivo. Ivyspring International Publisher 2019-08-12 /pmc/articles/PMC6735370/ /pubmed/31534517 http://dx.doi.org/10.7150/thno.36163 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Huang, Ping
Wang, Guanchun
Su, Yue
Zhou, Yongfeng
Huang, Wei
Zhang, Rong
Yan, Deyue
Stimuli-responsive nanodrug self-assembled from amphiphilic drug-inhibitor conjugate for overcoming multidrug resistance in cancer treatment
title Stimuli-responsive nanodrug self-assembled from amphiphilic drug-inhibitor conjugate for overcoming multidrug resistance in cancer treatment
title_full Stimuli-responsive nanodrug self-assembled from amphiphilic drug-inhibitor conjugate for overcoming multidrug resistance in cancer treatment
title_fullStr Stimuli-responsive nanodrug self-assembled from amphiphilic drug-inhibitor conjugate for overcoming multidrug resistance in cancer treatment
title_full_unstemmed Stimuli-responsive nanodrug self-assembled from amphiphilic drug-inhibitor conjugate for overcoming multidrug resistance in cancer treatment
title_short Stimuli-responsive nanodrug self-assembled from amphiphilic drug-inhibitor conjugate for overcoming multidrug resistance in cancer treatment
title_sort stimuli-responsive nanodrug self-assembled from amphiphilic drug-inhibitor conjugate for overcoming multidrug resistance in cancer treatment
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6735370/
https://www.ncbi.nlm.nih.gov/pubmed/31534517
http://dx.doi.org/10.7150/thno.36163
work_keys_str_mv AT huangping stimuliresponsivenanodrugselfassembledfromamphiphilicdruginhibitorconjugateforovercomingmultidrugresistanceincancertreatment
AT wangguanchun stimuliresponsivenanodrugselfassembledfromamphiphilicdruginhibitorconjugateforovercomingmultidrugresistanceincancertreatment
AT suyue stimuliresponsivenanodrugselfassembledfromamphiphilicdruginhibitorconjugateforovercomingmultidrugresistanceincancertreatment
AT zhouyongfeng stimuliresponsivenanodrugselfassembledfromamphiphilicdruginhibitorconjugateforovercomingmultidrugresistanceincancertreatment
AT huangwei stimuliresponsivenanodrugselfassembledfromamphiphilicdruginhibitorconjugateforovercomingmultidrugresistanceincancertreatment
AT zhangrong stimuliresponsivenanodrugselfassembledfromamphiphilicdruginhibitorconjugateforovercomingmultidrugresistanceincancertreatment
AT yandeyue stimuliresponsivenanodrugselfassembledfromamphiphilicdruginhibitorconjugateforovercomingmultidrugresistanceincancertreatment