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Nanocrystals of a new camptothecin derivative WCN-21 enhance its solubility and efficacy

WCN-21 is a new camptothecin derivative we synthesized and has desirable anti-tumor efficacy, but its aqueous solubility is very low and hurdles the further evaluation and development. In this study, we prepared nanocrystals of WCN-21 through a bottom-up approach to enhance its solubility and obtain...

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Autores principales: You, Jia, Chen, Yuyuan, Mohamed Alsayeh, Zubaeda M., Shen, Xingyu, Li, Chun, Zhao, Pengxuan, Chen, Fei, Liu, Yingqian, Xu, Chuanrui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5444705/
https://www.ncbi.nlm.nih.gov/pubmed/28423733
http://dx.doi.org/10.18632/oncotarget.16159
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author You, Jia
Chen, Yuyuan
Mohamed Alsayeh, Zubaeda M.
Shen, Xingyu
Li, Chun
Zhao, Pengxuan
Chen, Fei
Liu, Yingqian
Xu, Chuanrui
author_facet You, Jia
Chen, Yuyuan
Mohamed Alsayeh, Zubaeda M.
Shen, Xingyu
Li, Chun
Zhao, Pengxuan
Chen, Fei
Liu, Yingqian
Xu, Chuanrui
author_sort You, Jia
collection PubMed
description WCN-21 is a new camptothecin derivative we synthesized and has desirable anti-tumor efficacy, but its aqueous solubility is very low and hurdles the further evaluation and development. In this study, we prepared nanocrystals of WCN-21 through a bottom-up approach to enhance its solubility and obtained WCN-21 nanorods (WND) and nanospheres (WNP). We investigated the crystallization of WND and WNP in different temperature and solvents and found that both temperature and solvents affect the crystal shapes and sizes. We prepared WND at 50°C and DMSO : H(2)O 1: 50 and WNP at 25°C and DMSO : H(2)O 1: 100 and found they were dispersed evenly in water with average hydrodynamic diameters 337 and 231 nm, respectively. WND and WNP increased the solubility of WCN-21 from extreme insolubility to more than 9 and 11 mM in H(2)O or PBS, respectively. In vitro studies showed that WND and WNP enhanced the uptake of WCN-21 in tumor cells by 3 and 9 folds, and increased cytotoxicity of WCN-21 in comparison with free WCN-21 by 5 and 6 folds, respectively. In xenograft tumor mice, intravenous injection of WND and WNP enhanced the accumulation of WCN-21 in tumor tissues and improved the anti-tumor efficacy. In addition, WND and WNP did not increase the toxicity of WCN-21 in mice. Therefore, nanocrystal is a robust tool to improve the solubility of insoluble drugs and holds a great potential in the application of drug development.
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spelling pubmed-54447052017-06-01 Nanocrystals of a new camptothecin derivative WCN-21 enhance its solubility and efficacy You, Jia Chen, Yuyuan Mohamed Alsayeh, Zubaeda M. Shen, Xingyu Li, Chun Zhao, Pengxuan Chen, Fei Liu, Yingqian Xu, Chuanrui Oncotarget Research Paper WCN-21 is a new camptothecin derivative we synthesized and has desirable anti-tumor efficacy, but its aqueous solubility is very low and hurdles the further evaluation and development. In this study, we prepared nanocrystals of WCN-21 through a bottom-up approach to enhance its solubility and obtained WCN-21 nanorods (WND) and nanospheres (WNP). We investigated the crystallization of WND and WNP in different temperature and solvents and found that both temperature and solvents affect the crystal shapes and sizes. We prepared WND at 50°C and DMSO : H(2)O 1: 50 and WNP at 25°C and DMSO : H(2)O 1: 100 and found they were dispersed evenly in water with average hydrodynamic diameters 337 and 231 nm, respectively. WND and WNP increased the solubility of WCN-21 from extreme insolubility to more than 9 and 11 mM in H(2)O or PBS, respectively. In vitro studies showed that WND and WNP enhanced the uptake of WCN-21 in tumor cells by 3 and 9 folds, and increased cytotoxicity of WCN-21 in comparison with free WCN-21 by 5 and 6 folds, respectively. In xenograft tumor mice, intravenous injection of WND and WNP enhanced the accumulation of WCN-21 in tumor tissues and improved the anti-tumor efficacy. In addition, WND and WNP did not increase the toxicity of WCN-21 in mice. Therefore, nanocrystal is a robust tool to improve the solubility of insoluble drugs and holds a great potential in the application of drug development. Impact Journals LLC 2017-03-13 /pmc/articles/PMC5444705/ /pubmed/28423733 http://dx.doi.org/10.18632/oncotarget.16159 Text en Copyright: © 2017 You et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
You, Jia
Chen, Yuyuan
Mohamed Alsayeh, Zubaeda M.
Shen, Xingyu
Li, Chun
Zhao, Pengxuan
Chen, Fei
Liu, Yingqian
Xu, Chuanrui
Nanocrystals of a new camptothecin derivative WCN-21 enhance its solubility and efficacy
title Nanocrystals of a new camptothecin derivative WCN-21 enhance its solubility and efficacy
title_full Nanocrystals of a new camptothecin derivative WCN-21 enhance its solubility and efficacy
title_fullStr Nanocrystals of a new camptothecin derivative WCN-21 enhance its solubility and efficacy
title_full_unstemmed Nanocrystals of a new camptothecin derivative WCN-21 enhance its solubility and efficacy
title_short Nanocrystals of a new camptothecin derivative WCN-21 enhance its solubility and efficacy
title_sort nanocrystals of a new camptothecin derivative wcn-21 enhance its solubility and efficacy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5444705/
https://www.ncbi.nlm.nih.gov/pubmed/28423733
http://dx.doi.org/10.18632/oncotarget.16159
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