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Synthesis of folate-chitosan nanoparticles loaded with ligustrazine to target folate receptor positive cancer cells

In addition to its vasodilatory effect, ligustrazine (LZ) improves the sensitivity of multidrug resistant cancer cells to chemotherapeutic agents. To enhance the specificity of LZ delivery to tumor cells/tissues, folate-chitosan nanoparticles (FA-CS-NPs) were synthesized by combination of folate est...

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Autores principales: Cheng, Lichun, Ma, Hui, Shao, Mingkun, Fan, Qing, Lv, Huiyi, Peng, Jinyong, Hao, Tangna, Li, Daiwei, Zhao, Chenyang, Zong, Xingyue
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5562069/
https://www.ncbi.nlm.nih.gov/pubmed/28627615
http://dx.doi.org/10.3892/mmr.2017.6740
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author Cheng, Lichun
Ma, Hui
Shao, Mingkun
Fan, Qing
Lv, Huiyi
Peng, Jinyong
Hao, Tangna
Li, Daiwei
Zhao, Chenyang
Zong, Xingyue
author_facet Cheng, Lichun
Ma, Hui
Shao, Mingkun
Fan, Qing
Lv, Huiyi
Peng, Jinyong
Hao, Tangna
Li, Daiwei
Zhao, Chenyang
Zong, Xingyue
author_sort Cheng, Lichun
collection PubMed
description In addition to its vasodilatory effect, ligustrazine (LZ) improves the sensitivity of multidrug resistant cancer cells to chemotherapeutic agents. To enhance the specificity of LZ delivery to tumor cells/tissues, folate-chitosan nanoparticles (FA-CS-NPs) were synthesized by combination of folate ester with the amine group on chitosan to serve as a delivery vehicle for LZ (FA-CS-LZ-NPs). The structure of folate-chitosan and characteristics of FA-CS-LZ-NPs, including its size, encapsulation efficiency, loading capacity and release rates were analyzed. MCF-7 (folate receptor-positive) and A549 (folate receptor-negative) cells cultured with or without folate were treated with FA-CS-LZ-NPs, CS-LZ-NPs or LZ to determine cancer-targeting specificity of FA-CS-LZ-NPs. Fluorescence intensity of intracellular LZ was observed by laser scanning confocal microscopy, and concentration of intracellular LZ was detected by HPLC. The average size of FA-CS-LZ-NPs was 182.7±0.56 nm, and the encapsulation efficiency and loading capacity was 59.6±0.23 and 15.3±0.16% respectively. The cumulative release rate was about 95% at pH 5.0, which was higher than that at pH 7.4. There was higher intracellular LZ accumulation in MCF-7 than that in A549 cells and intracellular LZ concentration was not high when MCF-7 cells were cultured with folate. These results indicated that the targeting specificity of FA-CS-LZ-NPs was mediated by folate receptor. Therefore, the FA-CS-LZ-NPs may be a potential folate receptor-positive tumor cell targeting drug delivery system that could possibly overcome multidrug resistance during cancer therapy.
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spelling pubmed-55620692017-10-23 Synthesis of folate-chitosan nanoparticles loaded with ligustrazine to target folate receptor positive cancer cells Cheng, Lichun Ma, Hui Shao, Mingkun Fan, Qing Lv, Huiyi Peng, Jinyong Hao, Tangna Li, Daiwei Zhao, Chenyang Zong, Xingyue Mol Med Rep Articles In addition to its vasodilatory effect, ligustrazine (LZ) improves the sensitivity of multidrug resistant cancer cells to chemotherapeutic agents. To enhance the specificity of LZ delivery to tumor cells/tissues, folate-chitosan nanoparticles (FA-CS-NPs) were synthesized by combination of folate ester with the amine group on chitosan to serve as a delivery vehicle for LZ (FA-CS-LZ-NPs). The structure of folate-chitosan and characteristics of FA-CS-LZ-NPs, including its size, encapsulation efficiency, loading capacity and release rates were analyzed. MCF-7 (folate receptor-positive) and A549 (folate receptor-negative) cells cultured with or without folate were treated with FA-CS-LZ-NPs, CS-LZ-NPs or LZ to determine cancer-targeting specificity of FA-CS-LZ-NPs. Fluorescence intensity of intracellular LZ was observed by laser scanning confocal microscopy, and concentration of intracellular LZ was detected by HPLC. The average size of FA-CS-LZ-NPs was 182.7±0.56 nm, and the encapsulation efficiency and loading capacity was 59.6±0.23 and 15.3±0.16% respectively. The cumulative release rate was about 95% at pH 5.0, which was higher than that at pH 7.4. There was higher intracellular LZ accumulation in MCF-7 than that in A549 cells and intracellular LZ concentration was not high when MCF-7 cells were cultured with folate. These results indicated that the targeting specificity of FA-CS-LZ-NPs was mediated by folate receptor. Therefore, the FA-CS-LZ-NPs may be a potential folate receptor-positive tumor cell targeting drug delivery system that could possibly overcome multidrug resistance during cancer therapy. D.A. Spandidos 2017-08 2017-06-09 /pmc/articles/PMC5562069/ /pubmed/28627615 http://dx.doi.org/10.3892/mmr.2017.6740 Text en Copyright: © Cheng et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Cheng, Lichun
Ma, Hui
Shao, Mingkun
Fan, Qing
Lv, Huiyi
Peng, Jinyong
Hao, Tangna
Li, Daiwei
Zhao, Chenyang
Zong, Xingyue
Synthesis of folate-chitosan nanoparticles loaded with ligustrazine to target folate receptor positive cancer cells
title Synthesis of folate-chitosan nanoparticles loaded with ligustrazine to target folate receptor positive cancer cells
title_full Synthesis of folate-chitosan nanoparticles loaded with ligustrazine to target folate receptor positive cancer cells
title_fullStr Synthesis of folate-chitosan nanoparticles loaded with ligustrazine to target folate receptor positive cancer cells
title_full_unstemmed Synthesis of folate-chitosan nanoparticles loaded with ligustrazine to target folate receptor positive cancer cells
title_short Synthesis of folate-chitosan nanoparticles loaded with ligustrazine to target folate receptor positive cancer cells
title_sort synthesis of folate-chitosan nanoparticles loaded with ligustrazine to target folate receptor positive cancer cells
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5562069/
https://www.ncbi.nlm.nih.gov/pubmed/28627615
http://dx.doi.org/10.3892/mmr.2017.6740
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