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Gemcitabine-loaded albumin nanospheres (GEM-ANPs) inhibit PANC-1 cells in vitro and in vivo

With the development of nanotechnology, special attention has been given to the nanomaterial application in tumor treatment. Here, a modified desolvation-cross-linking method was successfully applied to fabricate gemcitabine-loaded albumin nanospheres (GEM-ANPs), with 110 and 406 nm of mean diameter...

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Autores principales: Li, Ji, Di, Yang, Jin, Chen, Fu, Deliang, Yang, Feng, Jiang, Yongjian, Yao, Lie, Hao, Sijie, Wang, Xiaoyi, Subedi, Sabin, Ni, Quanxing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3655015/
https://www.ncbi.nlm.nih.gov/pubmed/23594566
http://dx.doi.org/10.1186/1556-276X-8-176
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author Li, Ji
Di, Yang
Jin, Chen
Fu, Deliang
Yang, Feng
Jiang, Yongjian
Yao, Lie
Hao, Sijie
Wang, Xiaoyi
Subedi, Sabin
Ni, Quanxing
author_facet Li, Ji
Di, Yang
Jin, Chen
Fu, Deliang
Yang, Feng
Jiang, Yongjian
Yao, Lie
Hao, Sijie
Wang, Xiaoyi
Subedi, Sabin
Ni, Quanxing
author_sort Li, Ji
collection PubMed
description With the development of nanotechnology, special attention has been given to the nanomaterial application in tumor treatment. Here, a modified desolvation-cross-linking method was successfully applied to fabricate gemcitabine-loaded albumin nanospheres (GEM-ANPs), with 110 and 406 nm of mean diameter, respectively. The aim of this study was to assess the drug distribution, side effects, and antitumor activity of GEM-ANPs in vivo. The metabolic viability and flow cytometry analysis revealed that both GEM-ANPs, especially 406-nm GEM-ANPs, could effectively inhibit the metabolism and proliferation and promote the apoptosis of human pancreatic carcinoma (PANC-1) in vitro. Intravenous injection of 406-nm GEM-ANPs exhibited a significant increase of gemcitabine in the pancreas, liver, and spleen of Sprague–Dawley rats (p < 0.05). Moreover, no signs of toxic side effects analyzed by blood parameter changes were observed after 3 weeks of administration although a high dose (200 mg/kg) of GEM-ANPs were used. Additionally, in PANC-1-induced tumor mice, intravenous injection of 406-nm GEM-ANPs also could effectively reduce the tumor volume by comparison with free gemcitabine. With these findings, albumin nanosphere-loading approach might be efficacious to improve the antitumor activity of gemcitabine, and the efficacy is associated with the size of GEM-ANPs.
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spelling pubmed-36550152013-05-16 Gemcitabine-loaded albumin nanospheres (GEM-ANPs) inhibit PANC-1 cells in vitro and in vivo Li, Ji Di, Yang Jin, Chen Fu, Deliang Yang, Feng Jiang, Yongjian Yao, Lie Hao, Sijie Wang, Xiaoyi Subedi, Sabin Ni, Quanxing Nanoscale Res Lett Nano Express With the development of nanotechnology, special attention has been given to the nanomaterial application in tumor treatment. Here, a modified desolvation-cross-linking method was successfully applied to fabricate gemcitabine-loaded albumin nanospheres (GEM-ANPs), with 110 and 406 nm of mean diameter, respectively. The aim of this study was to assess the drug distribution, side effects, and antitumor activity of GEM-ANPs in vivo. The metabolic viability and flow cytometry analysis revealed that both GEM-ANPs, especially 406-nm GEM-ANPs, could effectively inhibit the metabolism and proliferation and promote the apoptosis of human pancreatic carcinoma (PANC-1) in vitro. Intravenous injection of 406-nm GEM-ANPs exhibited a significant increase of gemcitabine in the pancreas, liver, and spleen of Sprague–Dawley rats (p < 0.05). Moreover, no signs of toxic side effects analyzed by blood parameter changes were observed after 3 weeks of administration although a high dose (200 mg/kg) of GEM-ANPs were used. Additionally, in PANC-1-induced tumor mice, intravenous injection of 406-nm GEM-ANPs also could effectively reduce the tumor volume by comparison with free gemcitabine. With these findings, albumin nanosphere-loading approach might be efficacious to improve the antitumor activity of gemcitabine, and the efficacy is associated with the size of GEM-ANPs. Springer 2013-04-17 /pmc/articles/PMC3655015/ /pubmed/23594566 http://dx.doi.org/10.1186/1556-276X-8-176 Text en Copyright ©2013 Li et al.; licensee Springer. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Nano Express
Li, Ji
Di, Yang
Jin, Chen
Fu, Deliang
Yang, Feng
Jiang, Yongjian
Yao, Lie
Hao, Sijie
Wang, Xiaoyi
Subedi, Sabin
Ni, Quanxing
Gemcitabine-loaded albumin nanospheres (GEM-ANPs) inhibit PANC-1 cells in vitro and in vivo
title Gemcitabine-loaded albumin nanospheres (GEM-ANPs) inhibit PANC-1 cells in vitro and in vivo
title_full Gemcitabine-loaded albumin nanospheres (GEM-ANPs) inhibit PANC-1 cells in vitro and in vivo
title_fullStr Gemcitabine-loaded albumin nanospheres (GEM-ANPs) inhibit PANC-1 cells in vitro and in vivo
title_full_unstemmed Gemcitabine-loaded albumin nanospheres (GEM-ANPs) inhibit PANC-1 cells in vitro and in vivo
title_short Gemcitabine-loaded albumin nanospheres (GEM-ANPs) inhibit PANC-1 cells in vitro and in vivo
title_sort gemcitabine-loaded albumin nanospheres (gem-anps) inhibit panc-1 cells in vitro and in vivo
topic Nano Express
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3655015/
https://www.ncbi.nlm.nih.gov/pubmed/23594566
http://dx.doi.org/10.1186/1556-276X-8-176
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