Cargando…
Lipid insertion enables targeted functionalization of paclitaxel-loaded erythrocyte membrane nanosystem by tumor-penetrating bispecific recombinant protein
BACKGROUND: There is currently much interest in cancer cell targeting and tumor penetrating for research and therapeutic purposes. PURPOSE: To improve targeting delivery of antitumor drugs to gastric cancer, in this study, a tumor-targeting biocompatible drug delivery system derived from erythrocyte...
Autores principales: | , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Dove Medical Press
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6141126/ https://www.ncbi.nlm.nih.gov/pubmed/30254439 http://dx.doi.org/10.2147/IJN.S165109 |
_version_ | 1783355655749369856 |
---|---|
author | Chen, Hong Sha, Huizi Zhang, Lianru Qian, Hanqing Chen, Fangjun Ding, Naiqin Ji, Liulian Zhu, Anqing Xu, Qiuping Meng, Fanyan Yu, Lixia Zhou, Yan Liu, Baorui |
author_facet | Chen, Hong Sha, Huizi Zhang, Lianru Qian, Hanqing Chen, Fangjun Ding, Naiqin Ji, Liulian Zhu, Anqing Xu, Qiuping Meng, Fanyan Yu, Lixia Zhou, Yan Liu, Baorui |
author_sort | Chen, Hong |
collection | PubMed |
description | BACKGROUND: There is currently much interest in cancer cell targeting and tumor penetrating for research and therapeutic purposes. PURPOSE: To improve targeting delivery of antitumor drugs to gastric cancer, in this study, a tumor-targeting biocompatible drug delivery system derived from erythrocyte membrane for delivering paclitaxel (PTX) was constructed. METHODS: Erythrocyte membrane of human red blood cells (RBCs) were used for preparing of erythrocyte membrane-derived vesicles. 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-N-(maleimide[polyethylene glycol]-3400) (DSPE-PEG-MAL), a phospholipid derivative, was used to insert tumor-targeting molecular into erythrocyte membrane-derived vesicles. A lipid insertion method was used to functionalize these vesicles without the need for direct chemical conjugation. Furthermore, a tumor-penetrating bispecific recombinant protein named anti-EGFR-iRGD was used for the first time in this work to enable nanosystem to target and penetrate efficiently into the tumor site. RESULTS: Paclitaxel (PTX)-loaded anti-EGFR-iRGD-modified erythrocyte membrane nano-system (anti-EGFR-iRGD-RBCm-PTX, abbreviated to PRP) were manufactured. PRP was spheroid, uniformly size, about 171.7±4.7 nm in average, could be stable in vitro for 8 days, and released PTX in a biphasic pattern. PRP showed comparable cytotoxicity toward human gastric cancer cells in vitro. In vivo studies showed that, PRP accumulated in tumor site within 2 h of administration, lasted longer than 48 h, and the tumor volume was reduced 61% by PRP treatment in Balb/c nude mice, without causing severe side effects. CONCLUSION: PRP has potential applications in cancer treatment and as an adjunct for other anticancer strategies. |
format | Online Article Text |
id | pubmed-6141126 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Dove Medical Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-61411262018-09-25 Lipid insertion enables targeted functionalization of paclitaxel-loaded erythrocyte membrane nanosystem by tumor-penetrating bispecific recombinant protein Chen, Hong Sha, Huizi Zhang, Lianru Qian, Hanqing Chen, Fangjun Ding, Naiqin Ji, Liulian Zhu, Anqing Xu, Qiuping Meng, Fanyan Yu, Lixia Zhou, Yan Liu, Baorui Int J Nanomedicine Original Research BACKGROUND: There is currently much interest in cancer cell targeting and tumor penetrating for research and therapeutic purposes. PURPOSE: To improve targeting delivery of antitumor drugs to gastric cancer, in this study, a tumor-targeting biocompatible drug delivery system derived from erythrocyte membrane for delivering paclitaxel (PTX) was constructed. METHODS: Erythrocyte membrane of human red blood cells (RBCs) were used for preparing of erythrocyte membrane-derived vesicles. 1,2-distearoyl-sn-glycero-3-phosphoethanolamine-N-(maleimide[polyethylene glycol]-3400) (DSPE-PEG-MAL), a phospholipid derivative, was used to insert tumor-targeting molecular into erythrocyte membrane-derived vesicles. A lipid insertion method was used to functionalize these vesicles without the need for direct chemical conjugation. Furthermore, a tumor-penetrating bispecific recombinant protein named anti-EGFR-iRGD was used for the first time in this work to enable nanosystem to target and penetrate efficiently into the tumor site. RESULTS: Paclitaxel (PTX)-loaded anti-EGFR-iRGD-modified erythrocyte membrane nano-system (anti-EGFR-iRGD-RBCm-PTX, abbreviated to PRP) were manufactured. PRP was spheroid, uniformly size, about 171.7±4.7 nm in average, could be stable in vitro for 8 days, and released PTX in a biphasic pattern. PRP showed comparable cytotoxicity toward human gastric cancer cells in vitro. In vivo studies showed that, PRP accumulated in tumor site within 2 h of administration, lasted longer than 48 h, and the tumor volume was reduced 61% by PRP treatment in Balb/c nude mice, without causing severe side effects. CONCLUSION: PRP has potential applications in cancer treatment and as an adjunct for other anticancer strategies. Dove Medical Press 2018-09-11 /pmc/articles/PMC6141126/ /pubmed/30254439 http://dx.doi.org/10.2147/IJN.S165109 Text en © 2018 Chen et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed. |
spellingShingle | Original Research Chen, Hong Sha, Huizi Zhang, Lianru Qian, Hanqing Chen, Fangjun Ding, Naiqin Ji, Liulian Zhu, Anqing Xu, Qiuping Meng, Fanyan Yu, Lixia Zhou, Yan Liu, Baorui Lipid insertion enables targeted functionalization of paclitaxel-loaded erythrocyte membrane nanosystem by tumor-penetrating bispecific recombinant protein |
title | Lipid insertion enables targeted functionalization of paclitaxel-loaded erythrocyte membrane nanosystem by tumor-penetrating bispecific recombinant protein |
title_full | Lipid insertion enables targeted functionalization of paclitaxel-loaded erythrocyte membrane nanosystem by tumor-penetrating bispecific recombinant protein |
title_fullStr | Lipid insertion enables targeted functionalization of paclitaxel-loaded erythrocyte membrane nanosystem by tumor-penetrating bispecific recombinant protein |
title_full_unstemmed | Lipid insertion enables targeted functionalization of paclitaxel-loaded erythrocyte membrane nanosystem by tumor-penetrating bispecific recombinant protein |
title_short | Lipid insertion enables targeted functionalization of paclitaxel-loaded erythrocyte membrane nanosystem by tumor-penetrating bispecific recombinant protein |
title_sort | lipid insertion enables targeted functionalization of paclitaxel-loaded erythrocyte membrane nanosystem by tumor-penetrating bispecific recombinant protein |
topic | Original Research |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6141126/ https://www.ncbi.nlm.nih.gov/pubmed/30254439 http://dx.doi.org/10.2147/IJN.S165109 |
work_keys_str_mv | AT chenhong lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT shahuizi lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT zhanglianru lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT qianhanqing lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT chenfangjun lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT dingnaiqin lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT jiliulian lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT zhuanqing lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT xuqiuping lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT mengfanyan lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT yulixia lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT zhouyan lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein AT liubaorui lipidinsertionenablestargetedfunctionalizationofpaclitaxelloadederythrocytemembranenanosystembytumorpenetratingbispecificrecombinantprotein |