Cargando…
Simple weak-acid derivatives of paclitaxel for remote loading into liposomes and improved therapeutic effects
Liposomes are among the most successful nanocarriers; several products have been marketed, all of which were prepared by active loading methods. However, poorly water-soluble drugs without ionizable groups are usually incorporated into the lipid bi-layer of liposomes by passive loading methods, with...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055615/ https://www.ncbi.nlm.nih.gov/pubmed/35516912 http://dx.doi.org/10.1039/d0ra03190a |
_version_ | 1784697452499042304 |
---|---|
author | Yu, Jiang Zhou, Shuang Li, Jinbo Wang, Yingli Su, Yujiao Chi, Dongxu Wang, Jiamei Wang, Xue He, Zhonggui Lin, Guimei Liu, Dan Wang, Yongjun |
author_facet | Yu, Jiang Zhou, Shuang Li, Jinbo Wang, Yingli Su, Yujiao Chi, Dongxu Wang, Jiamei Wang, Xue He, Zhonggui Lin, Guimei Liu, Dan Wang, Yongjun |
author_sort | Yu, Jiang |
collection | PubMed |
description | Liposomes are among the most successful nanocarriers; several products have been marketed, all of which were prepared by active loading methods. However, poorly water-soluble drugs without ionizable groups are usually incorporated into the lipid bi-layer of liposomes by passive loading methods, with serious drug leakage during blood circulation. Furthermore, there have been few improvements in their anti-cancer activity and safety. Herein, we designed and synthesized three weak-acid modified paclitaxel (PTX) derivatives with a one-step reaction for the remote loading of liposomal formulations. By comparison, PTX-succinic acid liposomes (PTX-SA LPs) exhibited the highest encapsulation efficiency (97.2 ± 1.8%) and drug loading (8.84 ± 0.16%); meanwhile, there was almost no change in their particle size or zeta potential within one month. Furthermore, compared with Taxol®, the PTX-SA LPs showed a 4.35-fold prolonged half-time, enhanced tumor accumulation, and an increased maximum tolerated dose (MTD) of more than 30 mg kg(−1). As a result, the PTX-SA LPs displayed significantly improved in vivo anti-cancer efficacy in comparison with Taxol®. Therefore, weak-acid modification is proved to be a simple and effective method to achieve remote loading and high encapsulation efficiency of poorly soluble drugs, showing great potential for clinical application. |
format | Online Article Text |
id | pubmed-9055615 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-90556152022-05-04 Simple weak-acid derivatives of paclitaxel for remote loading into liposomes and improved therapeutic effects Yu, Jiang Zhou, Shuang Li, Jinbo Wang, Yingli Su, Yujiao Chi, Dongxu Wang, Jiamei Wang, Xue He, Zhonggui Lin, Guimei Liu, Dan Wang, Yongjun RSC Adv Chemistry Liposomes are among the most successful nanocarriers; several products have been marketed, all of which were prepared by active loading methods. However, poorly water-soluble drugs without ionizable groups are usually incorporated into the lipid bi-layer of liposomes by passive loading methods, with serious drug leakage during blood circulation. Furthermore, there have been few improvements in their anti-cancer activity and safety. Herein, we designed and synthesized three weak-acid modified paclitaxel (PTX) derivatives with a one-step reaction for the remote loading of liposomal formulations. By comparison, PTX-succinic acid liposomes (PTX-SA LPs) exhibited the highest encapsulation efficiency (97.2 ± 1.8%) and drug loading (8.84 ± 0.16%); meanwhile, there was almost no change in their particle size or zeta potential within one month. Furthermore, compared with Taxol®, the PTX-SA LPs showed a 4.35-fold prolonged half-time, enhanced tumor accumulation, and an increased maximum tolerated dose (MTD) of more than 30 mg kg(−1). As a result, the PTX-SA LPs displayed significantly improved in vivo anti-cancer efficacy in comparison with Taxol®. Therefore, weak-acid modification is proved to be a simple and effective method to achieve remote loading and high encapsulation efficiency of poorly soluble drugs, showing great potential for clinical application. The Royal Society of Chemistry 2020-07-24 /pmc/articles/PMC9055615/ /pubmed/35516912 http://dx.doi.org/10.1039/d0ra03190a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Yu, Jiang Zhou, Shuang Li, Jinbo Wang, Yingli Su, Yujiao Chi, Dongxu Wang, Jiamei Wang, Xue He, Zhonggui Lin, Guimei Liu, Dan Wang, Yongjun Simple weak-acid derivatives of paclitaxel for remote loading into liposomes and improved therapeutic effects |
title | Simple weak-acid derivatives of paclitaxel for remote loading into liposomes and improved therapeutic effects |
title_full | Simple weak-acid derivatives of paclitaxel for remote loading into liposomes and improved therapeutic effects |
title_fullStr | Simple weak-acid derivatives of paclitaxel for remote loading into liposomes and improved therapeutic effects |
title_full_unstemmed | Simple weak-acid derivatives of paclitaxel for remote loading into liposomes and improved therapeutic effects |
title_short | Simple weak-acid derivatives of paclitaxel for remote loading into liposomes and improved therapeutic effects |
title_sort | simple weak-acid derivatives of paclitaxel for remote loading into liposomes and improved therapeutic effects |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9055615/ https://www.ncbi.nlm.nih.gov/pubmed/35516912 http://dx.doi.org/10.1039/d0ra03190a |
work_keys_str_mv | AT yujiang simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects AT zhoushuang simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects AT lijinbo simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects AT wangyingli simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects AT suyujiao simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects AT chidongxu simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects AT wangjiamei simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects AT wangxue simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects AT hezhonggui simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects AT linguimei simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects AT liudan simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects AT wangyongjun simpleweakacidderivativesofpaclitaxelforremoteloadingintoliposomesandimprovedtherapeuticeffects |