Cargando…

Process optimization for the preparation of oligomycin-loaded folate-conjugated chitosan nanoparticles as a tumor-targeted drug delivery system using a two-level factorial design method

Oligomycin-A (Oli-A), an anticancer drug, was loaded to the folate (FA)-conjugated chitosan as a tumor-targeted drug delivery system for the purpose of overcoming the nonspecific targeting characteristics and the hydrophobicity of the compound. The two-level factorial design (2-LFD) was applied to m...

Descripción completa

Detalles Bibliográficos
Autores principales: Zu, Yuangang, Zhao, Qi, Zhao, Xiuhua, Zu, Shuchong, Meng, Li
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3260036/
https://www.ncbi.nlm.nih.gov/pubmed/22267927
http://dx.doi.org/10.2147/IJN.S27157
_version_ 1782221429069053952
author Zu, Yuangang
Zhao, Qi
Zhao, Xiuhua
Zu, Shuchong
Meng, Li
author_facet Zu, Yuangang
Zhao, Qi
Zhao, Xiuhua
Zu, Shuchong
Meng, Li
author_sort Zu, Yuangang
collection PubMed
description Oligomycin-A (Oli-A), an anticancer drug, was loaded to the folate (FA)-conjugated chitosan as a tumor-targeted drug delivery system for the purpose of overcoming the nonspecific targeting characteristics and the hydrophobicity of the compound. The two-level factorial design (2-LFD) was applied to modeling the preparation process, which was composed of five independent variables, namely FA-conjugated chitosan (FA-CS) concentration, Oli-A concentration, sodium tripolyphosphate (TPP) concentration, the mass ratio of FA-CS to TPP, and crosslinking time. The mean particle size (MPS) and the drug loading rate (DLR) of the resulting Oli-loaded FA-CS nanoparticles (FA-Oli-CSNPs) were used as response variables. The interactive effects of the five independent variables on the response variables were studied. The characteristics of the nanoparticles, such as amount of FA conjugation, drug entrapment rate (DER), DLR, surface morphology, and release kinetics properties in vitro were investigated. The FA-Oli-CSNPs with MPS of 182.6 nm, DER of 17.3%, DLR of 58.5%, and zeta potential (ZP) of 24.6 mV were obtained under optimum conditions. The amount of FA conjugation was 45.9 mg/g chitosan. The FA-Oli-CSNPs showed sustained-release characteristics for 576 hours in vitro. The results indicated that FA-Oli-CSNPs obtained as a targeted drug delivery system could be effective in the therapy of leukemia in the future.
format Online
Article
Text
id pubmed-3260036
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Dove Medical Press
record_format MEDLINE/PubMed
spelling pubmed-32600362012-01-20 Process optimization for the preparation of oligomycin-loaded folate-conjugated chitosan nanoparticles as a tumor-targeted drug delivery system using a two-level factorial design method Zu, Yuangang Zhao, Qi Zhao, Xiuhua Zu, Shuchong Meng, Li Int J Nanomedicine Original Research Oligomycin-A (Oli-A), an anticancer drug, was loaded to the folate (FA)-conjugated chitosan as a tumor-targeted drug delivery system for the purpose of overcoming the nonspecific targeting characteristics and the hydrophobicity of the compound. The two-level factorial design (2-LFD) was applied to modeling the preparation process, which was composed of five independent variables, namely FA-conjugated chitosan (FA-CS) concentration, Oli-A concentration, sodium tripolyphosphate (TPP) concentration, the mass ratio of FA-CS to TPP, and crosslinking time. The mean particle size (MPS) and the drug loading rate (DLR) of the resulting Oli-loaded FA-CS nanoparticles (FA-Oli-CSNPs) were used as response variables. The interactive effects of the five independent variables on the response variables were studied. The characteristics of the nanoparticles, such as amount of FA conjugation, drug entrapment rate (DER), DLR, surface morphology, and release kinetics properties in vitro were investigated. The FA-Oli-CSNPs with MPS of 182.6 nm, DER of 17.3%, DLR of 58.5%, and zeta potential (ZP) of 24.6 mV were obtained under optimum conditions. The amount of FA conjugation was 45.9 mg/g chitosan. The FA-Oli-CSNPs showed sustained-release characteristics for 576 hours in vitro. The results indicated that FA-Oli-CSNPs obtained as a targeted drug delivery system could be effective in the therapy of leukemia in the future. Dove Medical Press 2011 2011-12-20 /pmc/articles/PMC3260036/ /pubmed/22267927 http://dx.doi.org/10.2147/IJN.S27157 Text en © 2011 Zu et al, publisher and licensee Dove Medical Press Ltd. This is an Open Access article which permits unrestricted noncommercial use, provided the original work is properly cited.
spellingShingle Original Research
Zu, Yuangang
Zhao, Qi
Zhao, Xiuhua
Zu, Shuchong
Meng, Li
Process optimization for the preparation of oligomycin-loaded folate-conjugated chitosan nanoparticles as a tumor-targeted drug delivery system using a two-level factorial design method
title Process optimization for the preparation of oligomycin-loaded folate-conjugated chitosan nanoparticles as a tumor-targeted drug delivery system using a two-level factorial design method
title_full Process optimization for the preparation of oligomycin-loaded folate-conjugated chitosan nanoparticles as a tumor-targeted drug delivery system using a two-level factorial design method
title_fullStr Process optimization for the preparation of oligomycin-loaded folate-conjugated chitosan nanoparticles as a tumor-targeted drug delivery system using a two-level factorial design method
title_full_unstemmed Process optimization for the preparation of oligomycin-loaded folate-conjugated chitosan nanoparticles as a tumor-targeted drug delivery system using a two-level factorial design method
title_short Process optimization for the preparation of oligomycin-loaded folate-conjugated chitosan nanoparticles as a tumor-targeted drug delivery system using a two-level factorial design method
title_sort process optimization for the preparation of oligomycin-loaded folate-conjugated chitosan nanoparticles as a tumor-targeted drug delivery system using a two-level factorial design method
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3260036/
https://www.ncbi.nlm.nih.gov/pubmed/22267927
http://dx.doi.org/10.2147/IJN.S27157
work_keys_str_mv AT zuyuangang processoptimizationforthepreparationofoligomycinloadedfolateconjugatedchitosannanoparticlesasatumortargeteddrugdeliverysystemusingatwolevelfactorialdesignmethod
AT zhaoqi processoptimizationforthepreparationofoligomycinloadedfolateconjugatedchitosannanoparticlesasatumortargeteddrugdeliverysystemusingatwolevelfactorialdesignmethod
AT zhaoxiuhua processoptimizationforthepreparationofoligomycinloadedfolateconjugatedchitosannanoparticlesasatumortargeteddrugdeliverysystemusingatwolevelfactorialdesignmethod
AT zushuchong processoptimizationforthepreparationofoligomycinloadedfolateconjugatedchitosannanoparticlesasatumortargeteddrugdeliverysystemusingatwolevelfactorialdesignmethod
AT mengli processoptimizationforthepreparationofoligomycinloadedfolateconjugatedchitosannanoparticlesasatumortargeteddrugdeliverysystemusingatwolevelfactorialdesignmethod