(2023) Synthesis of a stimuli-sensitive PEGylated nanoniosomal doxorubicin for the treatment of acute myeloid leukemia: An in vitro study. Nanomedicine Journal. pp. 77-84. ISSN 23223049 (ISSN)
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Abstract
Objective(s):One of the effective strategies for target edchemo therapy of cancer is the use of lipidnano carriers. In this study, an optimal formulation of niosomal drug containing doxorubicin was developed to monitor the potency against cancer cells. MaterialsandMethods:Inthisexperimentalstudy,niosomalvesicleswerepreparedusingphosphatidylcholine (20), span60 (52.5), cholesterol (22.5), and DSPE-PEG2000 (5) by the thin-film method. Doxorubicin was loaded into the niosomes using an inactive loading method. Results:The features and characteristics of the nanocarrier were evaluated using Zeta-Sizer, SEM, FTIR, drug release, cellular uptake, and the cytotoxicity of the nanodrug carrier system by the MTT method. Niosomal vesicles-containing doxorubicin showed a size of ~156.8 nm, drug encapsulation efficiency of ~94.18, zeta potential of ~-3.52 mV, and polydispersity index (PDI) of ~0.265. The prepared niosomes indicated a drug-controlled release system and FTIR analysis showed no interaction between nanocarriers containing drug and doxorubicin. Moreover, morphological examination of nanocarriers using SEM microscopy revealed that they had spherical structures. Also, cellular studies showed that drug toxicity was higher in encapsulated form of the drug compared with non-encapsulated doxorubicin which was confirmed by the cellular uptake results. Conclusion: The results confirmed the proper physicochemical characteristics of these nanocarriers that significantly increased the toxicity of the encapsulated drug against the KG-1 cell line. It seems niosomal nanocarriers can be considered suitable carriers for drug delivery to cancer cells. © 2023 Authors. All rights reserved.
Item Type: | Article |
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Keywords: | Acute myeloid leukemia Doxorubicin KG1 cell line Niosomes cholesterol nanocarrier niosome sorbitan stearate Article cell viability comparative study controlled study cytotoxicity cytotoxicity assay dispersity drug effect drug release drug synthesis encapsulation evaluation study Fourier transform infrared spectroscopy human human cell in vitro study KG-1 cell line morphology MTT assay PEGylation physical chemistry priority journal scanning electron microscopy temperature zeta potential |
Page Range: | pp. 77-84 |
Journal or Publication Title: | Nanomedicine Journal |
Volume: | 10 |
Number: | 1 |
Identification Number: | https://doi.org/10.22038/NMJ.2022.69777.1745 |
ISSN: | 23223049 (ISSN) |
Depositing User: | Mr mahdi sharifi |
URI: | http://eprints.ssu.ac.ir/id/eprint/31482 |
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