A Solid Ultra Fine Self-Nanoemulsifying Drug Delivery System (S-SNEDDS) of Deferasirox for Improved Solubility: Optimization, Characterization, and In vitro Cytotoxicity Studies
The research work was designed to develop a solid self-nanoemulsifying drug delivery system (S-SNEDDS) of deferasirox (DFX). According to the solubility studies of DFX in different components, Peceol, Kolliphor EL, and Transcutol were selected as excipients. Pseudo-ternary phase diagrams were constr...
Main Authors: | , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
MDPI AG
2020-07-01
|
Series: | Pharmaceuticals |
Subjects: | |
Online Access: | https://www.mdpi.com/1424-8247/13/8/162 |
id |
doaj-e99dc10d9af5495e82cb1cc2c824b9c3 |
---|---|
record_format |
Article |
spelling |
doaj-e99dc10d9af5495e82cb1cc2c824b9c32020-11-25T03:51:28ZengMDPI AGPharmaceuticals1424-82472020-07-011316216210.3390/ph13080162A Solid Ultra Fine Self-Nanoemulsifying Drug Delivery System (S-SNEDDS) of Deferasirox for Improved Solubility: Optimization, Characterization, and In vitro Cytotoxicity StudiesAlaa Alghananim0Yıldız Özalp1Burcu Mesut2Nedime Serakinci3Yıldız Özsoy4Sevgi Güngör5Department of Pharmaceutical Technology, Faculty of Pharmacy, Near East University, Nicosia 99010, CyprusDepartment of Pharmaceutical Technology, Faculty of Pharmacy, Near East University, Nicosia 99010, CyprusDepartment of Pharmaceutical Technology, Istanbul University, Faculty of Pharmacy, Istanbul 34116, TurkeyDepartment of Medical Genetics, Faculty of Medicine, Near East University, Nicosia 99010, CyprusDepartment of Pharmaceutical Technology, Istanbul University, Faculty of Pharmacy, Istanbul 34116, TurkeyDepartment of Pharmaceutical Technology, Istanbul University, Faculty of Pharmacy, Istanbul 34116, TurkeyThe research work was designed to develop a solid self-nanoemulsifying drug delivery system (S-SNEDDS) of deferasirox (DFX). According to the solubility studies of DFX in different components, Peceol, Kolliphor EL, and Transcutol were selected as excipients. Pseudo-ternary phase diagrams were constructed, and then SNEDDS formation assessment studies and solubility of DFX in selected SNEDDSs formulations were performed. DFX loaded SNEDDS were prepared and characterized. The optimum DFX-SNEDDS formulations were developed. The relative safety of the optimized SNEDDS formulation was examined in a human immortalized myelogenous leukemia cell line, K562 cells, using the MTT cell viability test. Cytotoxicity studies revealed more cell viability (71.44%) of DFX loaded SNEDDS compared to pure DFX (3.99%) at 40 μM. The selected DFX-SNEDDS formulation was converted into S-SNEDDS by adsorbing into porous carriers, in order to study its dissolution behavior. The in vitro drug release studies indicated that DFX release (Q5%) from S-SNEDDS solidified with Neusilin UFL2 was significantly higher (93.6 ± 0.7% within 5 min) compared with the marketed product (81.65 ± 2.10%). The overall results indicated that the S-SNEDDS formulation of DFX could have the potential to enhance the solubility of DFX, which would in turn have the potential to improve its oral bioavailability as a safe novel delivery system.https://www.mdpi.com/1424-8247/13/8/162deferasiroxSNEDDSsolid SNEDDSsolid carriersenhancement solubilityoral delivery |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Alaa Alghananim Yıldız Özalp Burcu Mesut Nedime Serakinci Yıldız Özsoy Sevgi Güngör |
spellingShingle |
Alaa Alghananim Yıldız Özalp Burcu Mesut Nedime Serakinci Yıldız Özsoy Sevgi Güngör A Solid Ultra Fine Self-Nanoemulsifying Drug Delivery System (S-SNEDDS) of Deferasirox for Improved Solubility: Optimization, Characterization, and In vitro Cytotoxicity Studies Pharmaceuticals deferasirox SNEDDS solid SNEDDS solid carriers enhancement solubility oral delivery |
author_facet |
Alaa Alghananim Yıldız Özalp Burcu Mesut Nedime Serakinci Yıldız Özsoy Sevgi Güngör |
author_sort |
Alaa Alghananim |
title |
A Solid Ultra Fine Self-Nanoemulsifying Drug Delivery System (S-SNEDDS) of Deferasirox for Improved Solubility: Optimization, Characterization, and In vitro Cytotoxicity Studies |
title_short |
A Solid Ultra Fine Self-Nanoemulsifying Drug Delivery System (S-SNEDDS) of Deferasirox for Improved Solubility: Optimization, Characterization, and In vitro Cytotoxicity Studies |
title_full |
A Solid Ultra Fine Self-Nanoemulsifying Drug Delivery System (S-SNEDDS) of Deferasirox for Improved Solubility: Optimization, Characterization, and In vitro Cytotoxicity Studies |
title_fullStr |
A Solid Ultra Fine Self-Nanoemulsifying Drug Delivery System (S-SNEDDS) of Deferasirox for Improved Solubility: Optimization, Characterization, and In vitro Cytotoxicity Studies |
title_full_unstemmed |
A Solid Ultra Fine Self-Nanoemulsifying Drug Delivery System (S-SNEDDS) of Deferasirox for Improved Solubility: Optimization, Characterization, and In vitro Cytotoxicity Studies |
title_sort |
solid ultra fine self-nanoemulsifying drug delivery system (s-snedds) of deferasirox for improved solubility: optimization, characterization, and in vitro cytotoxicity studies |
publisher |
MDPI AG |
series |
Pharmaceuticals |
issn |
1424-8247 |
publishDate |
2020-07-01 |
description |
The research work was designed to develop a solid self-nanoemulsifying drug delivery system (S-SNEDDS) of deferasirox (DFX). According to the solubility studies of DFX in different components, Peceol, Kolliphor EL, and Transcutol were selected as excipients. Pseudo-ternary phase diagrams were constructed, and then SNEDDS formation assessment studies and solubility of DFX in selected SNEDDSs formulations were performed. DFX loaded SNEDDS were prepared and characterized. The optimum DFX-SNEDDS formulations were developed. The relative safety of the optimized SNEDDS formulation was examined in a human immortalized myelogenous leukemia cell line, K562 cells, using the MTT cell viability test. Cytotoxicity studies revealed more cell viability (71.44%) of DFX loaded SNEDDS compared to pure DFX (3.99%) at 40 μM. The selected DFX-SNEDDS formulation was converted into S-SNEDDS by adsorbing into porous carriers, in order to study its dissolution behavior. The in vitro drug release studies indicated that DFX release (Q5%) from S-SNEDDS solidified with Neusilin UFL2 was significantly higher (93.6 ± 0.7% within 5 min) compared with the marketed product (81.65 ± 2.10%). The overall results indicated that the S-SNEDDS formulation of DFX could have the potential to enhance the solubility of DFX, which would in turn have the potential to improve its oral bioavailability as a safe novel delivery system. |
topic |
deferasirox SNEDDS solid SNEDDS solid carriers enhancement solubility oral delivery |
url |
https://www.mdpi.com/1424-8247/13/8/162 |
work_keys_str_mv |
AT alaaalghananim asolidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies AT yıldızozalp asolidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies AT burcumesut asolidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies AT nedimeserakinci asolidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies AT yıldızozsoy asolidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies AT sevgigungor asolidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies AT alaaalghananim solidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies AT yıldızozalp solidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies AT burcumesut solidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies AT nedimeserakinci solidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies AT yıldızozsoy solidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies AT sevgigungor solidultrafineselfnanoemulsifyingdrugdeliverysystemssneddsofdeferasiroxforimprovedsolubilityoptimizationcharacterizationandinvitrocytotoxicitystudies |
_version_ |
1724487563560878080 |