| Literature DB >> 33488174 |
Ayça Bal ÖztÜrk1,2, Nesrin OĞuz3, Hande Tekarslan Şahİn4, Serkan Emİk3, Emine AlarÇİn5.
Abstract
An amphiphilic core/shell-type polymer-based drug carrier system (HPAE- PCL-b -MPEG), composed of hyperbranched poly(aminoester)-based polymer (HPAE) as the core building block and poly(ethylene glycol)-b - poly(ε-caprolactone) diblock polymers (MPEG-b -PCL) as the shell building block, was designed. The synthesized polymers were characterized with FTIR, 1 H NMR, 13 C NMR, and GPC analysis. Monodisperse HPAE-PCL-b - MPEG nanoparticles with dimensions of < 200 nm and polydispersity index of < 0.5 were prepared by nanoprecipitation method and characterized with SEM, particle size, and zeta potential analysis. 5-Fluorouracil was encapsulated within HPAE-PCL-b -MPEG nanoparticles. In vitro drug release profiles and cytotoxicity of blank and 5-fluorouracil-loaded nanoparticles were examined against the human colon cancer HCT116 cell line. All results suggest that HPAE-PCL-b - MPEG nanoparticles offer an alternative and effective drug nanocarrier system for drug delivery applications.Entities:
Keywords: 5−fluorouracil; Hyperbranched polymer; drug delivery; nanoparticle; poly(aminoester)
Year: 2020 PMID: 33488174 PMCID: PMC7671224 DOI: 10.3906/kim-1910-35
Source DB: PubMed Journal: Turk J Chem ISSN: 1300-0527 Impact factor: 1.239
Effect of stirring rate on the size of HPAE-PCL-b -MPEG nanoparticles.
| Stirring rate (rpm) | Size (d. nm ±SD) | Polydispersity (PDI) |
|---|---|---|
| 750 | 57.92 ±27.70 | 0.480 |
| 1000 | 30.97 ±12.51 | 0.466 |
| 1200 | 20.84 ±3.74 (peak 1)
| 0.474 |
Drug loading content (DLC) and drug loading efficiency (DLE) of HPAE-PCL-b -MPEG nanoparticles.
| Formulation | Polymer/drug weight ratio | DLC (mg/g) | EE (%) |
|---|---|---|---|
| F1 | 1/1 | 81.83 | 73.86 |
| F2 | 1/0.5 | 195.20 | 88.3 |
| F3 | 1/0.25 | 351.35 | 63.24 |
| F4 | 1/0.1 | 539.04 | 48.51 |
| F5 | 1/0.05 | 548.05 | 24.66 |