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Investigation of cationized triblock and diblock poly(ε-caprolactone)-co-poly(ethylene glycol) copolymers for oral delivery of enoxaparin: In vitro approach
- Source :
- Acta Biomaterialia, Acta Biomaterialia, Elsevier, 2017, 61, pp.180-192. ⟨10.1016/j.actbio.2017.08.006⟩
- Publication Year :
- 2017
- Publisher :
- Elsevier BV, 2017.
-
Abstract
- In this study, poly( e -caprolactone)-co-poly(ethylene glycol) copolymers grafted with a cationic ligand, propargyltrimethyl ammonium iodide (PTA), to fabricate the cationized triblock (P(CatCLCL) 2 -PEG) and diblock (P(CatCLCL)-mPEG) copolymers were investigated their potential use for oral delivery of enoxaparin (ENX). Influences of various PTA contents and different structures of the copolymers on molecular characteristics, ENX encapsulation, particle characteristics, and capability of drug transport across Caco-2 cells were elucidated. The results showed that P(CatCLCL) 2 -PEG and P(CatCLCL)-mPEG copolymers self-aggregated and encapsulated ENX into spherical particles of ∼200–450 nm. The increasing amount of PTA on the copolymers increased encapsulation efficiency of over 90%. The ENX release from both types of the cationized copolymer particles was pH-dependent which was retarded at pH 1.2 and accelerated at pH 7.4, supporting the drug protection in the acidic environment and possible release in the blood circulation. The toxicity of ENX-loaded particles on Caco-2 cells decreased when decreasing the amount of PTA. The triblock and diblock particles dramatically enhanced ENX uptake and transport across Caco-2 cells as compared to the ENX solution. However, the different structures of the copolymers slightly affected ENX transport. These results suggested that P(CatCLCL) 2 -PEG and P(CatCLCL)-mPEG copolymers would be potential carriers for oral delivery of ENX. Statement of Significance The anionic drugs such as proteins, peptides or polysaccharides are generally administered via invasive route causing patient incompliance and high cost of hospitalization. The development of biomaterials for non-invasive delivery of those drugs has gained much attention, especially for oral delivery. However, they have limitation due to non-biocompatibility and poor drug bioavailability. In this study, the novel poly( e -caprolactone)-co-poly(ethylene glycol) copolymers grafted with propargyltrimethyl ammonium iodide, a small cationic ligand, were introduced to use as a carrier for oral delivery of enoxaparin, a highly negatively charged drug. The study showed that these cationized copolymers could achieve high enoxaparin entrapment efficiency, protect drug release in an acidic environment and enhance enoxaparin permeability across Caco-2 cells, the intestinal cell model. These characteristics of the cationized copolymers make them a potential candidate for oral delivery of anionic drugs for biomaterial applications.
- Subjects :
- Poly(ε-carprolactone)-co-poly(ethylene glycol) copolymers
MESH: Cell Death
Cell Membrane Permeability
[SDV]Life Sciences [q-bio]
Administration, Oral
Nanoparticle
Polymer architecture
02 engineering and technology
01 natural sciences
Biochemistry
Polyethylene Glycols
Cationic copolymer
chemistry.chemical_compound
Drug Delivery Systems
Copolymer
MESH: Cell Membrane Permeability
[PHYS]Physics [physics]
Cell Death
Temperature
Biomaterial
General Medicine
021001 nanoscience & nanotechnology
MESH: Polyesters
MESH: Temperature
Oral delivery
MESH: Administration, Oral
MESH: Caco-2 Cells
0210 nano-technology
Caprolactone
Biotechnology
MESH: Enoxaparin
Materials science
Surface Properties
Polyesters
MESH: Drug Delivery Systems
Biomedical Engineering
MESH: Imaging, Three-Dimensional
010402 general chemistry
Biomaterials
Imaging, Three-Dimensional
Cations
PEG ratio
Polymer chemistry
Humans
MESH: Drug Liberation
[CHIM]Chemical Sciences
MESH: Particle Size
Particle Size
Enoxaparin
MESH: Cations
Molecular Biology
MESH: Surface Properties
MESH: Humans
Cationic polymerization
0104 chemical sciences
Drug Liberation
MESH: Polyethylene Glycols
chemistry
Nanoparticles
Caco-2 Cells
Ethylene glycol
Nuclear chemistry
Subjects
Details
- ISSN :
- 17427061
- Volume :
- 61
- Database :
- OpenAIRE
- Journal :
- Acta Biomaterialia
- Accession number :
- edsair.doi.dedup.....1932a6f3f32e0a21d19a2d6ea2345128
- Full Text :
- https://doi.org/10.1016/j.actbio.2017.08.006