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Conformational properties of biocompatible poly(2-ethyl-2-oxazoline)s in phosphate buffered saline
- Source :
- POLYMER CHEMISTRY
- Publication Year :
- 2018
-
Abstract
- Inspired by the increasing popularity of poly(2-ethyl-2-oxazoline) (PEtOx) for biomedical applications, this study reports the complete and thorough solution analysis of the homologous series of biocompatible PEtOx samples in a very broad range of molecular weights ranging from 11.2 x 10(3) g mol(-1) up to 260 x 10(3) g mol(-1). The main focus of the research was on the determination of the conformational properties of PEtOx macromolecules at a temperature of 37 degrees C in phosphate buffered saline (PBS) simulating the parameters of physiological media. The polymers were studied in PBS solutions by analytical ultracentrifugation, dynamic light scattering (DLS), translational diffusion, and intrinsic viscosity measurements in a temperature range from 15 degrees C up to 72 degrees C. The complete set of Kuhn-Mark-Houwink-Sakurada scaling relationships revealed linear trends over the whole range of the studied molar masses, while the determined scaling indices at 37 degrees C correspond to the coil conformation in a thermodynamically good solvent ([eta] = 0.045 x M-0.62, s(0) = 0.010 x M-0.46 and D-0 = 1750 x M-0.54). Based on the intrinsic viscosity values (most sensitive characteristic to the size variations of polymer coils, [eta] similar to r(3)), it was demonstrated that PEtOx macromolecules in PBS solutions undergo a transition from swollen polymer coils with gradual deterioration of thermodynamic quality of solutions within the temperature range of 15-45 degrees C, reaching theta-conditions at 55 degrees C with further precipitation at 62-72 degrees C. Also, to the best of our knowledge, the conformational parameters (equilibrium rigidity/the Kuhn segment length and the diameter of the polymer chain) of PEtOx macromolecules were evaluated under physiological conditions for the first time and constitute A = 1.8 +/- 0.3 nm and d = 0.7 +/- 0.4 nm. These equilibrium rigidity values classify PEtOx as a flexible macromolecule with rigidity similar to that of poly(ethylene glycol). For the first time, we were able to demonstrate a direct influence of thermosensitivity on the rigidity of the biocompatible polymer: PEtOx. The Kuhn segment length is undoubtedly decreasing when approaching the LCST.
- Subjects :
- Materials science
Polymers and Plastics
Intrinsic viscosity
Analytical chemistry
Bioengineering
02 engineering and technology
010402 general chemistry
01 natural sciences
Biochemistry
Lower critical solution temperature
chemistry.chemical_compound
Dynamic light scattering
LCST
DILUTE-SOLUTION
POLY(N-ISOPROPYLACRYLAMIDE)
CHAINS
chemistry.chemical_classification
INTRINSIC-VISCOSITY
Molar mass
Organic Chemistry
Polymer
IN-VITRO
021001 nanoscience & nanotechnology
CANCER
LIGHT-SCATTERING
0104 chemical sciences
POLY(2-OXAZOLINE)S
Chemistry
MOLECULAR-WEIGHT
chemistry
Poly(N-isopropylacrylamide)
0210 nano-technology
Ethylene glycol
Macromolecule
Subjects
Details
- Language :
- English
- ISSN :
- 17599954 and 17599962
- Database :
- OpenAIRE
- Journal :
- POLYMER CHEMISTRY
- Accession number :
- edsair.doi.dedup.....d925a7858e42dce5514c3ac1ac3e6807