A block copolymer based on poly(␥-benzyl-L-glutamate) (PBLG) as the hydrophobic part and poly(ethylene oxide) (PEO) as the hydrophilic part was synthesized and characterized. PBLG/PEO/PBLG (GEG) block copolymer nanoparticles were prepared using the dialysis technique. Fluorescence spectroscopy measu
Synthesis and Conformation of Star-Shaped Poly(γ-benzyl-L-glutamate)s on a Cyclotriphosphazene Core
✍ Scribed by Kenzo Inoue; Shigeru Horibe; Makiko Fukae; Takahito Muraki; Eiji Ihara; Hiroshi Kayama
- Publisher
- John Wiley and Sons
- Year
- 2003
- Tongue
- English
- Weight
- 162 KB
- Volume
- 3
- Category
- Article
- ISSN
- 1616-5187
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
The preparation of star‐shaped poly(γ‐benzyl‐L‐glutamate)s by the ring‐opening polymerization of N‐carboxy anhydride γ‐benzyl‐L‐glutamate (BLG‐NCA) with hexakis(4‐aminomethylphenoxy)‐ (4) and hexakis(4‐aminophenoxy)cyclotriphosphazenes (6), and the conformation of resulting polymers has been studied. The six amino groups in 4 can initiate the polymerization of BLG‐NCA to give star‐shaped polyglutamates (7) with narrow molecular weight distributions (M~w~/M~n~ = 1.10–1.33). For the polymerization of BLG‐NCA with 6, however, a high ratio of [BLG‐MCA]/[6] was required to obtain star‐shaped polyglutamates (8). The conformation of 7 changed from a β‐sheet form to a right‐handed α‐helix form, depending on the degree of polymerization per chain (DP~n~/6). The helix content of hexa‐armed poly (γ‐benzyl‐L‐glutamate‐co‐L‐glutamic acid)s (9), prepared by partial hydrolysis of 7, increased significantly compared with that of the corresponding linear analogue (10). As increasing of helix content of 9, the fluorescence spectra of 8‐anilino‐1‐naphthalenesulfonic acid (ANS), a fluorescence probe, shifted to a short wavelength accompanied by the enhancement of intensity, suggesting that star‐shaped polymers are liable to form hydrophobic domains. From these results and the structural feature of the cyclotriphosphazene core, the formation of a 3__α__‐helix bundle structure of polyglutamates on both sides of the phosphazene ring has been suggested.
magnified image
📜 SIMILAR VOLUMES
Single crystals of poly(γ-benzyl L-glutamate) were formed by epitaxial crystallization from solution in mesitylene on NaCl, KI, and KCl (001) cleavage faces. From electron microscopy and diffraction studies, the structure of these overgrowths was determined to be that of lamellae containing chain-fo
The dielectric constant and the electric birefringence of poly-7-benzyl-L-glutamate in ethylene dichloride-dichloroacetic acid mixtures have been measured aa functions of the solvent composition. Thew properties undergo a marked decrease with the addition of a small amount of dichloroacetic acid, aa
## Abstract Poly(3‐hexylthiophene)‐__b__‐poly(γ‐benzyl‐L‐glutamate) (P3HT‐__b__‐PBLG) rod–rod diblock copolymer was synthesized by a ring‐opening polymerization of γ‐benzyl‐L‐glutamate‐__N__‐carboxyanhydride using a benzylamine‐terminated regioregular P3HT macroinitiator. The opto‐electronic proper
## Abstract Summary: Core‐shell‐type nanoparticles composed of PBLG and PNIPAAm were prepared in an attempt to study the effects of temperature on the dynamic behavior of temperature‐sensitive polymeric shell, PNIPAAm, in the nanoparticles by ^1^H NMR spectroscopy. Spin‐lattice relaxation time (__T