نتایج جستجو برای: polymeric micelle

تعداد نتایج: 27327  

2014
Akihiro Takahashi Yuta Ozaki Akinori Kuzuya Yuichi Ohya

We synthesized series of amphiphilic AB-type block copolymers having systematic variation in the core-forming segments using poly(lactide-co-depsipeptide)s as a hydrophobic segment and prepared polymeric micelles using the block copolymers, PEG-b-poly(lactide-co-depsipeptide). We then discussed the relationship between the core-forming segment structure and drug loading efficiency for the polym...

Journal: :Soft matter 2014
Adriana Šturcová Jiří Dybal Alexander Zhigunov Nikolay Kotov Alena Braunová

Thermoresponsive polymeric surfactant CAE85 is a telechelic carboxyl group derivative of Pluronic P85 and its carboxyl end-groups undergo deprotonation into carboxylate groups upon micellization. Micelle formation and disintegration were studied here by means of small angle X-ray scattering, FTIR and Raman spectroscopy, quantum mechanical calculations and dynamical mechanical analysis. The depr...

Journal: :Nanotechnology 2008
S Krishnamoorthy Y Gerbig C Hibert R Pugin C Hinderling J Brugger H Heinzelmann

We demonstrate the use of copolymer micelle lithography using polystyrene-block-poly(2-vinylpyridine) reverse micelle thin films in their as-coated form to create nanopillars with tunable dimensions and spacing, on different substrates such as silicon, silicon oxide, silicon nitride and quartz. The promise of the approach as a versatile application oriented platform is highlighted by demonstrat...

Journal: :Cancer research 1990
M Yokoyama M Miyauchi N Yamada T Okano Y Sakurai K Kataoka S Inoue

Adriamycin (ADR), an anthracycline anticancer drug, was bound to the poly(aspartic acid) chain of poly(ethylene glycol)-poly(aspartic acid) block copolymer by amide bond formation between an amino group of Adriamycin and the carboxyl groups of the poly(aspartic acid) chain. The polymeric drug thus obtained was observed to form a micelle structure possessing diameter of approximately 50 nm, with...

2009
Xinru Li Zhuoli Yang Kewei Yang Yanxia Zhou Xingwei Chen Yanhui Zhang Fei Wang Yan Liu Lijun Ren

A series of monomethoxy poly(ethylene glycol)-poly(lactide) (mPEG-PLA) diblock copolymers were synthesized, and mPEG-PLA micelle was fabricated and used as a nanocarrier for solubilization and delivery of a promising anticancer drug ethaselen. Ethaselen was efficiently encapsulated into the micelles by the dialysis method, and the solubility of ethaselen in water was remarkably increased up to ...

Journal: :Yakugaku zasshi : Journal of the Pharmaceutical Society of Japan 2013
Kouichi Shiraishi

We applied a polymeric micelle carrier system for the targeting of a magnetic resonance imaging (MRI) contrast agent. Prepared polymeric micelle MRI contrast agent exhibited a long circulation characteristic in blood, and considerable amount of the contrast agent was found to accumulate in colon 26 solid tumor by the EPR effect. The signal intensities of tumor area showed 2-folds increase in T1...

2016
Tian Zhou Qinglei Dong Yang Shen Wei Wu Haide Wu Xianglin Luo Xiaoling Liao Guixue Wang

Micro/nanoparticles could cause adverse effects on cardiovascular system and increase the risk for cardiovascular disease-related events. Nanoparticles prepared from poly(ethylene glycol) (PEG)-b-poly(ε-caprolactone) (PCL), namely PEG-b-PCL, a widely studied biodegradable copolymer, are promising carriers for the drug delivery systems. However, it is unknown whether polymeric PEG-b-PCL nano-mic...

2006
Yuichi Ohya Hidetoshi Arimura Tatsuro Ouchi

The formation of polymeric micelles by the self-association of diblock copolymers consisting of hydrophilic and hydrophobic segments in aqueous medium is currently a topic of great interest. This interest is motivated by the attractive applications of polymeric micelles to various research areas such as drug delivery carrier technology and nanotechnology. In the biomedical materials field, poly...

Journal: :Chemical communications 2012
Jin-Zhi Du Hong-Yan Long You-Yong Yuan Meng-Meng Song Liang Chen Hong Bi Jun Wang

Micelle-to-vesicle morphological transition has been achieved by light-induced rapid hydrophilic arm detachment from a star polymer. This provides a remote and clean method to control morphology transition of polymeric assemblies.

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