نتایج جستجو برای: ph sensitive nanoparticles

تعداد نتایج: 539402  

Journal: :Langmuir : the ACS journal of surfaces and colloids 2011
A Chatzipavlidis P Bilalis E K Efthimiadou N Boukos G C Kordas

Magnetic pH-sensitive microcontainers were produced by a four-step process. The first step involves the synthesis of citrate-modified magnetic nanoparticles via the coprecipitation method. The second step consists of the encapsulation of magnetic nanoparticles in non-cross-linked poly(methacrylic acid) (PMAA) microspheres through distillation precipitation polymerization, resulting in a core/sh...

Journal: :Angewandte Chemie 2009
Atul Asati Santimukul Santra Charalambos Kaittanis Sudip Nath J Manuel Perez

Inorganic enzyme? Ceria nanoparticles exhibit unique oxidase-like activity at acidic pH values. These redox catalysts can be used in immunoassays (ELISA) when modified with targeting ligands (see picture; light blue and yellow structures are nanoparticles with attached ligands). This modification allows both for binding and for detection by the catalytic oxidation of sensitive colorimetric dyes...

2014
Haiyan Sun Dong Liu Yan Li Xuwei Tang Yanli Cong

Our previous study revealed that the peptide Val-Leu-Pro-Val-Pro-Arg (VLPVPR), which was prepared using deoxyribonucleic acid recombinant technology, effectively decreased the blood pressure of spontaneous hypertensive rats; however, the effect only lasts 6 hours, likely due to its low absorption in the gastrointestinal tract. To overcome this problem, the purpose of this study was to character...

2015
Tuan Hiep Tran Thiruganesh Ramasamy Ju Yeon Choi Hanh Thuy Nguyen Thanh Tung Pham Jee-Heon Jeong Sae Kwang Ku Han-Gon Choi Chul Soon Yong Jong Oh Kim

The attachment of polyethylene glycol (PEG) increases the circulation time of drug-containing nanoparticles; however, this also negatively affects cellular uptake. To overcome this problem, unique lipid polymer hybrid (LPH) nanoparticles were developed with a pH-responsive PEG layer that detached prior to cell uptake. Docetaxel (DTX) was incorporated into the lipid core of the nanoparticles, wh...

2008
Yuhua Hu Patrick S. Doyle William M. Deen

Therapeutics such as proteins, DNA, or siRNA, can only exert their function in the cell cytosol or nucleus. However, most of them are cell membrane impermeable molecules that can only be taken up by cells via endocytosis or phagocytosis. Such drug molecules are thus confined in endolysosomes, where reduced pH and degradative enzymes may destroy them without therapeutic gain. Efficient escape of...

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