نتایج جستجو برای: bilayer tablets

تعداد نتایج: 32334  

2010
A. F. Young C. R. Dean

A. F. Young, C. R. Dean, 3 I. Meric, S. Sorgenfrei, H. Ren, K. Watanabe, T. Taniguchi, J. Hone, K. L. Shepard, and P. Kim Department of Physics, Columbia University, New York, New York 10027, USA Department of Electrical Engineering, Columbia University, New York, New York 10027, USA Department of Mechanical Engineering, Columbia University, New York, New York 10027, USA Advanced Materials Labo...

2010
Baisong Geng Jason Horng Yuanbo Zhang Tsung-Ta Tang Cheol-Hwan Park Caglar Girit Zhao Hao Michael Martin Alex Zettl Michael Crommie Steven Louie Feng Wang

Department of Physics, University of California, Berkeley, California 94720, USA School of Physical Science and Technology, Lanzhou University, Lanzhou 730000, China Advanced Light Source Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA Materials Science Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA Earth Sciences Division, Lawr...

Journal: :IEICE Transactions 2017
Jitsuo Ohta Jeong Woo Shon Kohei Ueno Atsushi Kobayashi Hiroshi Fujioka

Crystalline GaN films can be grown even on amorphous substrates with the use of graphene buffer layers by pulsed sputtering deposition (PSD). The graphene buffer layers allowed us to grow highly c-axisoriented GaN films at low substrate temperatures. Full-color GaN-based LEDs can be fabricated on the GaN/graphene structures and they are operated successfully. This indicates that the present tec...

2017
Philippe Poncharal Anthony Ayari Thierry Michel Jean-Louis Sauvajol

2014
Karl F. Herold R. Lea Sanford William Lee Margaret F. Schultz Helgi I. Ingólfsson Olaf S. Andersen Hugh C. Hemmings

Although general anesthetics are clinically important and widely used, their molecular mechanisms of action remain poorly understood. Volatile anesthetics such as isoflurane (ISO) are thought to alter neuronal function by depressing excitatory and facilitating inhibitory neurotransmission through direct interactions with specific protein targets, including voltage-gated sodium channels (Na(v))....

Journal: :Journal of visualized experiments : JoVE 2010
Helgi I Ingólfsson R Lea Sanford Ruchi Kapoor Olaf S Andersen

Many drugs and other small molecules used to modulate biological function are amphiphiles that adsorb at the bilayer/solution interface and thereby alter lipid bilayer properties. This is important because membrane proteins are energetically coupled to their host bilayer by hydrophobic interactions. Changes in bilayer properties thus alter membrane protein function, which provides an indirect w...

Journal: :Drug development and industrial pharmacy 2005
Ibrahim A Alsarra Ibrahim El-Bagory Mohsen A Bayomi

The major objectives of this study were to monitor the effect of cross-linking of cationic chitosan in acidic media with sulfate anion during granules preparation by wet granulation method prior to tableting using theophylline (TPH) as a model drug. The prepared granules and the compressed tablets were subjected to in vitro evaluation. The properties of the prepared matrix granules and the comp...

R Aboofazeli SA Mortazavi

The influence of various polymers on the release rate of lithium carbonate from matrix-type tablets was investigated in an attempt to formulate a sustained release solid dosage form. For this purpose, tablets containing 450 mg of lithium carbonate along with various amounts of Carbopol 934P, 971P, 974P, Pemulen and Eudragit RLPO as retarding agents and inactive ingredients (e.g. PVP, Avicel or ...

Journal: :Biophysical journal 2010
Kimberly L Weirich Jacob N Israelachvili D Kuchnir Fygenson

Supported lipid bilayers (SLB) are important for the study of membrane-based phenomena and as coatings for biosensors. Nevertheless, there is a fundamental lack of understanding of the process by which they form from vesicles in solution. We report insights into the mechanism of SLB formation by vesicle adsorption using temperature-controlled time-resolved fluorescence microscopy at low vesicle...

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