نتایج جستجو برای: AlN

تعداد نتایج: 3323  

2017
Hidemasa Katsumi Yutaro Tanaka Kaori Hitomi Shu Liu Ying-shu Quan Fumio Kamiyama Toshiyasu Sakane Akira Yamamoto

To improve the transdermal bioavailability and safety of alendronate (ALN), a nitrogen-containing bisphosphonate, we developed self-dissolving microneedle arrays (MNs), in which ALN is loaded only at the tip portion of micron-scale needles by a dip-coating method (ALN(TIP)-MN). We observed micron-scale pores in rat skin just after application of ALN(TIP)-MN, indicating that transdermal pathways...

2011
Yan Wang Peng Huang Pei-Fu Tang Kai-Ming Chan Gang Li

BACKGROUND Alendronate (ALN) is the most common form of bisphosphonates used for the treatment of osteoporosis. Osteoprotegerin (OPG) has also been shown to reduce osteoporotic changes in both humans and experimental animals after systemic administration. The aim of this current study was to test if the anti-resorption effects of ALN may be enhanced when used in combination with OPG. OBJECTIV...

2015
Nan Li Satyesh K. Yadav Jian Wang Xiang-Yang Liu Amit Misra

AlN nanolayers in sputter deposited {111}Al/AlN/TiN multilayers exhibit the metastable zinc-blende-structure (z-AlN). Based on density function theory calculations, the growth of the z-AlN is ascribed to the kinetically and energetically favored nitridation of the deposited aluminium layer. In situ nanoindentation of the as-deposited {111}Al/AlN/TiN multilayers in a high-resolution transmission...

2014
Ling Sang Qin Sheng Zhu Shao Yan Yang Gui Peng Liu Hui Jie Li Hong Yuan Wei Chun Mei Jiao Shu Man Liu Zhan Guo Wang Xiao Wei Zhou Wei Mao Yue Hao Bo Shen

The band offsets of non-polar A-plane GaN/AlN and AlN/GaN heterojunctions are measured by X-ray photoemission spectroscopy. A large forward-backward asymmetry is observed in the non-polar GaN/AlN and AlN/GaN heterojunctions. The valence-band offsets in the non-polar A-plane GaN/AlN and AlN/GaN heterojunctions are determined to be 1.33 ± 0.16 and 0.73 ± 0.16 eV, respectively. The large valence-b...

2015
K. H. Lee G. Y. Chong E. A. Fitzgerald S. Bao C. S. Tana

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2015
Hidemasa Katsumi Jun-ichi Sano Makiya Nishikawa Keiko Hanzawa Toshiyasu Sakane Akira Yamamoto Christoph E Hagemeyer

To establish a rational molecular design for bisphosphonate (BP)-modified proteins for efficient bone targeting, a pharmacokinetic study was performed using a series of alendronate (ALN), a nitrogen-containing BP, modified proteins with various molecular weights and varying degrees of modification. Four proteins with different molecular weight-yeast glutathione reductase (GR; MW: 112,000 Da), b...

2017
Beom Su Kim Feride Shkembi Jun Lee

Alendronate (ALN) is a bisphosphonate drug that is widely used for the treatment of osteoporosis. Furthermore, local delivery of ALN has the potential to improve the bone regeneration. This study was designed to investigate an ALN-containing fibrin (fibrin/ALN) gel and evaluate the effect of this gel on both in vitro cellular behavior using human mesenchymal stem cells (hMSCs) and in vivo bone ...

2001
I. W. Kim Quan Li L. D. Marks S. A. Barnett

The epitaxial stabilization and transformation of cubic AlN layers in AlN/VN and AlN/TiN superlattices, grown by reactive sputtering on MgO ~001!, is described. In AlN/VN, the critical AlN thickness l for transformation from cubic to hexagonal increased from '3.0 to .4 nm when the VN superlattice layer thickness was increased from 2.0 to 6.0 nm. The effect of lattice mismatch was observed by co...

2012
Vipin Chawla David Holec Paul H. Mayrhofer

The development of interfacial coherency stresses in TiN/AlN bilayer and multilayer films was investigated by finite element method (ABAQUS) using the four-node bilinear quadrilateral axisymmetric element CAX4R. The TiN and AlN layers are always in compression and tension at the interface, respectively, as may be expected from the fact TiN has larger lattice parameter than AlN. Both, the bi-lay...

E. Borhani H. Ghods S.A. Manafi

Nanostructured Al composites with 2.5 wt.% aluminum nitride (AlN) were fabricated by powder metallurgy using mechanically milled aluminum powder mixed in a planetary ball mill with different particle sizes of AlN (50 nm and 1 μm) as reinforcement. After 20 h milling, the powders were die-pressed uniaxially in a steel die and then sintered at 670 °C for 2 h. The morphologies and properties of th...

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