## Abstract Because the local microstructure plays a pivotal role for many biological functions, a wide range of methods have been developed to design precisely engineered substrates for both fundamental biological studies and biotechnological applications. However, these techniques have been by‐an
✦ LIBER ✦
Spatially controlled cell adhesion on three-dimensional substrates
✍ Scribed by Christine Richter; Martina Reinhardt; Stefan Giselbrecht; Daniel Leisen; Vanessa Trouillet; Roman Truckenmüller; Axel Blau; Christiane Ziegler; Alexander Welle
- Book ID
- 106373683
- Publisher
- Springer
- Year
- 2010
- Tongue
- English
- Weight
- 575 KB
- Volume
- 12
- Category
- Article
- ISSN
- 1387-2176
No coin nor oath required. For personal study only.
📜 SIMILAR VOLUMES
Micropatterned Fiber Scaffolds for Spati
✍
Suparna Mandal; Srijanani Bhaskar; Joerg Lahann
📂
Article
📅
2009
🏛
John Wiley and Sons
🌐
English
⚖ 564 KB
Three-dimensional structure of cell adhe
✍
E Yvonne Jones
📂
Article
📅
1996
🏛
Elsevier Science
🌐
English
⚖ 632 KB
Two-dimensional model of vesicle adhesio
✍
Wendong Shi; Xi Qiao Feng; Huajian Gao
📂
Article
📅
2006
🏛
The Chinese Society of Theoretical and Applied Mec
🌐
English
⚖ 259 KB
Spatially growing three-dimensional wave
✍
P.J. Shuler; W.B. Krantz
📂
Article
📅
1977
🏛
Elsevier Science
🌐
English
⚖ 364 KB
Cell adhesion on ligand gradient substra
✍
Alireza S. Sarvestani
📂
Article
📅
2010
🏛
John Wiley and Sons
🌐
English
⚖ 559 KB
## Abstract Gradient distribution of bio‐adhesive proteins can regulate multiple cellular processes, including adhesion, growth, and migration. The ability to control the cell function by changing the surface density of immobilized ligands has become increasingly important in design of implantable
Controlled Cell Adhesion on PEG-Based Sw
✍
Erik Wischerhoff; Katja Uhlig; Andreas Lankenau; Hans G. Börner; André Laschewsk
📂
Article
📅
2008
🏛
John Wiley and Sons
🌐
English
⚖ 420 KB
👁 2 views