138,59 €
153,99 €
-10% with code: EXTRA
Selective Cell Control for Biomedical Applications
Selective Cell Control for Biomedical Applications
138,59
153,99 €
  • We will send in 10–14 business days.
In biomedical research biomaterial-cell interaction are of huge importance. One issue refers to the application of three-dimensional (3D) scaffolds to guide tissue formation and reconstruction. To improve implant adaptation a selective cell control is required. For this purpose, material functionalization methods such as providing surface topographies are under development. In this dissertation defined 3D scaffolds and topographies in micro- and nanometer scale were fabricated via laser-based n…
  • SAVE -10% with code: EXTRA

Selective Cell Control for Biomedical Applications (e-book) (used book) | bookbook.eu

Reviews

(4.00 Goodreads rating)

Description

In biomedical research biomaterial-cell interaction are of huge importance. One issue refers to the application of three-dimensional (3D) scaffolds to guide tissue formation and reconstruction. To improve implant adaptation a selective cell control is required. For this purpose, material functionalization methods such as providing surface topographies are under development. In this dissertation defined 3D scaffolds and topographies in micro- and nanometer scale were fabricated via laser-based nanoengineering at the Laser Zentrum in Hannover e.V., Germany. Indeed, the laser-fabricated constructs enabled a selective control of cellular behavior. With focus on adhesion ligands from the extracellular matrix, cell specific differences in adhesion mechanism could further be demonstrated. These findings not only help to explain the observed results, but also facilitate material search and functionalization for future biomedical applications.

EXTRA 10 % discount with code: EXTRA

138,59
153,99 €
We will send in 10–14 business days.

The promotion ends in 20d.21:47:11

The discount code is valid when purchasing from 10 €. Discounts do not stack.

Log in and for this item
you will receive 1,54 Book Euros!?

In biomedical research biomaterial-cell interaction are of huge importance. One issue refers to the application of three-dimensional (3D) scaffolds to guide tissue formation and reconstruction. To improve implant adaptation a selective cell control is required. For this purpose, material functionalization methods such as providing surface topographies are under development. In this dissertation defined 3D scaffolds and topographies in micro- and nanometer scale were fabricated via laser-based nanoengineering at the Laser Zentrum in Hannover e.V., Germany. Indeed, the laser-fabricated constructs enabled a selective control of cellular behavior. With focus on adhesion ligands from the extracellular matrix, cell specific differences in adhesion mechanism could further be demonstrated. These findings not only help to explain the observed results, but also facilitate material search and functionalization for future biomedical applications.

Reviews

  • No reviews
0 customers have rated this item.
5
0%
4
0%
3
0%
2
0%
1
0%
(will not be displayed)