Although many bone substitutes have been designed and produced, the development of bone tissue engineering products that mimic the microstructural characteristics of native bone remains challenging. It has been shown that pore orientation within collagen scaffolds influences bone matrix formation by the endochondral route. In addition, that the unidirectional orientation of the scaffolds can limit the growth of blood vessels. However, a comparison between the amount of bone that can be formed in scaffolds with different pore orientations in addition to analyzing the effect of loading osteogenic and proangiogenic factors is still required. In this work we fabricated uni- and multidirectional collagen sponges and evaluated their microstructur...
In the literature there are conflicting reports on the optimal scaffold mean pore size required for ...
The design of porous scaffolds able to promote and guide cell proliferation, colonization, and biosy...
The design of porous scaffolds able to promote and guide cell proliferation, colonization, and biosy...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
Tissue engineering was born from the belief that primary cells could be isolated from a patient, exp...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
The main purpose of this study is to investigate the increase in osteoblast cells cultured on three ...
The combination of macro- and microporosity is a potent manner of enhancing osteogenic potential, bu...
A common subject in bone tissue engineering is the need for porous scaffolds to support cell and tis...
Small fractures in bone tissue can heal by themselves, but in case of larger defects current therapi...
Porous polymeric scaffolds play a key role in most tissue-engineering strategies. A series of non-de...
The aim of this thesis is to investigate the behaviour of cells in porous scaffolds. Three types of ...
Optimization of a tissue engineering scaffold for use in bone tissue engineering requires control of...
Natural bone consists of cortical and trabecular morphologies, the latter having variable pore sizes...
In the literature there are conflicting reports on the optimal scaffold mean pore size required for ...
The design of porous scaffolds able to promote and guide cell proliferation, colonization, and biosy...
The design of porous scaffolds able to promote and guide cell proliferation, colonization, and biosy...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
Although many bone substitutes have been designed and produced, the development of bone tissue engin...
Tissue engineering was born from the belief that primary cells could be isolated from a patient, exp...
Cells sense and respond to scaffold pore geometry and mechanical stimuli. Many fabrication methods u...
The main purpose of this study is to investigate the increase in osteoblast cells cultured on three ...
The combination of macro- and microporosity is a potent manner of enhancing osteogenic potential, bu...
A common subject in bone tissue engineering is the need for porous scaffolds to support cell and tis...
Small fractures in bone tissue can heal by themselves, but in case of larger defects current therapi...
Porous polymeric scaffolds play a key role in most tissue-engineering strategies. A series of non-de...
The aim of this thesis is to investigate the behaviour of cells in porous scaffolds. Three types of ...
Optimization of a tissue engineering scaffold for use in bone tissue engineering requires control of...
Natural bone consists of cortical and trabecular morphologies, the latter having variable pore sizes...
In the literature there are conflicting reports on the optimal scaffold mean pore size required for ...
The design of porous scaffolds able to promote and guide cell proliferation, colonization, and biosy...
The design of porous scaffolds able to promote and guide cell proliferation, colonization, and biosy...