Cellulose perforated by micro-channels (phi? similar to 500 mu m) has been investigated as a potential future scaffold material for meniscus implants. Scaffolds seeded with 3T6 fibroblasts were cultivated with mechanical stimulation in a compression bioreactor for enhanced collagen production. Constructs under dynamic compression at a frequency of 0.1 Hz and compression strain of 5% were compared to static cultures used as controls. The three-dimensional distributions of collagen fibers and fibroblasts in the cellulose scaffolds were studied under native, soft-matter conditions by combined second harmonic generation and coherent antiStokes Raman scattering microscopy, requiring no artificial sample preparation. Results showed that the micro...
The scaffold is an essential component in tissue engineering. A novel method to prepare threedimensi...
The meniscus is a fibrocartilage tissue that is integral to the correct functioning of the knee join...
Engineering the meniscus is challenging due to its bizonal structure; the tissue is cartilaginous at...
Cellulose perforated by micro-channels (phi? similar to 500 mu m) has been investigated as a potenti...
A novel three-dimensional construct was designed to serve as a substitute for the natural meniscus t...
Microscopy techniques based on laser-induced nonlinear optical processes allow for chemically specif...
<p>Mesenchymal stem cells (MSCs) have been investigated with promising results for meniscus healing ...
Recently, tissue engineered solutions have been investigated to cure rotator cuff tears, whose curin...
The integration of living, human smooth muscle cells in biosynthesized cellulose scaffolds was monit...
The aim of this study is to investigate the effects of scaffold structure on ligament tissue enginee...
In this study, a novel 5-layered meniscus scaffold, constituted of 3 different collagen-based foams ...
Major efforts are presently made to develop artificial replacement tissues with optimal architectura...
Traumatic or degenerative meniscal lesions are a frequent problem. The meniscus cannot regenerate a...
Micropatterned pores in scaffolds have been extensively used to promote mass transport, tissue integ...
<div><p>The biological and mechanical function of connective tissues is largely determined by contro...
The scaffold is an essential component in tissue engineering. A novel method to prepare threedimensi...
The meniscus is a fibrocartilage tissue that is integral to the correct functioning of the knee join...
Engineering the meniscus is challenging due to its bizonal structure; the tissue is cartilaginous at...
Cellulose perforated by micro-channels (phi? similar to 500 mu m) has been investigated as a potenti...
A novel three-dimensional construct was designed to serve as a substitute for the natural meniscus t...
Microscopy techniques based on laser-induced nonlinear optical processes allow for chemically specif...
<p>Mesenchymal stem cells (MSCs) have been investigated with promising results for meniscus healing ...
Recently, tissue engineered solutions have been investigated to cure rotator cuff tears, whose curin...
The integration of living, human smooth muscle cells in biosynthesized cellulose scaffolds was monit...
The aim of this study is to investigate the effects of scaffold structure on ligament tissue enginee...
In this study, a novel 5-layered meniscus scaffold, constituted of 3 different collagen-based foams ...
Major efforts are presently made to develop artificial replacement tissues with optimal architectura...
Traumatic or degenerative meniscal lesions are a frequent problem. The meniscus cannot regenerate a...
Micropatterned pores in scaffolds have been extensively used to promote mass transport, tissue integ...
<div><p>The biological and mechanical function of connective tissues is largely determined by contro...
The scaffold is an essential component in tissue engineering. A novel method to prepare threedimensi...
The meniscus is a fibrocartilage tissue that is integral to the correct functioning of the knee join...
Engineering the meniscus is challenging due to its bizonal structure; the tissue is cartilaginous at...