Seeding cells efficiently and uniformly onto three-dimensional scaffolds is a key element for engineering tissues, particularly when only a low-number of cells is available for tissue repair and regeneration. The aim of this study was to evaluate three seeding techniques on two biocompatible scaffolds in vitro using chondrocytes as follows: (1) static; (2) modified centrifugal cell immobilization (CCI); and (3) dynamic oscillating motion. Five milliliters of media containing 5, 10, or 25 million articular, auricular, or costal chondrocytes were used to seed porous PLGA scaffolds and sections of devitalized cartilage. The dynamic oscillating technique resulted in up to 150% higher cellular load at 7 days than CCI seeding. Cell distribution w...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...
Articular cartilage has limited regenerative capabilities. Chondrocytes from different layers of car...
The increasing incidence of tendon injuries and lack of treatment options has motivated the need for...
Cartilage tissue engineering remains a top priority due to the limited intrinsic capacity of articul...
cartilage in vitro using the self-assembling method have produced constructs possessing significant ...
Many aspects of the process of in vitro differentiation of chondrocytes in three-dimensional (3D) sc...
Engineered scaffolds for tissue-engineering should be designed to match the stiffness and strength o...
An adequate cell seeding technique is essential for effective bone regeneration on cell seeded const...
Engineered scaffolds for tissue-engineering should be designed to match the stiffness and strength o...
mbryonic stem (ES) cells are a potential source for cartilage tissue engineering because they provid...
In regenerative medicine studies, cell seeding efficiency is not only optimized by changing the chem...
mbryonic stem (ES) cells are a potential source for cartilage tissue engineering because they provid...
Cell laden biomaterials are archetypically seeded with individual cells and steered into the desired...
In this study, fused deposition manufacturing (FDM) was utilized to fabricate the precision scaffold...
Cell seeding into scaffolds plays a crucial role in the development of efficient bone tissue enginee...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...
Articular cartilage has limited regenerative capabilities. Chondrocytes from different layers of car...
The increasing incidence of tendon injuries and lack of treatment options has motivated the need for...
Cartilage tissue engineering remains a top priority due to the limited intrinsic capacity of articul...
cartilage in vitro using the self-assembling method have produced constructs possessing significant ...
Many aspects of the process of in vitro differentiation of chondrocytes in three-dimensional (3D) sc...
Engineered scaffolds for tissue-engineering should be designed to match the stiffness and strength o...
An adequate cell seeding technique is essential for effective bone regeneration on cell seeded const...
Engineered scaffolds for tissue-engineering should be designed to match the stiffness and strength o...
mbryonic stem (ES) cells are a potential source for cartilage tissue engineering because they provid...
In regenerative medicine studies, cell seeding efficiency is not only optimized by changing the chem...
mbryonic stem (ES) cells are a potential source for cartilage tissue engineering because they provid...
Cell laden biomaterials are archetypically seeded with individual cells and steered into the desired...
In this study, fused deposition manufacturing (FDM) was utilized to fabricate the precision scaffold...
Cell seeding into scaffolds plays a crucial role in the development of efficient bone tissue enginee...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...
Articular cartilage has limited regenerative capabilities. Chondrocytes from different layers of car...
The increasing incidence of tendon injuries and lack of treatment options has motivated the need for...