The use of biopolymers as a three dimensional (3D) support structure for cell growth is a leading tissue engineering approach in regenerative medicine. Achieving consistent cell seeding and uniform cell distribution throughout 3D scaffold culture in vitro is an ongoing challenge. Traditionally, 3D scaffolds are cultured within tissue culture plates to enable reproducible cell seeding and ease of culture media change. In this study, we compared two different well-plates with different surface properties to assess whether seeding efficiencies and cell growth on 3D scaffolds were affected. Cell attachment and growth of murine calvarial osteoblast (MC3T3-E1) cells within a melt-electrospun poly-ε-caprolactone scaffold were assessed when culture...
In this study, fused deposition manufacturing (FDM) was utilized to fabricate the precision scaffold...
Introduction: Studies on biomaterials involve assays aimed to assess the interactions between the bi...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...
The use of biopolymers as a three dimensional (3D) support structure for cell growth is a leading ti...
Abstract: The use of biopolymers as a three dimensional (3D) support structure for cell growth is a ...
In regenerative medicine studies, cell seeding efficiency is not only optimized by changing the chem...
In tissue engineering, the chemical and topographical cues within three-dimensional (3D) scaffolds a...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
Tissue engineering is a concept whereby cells are taken from a patient, their number expanded and se...
Scaffolds composed of biodegradable polymers and biocompatible ceramics are being used as substitute...
morphology, cellular environment and understanding their behavioral changes. The implementation of 3...
Engineered scaffolds for tissue-engineering should be designed to match the stiffness and strength o...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cell seeding is challenging in the case of additively manufactured 3-dimensional scaffolds, as the o...
Research in mammalian cell biology often relies on developing in vitro models to enable the growth o...
In this study, fused deposition manufacturing (FDM) was utilized to fabricate the precision scaffold...
Introduction: Studies on biomaterials involve assays aimed to assess the interactions between the bi...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...
The use of biopolymers as a three dimensional (3D) support structure for cell growth is a leading ti...
Abstract: The use of biopolymers as a three dimensional (3D) support structure for cell growth is a ...
In regenerative medicine studies, cell seeding efficiency is not only optimized by changing the chem...
In tissue engineering, the chemical and topographical cues within three-dimensional (3D) scaffolds a...
Background: The role of stem cells in tissue development and repair is beginning to be unravelled an...
Tissue engineering is a concept whereby cells are taken from a patient, their number expanded and se...
Scaffolds composed of biodegradable polymers and biocompatible ceramics are being used as substitute...
morphology, cellular environment and understanding their behavioral changes. The implementation of 3...
Engineered scaffolds for tissue-engineering should be designed to match the stiffness and strength o...
Cancer biology research is increasingly moving toward innovative in vitro 3D culture models, as conv...
Cell seeding is challenging in the case of additively manufactured 3-dimensional scaffolds, as the o...
Research in mammalian cell biology often relies on developing in vitro models to enable the growth o...
In this study, fused deposition manufacturing (FDM) was utilized to fabricate the precision scaffold...
Introduction: Studies on biomaterials involve assays aimed to assess the interactions between the bi...
In order to ensure the long-term in vitro and in vivo functionality of cell-seeded 3D scaffolds, an ...