Background. Novel treatments for bone defects, particularly in patients with poor regenerative capacity, are based on bone tissue engineering strategies which include mesenchymal stem cells (MSCs), bioactive factors, and convenient scaffold supports. Objective. In this study, we aimed at comparing the potential for different scaffolds to induce osteogenic differentiation of human maxillary Schneiderian sinus membrane- (hMSSM-) derived cells. Methods. hMSSM-derived cells were seeded on gelatin, collagen, or Hydroxyapatite β-Tricalcium phosphate-Fibrin (Haβ-TCP-Fibrin) scaffolds. Cell viability was determined using an MTT assay. Alizarin red staining method, Alkaline phosphatase (ALP) activity assay, and quantitative real-time PCR analysis we...
In this study, the effects of osteoblast-conditioning on mechanical behavior, biocompatibility, biod...
Study of cell-biomaterial interaction is a crucial aspect of bone tissue engineering to find a state...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
Aim: Sinus augmentation procedures commonly employ osteoconductive scaffolding materials to stimulat...
The demand of new strategies for the induction of bone regeneration is continuously increasing. Biom...
Human bone marrow-derived mesenchymal stem cells (hBMSCs) and their derivative enhanced green fluore...
Abstract Background A novel biodegradable scaffold including gelatin (G), chitooligosaccharide (COS)...
Bone regeneration is considered as an unmet clinical need, the aim of this study is to investigate t...
The aim of this research was to investigate the osteogenic differentiation potential of non-invasive...
Our laboratory utilized biomimicry to develop a synthetic bone scaffold based on hydroxyapatite-gela...
There are currently several commercialized products approved by the Food and Drug Administration and...
<div><p>Mesenchymal stem cells (MSCs) play a crucial role in regulating normal skeletal homeostasis ...
To investigate the potential application of bone marrow stromal cells (BMSCs) and an injectable sodi...
Human mesenchymal stem cells (hMSCs) have great potential in bone tissue engineering, and hydroxyapa...
Bone transplantation is regarded as the preferred therapy to treat a variety of bone defects. Autolo...
In this study, the effects of osteoblast-conditioning on mechanical behavior, biocompatibility, biod...
Study of cell-biomaterial interaction is a crucial aspect of bone tissue engineering to find a state...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...
Aim: Sinus augmentation procedures commonly employ osteoconductive scaffolding materials to stimulat...
The demand of new strategies for the induction of bone regeneration is continuously increasing. Biom...
Human bone marrow-derived mesenchymal stem cells (hBMSCs) and their derivative enhanced green fluore...
Abstract Background A novel biodegradable scaffold including gelatin (G), chitooligosaccharide (COS)...
Bone regeneration is considered as an unmet clinical need, the aim of this study is to investigate t...
The aim of this research was to investigate the osteogenic differentiation potential of non-invasive...
Our laboratory utilized biomimicry to develop a synthetic bone scaffold based on hydroxyapatite-gela...
There are currently several commercialized products approved by the Food and Drug Administration and...
<div><p>Mesenchymal stem cells (MSCs) play a crucial role in regulating normal skeletal homeostasis ...
To investigate the potential application of bone marrow stromal cells (BMSCs) and an injectable sodi...
Human mesenchymal stem cells (hMSCs) have great potential in bone tissue engineering, and hydroxyapa...
Bone transplantation is regarded as the preferred therapy to treat a variety of bone defects. Autolo...
In this study, the effects of osteoblast-conditioning on mechanical behavior, biocompatibility, biod...
Study of cell-biomaterial interaction is a crucial aspect of bone tissue engineering to find a state...
One of the main aims of bone tissue engineering, regenerative medicine and cell therapy is developme...