Tooth loss or damage is a common problem affecting millions of people worldwide, and it results in significant impacts on one’s quality of life. Dental regeneration with the support of stem cell-containing scaffolds has emerged as an alternative treatment strategy for such cases. With this concept in mind, we developed various concentrations of calcium silicate (CS) in a gelatin methacryloyl (GelMa) matrix and fabricated human dental pulp stem cells (hDPSCs)-laden scaffolds via the use of a bioprinting technology in order to determine their feasibility in promoting odontogenesis. The X-ray diffraction and Fourier transform-infrared spectroscopy showed that the incorporation of CS increased the number of covalent bonds in the GelMa hydrogels...
Leveraging 3D bioprinting for processing stem cell-laden biomaterials has unlocked a tremendous pote...
The loss of overlying enamel or cementum exposes dentinal tubules and increases the risk of several ...
Human orofacial bone mesenchymal stem cells (OFMSCs) from maxilla and mandible have robust osteogeni...
The development of 3D printing technologies has allowed us to fabricate complex novel scaffolds for ...
According to the Centers for Disease Control and Prevention, tooth caries is a common problem affect...
Pulp regeneration is one of the most successful areas in the field of tissue regeneration, despite i...
Recruiting periapical stem cells into the root canal and inducing their odontogenic differentiation ...
[[abstract]]Introduction Calcium silicate bioceramics have been broadly used as reparative or grafti...
The development of biomaterials that exhibit profound bioactivity and stimulate stem cell differenti...
Worldwide, the number of bone fractures due to traumatic and accidental injuries is increasing expon...
Calcium silicate-based cement has garnered huge interest in recent years, due to its versatility and...
Calcium silicate-based cement has garnered huge interest in recent years, due to its versatility and...
Our laboratory utilized biomimicry to develop a synthetic bone scaffold based on hydroxyapatite-gela...
With an aging population and an increase in the proportions of that population with access to high q...
Copyright © 2014 Dong Joon Lee et al.This is an open access article distributed under the Creative C...
Leveraging 3D bioprinting for processing stem cell-laden biomaterials has unlocked a tremendous pote...
The loss of overlying enamel or cementum exposes dentinal tubules and increases the risk of several ...
Human orofacial bone mesenchymal stem cells (OFMSCs) from maxilla and mandible have robust osteogeni...
The development of 3D printing technologies has allowed us to fabricate complex novel scaffolds for ...
According to the Centers for Disease Control and Prevention, tooth caries is a common problem affect...
Pulp regeneration is one of the most successful areas in the field of tissue regeneration, despite i...
Recruiting periapical stem cells into the root canal and inducing their odontogenic differentiation ...
[[abstract]]Introduction Calcium silicate bioceramics have been broadly used as reparative or grafti...
The development of biomaterials that exhibit profound bioactivity and stimulate stem cell differenti...
Worldwide, the number of bone fractures due to traumatic and accidental injuries is increasing expon...
Calcium silicate-based cement has garnered huge interest in recent years, due to its versatility and...
Calcium silicate-based cement has garnered huge interest in recent years, due to its versatility and...
Our laboratory utilized biomimicry to develop a synthetic bone scaffold based on hydroxyapatite-gela...
With an aging population and an increase in the proportions of that population with access to high q...
Copyright © 2014 Dong Joon Lee et al.This is an open access article distributed under the Creative C...
Leveraging 3D bioprinting for processing stem cell-laden biomaterials has unlocked a tremendous pote...
The loss of overlying enamel or cementum exposes dentinal tubules and increases the risk of several ...
Human orofacial bone mesenchymal stem cells (OFMSCs) from maxilla and mandible have robust osteogeni...