The tissue engineering (TE) of dental oral tissue is facing significant changes in clinical treatments in dentistry. TE is based on a stem cell, signaling molecule, and scaffold triad that must be known and calibrated with attention to specific sectors in dentistry. This review article shows a summary of micro- and nanomorphological characteristics of dental tissues, of stem cells available in the oral region, of signaling molecules usable in TE, and of scaffolds available to guide partial or total reconstruction of hard, soft, periodontal, and bone tissues. Some scaffoldless techniques used in TE are also presented. Then actual and future roles of nanotechnologies about TE in dentistry are presented
Dentistry is the area of medical sciences that is most resistant to the introduction of the novel me...
Science is presently undergoing a great evolution, taking humanity to a new era: The era of nanotech...
The emergence of nanomaterials for dental treatments is encouraged by the nanotopography of the toot...
New therapeutic approaches benefit from recent advances in stem cell biology and material sciences. ...
Nanotechnologies are predicted to revolutionize: (a) the control over materials properties at ultraf...
The objective of this paper is to provide an insight of the different materials and techniques that ...
Nanotechnology brings emerging changes in translational research in last couple of decades. This evi...
Nanotechnology utilizes the mechanics to control the size and morphology of the particles in the req...
The development of dental materials for clinical applications is largely based on complex physicoche...
The regeneration of periodontium represents important challenges to controlling infection and achiev...
Rationalizing has become a new trend in the world of science and technology. Nanotechnology has asce...
New nanomaterials are leading to a range of emerging dental treatments that utilize more biomimetic ...
New nanomaterials are leading to a range of emerging dental treatments that utilize more biomimetic ...
Supporting has turned into a recent fad in the realm of science and innovation. Nanotechnology has r...
Injectable biomaterials scaffolds play a pivotal role for dental tissue regeneration, as such materi...
Dentistry is the area of medical sciences that is most resistant to the introduction of the novel me...
Science is presently undergoing a great evolution, taking humanity to a new era: The era of nanotech...
The emergence of nanomaterials for dental treatments is encouraged by the nanotopography of the toot...
New therapeutic approaches benefit from recent advances in stem cell biology and material sciences. ...
Nanotechnologies are predicted to revolutionize: (a) the control over materials properties at ultraf...
The objective of this paper is to provide an insight of the different materials and techniques that ...
Nanotechnology brings emerging changes in translational research in last couple of decades. This evi...
Nanotechnology utilizes the mechanics to control the size and morphology of the particles in the req...
The development of dental materials for clinical applications is largely based on complex physicoche...
The regeneration of periodontium represents important challenges to controlling infection and achiev...
Rationalizing has become a new trend in the world of science and technology. Nanotechnology has asce...
New nanomaterials are leading to a range of emerging dental treatments that utilize more biomimetic ...
New nanomaterials are leading to a range of emerging dental treatments that utilize more biomimetic ...
Supporting has turned into a recent fad in the realm of science and innovation. Nanotechnology has r...
Injectable biomaterials scaffolds play a pivotal role for dental tissue regeneration, as such materi...
Dentistry is the area of medical sciences that is most resistant to the introduction of the novel me...
Science is presently undergoing a great evolution, taking humanity to a new era: The era of nanotech...
The emergence of nanomaterials for dental treatments is encouraged by the nanotopography of the toot...