This review summarizes current advances in dental pulp stem cells (DPSCs) and their potential applications in the nervous diseases. Injured adult mammalian nervous system has a limited regenerative capacity due to an insufficient pool of precursor cells in both central and peripheral nervous systems. Nerve growth is also constrained by inhibitory factors (associated with central myelin) and barrier tissues (glial scarring). Stem cells, possessing the capacity of self-renewal and multicellular differentiation, promise new therapeutic strategies for overcoming these impediments to neural regeneration. Dental pulp stem cells (DPSCs) derive from a cranial neural crest lineage, retain a remarkable potential for neuronal differentiation, and addi...
Within the field of tissue engineering, natural tissues are reconstructed by combining growth factor...
Dental stem cells are an emerging star on a stage that is already quite populated. Recently, there h...
Neurotrophic factors are growth factors that can nourish neurons and promote neuron survival and reg...
This review summarizes results from in vitro and in vivo studies which provide evidence that human d...
Functional recovery from injuries to the brain or spinal cord represents a major clinical challenge....
The peripheral nerve injuries, representing some of the most common types of traumatic lesions affec...
The peripheral nerve injuries, representing some of the most common types of traumatic lesions affec...
Mesenchymal stem/stromal cells (MSCs) are found in almost all postnatal organs. Under appropriate en...
Pulpal and periapical diseases are the most common dental diseases. The traditional treatment is roo...
Within the nervous system, regeneration is limited, and this is due to the small amount of neural st...
Within the nervous system, regeneration is limited, and this is due to the small amount of neural st...
Dental pulp stem cells (DPSCs) are mesenchymal stem cells (MSCs) that have multipotent differentiati...
Dental pulp stem cells (DPSCs) are a promising source of cells for numerous and varied regenerative ...
Spinal cord regeneration following injury represents a major clinical challenge. Over recent years, ...
Dental pulp stem cells (DPSCs) have been proposed as a promising source of stem cells in nerve regen...
Within the field of tissue engineering, natural tissues are reconstructed by combining growth factor...
Dental stem cells are an emerging star on a stage that is already quite populated. Recently, there h...
Neurotrophic factors are growth factors that can nourish neurons and promote neuron survival and reg...
This review summarizes results from in vitro and in vivo studies which provide evidence that human d...
Functional recovery from injuries to the brain or spinal cord represents a major clinical challenge....
The peripheral nerve injuries, representing some of the most common types of traumatic lesions affec...
The peripheral nerve injuries, representing some of the most common types of traumatic lesions affec...
Mesenchymal stem/stromal cells (MSCs) are found in almost all postnatal organs. Under appropriate en...
Pulpal and periapical diseases are the most common dental diseases. The traditional treatment is roo...
Within the nervous system, regeneration is limited, and this is due to the small amount of neural st...
Within the nervous system, regeneration is limited, and this is due to the small amount of neural st...
Dental pulp stem cells (DPSCs) are mesenchymal stem cells (MSCs) that have multipotent differentiati...
Dental pulp stem cells (DPSCs) are a promising source of cells for numerous and varied regenerative ...
Spinal cord regeneration following injury represents a major clinical challenge. Over recent years, ...
Dental pulp stem cells (DPSCs) have been proposed as a promising source of stem cells in nerve regen...
Within the field of tissue engineering, natural tissues are reconstructed by combining growth factor...
Dental stem cells are an emerging star on a stage that is already quite populated. Recently, there h...
Neurotrophic factors are growth factors that can nourish neurons and promote neuron survival and reg...