Tissue Regeneration

Hypoxia Enhances the Angiogenic Potential of Human Dental Pulp Cells

Dentistry / Nonparametric Statistics / Regeneration / Adult Stem Cells / Stem Cell / Tissue Regeneration / Signal Transduction / Humans / Vascular endothelium / Endodontics / Human Fibroblasts / Dental Pulp / Tissue Regeneration / Signal Transduction / Humans / Vascular endothelium / Endodontics / Human Fibroblasts / Dental Pulp

Hypoxia enhances the angiogenic potential of human dental pulp cells

Dentistry / Nonparametric Statistics / Regeneration / Adult Stem Cells / Stem Cell / Tissue Regeneration / Signal Transduction / Humans / Vascular endothelium / Endodontics / Human Fibroblasts / Tissue Regeneration / Signal Transduction / Humans / Vascular endothelium / Endodontics / Human Fibroblasts

Hypoxia Enhances the Angiogenic Potential of Human Dental Pulp Cells

Dentistry / Nonparametric Statistics / Regeneration / Adult Stem Cells / Stem Cell / Tissue Regeneration / Signal Transduction / Humans / Vascular endothelium / Endodontics / Human Fibroblasts / Tissue Regeneration / Signal Transduction / Humans / Vascular endothelium / Endodontics / Human Fibroblasts

Hypoxia Enhances the Angiogenic Potential of Human Dental Pulp Cells

Dentistry / Nonparametric Statistics / Regeneration / Adult Stem Cells / Stem Cell / Tissue Regeneration / Signal Transduction / Humans / Vascular endothelium / Endodontics / Human Fibroblasts / Tissue Regeneration / Signal Transduction / Humans / Vascular endothelium / Endodontics / Human Fibroblasts
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