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Over-expression of Oct4 and Sox2 transcription factors enhances differentiation of human umbilical cord blood cells in vivo human umbilical cord blood mono-nuclear cells (hUCB-MCs), this communication reports enhanced

Over-expression of Oct4 and Sox2 transcription factors enhances differentiation of human umbilical cord blood cells in vivo human umbilical cord blood mono-nuclear cells (hUCB-MCs), this communication reports enhanced

Human umbilical cord blood mononuclear cells transfected with dual cassette plasmids (VEGF + neurotrophic factor) for the treatment of amyotrophic lateral sclerosis genes - human umbilical cord blood mononuclear cells genetically modified by dual cassette plasmids

Possible directions of human cord blood mononuclear cells differentiation in the regenerating rat liver for the white mongrel male rats and injected human umbilical cord blood mononuclear cells transfected by gene

Post-Traumatic Changes in the Spinal Cord in Rats after Transplantation of Mononuclear Cells from Human Umbilical Blood Modified with the vegf and fgf2 Genes of human umbilical blood mononuclear cells transfected with a plasmid carrying the vegf and fgf2 genes

Post-traumatic changes in the spinal cord in rats after transplantation of mononuclear cells from human umbilical blood modified with the vegf and fgf2 genes of human umbilical blood mononuclear cells transfected with a plasmid carrying the vegf and fgf2 genes

Tandem Delivery of Multiple Therapeutic Genes Using Umbilical Cord Blood Cells Improves Symptomatic Outcomes in ALS of human umbilical cord blood mononuclear cell (hUCBMC) cotransduced with adenoviral vectors expressing

Tandem Delivery of Multiple Therapeutic Genes Using Umbilical Cord Blood Cells Improves Symptomatic Outcomes in ALS of human umbilical cord blood mononuclear cell (hUCBMC) cotransduced with adenoviral vectors expressing

Over-expression of Oct4 and Sox2 transcription factors enhances differentiation of human umbilical cord blood cells in vivo restricting their use to experimental studies. Utilizing genetically modified human umbilical cord blood mono-nuclear

Influence of the human umbilical cord blood mononuclear cells transplantation on regeneration of the rat kidney after unilateral ureteral obstruction tissue. Thus, transplantation of human cord blood mononuclear cells in UUO stimulates proliferative

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