Induced pluripotent stem cells (iPSCs) hold great potential not only for human but also for veterinary purposes. The equine industry must often deal with health issues concerning muscle and cartilage, where comprehensive regenerative strategies are still missing. In this regard, a still open question is whether equine iPSCs differentiate toward muscle and cartilage, and whether donor cell type influences their differentiation potential. We addressed these questions through an isogenic system of equine iPSCs obtained from myogenic mesoangioblasts (MAB-iPSCs) and chondrogenic mesenchymal stem cells (MSC-iPSCs). Despite similar levels of pluripotency characteristics, the myogenic differentiation appeared enhanced in MAB-iPSCs. Conversely, the ...
Stem cell therapy has shown promising results in tendinitis and osteoarthritis in equine medicine. T...
Horses are widely used as large animal preclinical models for cartilage repair studies, and hence, t...
Abstract\ud \ud Background\ud Isolation of mesenchymal...
Induced pluripotent stem cells (iPSCs) hold great potential not only for human but also for veterina...
Induced pluripotent stem cells (iPSCs) hold great potential not only for human but also for veterina...
Cartilage and tendon injuries are a significant source of animal wastage and financial loss within t...
Mesenchymal stem cells have been recently investigated for their potential use in regenerative medic...
Mesenchymal stem cells (MSCs) have the capability to di erentiate into wide range of specialized cel...
Induced pluripotent stem cells (iPSCs) are generated by reprogramming somatic cells to an embryonic...
Cartilage engineering is a new strategy for the treatment of cartilage damage due to osteoarthritis ...
Tissue engineering (TE) has emerged as a promising new therapy for the treatment of damaged tissues ...
Immunomodulation and immunogenicity are pivotal aspects for the therapeutic use of mesenchymal stem ...
A chondrocyte progenitor population isolated from the surface zone of articular cartilage presents a...
Mesenchymal stem cells (MSCs) are multipotent stem cells that can give rise to a range of connective...
Osteoarthritis is linked to approximately 60% of equine lameness problems. This disease involves com...
Stem cell therapy has shown promising results in tendinitis and osteoarthritis in equine medicine. T...
Horses are widely used as large animal preclinical models for cartilage repair studies, and hence, t...
Abstract\ud \ud Background\ud Isolation of mesenchymal...
Induced pluripotent stem cells (iPSCs) hold great potential not only for human but also for veterina...
Induced pluripotent stem cells (iPSCs) hold great potential not only for human but also for veterina...
Cartilage and tendon injuries are a significant source of animal wastage and financial loss within t...
Mesenchymal stem cells have been recently investigated for their potential use in regenerative medic...
Mesenchymal stem cells (MSCs) have the capability to di erentiate into wide range of specialized cel...
Induced pluripotent stem cells (iPSCs) are generated by reprogramming somatic cells to an embryonic...
Cartilage engineering is a new strategy for the treatment of cartilage damage due to osteoarthritis ...
Tissue engineering (TE) has emerged as a promising new therapy for the treatment of damaged tissues ...
Immunomodulation and immunogenicity are pivotal aspects for the therapeutic use of mesenchymal stem ...
A chondrocyte progenitor population isolated from the surface zone of articular cartilage presents a...
Mesenchymal stem cells (MSCs) are multipotent stem cells that can give rise to a range of connective...
Osteoarthritis is linked to approximately 60% of equine lameness problems. This disease involves com...
Stem cell therapy has shown promising results in tendinitis and osteoarthritis in equine medicine. T...
Horses are widely used as large animal preclinical models for cartilage repair studies, and hence, t...
Abstract\ud \ud Background\ud Isolation of mesenchymal...