International Journal of Molecular Sciences · 2019 · 25 citations · 16 references
Tissue EngineeringRegenerative MedicineArtificial ScaffoldDevelopmental BiologyEngineeringBone Morphogenic ProteinMedicineAdult Stem CellIndirect OsteogenesisMarrow-derived MscsBone RepairStem-cell TherapyBiomedical EngineeringMesenchymal Stem CellMatrix BiologyStem CellsCell BiologyExtracellular Matrix
Three-dimensional clumps of mesenchymal stem cell (MSC)/extracellular matrix (ECM) complexes (C-MSCs) consist of cells and self-produced ECM. We demonstrated previously that C-MSCs can be transplanted into bone defect regions with no artificial scaffold to induce bone regeneration. To apply C-MSCs in a clinical setting as a reliable bone regenerative therapy, the present study aimed to generate C-MSCs in xeno-free/serum-free conditions that can exert successful bone regenerative properties and to monitor interactions between grafted cells and host cells during bone healing processes. Human bone marrow-derived MSCs were cultured in xeno-free/serum-free medium. To obtain C-MSCs, confluent cells that had formed on the cellular sheet were scratched using a micropipette tip and then torn off. The sheet was rolled to make a round clump of cells. Then, C-MSCs were transplanted into an immunodeficient mouse calvarial defect model. Transplantation of C-MSCs induced bone regeneration in a time-dependent manner. Immunofluorescence staining showed that both donor human cells and host mice cells contributed to bone reconstruction. Decellularized C-MSCs implantation failed to induce bone regeneration, even though the host mice cells can infiltrate into the defect area. These findings suggested that C-MSCs generated in xeno-free/serum-free conditions can induce bone regeneration via direct and indirect osteogenesis.
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Multilineage Potential of Adult Human Mesenchymal Stem Cells
Mark F. Pittenger, Alastair M. Mackay, Stephen C. Beck et al. · Science · 1999 · 20.9K citations
Adult Stem Cell, Multilineage Potential, Biomedical Engineering +16
Regenerative Effects of Transplanted Mesenchymal Stem Cells in Fracture Healing
Froilán Granero‐Moltó, Jared A. Weis, Michael I. Miga et al. · Stem Cells · 2009 · 526 citations