Literature DB >> 28260604

The Osteogenic Potential of Human Nondifferentiated and Pre-differentiated Mesenchymal Stem Cells Combined with an Osteoconductive Scaffold - Early Stage Healing.

Luboš Tuček1, Zuzana Kočí2,3,4, Kristýna Kárová3,4, Helena Doležalová1, Jakub Suchánek5.   

Abstract

Despite the huge research into stem cells and their regenerative properties for bone healing, there are still unanswered questions including the recipient's respond to the presence of the stem cells, the fate of stem cells inside the bone defect and the possible advantage in utilizing pre-differentiated cells. To address these problems, we used human multipotent mesenchymal stromal/stem cells (MSCs), GMP Grade, in a rat model of bone formation. In a "bioreactor concept" approach seven Wistar rats were implanted with 0.2 g of synthetic bone scaffold seeded with 2 × 106 MSCs, seven Wistar rats were implanted with 0.2 g of synthetic bone scaffold seeded with 1 × 106 predifferentiated osteoblasts and 1 × 106 pre-differentiated endothelial cells and 14 Wistar rats were implanted with 0.2 g of synthetic bone scaffold without seeded cells into an intramuscular pocket on the left side of their back. The right side of each rat was used as a control, and 0.2 g of synthetic bone scaffold was implanted into the intramuscular pocket alone. To see the early stage healing the samples were harvested 14 days after the implantation, MSCs were detected by positive DAPI and MTCO2 staining in 43% of all the samples implanted with MSCs, and no inflammation signs were present in any implanted animal. New vessels could be found in both groups implanted with MSCs, but not in the control group of animals. However, hematoxylin-eosin staining could not detect newly created bone within the implant in any of the groups. These results were in line with COLL1 staining, where we could detect positive staining only in three cases, all of which were implanted with un-differentiated MSCs. According to our findings, there were no benefits of using the pre-differentiated of MSC.

Entities:  

Keywords:  bone defect; mesenchymal stromal/stem cells; osteoconduction; osteoinduction; scaffold; tissue bone engineering

Mesh:

Year:  2017        PMID: 28260604     DOI: 10.14712/18059694.2017.43

Source DB:  PubMed          Journal:  Acta Medica (Hradec Kralove)        ISSN: 1211-4286


  3 in total

1.  The Transplantation of hBM-MSCs Increases Bone Neo-Formation and Preserves Hearing Function in the Treatment of Temporal Bone Defects - on the Experience of Two Month Follow Up.

Authors:  Lukáš Školoudík; Viktor Chrobok; Zuzana Kočí; Jiří Popelář; Josef Syka; Jan Laco; Alžběta Filipová; Eva Syková; Stanislav Filip
Journal:  Stem Cell Rev Rep       Date:  2018-12       Impact factor: 5.739

2.  Combination of polyetherketoneketone scaffold and human mesenchymal stem cells from temporomandibular joint synovial fluid enhances bone regeneration.

Authors:  Yi Lin; Mayumi Umebayashi; Mohamed-Nur Abdallah; Guoying Dong; Michael G Roskies; Yaoyao Fiona Zhao; Monzur Murshed; Zhiguang Zhang; Simon D Tran
Journal:  Sci Rep       Date:  2019-01-24       Impact factor: 4.379

3.  A Comparative In Vitro Analysis of the Osteogenic Potential of Human Dental Pulp Stem Cells Using Various Differentiation Conditions.

Authors:  Terezia Okajcekova; Jan Strnadel; Michal Pokusa; Romana Zahumenska; Maria Janickova; Erika Halasova; Henrieta Skovierova
Journal:  Int J Mol Sci       Date:  2020-03-26       Impact factor: 5.923

  3 in total

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