Gene Expression of Semaphorin 7A During Osteogenic Differentiation in Human Dental Follicle Cells

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Osteogenic Differentiation of Dental Follicle Stem Cells

BACKGROUND Stem cells are defined as clonogenic cells capable of self-renewal and multi-lineage differentiation. A population of these cells has been identified in human Dental Follicle (DF). Dental Follicle Stem Cells (DFSCs) were found in pediatric unerupted wisdom teeth and have been shown to differentiate, under particular conditions, into various cell types of the mesenchymal tissues. AI...

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The dexamethasone induced osteogenic differentiation of dental follicle cells.

Mesenchymal stem cells are excellent for in vitro studies about biological processes during the differentiation of osteogenic progenitor cells into mineralizing cells such as osteoblasts. Human dental follicle cells (DFCs) are dental mesenchymal stem cells and they can be isolated from third molar teeth. Because DFCs are the genuine progenitor cells of periodontal tissue cells, they have been u...

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Molecular mechanisms in dental follicle precursor cells during the osteogenic differentiation.

The discovery of dental stem cells received extensive attention because of its significance for the development of novel cellular therapies in dentistry. However, dental stem cells are also excellent for studies about cellular processes during dental tissue development or regeneration. Multipotent undifferentiated cells in the dental follicle (DFCs) are one example of dental stem cells. These c...

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Endogenous Semaphorin-7A Impedes Human Lung Fibroblast Differentiation

Semaphorin-7A is a glycosylphosphatidylinositol-anchored protein, initially characterized as an axon guidance protein. Semaphorin-7A also contributes to immune cell regulation and may be an essential pro-fibrotic factor when expressed by non-fibroblast cell types (exogenous). In mouse models, semaphorin-7A was shown to be important for TGF-ß1-induced pulmonary fibrosis characterized by myofibro...

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Gene expression pattern during osteogenic differentiation of human periodontal ligament cells in vitro

PURPOSE Periodontal ligament (PDL) cell differentiation into osteoblasts is important in bone formation. Bone formation is a complex biological process and involves several tightly regulated gene expression patterns of bone-related proteins. The expression patterns of bone related proteins are regulated in a temporal manner both in vivo and in vitro. The aim of this study was to observe the gen...

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ژورنال

عنوان ژورنال: Journal of Hard Tissue Biology

سال: 2016

ISSN: 1341-7649,1880-828X

DOI: 10.2485/jhtb.25.263