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1.
West China Journal of Stomatology ; (6): 355-360, 2019.
Article in Chinese | WPRIM | ID: wpr-772647

ABSTRACT

OBJECTIVE@#This study aims to study the expression patterns of ectodysplasin (EDA) and ectodysplasin receptor (EDAR) during the early development of zebrafish and provide a foundation for further research of the Eda signaling pathway in tooth development.@*METHODS@#Total RNA was extracted from zebrafish embryos at 48 hours postfertilization (hpf) and then reverse transcribed for cDNA library generation. The corresponding RNA polymerase was selected for the synthesis of the digoxin-labeled antisense mRNA probe of zebrafish pharyngeal tooth specific marker dlx2b and Eda signaling-associated genes eda and edar in vitro. The three sequences were ligated into a pGEMT vector with a TA cloning kit, and polymerase chain reaction (PCR) was applied to linearize the plasmid. The resultant PCR sequences were used as templates for synthesizing Dig-labeled mRNA probe dlx2b, eda, and edar. Zebrafish embryos were collected at 36, 48, 56, 60, 72, and 84 hpf, then whole mount in situ hybridization was performed for the detection of eda and edar expression patterns. Then, their expression patterns at 72 hpf were compared with the expression pattern of dlx2b.@*RESULTS@#The mRNA antisense probes of dlx2b, eda, and edar were successfully obtained. The positive signals of eda and edar were observed in zebrafish pharyngeal tooth region at 48-72 hpf and thus conform to the signals of dlx2b in the positive regions.@*CONCLUSIONS@#The ligand eda and edar, which are associated with the Eda signaling pathway, are strongly expressed only at the pharyngeal tooth region in zebrafish from tooth initiation to the morphogenesis stage. Thus, the Eda signaling pathway may be involved in the regulation of the early development of zebrafish pharyngeal teeth.


Subject(s)
Animals , Ectodysplasins , Edar Receptor , Odontogenesis , Receptors, Ectodysplasin , Zebrafish
2.
Chinese Medical Journal ; (24): 2260-2268, 2011.
Article in English | WPRIM | ID: wpr-338560

ABSTRACT

<p><b>BACKGROUND</b>Patients with severe full-thickness burn injury suffer from their inability to maintain body temperature through perspiration because the complete destructed sweat glands can not be regenerated. Bone marrow-derived mesenchymal stem cells (BM-MSCs) represent an ideal stem-cell source for cell therapy because of their easy purification and multipotency. In this study, we attempted to induce human BM-MSCs to differentiate into sweat gland cells for sweat gland regeneration through ectodysplasin (EDA) gene transfection.</p><p><b>METHODS</b>The dynamic expression of EDA and EDA receptor (EDAR) were firstly observed in the sweat gland formation during embryological development. After transfection with EDA expression vector, human BM-MSCs were transplanted into the injured areas of burn animal models. The regeneration of sweat glands was identified by perspiration test and immunohistochemical analysis.</p><p><b>RESULTS</b>Endogenous expression of EDA and EDAR correlated with sweat gland development in human fetal skin. After EDA transfection, BM-MSC acquired a sweat-gland-cell phenotype, evidenced by their expression of sweat gland markers by flow cytometry analysis. Immunohistochemical staining revealed a markedly contribution of EDA-transfected BM-MSCs to the regeneration of sweat glands in the scalded paws. Positive rate for perspiration test for the paws treated with EDA-transfected BM-MSCs was significantly higher than those treated with BM-MSCs or EDA expression vector (P < 0.05).</p><p><b>CONCLUSIONS</b>Our results confirmed the important role of EDA in the development of sweat gland. BM-MSCs transfected with EDA significantly improved the sweat-gland regeneration. This study suggests the potential application of EDA-modified MSCs for the repair and regeneration of injured skin and its appendages.</p>


Subject(s)
Adult , Animals , Female , Humans , Male , Mice , Pregnancy , Young Adult , Blotting, Western , Bone Marrow Cells , Cell Biology , Cell Proliferation , Cells, Cultured , Ectodysplasins , Genetics , Metabolism , Flow Cytometry , Immunohistochemistry , Mesenchymal Stem Cell Transplantation , Methods , Mesenchymal Stem Cells , Cell Biology , Metabolism , Mice, Inbred BALB C , Mice, Nude , Receptors, Ectodysplasin , Reverse Transcriptase Polymerase Chain Reaction , Sweat Glands , Cell Biology , Metabolism , Transfection
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