dentin matrix protein 1
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Molecules ◽  
2021 ◽  
Vol 26 (22) ◽  
pp. 6756
Author(s):  
Suchada Kongkiatkamon ◽  
Amsaveni Ramachandran ◽  
Kent L. Knoernschild ◽  
Stephen D. Campbell ◽  
Cortino Sukotjo ◽  
...  

Dentin matrix protein 1 (DMP1) contains a large number of acidic domains, multiple phosphorylation sites, a functional arginine-glycine-aspartate (RGD) motif, and a DNA binding domain, and has been shown to play essential regulatory function in dentin and bone mineralization. DMP1 could also orchestrate bone matrix formation, but the ability of DMP1 on Ti to human mesenchymal stem cell (hMSC) conversion to osteoblasts has not been studied. There is importance to test if the DMP1 coated Ti surface would promote cell migration and attachment to the metal surface and promote the differentiation of the attached stem cells to an osteogenic lineage. This study aimed to study the human mesenchymal stem cells (hMSCs) attachment and proliferation on DMP1 coated titanium (Ti) disks compared to non-coated disks, and to assess possible osteoblastic differentiation of attached hMSCs. Sixty-eight Ti disks were divided into two groups. Group 1 disks were coated with dentin matrix protein 1 and group 2 disks served as control. Assessment with light microscopy was used to verify hMSC attachment and proliferation. Cell viability was confirmed through fluorescence microscopy and mitochondrial dehydrogenase activity. Real-time polymerase chain reaction analysis was done to study the gene expression. The proliferation assay showed significantly greater cell proliferation with DMP1 coated disks compared to the control group (p-value < 0.001). Cell vitality analysis showed a greater density of live cells on DMP1 coated disks compared to the control group. Alkaline phosphatase staining revealed higher enzyme activity on DMP1 coated disks and showed itself to be significantly higher than the control group (p-value < 0.001). von Kossa staining revealed higher positive areas for mineralized deposits on DMP1 coated disks than the control group (p-value < 0.05). Gene expression analysis confirmed upregulation of runt-related transcription factor 2, osteoprotegerin, osteocalcin, osteopontin, and alkaline phosphatase on DMP1 coated disks (p-value < 0.001). The dentin matrix protein promoted the adhesion, proliferation, facilitation differentiation of hMSC, and mineralized matrix formation.


2020 ◽  
Vol 34 (5) ◽  
pp. 6147-6165
Author(s):  
Aleksandra Porębska ◽  
Mirosława Różycka ◽  
Rafał Hołubowicz ◽  
Zbigniew Szewczuk ◽  
Andrzej Ożyhar ◽  
...  

2020 ◽  
Vol 11 ◽  
Author(s):  
Elizabeth Guirado ◽  
Yinghua Chen ◽  
Ryan D. Ross ◽  
Youbin Zhang ◽  
Catherine Chaussain ◽  
...  

Plants ◽  
2019 ◽  
Vol 8 (12) ◽  
pp. 566 ◽  
Author(s):  
Aktsar Roskiana Ahmad ◽  
Pornjira Kaewpungsup ◽  
Narach Khorattanakulchai ◽  
Kaewta Rattanapisit ◽  
Prasit Pavasant ◽  
...  

Inductive molecules are critical components for successful bone tissue engineering. Dentin matrix protein-1 (DMP1), a non-collagenous protein in the bone matrix, has been shown to play roles in osteogenic differentiation and phosphate homeostasis. This study aimed to produce recombinant human dentin matrix protein-1 (hDMP1) in Nicotiana benthamiana and investigated the ability of this plant-produced DMP1 to induce osteogenesis in human periodontal ligament stem cells (hPDLSCs). The hDMP1 gene was cloned into the geminiviral vector for transient expression in N. benthamiana. We found that hDMP1 was transiently expressed in N. benthamiana leaves and could be purified by ammonium sulphate precipitation followed by nickel affinity chromatography. The effects of hDMP1 on the induction of cell proliferation and osteogenic differentiation were investigated. The results indicated that plant-produced hDMP1 could induce the cell proliferation of hPDLSCs and increase the expression levels of osteogenic genes, including osterix (OSX), type I collagen (COL1), bone morphogenetic protein-2 (BMP2), and Wnt3a. Moreover, the plant-produced hDMP1 promoted calcium deposition in hPDLSCs as determined by alizarin red S staining. In conclusion, our results indicated that plant-produced hDMP1 could induce osteogenic differentiation in hPDLSCs and could potentially be used as a bone inducer in bone tissue engineering.


2019 ◽  
Vol 23 ◽  
pp. e00348 ◽  
Author(s):  
Aktsar Roskiana Ahmad ◽  
Pornjira Kaewpungsup ◽  
Narach Khorattanakulchai ◽  
Kaewta Rattanapisit ◽  
Prasit Pavasant ◽  
...  

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