IGF2 enhanced the osteo‐/dentinogenic and neurogenic differentiation potentials of stem cells from apical papilla

碱性磷酸酶 干细胞 细胞生物学 细胞生长 生长分化因子 化学 细胞分化 牙乳头 染色 分子生物学 生物 骨形态发生蛋白 病理 生物化学 成牙本质细胞 医学 遗传学 牙本质 基因
作者
Shu Diao,Haoqing Yang,Yangyang Cao,Dongmei Yang,Zhipeng Fan
出处
期刊:Journal of Oral Rehabilitation [Wiley]
卷期号:47 (S1): 55-65 被引量:17
标识
DOI:10.1111/joor.12859
摘要

Abstract Objectives In dental tissue engineering, niche is important for maintaining stem cell function and regenerating the dental tissues. However, there is limited knowledge for the growth factors in niche to maintain the function of stem cells. In this study, we investigated the effect of IGF2, a growth factor in stem cells from apical papilla (SCAPs) niche, on differentiation and proliferation potentials of SCAPs. Materials and methods Recombinant human IGF2 protein (rhIGF2) was used. Cell counting kit‐8 assay, Carboxyfluorescein succinimidyl ester assay, alkaline phosphatase (ALP) activity, Alizarin Red staining, quantitative calcium analysis, immunofluorescence staining and real‐time RT‐PCR were performed to investigate the cell proliferation and differentiation potentials of SCAPs. And proteomic analysis was used to identify the differential secreted proteins. Results By ALP activity assay, we found that 5 ng/mL rhIGF2 might be the optimal concentration for treatment. Then, Alizarin Red staining, quantitative calcium analysis and osteogenesis‐related gene expression results showed that 5 ng/mL rhIGF2 could enhance the osteo‐/dentinogenic differentiation potentials in SCAPs. Immunofluorescence staining and real‐time RT‐PCR results showed that neurogenic markers were significantly induced by 5 ng/mL rhIGF2 in SCAPs. Then, CCK‐8 assay and CFSE assay results showed that 5 ng/mL rhIGF2 could enhance the cell proliferation in SCAPs. Furthermore, proteomic analysis showed that IGF2 could induce some secreted proteins which function related to the osteogenesis, neurogenesis and cell proliferation. Conclusions Our results identified that IGF2 might be the potential mediator in niche to promote SCAP function and dental tissue regeneration.
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