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牙龈上皮细胞来源的微囊泡可激活牙龈成纤维细胞的矿化。

Gingival epithelial cell-derived microvesicles activate mineralization in gingival fibroblasts.

机构信息

Faculty of Dentistry, Department of Oral Biological and Medical Sciences, University of British Columbia, Vancouver, BC, V6T 1Z3, Canada.

出版信息

Sci Rep. 2022 Sep 22;12(1):15779. doi: 10.1038/s41598-022-19732-1.

Abstract

Soft tissue calcification occurs in many parts of the body, including the gingival tissue. Epithelial cell-derived MVs can control many functions in fibroblasts but their role in regulating mineralization has not been explored. We hypothesized that microvesicles (MVs) derived from gingival epithelial cells could regulate calcification of gingival fibroblast cultures in osteogenic environment. Human gingival fibroblasts (HGFs) were cultured in osteogenic differentiation medium with or without human gingival epithelial cell-derived MV stimulation. Mineralization of the cultures, localization of the MVs and mineral deposits in the HGF cultures were assessed. Gene expression changes associated with MV exposure were analyzed using gene expression profiling and real-time qPCR. Within a week of exposure, epithelial MVs stimulated robust mineralization of HGF cultures that was further enhanced by four weeks. The MVs taken up by the HGF's did not calcify themselves but induced intracellular accumulation of minerals. HGF gene expression profiling after short exposure to MVs demonstrated relative dominance of inflammation-related genes that showed increases in gene expression. In later cultures, OSX, BSP and MMPs were significantly upregulated by the MVs. These results suggest for the first time that epithelial cells maybe associated with the ectopic mineralization process often observed in the soft tissues.

摘要

软组织钙化发生在身体的许多部位,包括牙龈组织。上皮细胞衍生的 MV 可以控制成纤维细胞中的许多功能,但它们在调节矿化中的作用尚未被探索。我们假设牙龈上皮细胞衍生的微泡 (MV) 可以调节成骨环境中牙龈成纤维细胞培养物的钙化。用人牙龈成纤维细胞 (HGF) 在成骨分化培养基中培养,或在人牙龈上皮细胞衍生的 MV 刺激下培养。评估培养物的矿化、MV 的定位和 HGF 培养物中矿物质沉积物。通过基因表达谱和实时 qPCR 分析与 MV 暴露相关的基因表达变化。在暴露的一周内,上皮 MV 刺激 HGF 培养物的矿化作用强烈,而在四周后则进一步增强。被 HGF 吸收的 MV 本身不会钙化,但会诱导细胞内矿物质的积累。MV 短时间暴露后对 HGF 的基因表达谱分析显示,与炎症相关的基因表达增加,表现出相对优势。在后期培养物中,MV 显著上调 OSX、BSP 和 MMPs。这些结果首次表明,上皮细胞可能与软组织中经常观察到的异位矿化过程有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cacf/9500071/0b8acd3fe627/41598_2022_19732_Fig1_HTML.jpg

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