Stomatological Hospital, Southern Medical University, Guangzhou, China.
Department of Stomatology, Guangzhou Women and Children's Medical Center, Guangzhou, China.
J Gene Med. 2019 Jun;21(6):e3098. doi: 10.1002/jgm.3098.
The present study aimed to explore the differences between apical pulp-derived cells of deciduous teeth (De-APDCs) and apical pulp-derived cells of permanent teeth (P-APDCs)/dental pulp cells from exfoliated deciduous teeth (De-DPCs).
Three types of cells (De-DPCs, P-APDCs and De-APDCs) were cultured by the tissue explant method. Transcriptome sequencing for the three types of cells was conducted and the differentially expressed genes (DEGs) between groups were selected. The potential biological functions and pathways enriched by the DEGs were analyzed.
There were 35 up- and 21 down-regulated DEGs in P-APDC versus the De-APDC comparison group, and 328 up- and 976 down-regulated DEGs in De-APDC versus De-DPC. The DEGs in the P-APDC versus De-APDC group were significantly enriched in biological process terms associated with extracellular matrix organization, and regulation of cell proliferation and the pathway of cell adhesion molecules. Additionally, the DEGs between De-APDC and De-DPC were involved in functions related to extracellular matrix organization and the regulation of bone remodeling, as well as the pathway of extracellular matrix-receptor interaction.
There were fewer differences between P-APDC and De-APDC compared to between De-APDC and De-DPC in view of the total number of DEGs. Differences in function existed relating to extracellular matrix organization among the three cells. P-APDCs and De-APDC had different functions on cell proliferation and adhesion. De-APDCs may also act as a unique stem cell resource for tissue engineering.
本研究旨在探讨乳牙牙髓来源细胞(De-APDCs)和恒牙牙髓来源细胞(P-APDCs)/脱落乳牙牙髓细胞(De-DPCs)之间的差异。
采用组织块培养法培养三种细胞(De-DPCs、P-APDCs 和 De-APDCs)。对三种细胞进行转录组测序,筛选差异表达基因(DEGs)。分析 DEGs 富集的潜在生物学功能和通路。
P-APDC 与 De-APDC 比较组有 35 个上调和 21 个下调的 DEGs,De-APDC 与 De-DPC 比较组有 328 个上调和 976 个下调的 DEGs。P-APDC 与 De-APDC 组的 DEGs 显著富集于细胞增殖和细胞黏附分子通路的细胞外基质组织相关的生物学过程。此外,De-APDC 与 De-DPC 之间的 DEGs 涉及细胞外基质组织和骨重塑调节以及细胞外基质受体相互作用的功能。
与 De-APDC 和 De-DPC 相比,P-APDC 之间的 DEG 总数差异较小。三种细胞之间的细胞外基质组织功能存在差异。P-APDC 和 De-APDC 在细胞增殖和黏附方面具有不同的功能。De-APDC 可能是组织工程中一种独特的干细胞资源。