Department of Oral Implantology, School and Hospital of Stomatology, Jilin University, Changchun, China.
J Clin Periodontol. 2024 Jun;51(6):754-765. doi: 10.1111/jcpe.13956. Epub 2024 Feb 20.
To discover the populations of mesenchymal stem cells (MSCs) derived from different layers of human maxillary sinus membrane (hMSM) and evaluate their osteogenic capability.
hMSM was isolated into a monolayer using the combined method of physical separation and enzymatic digestion. The localization of MSCs in hMSM was performed by immunohistological staining and other techniques. Lamina propria layer-derived MSCs (LMSCs) and periosteum layer-derived MSCs (PMSCs) from hMSM were expanded using the explant cell culture method and identified by multilineage differentiation assays, colony formation assay, flow cytometry and so on. The biological characteristics of LMSCs and PMSCs were compared using RNA sequencing, reverse transcription and quantitative polymerase chain reaction, immunofluorescence staining, transwell assay, western blotting and so forth.
LMSCs and PMSCs from hMSMs were both CD73-, CD90- and CD105-positive, and CD34-, CD45- and HLA-DR-negative. LMSCs and PMSCs were identified as CD171/CD90 and CD171/CD90, respectively. LMSCs displayed stronger proliferation capability than PMSCs, and PMSCs presented stronger osteogenic differentiation capability than LMSCs. Moreover, PMSCs could recruit and promote osteogenic differentiation of LMSCs.
This study identified and isolated two different types of MSCs from hMSMs. Both MSCs served as good potential candidates for bone regeneration.
从人上颌窦黏膜(hMSM)的不同层中发现间充质干细胞(MSCs)的群体,并评估其成骨能力。
采用物理分离和酶消化相结合的方法将 hMSM 分离成单层。通过免疫组织化学染色和其他技术对 hMSM 中的 MSCs 进行定位。采用组织块培养法扩增 hMSM 中的固有层来源的间充质干细胞(LMSCs)和骨膜来源的间充质干细胞(PMSCs),并通过多系分化试验、集落形成试验、流式细胞术等进行鉴定。通过 RNA 测序、逆转录和实时定量 PCR、免疫荧光染色、Transwell 检测、Western blot 等方法比较 LMSCs 和 PMSCs 的生物学特性。
hMSM 中的 LMSCs 和 PMSCs 均为 CD73-、CD90-和 CD105-阳性,CD34-、CD45-和 HLA-DR-阴性。LMSCs 和 PMSCs 分别被鉴定为 CD171/CD90 和 CD171/CD90。LMSCs 的增殖能力强于 PMSCs,而 PMSCs 的成骨分化能力强于 LMSCs。此外,PMSCs 可以募集并促进 LMSCs 的成骨分化。
本研究从 hMSM 中鉴定并分离出两种不同类型的 MSCs。两种 MSCs 均是骨再生的良好候选物。