Applied Biology Laboratory, College of Pharmaceutical and Biological Engineering, Shenyang University of Chemical Technology, Shenyang, Liaoning Province, China.
College of Pharmaceutical Sciences, Gannan Medical University, Ganzhou, Jiangxi Province, China.
Mol Biol Rep. 2023 Jun;50(6):5081-5089. doi: 10.1007/s11033-023-08404-6. Epub 2023 Apr 26.
With an ageing population, the incidence of bone loss and obesity are increasing. Numerous studies emphasized the multidirectional differentiation ability of mesenchymal stem cells (MSCs), and reported betaine modulated the osteogenic differentiation and adipogenic differentiation of MSCs in vitro. We wondered how betaine affected the differentiation of hAD-MSCs and hUC-MSCs.
ALP staining and alizarin red S (ARS) staining were proved 10 mM betaine significantly increased the number of ALP-positive cells and plaque calcified extracellular matrices, accompanying by the up-regulation of OPN, Runx-2 and OCN. Oil red O staining demonstrated the number and size of lipid droplets were reduced, the expression of adipogenic master genes such as PPARγ, CEBPα and FASN were down-regulated simultaneously. For further investigating the mechanism of betaine on hAD-MSCs, RNA-seq was performed in none-differentiation medium. The Gene Ontology (GO) analysis showed fat cell differentiation and bone mineralization function terms were enriched, and KEGG showed PI3K-Akt signaling pathway, cytokine-cytokine receptor interaction and ECM-receptor interaction pathways were enriched in betaine treated hAD-MSCs, demonstrated betaine had a positive inducing effect on osteogenic of hAD-MSCs in the non-differentiation medium in vitro, which is opposite to the effect on adipogenic differentiation.
Our study demonstrated that betaine promoted osteogenic and compromised adipogenic differentiation of hUC-MSCs and hAD-MSCs upon low concentration administration. PI3K-Akt signaling pathway, cytokine-cytokine receptor interaction and ECM-receptor interaction were significantly enriched under betaine-treated. We showed hAD-MSCs were more sensitive to betaine stimulation and have a better differentiation ability than hUC-MSCs. Our results contributed to the exploration of betaine as an aiding agent for MSCs therapy.
随着人口老龄化,骨质流失和肥胖的发病率正在增加。许多研究强调了间充质干细胞(MSCs)的多向分化能力,并报道甜菜碱在体外调节 MSCs 的成骨分化和脂肪分化。我们想知道甜菜碱如何影响 hAD-MSCs 和 hUC-MSCs 的分化。
碱性磷酸酶(ALP)染色和茜素红 S(ARS)染色证明,10mM 甜菜碱显著增加了 ALP 阳性细胞的数量和斑块状钙化细胞外基质,同时上调了 OPN、Runx-2 和 OCN。油红 O 染色显示,脂滴的数量和大小减少,脂肪生成主基因如 PPARγ、CEBPα 和 FASN 的表达同时下调。为了进一步研究甜菜碱对 hAD-MSCs 的作用机制,在无分化培养基中进行了 RNA-seq。GO 分析表明,脂肪细胞分化和骨矿化功能术语富集,KEGG 分析表明,PI3K-Akt 信号通路、细胞因子-细胞因子受体相互作用和 ECM-受体相互作用通路在甜菜碱处理的 hAD-MSCs 中富集,表明甜菜碱在体外无分化培养基中对 hAD-MSCs 的成骨作用有正向诱导作用,这与对脂肪生成分化的作用相反。
我们的研究表明,低浓度的甜菜碱促进了 hUC-MSCs 和 hAD-MSCs 的成骨分化和脂肪生成分化。在甜菜碱处理下,PI3K-Akt 信号通路、细胞因子-细胞因子受体相互作用和 ECM-受体相互作用显著富集。我们发现 hAD-MSCs 对甜菜碱刺激更敏感,分化能力比 hUC-MSCs 更强。我们的研究结果为甜菜碱作为 MSC 治疗辅助剂的探索提供了依据。