Rogulska Olena, Vavrinova Eliska, Vackova Irena, Havelkova Jarmila, Gotvaldova Klara, Abaffy Pavel, Kubinova Sarka, Sima Michal, Rossner Pavel, Bacakova Lucie, Jendelova Pavla, Smolkova Katarina, Petrenko Yuriy
Department of Neuroregeneration, Institute of Experimental Medicine of the Czech Academy of Sciences, Prague, Czech Republic.
Laboratory of Biomaterials and Tissue Engineering, Institute of Physiology of the Czech Academy of Sciences, Prague, Czech Republic.
Stem Cell Res Ther. 2025 Apr 20;16(1):199. doi: 10.1186/s13287-025-04309-2.
Cytokine licensing with pro-inflammatory molecules, such as tumour necrosis factor-alpha (TNF-α) and interferon-gamma (IFN-γ), has emerged as a promising strategy to enhance the therapeutic potential of multipotent mesenchymal stromal cells (MSCs). While licensing has demonstrated benefits for immunomodulation, its effects on other key MSC functions, including differentiation and paracrine activity, remain incompletely explored. In this study, we evaluated the transcriptomic, metabolomic, and functional changes induced by short-term TNF-α/IFN-γ priming of Wharton's jelly-derived MSCs (WJ-MSCs).
WJ-MSCs were expanded and exposed to TNF-α and IFN-γ (10 ng/ml each) for 24 h. Transcriptomic analysis was performed using RNA sequencing to identify differentially expressed genes related to immune modulation and lineage commitment. Metabolomic profiling was conducted using high-resolution mass spectrometry to assess changes in metabolic pathways. Functional assays evaluated the effects of cytokine priming on induced differentiation and growth factor secretion.
Cytokine licensing induced notable alterations in gene expression, upregulating pathways linked to immune response, inflammation, and cytokine signalling. However, short-term cytokine treatment significantly attenuated the osteogenic and adipogenic differentiation of MSCs, as evidenced by the reduced expression of RUNX2, ALP, CEBPA, and PPARG. The priming had a negligible effect on EGF, FGF-2, HGF, LIF, and SCF secretion. The production of VEGF-A and VEGF-C was elevated, although the levels remained low. Metabolomic analysis revealed enhanced kynurenine pathway activity, indicative of increased tryptophan catabolism, accompanied by elevated levels of fatty acids and polyamines.
Our findings demonstrate that TNF-α/IFN-γ priming reprograms WJ-MSCs by enhancing their immunomodulatory capacity at the expense of differentiation potential. These results highlight the need for tailored strategies to optimize MSC functionality for specific clinical applications.
用促炎分子如肿瘤坏死因子-α(TNF-α)和干扰素-γ(IFN-γ)进行细胞因子许可已成为增强多能间充质基质细胞(MSC)治疗潜力的一种有前景的策略。虽然许可已证明对免疫调节有益,但其对MSC其他关键功能(包括分化和旁分泌活性)的影响仍未得到充分探索。在本研究中,我们评估了短期TNF-α/IFN-γ预处理对来自脐带华通氏胶的间充质基质细胞(WJ-MSC)的转录组学、代谢组学和功能变化。
扩增WJ-MSC并使其暴露于TNF-α和IFN-γ(各10 ng/ml)24小时。使用RNA测序进行转录组分析,以鉴定与免疫调节和谱系定向相关的差异表达基因。使用高分辨率质谱进行代谢组分析,以评估代谢途径的变化。功能测定评估细胞因子预处理对诱导分化和生长因子分泌的影响。
细胞因子许可诱导了基因表达的显著改变,上调了与免疫反应、炎症和细胞因子信号传导相关的途径。然而,短期细胞因子处理显著减弱了MSC的成骨和成脂分化,RUNX2、碱性磷酸酶(ALP)、CCAAT/增强子结合蛋白α(CEBPA)和过氧化物酶体增殖物激活受体γ(PPARG)表达降低证明了这一点。预处理对表皮生长因子(EGF)、成纤维细胞生长因子-2(FGF-2)、肝细胞生长因子(HGF)、白血病抑制因子(LIF)和干细胞因子(SCF)的分泌影响可忽略不计。血管内皮生长因子-A(VEGF-A)和血管内皮生长因子-C(VEGF-C)的产生增加,尽管水平仍然较低。代谢组分析显示犬尿氨酸途径活性增强,表明色氨酸分解代谢增加,同时脂肪酸和多胺水平升高。
我们的研究结果表明,TNF-α/IFN-γ预处理通过增强WJ-MSC的免疫调节能力而以分化潜能为代价对其进行重编程。这些结果凸显了需要定制策略来优化MSC功能以用于特定临床应用。