Joshi Jahnavy Madhukar, Verma Shweta, Upadhya Raghavendra, Bhat Samatha, Seetharam Raviraja Neelavar
Manipal Centre for Biotherapeutics Research, Manipal Academy of Higher Education, Manipal, Karnataka, 576104, India.
Manipal Centre for Biotherapeutics Research, Manipal Academy of Higher Education, Manipal, Karnataka, 576104, India.
Biochem Biophys Res Commun. 2025 Sep 8;778:152391. doi: 10.1016/j.bbrc.2025.152391. Epub 2025 Jul 24.
Regenerative properties of stem cells have been an area of intensive research over the past decade. Mesenchymal Stromal Cells (MSCs), known for their immunoevasive nature, are recognized for their immunomodulatory properties and are being explored widely to treat various inflammatory diseases. MSCs are reported to have varied secretome components based on their tissue origin, and secretome is now being explored as a cell-therapy alternative. This study explores the efficiency of priming MSCs with a combination of inflammatory proteins and compares with individual protein priming. MSCs isolated from Wharton's jelly of umbilical cord were characterized by checking surface markers and multi-lineage differentiation potential. MSCs were cultured in presence of IL-1β, TNF-α and IL-17 cocktail. Following priming, WJ-MSCs exhibited elevated gene expression, with TSG-6 increasing 2-7-fold, IL-6 by 27-fold, and CCL-20 reaching up to 720-fold compared to unprimed control, while ELISA demonstrated the absence of residual inflammatory priming proteins in the MSC secretome with <2 ng/mL/5.5 × 10 cells residue in the secretome. Proteomic analysis indicated enhanced tissue regeneration related processes of primed secretome. Functionally, primed secretome was able to polarize macrophages from inflammatory M1 phenotype to anti-inflammatory M2 phenotype, wherein it showed up to 10 folds diminished angiogenic potential and ability to polarize macrophages towards M2 phenotype. This preconditioning strategy can be used to enhance the potential of MSC secretome, having various applications in targeting inflammatory diseases.
在过去十年中,干细胞的再生特性一直是深入研究的领域。间充质基质细胞(MSCs)以其免疫逃避特性而闻名,因其免疫调节特性而受到认可,并正在被广泛探索用于治疗各种炎症性疾病。据报道,MSCs根据其组织来源具有不同的分泌组成分,目前正在探索将分泌组作为一种细胞治疗替代方案。本研究探讨了用炎症蛋白组合预处理MSCs的效率,并与单个蛋白预处理进行比较。从脐带华通氏胶中分离的MSCs通过检查表面标志物和多谱系分化潜能进行表征。MSCs在IL-1β、TNF-α和IL-17混合物存在的情况下进行培养。预处理后,与未预处理的对照相比,WJ-MSCs表现出基因表达升高,TSG-6增加2-7倍,IL-6增加27倍,CCL-20达到720倍,而ELISA显示MSC分泌组中不存在残留的炎症预处理蛋白,分泌组中残留量<2 ng/mL/5.5×10个细胞。蛋白质组学分析表明预处理分泌组的组织再生相关过程增强。在功能上,预处理的分泌组能够将巨噬细胞从炎症性M1表型极化为抗炎性M2表型,其中它显示出血管生成潜能降低多达10倍,以及将巨噬细胞极化为M2表型的能力。这种预处理策略可用于增强MSC分泌组的潜能,在靶向炎症性疾病方面有各种应用。