Maurya Dharmendra Kumar, Bandekar Mayuri, Sandur Santosh Kumar
Radiation Biology and Health Sciences Division, Bhabha Atomic Research Centre, Mumbai 400085, Maharashtra, India.
World J Stem Cells. 2022 May 26;14(5):347-361. doi: 10.4252/wjsc.v14.i5.347.
Human Wharton's jelly-derived mesenchymal stromal/stem cells (hWJ-MSCs) have gained considerable attention in their applications in cell-based therapy due to several advantages offered by them. Recently, we reported that hWJ-MSCs and their conditioned medium have significant therapeutic radioprotective potential. This finding raised an obvious question to identify unique features of hWJ-MSCs over other sources of stem cells for a better understanding of its radioprotective mechanism.
To understand the radioprotective mechanism of soluble factors secreted by hWJ-MSCs and identification of their unique genes.
Propidium iodide staining, endogenous spleen colony-forming assay, and survival study were carried out for radioprotection studies. Homeostasis-driven proliferation assay was performed for lymphocyte proliferation. Analysis of RNAseq data was performed to find the unique genes of WJ-MSCs by comparing them with bone marrow mesenchymal stem cells, embryonic stem cells, and human fibroblasts. Gene enrichment analysis and protein-protein interaction network were used for pathway analysis.
Co-culture of irradiated murine splenic lymphocytes with WJ-MSCs offered significant radioprotection to lymphocytes. WJ-MSC transplantation increased the homeostasis-driven proliferation of the lymphocytes. Neutralization of WJ-MSC conditioned medium with granulocyte-colony stimulating factor antibody abolished therapeutic radioprotection. Transcriptome analysis showed that WJ-MSCs share several common genes with bone marrow MSCs and embryonic stem cells and express high levels of unique genes such as interleukin (), , , , , , , , , and . It was also observed that WJ-MSCs preferentially modulate several cellular pathways and processes that handle the repair and regeneration of damaged tissues compared to stem cells from other sources. Cytokine-based network analysis showed that most of the radiosensitive tissues have a more complex network for the elevated cytokines.
Systemic infusion of WJ-MSC conditioned media will have significant potential for treating accidental radiation exposed victims.
人脐带华通氏胶间充质基质/干细胞(hWJ-MSCs)因其具有的多种优势,在基于细胞的治疗应用中受到了广泛关注。最近,我们报道hWJ-MSCs及其条件培养基具有显著的治疗性辐射防护潜力。这一发现引发了一个明显的问题,即确定hWJ-MSCs相对于其他干细胞来源的独特特征,以便更好地理解其辐射防护机制。
了解hWJ-MSCs分泌的可溶性因子的辐射防护机制并鉴定其独特基因。
进行碘化丙啶染色、内源性脾集落形成试验和生存研究以进行辐射防护研究。进行稳态驱动的增殖试验以检测淋巴细胞增殖。通过将WJ-MSCs与骨髓间充质干细胞、胚胎干细胞和人成纤维细胞比较,分析RNAseq数据以寻找WJ-MSCs的独特基因。使用基因富集分析和蛋白质-蛋白质相互作用网络进行通路分析。
受辐照的小鼠脾淋巴细胞与WJ-MSCs共培养对淋巴细胞具有显著的辐射防护作用。WJ-MSC移植增加了淋巴细胞的稳态驱动增殖。用粒细胞集落刺激因子抗体中和WJ-MSC条件培养基消除了治疗性辐射防护作用。转录组分析表明,WJ-MSCs与骨髓间充质干细胞和胚胎干细胞共享一些共同基因,并高表达白细胞介素()、、、、、、、、、等独特基因。还观察到,与其他来源的干细胞相比,WJ-MSCs优先调节处理受损组织修复和再生的几种细胞途径和过程。基于细胞因子的网络分析表明,大多数放射敏感组织中细胞因子升高的网络更为复杂。
全身输注WJ-MSC条件培养基在治疗意外辐射暴露受害者方面具有巨大潜力。