Arora Sneha, Saha Shekhar, Roy Saheli, Das Madhurima, Jana Siddhartha S, Ta Malancha
1 Indian Institute of Science Education and Research Kolkata , Mohanpur, India .
2 Indian Association for the Cultivation of Science , Kolkata, India .
Stem Cells Dev. 2015 Sep 1;24(17):2065-77. doi: 10.1089/scd.2015.0095. Epub 2015 Jun 4.
It is the promise of regeneration and therapeutic applications that has sparked an interest in mesenchymal stem cells (MSCs). Following infusion, MSCs migrate to sites of injury or inflammation by virtue of their homing property. To exert optimal clinical benefits, systemically delivered MSCs need to migrate efficiently and in adequate numbers to pathological areas in vivo. However, underlying molecular mechanisms responsible for MSC migration are still not well understood. The Wharton's jelly (WJ) of the umbilical cord is an attractive source of MSCs for stem cell therapy because of its abundant availability and painless collection. In this study, we attempted to identify the role of nonmuscle myosin II (NMII), if any, in the migration of WJ-derived MSCs (WJ-MSCs). Expression of NMII isoforms, NMIIA, and NMIIB was observed both at RNA and protein levels in WJ-MSCs. Inhibition of NMII or its regulator ROCK, by pharmacological inhibitors, resulted in significant reduction in the migration of WJ-MSCs as confirmed by the scratch migration assay and time-lapse microscopy. Next, trying to dissect the role of each NMII isoform in migration of WJ-MSCs, we found that siRNA-mediated downregulation of NMIIA, but not NMIIB expression, led to cells failing to retract their trailing edge and losing cell-cell cohesiveness, while exhibiting a nondirectional migratory pathway. Migration, moreover, is also dependent on optimal affinity adhesion, which would allow rapid attachment and release of cells and, hence, can be influenced by extracellular matrix (ECM) and adhesion molecules. We demonstrated that inhibition of NMII and more specifically NMIIA resulted in increased gene expression of ECM and adhesion molecules, which possibly led to stronger adhesions and, hence, decreased migration. Therefore, these data suggest that NMII acts as a regulator of cell migration and adhesion in WJ-MSCs.
正是再生与治疗应用的前景激发了人们对间充质干细胞(MSC)的兴趣。输注后,MSC凭借其归巢特性迁移至损伤或炎症部位。为发挥最佳临床效益,经全身递送的MSC需要在体内高效且足量地迁移至病理区域。然而,负责MSC迁移的潜在分子机制仍未完全明晰。脐带华通氏胶(WJ)因其丰富的来源和无痛采集,是干细胞治疗中极具吸引力的MSC来源。在本研究中,我们试图确定非肌肉肌球蛋白II(NMII)在WJ来源的MSC(WJ-MSC)迁移中是否发挥作用。在WJ-MSC中,在RNA和蛋白质水平均观察到了NMII亚型NMIIA和NMIIB的表达。通过药理学抑制剂抑制NMII或其调节因子ROCK,划痕迁移试验和延时显微镜观察证实,WJ-MSC的迁移显著减少。接下来,为剖析每种NMII亚型在WJ-MSC迁移中的作用,我们发现,siRNA介导的NMIIA表达下调而非NMIIB表达下调,导致细胞无法缩回其 trailing edge并丧失细胞间黏附性,同时呈现无方向性的迁移路径。此外,迁移还依赖于最佳的亲和黏附,这将允许细胞快速附着和释放,因此可能受细胞外基质(ECM)和黏附分子的影响。我们证明,抑制NMII,更具体地说是抑制NMIIA,会导致ECM和黏附分子的基因表达增加,这可能导致更强黏附,进而减少迁移。因此,这些数据表明,NMII在WJ-MSC中充当细胞迁移和黏附的调节因子。
Stem Cells Dev. 2015-9-1
Stem Cell Res Ther. 2017-11-2
Acta Med Iran. 2018-1
Bioengineering (Basel). 2023-9-25
Cell Death Discov. 2021-10-11
Biochem Biophys Res Commun. 2018-12-20
J Matern Fetal Neonatal Med. 2019-4
PLoS One. 2013-5-14
Cell Mol Life Sci. 2012-5-8
Cytokine Growth Factor Rev. 2009-11-18
Nat Rev Mol Cell Biol. 2009-11