Stem Cell Research Centre, Government Stanley Hospital, Chennai, Tamilnadu, 600001, India.
Karur Medical College, Karur, Tamilnadu, India.
Biotechnol Lett. 2020 Jul;42(7):1287-1304. doi: 10.1007/s10529-020-02898-x. Epub 2020 May 5.
Mesenchymal Stem Cells (MSCs), regardless of the tissue sources, are considered as excellent candidates for cellular therapy as they are immune-privileged cells containing a multitude of therapeutic functions that aid in tissue regeneration and repair. For the effective application of these cells in cell therapy, it is important to understand and characterize their biological functions.
The present study attempts to characterize the variations in multipotent function such as cell surface antigen levels, proliferation, differentiation and stemness (pluripotency) potential of MSCs isolated from foetal [wharton's jelly (WJ), foetal and maternal side of placenta (PF and PM)] and adult tissue sources [bone marrow (BM) and adipose tissue (AT)] using gene expression by real time PCR (qRT-PCR).
Amongst the different tissue sources, PM, PF and AT-MSCs exhibited significant increase (p < 0.001, p < 0.001 and p < 0.01 respectively) in CD 73 expression and therefore could have a role in immunomodulation. WJ-MSCs exhibited superior proliferation potential based on growth curve, PCNA and Wnt gene expression. BM-MSCs were superior in exhibiting trilineage differentiation. Enhanced stemness potential (Oct 4 and Nanog) was observed for both BM and WJ-MSCs. In addition, BM and WJ-MSCs expressed high levels of CD 90 making them suitable in bone repair and regeneration.
Thus to conclude, out of the five different sources tested, BM an adult source and WJ-MSCs a foetal source were superior in exhibiting most of the biological functions indicating that these sources may be suitable candidates for cell repair and regeneration studies.
间充质干细胞(MSCs),无论其组织来源如何,都被认为是细胞治疗的优秀候选者,因为它们是免疫特权细胞,具有多种治疗功能,有助于组织再生和修复。为了有效地将这些细胞应用于细胞治疗,了解和表征它们的生物学功能非常重要。
本研究试图通过实时 PCR(qRT-PCR)基因表达来表征分离自胎儿[Wharton 胶(WJ)、胎盘胎儿和母体侧(PF 和 PM)]和成人组织源[骨髓(BM)和脂肪组织(AT)]的 MSCs 的多能功能(如细胞表面抗原水平、增殖、分化和干性(多能性)潜能)的变化。
在不同的组织来源中,PM、PF 和 AT-MSCs 中 CD73 的表达显著增加(p<0.001、p<0.001 和 p<0.01 分别),因此可能在免疫调节中发挥作用。WJ-MSCs 基于生长曲线、PCNA 和 Wnt 基因表达显示出优越的增殖潜力。BM-MSCs 更擅长表现出三系分化。BM 和 WJ-MSCs 的干性潜能(Oct4 和 Nanog)增强。此外,BM 和 WJ-MSCs 表达高水平的 CD90,使其适合骨修复和再生。
综上所述,在所测试的五个不同来源中,BM(成人来源)和 WJ-MSCs(胎儿来源)在表现出大多数生物学功能方面更为优越,这表明这些来源可能是细胞修复和再生研究的合适候选者。