Kim Ha Na, Shin Jin Young, Kim Dong Yeol, Lee Ji Eun, Lee Phil Hyu
Department of Neurology, Yonsei University College of Medicine, Seoul, Korea.
Severance Biomedical Science Institute, Yonsei University, Seoul, Korea.
J Tissue Eng. 2021 Mar 30;12:20417314211004816. doi: 10.1177/20417314211004816. eCollection 2021 Jan-Dec.
Mesenchymal stem cells (MSCs) are a potential source of cell-based disease-modifying therapy in Parkinsonian disorders. A promising approach to develop in vitro culture methods that mimic natural MSC niche is cell priming. Uric acid (UA), a powerful antioxidant, scavenges reactive oxygen species, which has a vital role in maintaining self-renewal and differentiation potential of MSCs. Here, we demonstrated that UA treatment in naïve MSCs stimulated glycolysis and upregulated transcriptional factors responsible for regulation of stemness, leading to increase in the expression levels of osteogenesis-, adipogenesis-, and chondrogenesis-related genes. UA-primed MSCs had more enhanced neuroprotective properties in cellular and parkinsonian animal models compared to naïve MSCs by inhibiting apoptotic signaling pathways. Additionally, expression of miR-137 and miR-145 was decreased in UA-treated MSCs. Our data demonstrated that priming MSCs with UA augment neuroprotective properties through enhanced self-renewal and differentiation potential, suggesting a practical strategy for improving the application of MSCs in parkinsonian disorders.
间充质干细胞(MSCs)是帕金森氏症中基于细胞的疾病修饰疗法的潜在细胞来源。开发模拟天然MSC生态位的体外培养方法的一种有前景的方法是细胞预刺激。尿酸(UA)是一种强大的抗氧化剂,可清除活性氧,这在维持MSCs的自我更新和分化潜能中起着至关重要的作用。在这里,我们证明了对未处理的MSCs进行UA处理会刺激糖酵解并上调负责干性调节的转录因子,从而导致成骨、成脂和软骨生成相关基因的表达水平增加。与未处理的MSCs相比,经UA预刺激的MSCs通过抑制凋亡信号通路在细胞和帕金森氏症动物模型中具有更强的神经保护特性。此外,在经UA处理的MSCs中,miR-137和miR-145的表达降低。我们的数据表明,用UA预刺激MSCs可通过增强自我更新和分化潜能来增强神经保护特性,这为改善MSCs在帕金森氏症中的应用提供了一种实用策略。