Liu Ming-Che, Chen Wei-Hong, Wu Ling-Chiao, Hsu Wei-Che, Lo Wen-Cheng, Yeh Shauh-Der, Wang Ming-Fu, Zeng Rong, Deng Win-Ping
1 College of Oral Medicine, Taipei Medical University , Taipei, Taiwan, Republic of China .
Tissue Eng Part C Methods. 2014 Jan;20(1):1-10. doi: 10.1089/ten.TEC.2013.0048. Epub 2013 Jul 13.
Low-back pain caused by intervertebral disc degeneration could be recovered by the regeneration of the nucleus pulposus (NP). This study aimed to establish a chondrogenic recovery model with promising a human NP (hNP) cell line, an immortalized hNP (ihNP), which could be a screening platform to identify regenerative drugs. The ihNP cells were created from primary human NP cells transfected with a retroviral vector-driven HPV16 E6/E7. Growth properties and characteristics of ihNP were evaluated by comparing with parental NP cells. Successful immortalization of ihNP cells stably expressed HPV 16 E6/E7 mRNA. The doubling time of ihNP was shortened to 53.16±2.63 h compared with parental hNP-P1. Cell cycle regulators, including p53, p21, and pRB were downregulated compared to parental hNP-P1. The in vivo neoplastic forming assay also demonstrated that the ihNP was nontumorigenic. After 25 generations of cell cultures, the ihNP cells, yet stably expressed chondrogenic genes, including (SOX9), type II collagen (Col II), aggrecan, decorin, biglycan, and versican. Higher expressions of chondrogenic proteins, including Col II, phosphorylated SOX9 (p-SOX9), and CD44 were also determined. Under the stressful inflammatory conditions induced by lipopolysaccharides (LPS), the regenerative and anti-inflammatory potentials of ihNP in two-dimensional culture with the presence of platelet-rich plasma (PRP) were evaluated by reverse transcriptase polymerase chain reaction. PRP showed significant effects on restoring diminished chondrogenic markers and deleterious inflammatory responses induced by LPS in ihNP. The therapeutic potentials of ihNP in three-dimensional neocartilage model could also be exerted by PRP using histological evaluation and immunological staining. Hence, the established ihNP cells can provide a chondrogenic recovery model as a regenerative drug screening tool for further regenerative drug discovery and development.
椎间盘退变引起的下腰痛可通过髓核(NP)再生得以恢复。本研究旨在利用永生化人NP(ihNP)细胞系建立一种具有前景的软骨生成恢复模型,该细胞系可作为筛选再生药物的平台。ihNP细胞由用逆转录病毒载体驱动的HPV16 E6/E7转染的原代人NP细胞产生。通过与亲代NP细胞比较来评估ihNP的生长特性和特征。ihNP细胞成功永生化并稳定表达HPV 16 E6/E7 mRNA。与亲代hNP-P1相比,ihNP的倍增时间缩短至53.16±2.63小时。与亲代hNP-P1相比,包括p53、p21和pRB在内的细胞周期调节因子下调。体内肿瘤形成试验也表明ihNP无致瘤性。经过25代细胞培养后,ihNP细胞仍稳定表达软骨生成基因,包括(SOX9)、II型胶原蛋白(Col II)、聚集蛋白聚糖、核心蛋白聚糖、双糖链蛋白聚糖和多功能蛋白聚糖。还测定了包括Col II、磷酸化SOX9(p-SOX9)和CD44在内的软骨生成蛋白的更高表达。在脂多糖(LPS)诱导的应激性炎症条件下,通过逆转录聚合酶链反应评估了ihNP在富含血小板血浆(PRP)存在的二维培养中的再生和抗炎潜力。PRP对恢复ihNP中LPS诱导的软骨生成标志物减少和有害炎症反应具有显著作用。使用组织学评估和免疫染色,PRP也可在三维新软骨模型中发挥ihNP的治疗潜力。因此,所建立的ihNP细胞可提供一种软骨生成恢复模型,作为进一步发现和开发再生药物的再生药物筛选工具。