Center for Translational Science, Florida International University, 11350 SW Village Pkwy, Port St. Lucie, FL 34987, USA.
Robert Stempel College of Public Health and Social Work, Florida International University, 11350 SW Village Pkwy, Port St. Lucie, FL 34987, USA.
Cells. 2022 Sep 5;11(17):2765. doi: 10.3390/cells11172765.
Locomotor function after spinal cord injury (SCI) is critical for assessing recovery. Currently, available means to improve locomotor function include surgery, physical therapy rehabilitation and exoskeleton. Stem cell therapy with neural progenitor cells (NPCs) transplantation is a promising reparative strategy. Along this line, patient-specific induced pluripotent stem cells (iPSCs) are a remarkable autologous cell source, which offer many advantages including: great potential to generate isografts avoiding immunosuppression; the availability of a variety of somatic cells without ethical controversy related to embryo use; and vast differentiation. In this current work, to realize the therapeutic potential of iPSC-NPCs for the treatment of SCI, we transplanted purified iPSCs-derived NPCs into a cervical contusion SCI rat model. Our results showed that the iPSC-NPCs were able to survive and differentiate into both neurons and astrocytes and, importantly, improve forelimb locomotor function as assessed by the grooming task and horizontal ladder test. Purified iPSC-NPCs represent a promising cell type that could be further tested and developed into a clinically useful cell source for targeted cell therapy for cervical SCI patients.
脊髓损伤 (SCI) 后的运动功能对于评估恢复情况至关重要。目前,可用于改善运动功能的方法包括手术、物理治疗康复和外骨骼。神经祖细胞 (NPCs) 移植的干细胞治疗是一种很有前途的修复策略。沿着这条线,患者特异性诱导多能干细胞 (iPSCs) 是一种出色的自体细胞来源,具有许多优势,包括:具有很大的潜力产生同种异体移植物,避免免疫抑制;可获得各种体细胞,而不会涉及胚胎使用的伦理争议;以及广泛的分化能力。在本研究中,为了实现 iPSC-NPC 治疗 SCI 的治疗潜力,我们将纯化的 iPSC 衍生 NPC 移植到颈挫伤 SCI 大鼠模型中。我们的结果表明,iPSC-NPC 能够存活并分化为神经元和星形胶质细胞,重要的是,通过梳理任务和水平梯测试评估,改善了前肢运动功能。纯化的 iPSC-NPC 代表了一种很有前途的细胞类型,可以进一步测试和开发为针对颈 SCI 患者的靶向细胞治疗的临床有用细胞来源。