Department of Rehabilitation Medicine, Keio University School of Medicine, Shinjuku City, Tokyo 160-8582, Japan.
Department of Rehabilitation Medicine, Kyorin University School of Medicine, Mitaka City, Tokyo 181-8611, Japan.
Cells. 2022 Feb 16;11(4):685. doi: 10.3390/cells11040685.
Stem cell medicine has led to functional recovery in the acute-to-subacute phase of spinal cord injury (SCI), but not yet in the chronic phase, during which various molecular mechanisms drastically remodel the tissue and render it treatment-resistant. Researchers are attempting to identify effective combinatorial treatments that can overcome the refractory state of the chronically injured spinal cord. Regenerative rehabilitation, combinatorial treatment with regenerative medicine that aims to elicit synergistic effects, is being developed. Rehabilitation upon SCI in preclinical studies has recently attracted more attention because it is safe, induces neuronal plasticity involving transplanted stem cells and sensorimotor circuits, and is routinely implemented in human clinics. However, regenerative rehabilitation has not been extensively reviewed, and only a few reviews have focused on the use of physical medicine modalities for rehabilitative purposes, which might be more important in the chronic phase. Here, we summarize regenerative rehabilitation studies according to the effector, site, and mechanism. Specifically, we describe effects on transplanted cells, microstructures at and distant from the lesion, and molecular changes. To establish a treatment regimen that induces robust functional recovery upon chronic SCI, further investigations are required of combinatorial treatments incorporating stem cell therapy, regenerative rehabilitation, and medication.
干细胞医学已在脊髓损伤(SCI)的急性至亚急性期导致功能恢复,但在慢性期尚未实现,在此期间,各种分子机制剧烈重塑组织,使其对治疗产生抗性。研究人员正在尝试确定有效的组合治疗方法,以克服慢性损伤脊髓的难治状态。旨在产生协同作用的再生医学与再生康复的组合治疗正在开发中。最近,SCI 后的康复在临床前研究中引起了更多关注,因为它是安全的,可诱导涉及移植干细胞和感觉运动回路的神经元可塑性,并且在人体临床中常规进行。然而,再生康复尚未得到广泛审查,只有少数综述关注了物理医学模式用于康复目的,这在慢性期可能更为重要。在这里,我们根据效应器、部位和机制对再生康复研究进行了总结。具体来说,我们描述了对移植细胞、损伤部位和远处的微结构以及分子变化的影响。为了建立一种在慢性 SCI 后能引起强大功能恢复的治疗方案,需要进一步研究将干细胞治疗、再生康复和药物治疗相结合的组合治疗方法。