Sheppard Aaron J, Barfield Ann Marie, Barton Shane, Dong Yufeng
Department of Orthopaedic Surgery, Louisiana State University Health Shreveport, Shreveport, LA, United States.
School of Medicine, Louisiana State University Health Shreveport, Shreveport, LA, United States.
Front Bioeng Biotechnol. 2022 Feb 7;10:836764. doi: 10.3389/fbioe.2022.836764. eCollection 2022.
Although the complex mechanism by which skeletal tissue heals has been well described, the role of reactive oxygen species (ROS) in skeletal tissue regeneration is less understood. It has been widely recognized that a high level of ROS is cytotoxic and inhibits normal cellular processes. However, with more recent discoveries, it is evident that ROS also play an important, positive role in skeletal tissue repair, specifically fracture healing. Thus, dampening ROS levels can potentially inhibit normal healing. On the same note, pathologically high levels of ROS cause a sharp decline in osteogenesis and promote nonunion in fracture repair. This delicate balance complicates the efforts of therapeutic and engineering approaches that aim to modulate ROS for improved tissue healing. The physiologic role of ROS is dependent on a multitude of factors, and it is important for future efforts to consider these complexities. This review first discusses how ROS influences vital signaling pathways involved in the fracture healing response, including how they affect angiogenesis and osteogenic differentiation. The latter half glances at the current approaches to control ROS for improved skeletal tissue healing, including medicinal approaches, cellular engineering, and enhanced tissue scaffolds. This review aims to provide a nuanced view of the effects of ROS on bone fracture healing which will inspire novel techniques to optimize the redox environment for skeletal tissue regeneration.
尽管骨骼组织愈合的复杂机制已得到充分描述,但活性氧(ROS)在骨骼组织再生中的作用仍鲜为人知。人们普遍认为,高水平的ROS具有细胞毒性,并会抑制正常的细胞过程。然而,随着最近的发现,很明显ROS在骨骼组织修复,特别是骨折愈合中也发挥着重要的积极作用。因此,降低ROS水平可能会抑制正常愈合。同样,病理上高水平的ROS会导致成骨急剧下降,并促进骨折修复中的骨不连。这种微妙的平衡使旨在调节ROS以改善组织愈合的治疗和工程方法变得复杂。ROS的生理作用取决于多种因素,未来的研究考虑这些复杂性很重要。本综述首先讨论ROS如何影响骨折愈合反应中涉及的重要信号通路,包括它们如何影响血管生成和成骨分化。后半部分简要介绍了目前为改善骨骼组织愈合而控制ROS的方法,包括药物方法、细胞工程和增强组织支架。本综述旨在提供关于ROS对骨折愈合影响的细致观点,这将激发新的技术来优化骨骼组织再生的氧化还原环境。