Department of Veterinary Physiology and Pharmacology, College of Veterinary Medicine and Biomedical Sciences, Texas A&M University, College Station, TX, USA.
DoD-VA Extremity Trauma and Amputation Center of Excellence, Bethesda, MD, USA.
J Bone Miner Res. 2022 Feb;37(2):312-322. doi: 10.1002/jbmr.4470. Epub 2021 Dec 7.
Amputation of the mouse digit tip results in blastema-mediated regeneration. In this model, new bone regenerates de novo to lengthen the amputated stump bone, resulting in a functional replacement of the terminal phalangeal element along with associated non-skeletal tissues. Physiological examples of bone repair, such as distraction osteogenesis and fracture repair, are well known to require mechanical loading. However, the role of mechanical loading during mammalian digit tip regeneration is unknown. In this study, we demonstrate that reducing mechanical loading inhibits blastema formation by attenuating bone resorption and wound closure, resulting in the complete inhibition of digit regeneration. Mechanical unloading effects on wound healing and regeneration are completely reversible when mechanical loading is restored. Mechanical unloading after blastema formation results in a reduced rate of de novo bone formation, demonstrating mechanical load dependence of the bone regenerative response. Moreover, enhancing the wound-healing response of mechanically unloaded digits with the cyanoacrylate tissue adhesive Dermabond improves wound closure and partially rescues digit tip regeneration. Taken together, these results demonstrate that mammalian digit tip regeneration is mechanical load-dependent. Given that human fingertip regeneration shares many characteristics with the mouse digit tip, these results identify mechanical load as a previously unappreciated requirement for de novo bone regeneration in humans. © 2021 American Society for Bone and Mineral Research (ASBMR).
鼠趾指尖切除会导致芽基介导的再生。在这个模型中,新骨会重新生成,以延长被切断的残端骨,从而功能性地替代末端指骨的元素以及相关的非骨骼组织。人们熟知的生理骨修复的例子,如牵张成骨和骨折修复,都需要机械加载。然而,机械加载在哺乳动物趾尖再生中的作用尚不清楚。在这项研究中,我们证明减少机械加载通过减弱骨吸收和伤口闭合来抑制芽基形成,从而完全抑制趾再生。当恢复机械加载时,机械卸载对伤口愈合和再生的影响是完全可逆的。在芽基形成后进行机械卸载会导致新骨形成的速度降低,这表明骨再生反应对机械负载有依赖性。此外,用氰基丙烯酸酯组织粘合剂 Dermabond 增强机械卸载的手指的伤口愈合反应,可改善伤口闭合,并部分挽救指尖再生。总之,这些结果表明,哺乳动物趾尖再生依赖于机械负载。鉴于人类指尖再生与鼠趾指尖有许多共同特征,这些结果表明机械负载是人类新骨再生的一个以前未被认识到的要求。© 2021 美国骨骼矿物质研究协会(ASBMR)。