Center for Musculoskeletal Research, University of Rochester, Rochester, NY 14624, United States of America.
Center for Musculoskeletal Research, University of Rochester, Rochester, NY 14624, United States of America; Department of Biomedical Engineering, University of Rochester, Rochester, NY 14624, United States of America.
Bone. 2020 Aug;137:115391. doi: 10.1016/j.bone.2020.115391. Epub 2020 Apr 28.
Bone fracture is accompanied by trauma, mechanical stresses, and inflammation - conditions known to induce the mitochondrial permeability transition. This phenomenon occurs due to opening of the mitochondrial permeability transition pore (MPTP) promoted by cyclophilin D (CypD). MPTP opening leads to more inflammation, cell death and potentially to disruption of fracture repair. Here we performed a proof-of-concept study and tested a hypothesis that protecting mitochondria from MPTP opening via inhibition of CypD improves fracture repair. First, our in vitro experiments indicated pro-osteogenic and anti-inflammatory effects in osteoprogenitors upon CypD knock-out or pharmacological inhibition. Using a bone fracture model in mice, we observed that bone formation and biomechanical properties of repaired bones were significantly increased in CypD knock-out mice or wild type mice treated with a CypD inhibitor, NIM811, when compared to controls. These effects were evident in young male but not female mice, however in older (13 month-old) female mice bone formation was also increased during fracture repair. In contrast to global CypD knock-out, mesenchymal lineage-specific (Prx1-Cre driven) CypD deletion did not result in improved fracture repair. Our findings implicate MPTP in bone fracture and suggest systemic CypD inhibition as a modality to promote fracture repair.
骨折伴随着创伤、机械应力和炎症——已知这些条件会诱发线粒体通透性转换。这种现象的发生是由于亲环素 D (CypD) 促进了线粒体通透性转换孔 (MPTP) 的开放。MPTP 的开放导致更多的炎症、细胞死亡,并可能破坏骨折修复。在这里,我们进行了一项概念验证研究,测试了一个假设,即通过抑制 CypD 来保护线粒体免受 MPTP 开放的影响,可以改善骨折修复。首先,我们的体外实验表明,CypD 敲除或药物抑制可促进成骨前体细胞的成骨和抗炎作用。在小鼠的骨骨折模型中,我们观察到与对照组相比,CypD 敲除小鼠或用 CypD 抑制剂 NIM811 治疗的野生型小鼠的骨形成和修复骨的生物力学性能显著增加。这些影响在年轻雄性小鼠中明显,但在老年(13 月龄)雌性小鼠中,骨折修复过程中也增加了骨形成。与全局 CypD 敲除不同,间充质谱系特异性(Prx1-Cre 驱动)CypD 缺失不会导致骨折修复的改善。我们的研究结果表明 MPTP 在骨骨折中起作用,并表明系统 CypD 抑制是促进骨折修复的一种方式。