Department of Orthopedic Surgery, Anhui Provincial Hospital, Hefei, Anhui, China.
Department of Orthopedic Surgery, Louisiana State University Health Sciences Center, Shreveport, LA, USA.
Sci Rep. 2017 Aug 11;7(1):7982. doi: 10.1038/s41598-017-08804-2.
To determine whether cell sheets generated with long-term passaged (P10) aging human mesenchymal stromal cells (MSCs) could be used for bone tissue regeneration as tissue engineered periosteum in a femoral allograft mouse model similar to fresh passaged (P3) young MSCs. At 3 weeks after transplantation of MSC sheets, results showed more bony callus formed between allograft and host bone ends in both young P3 MSC and aged P10 MSC sheet-wrapped groups when compared to allograft alone. At 6 weeks, while both MSC sheet-wrapped allografts showed more bony callus formation when compared to allograft alone groups, the bony callus size in aged P10 MSC sheet groups was significantly less than young P3 MSC sheet groups. Biomechanical testing confirmed that P3 MSC sheet-grafted femurs had the highest biomechanical strength in the three groups. Histology sections showed that the area of the chondriod callus in the aged P10 MSC sheet groups was significantly larger than in P3 MSC sheet groups. Finally, a significant increase of chondro-osteoclast activity was observed in the P3 MSC sheet-grafted femur. Our data demonstrates that extensive long-term culture-induced MSC aging impaired their osteogenic ability and subsequent bony callus formation, and could be used to induce cartilaginous callus formation.
为了确定经过长期传代(P10)的衰老人类间充质基质细胞(MSCs)生成的细胞片是否可以像新鲜传代(P3)的年轻 MSCs 一样,作为组织工程化的骨膜用于同种异体股骨移植小鼠模型中的骨组织再生。在移植 MSC 片 3 周后,结果显示与单纯同种异体相比,年轻 P3 MSC 和衰老 P10 MSC 片包裹组的同种异体和宿主骨端之间形成了更多的骨痂。在 6 周时,虽然与单纯同种异体组相比,两种 MSC 片包裹的同种异体都形成了更多的骨痂,但衰老 P10 MSC 片组的骨痂大小明显小于年轻 P3 MSC 片组。生物力学测试证实,P3 MSC 片移植的股骨在三组中具有最高的生物力学强度。组织学切片显示,衰老 P10 MSC 片组的软骨样骨痂面积明显大于 P3 MSC 片组。最后,在 P3 MSC 片移植的股骨中观察到软骨破骨细胞活性显著增加。我们的数据表明,广泛的长期培养诱导的 MSC 衰老损害了它们的成骨能力和随后的骨痂形成能力,并可用于诱导软骨样骨痂形成。