Bone and Joint Research Group, Centre for Human Development, Stem Cells, and Regeneration, Institute of Developmental Sciences, University of Southampton, Southampton General Hospital, Southampton, United Kingdom.
FASEB J. 2019 Mar;33(3):3279-3290. doi: 10.1096/fj.201801114R. Epub 2018 Nov 7.
The current study used an ex vivo [embryonic day (E)18] chick femur defect model to examine the bone regenerative capacity of implanted 3-dimensional (3D) skeletal-endothelial cell constructs. Human bone marrow stromal cell (HBMSC) and HUVEC spheroids were implanted within a bone defect site to determine the osteogenic potential of the skeletal-endothelial cell unit. Cells were pelleted as co- or monocell spheroids and placed within 1-mm-drill defects in the mid-diaphysis of E18 chick femurs and cultured organotypically for 10 d. Micro-computed tomography analysis revealed significantly ( P = 0.0001) increased levels of bone volume (BV) and BV/tissue volume ratio in all cell-pellet groups compared with the sham defect group. The highest increase was seen in BV in femurs containing the HUVEC and HBMSC monocell constructs. Type II collagen expression was particularly pronounced within the cell spheres containing HBMSCs and HUVECs, and CD31-positive cell clusters were prominent within HUVEC-implanted defects. These studies demonstrate the importance of the 3D osteogenic-endothelial niche interaction in bone regeneration. Elucidating the component cell interactions in the osteogenic-vascular niche and the role of exogenous factors in driving these osteogenic processes will aid the development of better bone reparative strategies.-Inglis, S., Kanczler, J. M., Oreffo, R. O. C. 3D human bone marrow stromal and endothelial cell spheres promote bone healing in an osteogenic niche.
当前研究采用了一种体外 [胚胎日 (E)18] 鸡股骨缺陷模型,以研究植入的三维 (3D) 骨骼内皮细胞构建体的骨再生能力。将人骨髓基质细胞 (HBMSC) 和 HUVEC 球体植入骨缺陷部位,以确定骨骼内皮细胞单元的成骨潜力。将细胞沉淀为共或单核球体,并放置在 E18 鸡股骨骨干的 1 毫米钻孔缺陷中,进行器官培养 10 天。微计算机断层扫描分析显示,与假缺陷组相比,所有细胞球组的骨体积 (BV) 和 BV/组织体积比均显著增加 (P = 0.0001)。在含有 HUVEC 和 HBMSC 单核构建体的股骨中,BV 的增加最高。在含有 HBMSC 和 HUVEC 的细胞球内,II 型胶原蛋白表达特别明显,在 HUVEC 植入缺陷内,CD31 阳性细胞簇很明显。这些研究表明 3D 成骨内皮龛相互作用在骨再生中的重要性。阐明成骨血管龛中的细胞相互作用以及外源性因素在驱动这些成骨过程中的作用将有助于开发更好的骨修复策略。-Inglis, S., Kanczler, J. M., Oreffo, R. O. C. 3D 人骨髓基质和成血管细胞球体促进成骨龛中的骨愈合。