Department of Orthodontics, School of Stomatology, Capital Medical University, Beijing 100050, China.
Biomaterials & Tissue Engineering Division, Department of Advanced Oral Sciences and Therapeutics, University of Maryland Dental School, Baltimore, MD 21201, USA.
Int J Mol Sci. 2021 Nov 16;22(22):12363. doi: 10.3390/ijms222212363.
(1) Background: Vascularization remains a critical challenge in bone tissue engineering. The objective of this study was to prevascularize calcium phosphate cement (CPC) scaffold by co-culturing human periodontal ligament stem cells (hPDLSCs) and human umbilical vein endothelial cells (hUVECs) for the first time; (2) Methods: hPDLSCs and/or hUVECs were seeded on CPC scaffolds. Three groups were tested: (i) hUVEC group (hUVECs on CPC); (ii) hPDLSC group (hPDLSCs on CPC); (iii) co-culture group (hPDLSCs + hUVECs on CPC). Osteogenic differentiation, bone mineral synthesis, and microcapillary-like structures were evaluated; (3) Results: Angiogenic gene expressions of co-culture group were 6-9 fold those of monoculture. vWF expression of co-culture group was 3 times lower than hUVEC-monoculture group. Osteogenic expressions of co-culture group were 2-3 folds those of the hPDLSC-monoculture group. ALP activity and bone mineral synthesis of co-culture were much higher than hPDLSC-monoculture group. Co-culture group formed capillary-like structures at 14-21 days. Vessel length and junction numbers increased with time; (4) Conclusions: The hUVECs + hPDLSCs co-culture on CPC scaffold achieved excellent osteogenic and angiogenic capability in vitro for the first time, generating prevascularized networks. The hPDLSCs + hUVECs co-culture had much better osteogenesis and angiogenesis than monoculture. CPC scaffolds prevacularized via hPDLSCs + hUVECs are promising for dental, craniofacial, and orthopedic applications.
(1)背景:血管化仍然是骨组织工程中的一个关键挑战。本研究的目的是首次通过共培养人牙周膜干细胞(hPDLSCs)和人脐静脉内皮细胞(hUVECs)来预血管化磷酸钙水泥(CPC)支架;(2)方法:将 hPDLSCs 和/或 hUVECs 接种在 CPC 支架上。测试了三组:(i)hUVEC 组(CPC 上的 hUVECs);(ii)hPDLSC 组(CPC 上的 hPDLSCs);(iii)共培养组(CPC 上的 hPDLSCs + hUVECs)。评估成骨分化、骨矿物质合成和微毛细血管样结构;(3)结果:共培养组的血管生成基因表达是单核培养组的 6-9 倍。共培养组的 vWF 表达比 hUVEC 单核培养组低 3 倍。共培养组的成骨表达是 hPDLSC 单核培养组的 2-3 倍。共培养组的 ALP 活性和骨矿物质合成明显高于 hPDLSC 单核培养组。共培养组在 14-21 天形成毛细血管样结构。血管长度和连接数随时间增加;(4)结论:hUVECs + hPDLSCs 共培养在 CPC 支架上首次实现了体外优异的成骨和成血管能力,形成了预血管化网络。hPDLSCs + hUVECs 共培养的成骨和血管生成能力明显优于单核培养。通过 hPDLSCs + hUVECs 预血管化的 CPC 支架有望用于口腔、颅面和骨科应用。