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PLA-Based Mineral-Doped Scaffolds Seeded with Human Periapical Cyst-Derived MSCs: A Promising Tool for Regenerative Healing in Dentistry

机译:基于PLA的矿物掺杂支架植入人根尖囊肿衍生的MSC:牙科修复再生的有前途的工具

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摘要

Human periapical cyst mesenchymal stem cells (hPCy-MSCs) are a newly discovered cell population innovatively collected from inflammatory periapical cysts. The use of this biological waste guarantees a source of stem cells without any impact on the surrounding healthy tissues, presenting a valuable potential in tissue engineering and regenerative medicine applications. In the present study, hPCy-MSCs were collected, isolated, and seeded on three experimental mineral-doped porous scaffolds produced by the thermally-induced phase-separation (TIPS) technique. Mineral-doped scaffolds, composed of polylactic acid (PLA), dicalcium phosphate dihydrate (DCPD), and/or hydraulic calcium silicate (CaSi), were produced by TIPS (PLA-10CaSi, PLA-5CaSi-5DCPD, PLA-10CaSi-10DCPD). Micro-CT analysis evaluated scaffolds micromorphology. Collected hPCy-MSCs, characterized by cytofluorimetry, were seeded on the scaffolds and tested for cell proliferation, cells viability, and gene expression for osteogenic and odontogenic differentiation (DMP-1, OSC, RUNX-2, HPRT). Micro-CT revealed an interconnected highly porous structure for all the scaffolds, similar total porosity with 99% open pores. Pore wall thickness increased with the percentage of CaSi and DCPD. Cells seeded on mineral-doped scaffolds showed a superior proliferation compared to pure PLA scaffolds (control), particularly on PLA-10CaSi-10DCPD at day 12. A higher number of non-viable (red stained) cells was observable on PLA scaffolds at days 14 and 21. DMP-1 expression increased in hPCy-MSCs cultured on all mineral-doped scaffolds, in particular on PLA-5CaSi-5DCPD and PLA-10CaSi-10DCPD. In conclusion, the innovative combination of experimental scaffolds colonized with autologous stem cells from periapical cyst represent a promising strategy for regenerative healing of periapical and alveolar bone.
机译:人根尖周囊间充质干细胞(hPCy-MSCs)是新发现的从炎性根尖周囊肿中创新收集的细胞群。这种生物废物的使用保证了干细胞的来源,而不会影响周围的健康组织,这在组织工程和再生医学应用中具有宝贵的潜力。在本研究中,hPCy-MSCs被收集,分离并接种在通过热诱导相分离(TIPS)技术生产的三个实验性矿物掺杂多孔支架上。通过TIPS(PLA-10CaSi,PLA-5CaSi-5DCPD,PLA-10CaSi-10DCPD)生产了由聚乳酸(PLA),二水合磷酸二钙(DCPD)和/或水硬硅酸钙(CaSi)组成的矿物掺杂支架。 )。 Micro-CT分析评估了支架的微观形态。将收集的以细胞荧光法为特征的hPCy-MSCs接种在支架上,并测试其细胞增殖,细胞活力以及成骨和成牙本质分化的基因表达(DMP-1,OSC,RUNX-2,HPRT)。 Micro-CT显示所有支架的相互连接的高度多孔结构,总孔隙率相似,开孔率为99%。孔壁厚度随CaSi和DCPD的百分比而增加。与纯PLA支架(对照)相比,接种在掺有矿物的支架上的细胞显示出优异的增殖,尤其是在第12天在PLA-10CaSi-10DCPD上。在第3天,在PLA支架上观察到了更多的无活力(红色染色)细胞分别参见图14和21。在所有掺矿支架上,特别是在PLA-5CaSi-5DCPD和PLA-10CaSi-10DCPD上培养的hPCy-MSC中,DMP-1表达增加。总之,创新的实验支架与来自根尖周囊肿的自体干细胞定植的组合代表了根尖周和牙槽骨再生愈合的有前途的策略。

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