State Key Laboratory of Military Stomatology & National Clinical Research Center for Oral Diseases & Shaanxi Key Laboratory of Oral Diseases, Department of Periodontology, School of Stomatology, Fourth Military Medical University, China.
J Tissue Eng Regen Med. 2018 Apr;12(4):961-972. doi: 10.1002/term.2511. Epub 2017 Nov 10.
The use of stem cell-derived sheets has become increasingly common in a wide variety of biomedical applications. Although substantial evidence has demonstrated that human platelet lysate (PL) can be used for therapeutic cell expansion, either as a substitute for or as a supplement to xenogeneic fetal bovine serum (FBS), its impact on cell sheet production remains largely unexplored. In this study, we manufactured periodontal ligament stem cell (PDLSC) sheets in vitro by incubating PDLSCs in sheet-induction media supplemented with various ratios of PL and FBS, i.e. 10% PL without FBS, 7.5% PL + 2.5% FBS, 5% PL + 5% FBS, 2.5% PL + 7.5% FBS or 10% FBS without PL. Cultures with the addition of all the designed supplements led to successful cell sheet production. In addition, all the resultant cellular materials exhibited similar expression profiles of matrix-related genes and proteins, such as collagen I, fibronectin and integrin β1. Interestingly, the cell components within sheets generated by media containing both PL and FBS exhibited improved osteogenic potential. Following in vivo transplantation, all sheets supported significant new bone formation. Our data suggest that robust PDLSC sheets can be produced by applying PL as either an alternative or an adjuvant to FBS. Further examination of the relevant influences of human PL that benefit cell behaviour and matrix production will pave the way towards optimized and standardized conditions for cell sheet production.
干细胞衍生膜片在广泛的生物医学应用中越来越普遍。虽然大量证据表明,人血小板裂解液(PL)可用于治疗性细胞扩增,既可以替代也可以补充异种胎牛血清(FBS),但其对细胞片生产的影响在很大程度上仍未得到探索。在这项研究中,我们通过在补充有不同比例 PL 和 FBS 的片层诱导培养基中孵育牙周膜干细胞(PDLSCs),在体外制造牙周膜干细胞片层,即无 FBS 的 10%PL、7.5%PL+2.5%FBS、5%PL+5%FBS、2.5%PL+7.5%FBS 或无 PL 的 10%FBS。所有设计添加物的培养物都成功地产生了细胞片层。此外,所有得到的细胞材料均表现出相似的基质相关基因和蛋白质表达谱,如胶原 I、纤连蛋白和整合素β1。有趣的是,含有 PL 和 FBS 的培养基中生成的片层内的细胞成分表现出增强的成骨潜能。体内移植后,所有片层均支持显著的新骨形成。我们的数据表明,通过应用 PL 作为 FBS 的替代物或佐剂,可以产生强健的 PDLSC 片层。进一步研究 PL 对细胞行为和基质产生的有益影响,将为细胞片层生产的优化和标准化条件铺平道路。