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首页> 外文期刊>RSC Advances >Human periodontal ligament stem cells on calcium phosphate scaffold delivering platelet lysate to enhance bone regeneration
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Human periodontal ligament stem cells on calcium phosphate scaffold delivering platelet lysate to enhance bone regeneration

机译:人类牙周韧带干细胞在磷酸钙支架上输送血小板裂解物,增强骨再生

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Human periodontal ligament stem cells (hPDLSCs) are promising for tissue engineering applications but have received relatively little attention. Human platelet lysate (HPL) contains a cocktail of growth factors. To date, there has been no report on hPDLSC seeding on scaffolds loaded with HPL. The objectives of this study were to develop a calcium phosphate cement (CPC)–chitosan scaffold loaded with HPL and investigate their effects on hPDLSC viability, osteogenic differentiation and bone mineral synthesis for the first time. hPDLSCs were harvested from extracted human teeth. Scaffolds were formed by mixing CPC powder with a chitosan solution containing HPL. Four groups were tested: CPC–chitosan + 0% HPL (control); CPC–chitosan + 2.66% HPL; CPC–chitosan + 5.31% HPL; CPC–chitosan + 10.63% HPL. Scanning electron microscopy, live/dead staining, CCK-8, qRT-PCR, alkaline phosphatase and bone minerals assay were applied for hPDLSCs on scaffolds. hPDLSCs attached well on CPC–chitosan scaffold. Adding 10.63% HPL into CPC increased cell proliferation and viability ( p < 0.05). ALP gene expression of CPC–chitosan + 10.63% HPL was 7-fold that of 0% HPL at 14 days. Runx2, OSX and Coll1 of CPC–chitosan + 10.63% HPL was 2–3 folds those at 0% HPL ( p < 0.05). ALP activity of CPC–chitosan + 10.63% HPL was 2-fold that at 0% HPL ( p < 0.05). Bone minerals synthesized by hPDLSCs for CPC–chitosan + 10.63% HPL was 3-fold that at 0% HPL ( p < 0.05). This study showed that CPC–chitosan scaffold was a promising carrier for HPL delivery, and HPL in CPC exerted excellent promoting effects on hPDLSCs for bone tissue engineering for the first time. The novel hPDLSC–CPC–chitosan–HPL construct has great potential for orthopedic, dental and maxillofacial regenerative applications.
机译:人类牙周韧带干细胞(HPDLSCs)对组织工程应用很有前途,但受到相对较少的关注。人血小板裂解物(HPL)含有生长因子的鸡尾酒。迄今为止,没有关于加载HPL的支架上的HPDLSC播种报告。本研究的目的是开发磷酸钙水泥(CPC) - 载有HPL的支架,并研究其对HPDLSC活力,骨质发生分化和骨矿物合成的影响。 HPDLSC从提取的人牙收获。通过将CPC粉末与含有HPL的壳聚糖溶液混合来形成支架。测试四组:CPC-Chitosan + 0%HPL(对照); CPC-Chitosan + 2.66%HPL; CPC-Chitosan + 5.31%HPL; CPC-Chitosan + 10.63%HPL。扫描电子显微镜,Live / Dead染色,CCK-8,QRT-PCR,碱性磷酸酶和骨矿物质测定用于支架上的HPDLSCs。 HPDLSCS在CPC-Chitosan脚手架上附有良好。将10.63%的HPL加入CPC增加的细胞增殖和活力(P <0.05)。 CPC-壳聚糖+ 10.63%HPL的ALP基因表达为0%HPL在14天内的7倍。 CPC-Chitosan + 10.63%HPL的Runx2,OSX和Coll1为2-3倍,0%HPL(P <0.05)。 CPC-壳聚糖的ALP活性+ 10.63%HPL为0%HPL的2倍(P <0.05)。由HPDLSCS用于CPC-壳聚糖+ 10.63%HPL合成的骨矿物为0%HPL的3倍(P <0.05)。该研究表明,CPC-Chitosan支架是HPL递送的有希望的载体,并且CPC中的HPL在第一次对骨组织工程的HPDLSC施加优异的促进作用。新型HPDLSC-CPC-CHITOSAN-HPL构建体具有巨大的骨科,牙科和颌面再生应用的潜力。

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