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首页> 外文期刊>Biomaterials >Development of an injectable, in situ crosslinkable, degradable polymeric carrier for osteogenic cell populations. Part 3. Proliferation and differentiation of encapsulated marrow stromal osteoblasts cultured on crosslinking poly(propylene fumarate).
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Development of an injectable, in situ crosslinkable, degradable polymeric carrier for osteogenic cell populations. Part 3. Proliferation and differentiation of encapsulated marrow stromal osteoblasts cultured on crosslinking poly(propylene fumarate).

机译:用于成骨细胞群体的可注射,原位可交联,可降解聚合物载体的开发。第3部分。在交联聚富马酸丙二醇酯上培养的包囊的骨髓基质成骨细胞的增殖和分化。

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This study investigated the effect of temporary encapsulation of rat marrow stromal osteoblasts in crosslinked gelatin microparticles on long-term cell proliferation and phenotypic expression for microparticles placed on crosslinking poly(propylene fumarate) (PPF) composites using N-vinyl pyrollidinone (N-VP) as a crosslinking agent over a 28 day time period. Encapsulated cells (ECs) were seeded on actively crosslinking PPF composites 6 min after initiation of the crosslinking reaction, and also on fully crosslinked PPF composites and tissue culture polystyrene controls, with a cell seeding density of 5.3 x 10(4) cells/cm2. Composites prepared with three PPF:N-VP ratios were examined: 1:0.5, 1:0.1, and 1:0.05. Samples were taken at specified time points and analyzed by DNA, 3H-thymidine, alkaline phosphatase, osteocalcin, and calcium assays, and the measurements were compared with those for nonencapsulated cells (NCs). The results showed that encapsulated marrow stromal cells exhibited much higher viability, proliferation, and phenotypic expression when placed on crosslinking PPF composites than NCs. The assay results for ECs on crosslinking PPF composites were also similar to those on fully crosslinked PPF composites. The data further demonstrated that the PPF:N-VP ratio had no effect on the viability, proliferation, or phenotypic expression of the ECs. These results suggest that cells encapsulated in crosslinked gelatin microparticles may be part of an injectable, in situ crosslinkable, biodegradable polymeric composite for bone tissue engineering applications.
机译:这项研究调查了交联明胶微粒中大鼠骨髓基质成骨细胞的临时包封对放置在使用N-乙烯基吡咯烷酮(N-VP)交联的聚富马酸丙二酯(PPF)复合材料上的微粒的长期细胞增殖和表型表达的影响在28天的时间内用作交联剂。交联反应开始后6分钟,将封装的细胞(ECs)播种到主动交联的PPF复合材料上,并完全交联的PPF复合材料和组织培养聚苯乙烯对照上,细胞播种密度为5.3 x 10(4)个细胞/ cm2。检查以三种PPF:N-VP比制备的复合材料:1:0.5、1:0.1和1:0.05。在指定的时间点取样,并通过DNA,3H-胸苷,碱性磷酸酶,骨钙素和钙分析进行分析,并将测量结果与未封装细胞(NC)进行比较。结果表明,包封的骨髓基质细胞在交联的PPF复合材料上比NCs表现出更高的生存力,增殖能力和表型表达。交联PPF复合材料上EC的测定结果也与完全交联PPF复合材料上的EC相似。数据进一步证明,PPF:N-VP比对EC的生存力,增殖或表型表达没有影响。这些结果表明,封装在交联明胶微粒中的细胞可能是用于骨组织工程应用的可注射,原位可交联,可生物降解的聚合物复合材料的一部分。

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