首页> 外文期刊>Journal of biomaterials and tissue engineering >Enhanced Osteogenesis of BMP2-Transfected Human Periodontal Ligament Stem Cells by Aligned Electrospun Scaffolds for Bone Tissue Engineering
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Enhanced Osteogenesis of BMP2-Transfected Human Periodontal Ligament Stem Cells by Aligned Electrospun Scaffolds for Bone Tissue Engineering

机译:对齐的电纺支架用于骨组织工程,增强了BMP2转染的人牙周膜干细胞的成骨作用。

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In ex vivo gene therapy, tissue engineering scaffolds have been widely applied as gene carriers. As a class of scaffolds with different surface topographies for tissue engineering, scaffolds with aligned fibre architecture had been proven to enhance cell proliferation and migration. However, the influence of scaffolds' fibre alignment on gene therapy is still unknown. This study investigated the osteogenic potential of different fibre arrangement scaffolds seeded with BMP2-transfected human periodontal ligament stem cells (BMP2/PDLSCs), aiming to explore whether gene therapeutic effects could be influenced by aligned scaffolds. BMP2/PDLSCs were cultured on scaffolds with different surface topographies: two kinds of aligned scaffolds (parallel and cross scaffolds) and two kinds of unaligned scaffolds as controls (random and smooth films). Cell morphology, proliferation, osteogenesis-related markers were analysed. BMP2/PDLSCs on aligned scaffolds showed elongation along the axes of scaffolds. DNA content, osteogenesis-related gene and protein expression, ALP activity, collagen I and calcium content of BMP2/PDLSCs seeded on aligned scaffolds were significantly higher than that on unaligned scaffolds. Aligned scaffolds influenced the orientation, enhanced the proliferation, and promoted the osteogenic differentiation of BMP2/PDLSCs. Results indicated aligned scaffolds could be used to enhance the biologic effects of ex vivo gene therapy for bone regeneration.
机译:在离体基因治疗中,组织工程支架已被广泛用作基因载体。作为用于组织工程的具有不同表面形貌的一类支架,具有对齐的纤维结构的支架已被证明可以增强细胞增殖和迁移。然而,支架纤维排列对基因治疗的影响仍然未知。这项研究调查了BMP2转染的人牙周膜干细胞(BMP2 / PDLSCs)接种的不同纤维排列支架的成骨潜力,旨在探讨对齐支架是否会影响基因治疗效果。 BMP2 / PDLSCs在具有不同表面形貌的支架上进行培养:两种对齐的支架(平行和交叉支架)和两种不对齐的支架作为对照(随机和光滑薄膜)。分析细胞形态,增殖,成骨相关标志物。对齐支架上的BMP2 / PDLSCs沿支架轴方向伸长。排列在支架上的BMP2 / PDLSCs的DNA含量,成骨相关基因和蛋白质表达,ALP活性,I型胶原和钙含量显着高于未排列的支架。对齐的支架影响方向,增强增殖,并促进BMP2 / PDLSCs的成骨分化。结果表明,对齐的支架可用于增强离体基因治疗对骨再生的生物学作用。

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