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黏附蛋白修饰的 PET 和 PU 支架上大鼠 MSCs 的活力和增殖。

Viability and proliferation of rat MSCs on adhesion protein-modified PET and PU scaffolds.

机构信息

Advanced Center for Translational Regenerative Medicine (ACTREM), Karolinska Institutet, Stockholm, Sweden.

出版信息

Biomaterials. 2012 Nov;33(32):8094-103. doi: 10.1016/j.biomaterials.2012.07.060. Epub 2012 Aug 16.

DOI:10.1016/j.biomaterials.2012.07.060
PMID:22901964
Abstract

In 2011, the first in-man successful transplantation of a tissue engineered trachea-bronchial graft, using a synthetic POSS-PCU nanocomposite construct seeded with autologous stem cells, was performed. To further improve this technology, we investigated the feasibility of using polymers with a three dimensional structure more closely mimicking the morphology and size scale of native extracellular matrix (ECM) fibers. We therefore investigated the in vitro biocompatibility of electrospun polyethylene terephthalate (PET) and polyurethane (PU) scaffolds, and determined the effects on cell attachment by conditioning the fibers with adhesion proteins. Rat mesenchymal stromal cells (MSCs) were seeded on either PET or PU fiber-layered culture plates coated with laminin, collagen I, fibronectin, poly-D-lysine or gelatin. Cell density, proliferation, viability, morphology and mRNA expression were evaluated. MSC cultures on PET and PU resulted in similar cell densities and amounts of proliferating cells, with retained MSC phenotype compared to data obtained from tissue culture plate cultures. Coating the scaffolds with adhesion proteins did not increase cell density or cell proliferation. Our data suggest that both PET and PU mats, matching the dimensions of ECM fibers, are biomimetic scaffolds and, because of their high surface area-to-volume provided by the electrospinning procedure, makes them per se suitable for cell attachment and proliferation without any additional coating.

摘要

2011 年,首例组织工程气管-支气管移植物的成功移植,使用了一种合成 POSS-PCU 纳米复合材料构建体,该构建体播种了自体干细胞。为了进一步改进这项技术,我们研究了使用具有更接近天然细胞外基质(ECM)纤维形态和大小尺度的三维结构的聚合物的可行性。因此,我们研究了电纺聚酯(PET)和聚氨酯(PU)支架的体外生物相容性,并通过用粘附蛋白调理纤维来确定对细胞附着的影响。大鼠间充质基质细胞(MSCs)接种在涂有层粘连蛋白、胶原蛋白 I、纤维连接蛋白、聚-D-赖氨酸或明胶的 PET 或 PU 纤维层培养板上。评估细胞密度、增殖、活力、形态和 mRNA 表达。与从组织培养板培养获得的数据相比,PET 和 PU 上的 MSC 培养物导致相似的细胞密度和增殖细胞数量,并保留了 MSC 表型。支架的涂层没有增加细胞密度或细胞增殖。我们的数据表明,与 ECM 纤维尺寸匹配的 PET 和 PU 垫都是仿生支架,并且由于其通过电纺工艺提供的高表面积与体积比,使它们本身适合细胞附着和增殖,而无需任何额外的涂层。

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