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首页> 外文期刊>Materials science & engineering >Development of solvent-casting particulate leaching (SCPL) polymer scaffolds as improved three-dimensional supports to mimic the bone marrow niche
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Development of solvent-casting particulate leaching (SCPL) polymer scaffolds as improved three-dimensional supports to mimic the bone marrow niche

机译:铸造溶剂型颗粒浸出(SCPL)聚合物支架的开发,作为改进的三维支持物,可模拟骨髓生境

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摘要

The need for new approaches to investigate ex vivo the causes and effects of tumor and to achieve improved cancer treatments and medical therapies is particularly urgent for malignant pathologies such as lymphomas and leukemias, whose tissue initiator cells interact with the stroma creating a three-dimensional (3D) protective environment that conventional mono- and bi-dimensional (2D) models are not able to simulate realistically. The solvent-casting particulate leaching (SCPL) technique, that is already a standard method to produce polymer based scaffolds for bone tissue repair, is proposed here to fabricate innovative 3D porous structures to mimic the bone marrow niche in vitro. Two different polymers, namely a rigid polymethyl methacrylate (PMMA) and a flexible polyurethane (PU), were evaluated to the purpose, whereas NaCl, in the form of common salt table, resulted to be an efficient porogen. The adoption of an appropriate polymer-to-salt ratio, experimentally defined as 1:4 for both PMMA and PU, gave place to a rich and interconnected porosity, ranging between 82.1 vol% and 91.3 vol%, and the choice of admixing fine-grained or coarse-grained salt powders allowed to control the final pore size. The mechanical properties under compression load were affected both by the polymer matrix and by the scaffold's architecture, with values of the elastic modulus indicatively varying between 29 kPa and 1283 kPa. Preliminary tests performed with human stromal HS-5 cells co-cultured with leukemic cells allowed us to conclude that stromal cells grown associated to the supports keep their well-known protective and pro-survival effect on cancer cells, indicating that these devices can be very useful to mimic the bone marrow micro environment and therefore to assess the efficacy of novel therapies in pre-clinical studies.
机译:对于离体研究肿瘤的原因和影响以及实现改善的癌症治疗和药物治疗的新方法的需求,对于诸如淋巴瘤和白血病等恶性病理尤为迫切,这些恶性病理的组织起始细胞与基质相互作用从而形成三维(传统的一维和二维(2D)模型无法真实模拟的3D)保护环境。本文提出了溶剂浇铸微粒浸出(SCPL)技术,该技术已经是生产用于骨骼组织修复的聚合物基支架的标准方法,以制造创新的3D多孔结构以在体外模拟骨髓小生境。评估了两种不同的聚合物,即硬质聚甲基丙烯酸甲酯(PMMA)和软质聚氨酯(PU),而以食盐形式存在的NaCl是有效的致孔剂。对于PMMA和PU,采用适当的聚合物与盐的比率(实验上定义为1:4)可以产生丰富且相互关联的孔隙率,范围介于82.1%(体积)和91.3%(体积)之间,并且可以选择混合粒状或粗粒盐粉,可控制最终孔径。压缩载荷下的机械性能受聚合物基体和支架结构的影响,其弹性模量值在29kPa和1283kPa之间变化。对人类间质HS-5细胞与白血病细胞共培养进行的初步测试使我们得出结论,与支持物结合生长的间质细胞对癌细胞保持了众所周知的保护作用和促存活作用,表明这些装置可以非常可用于模拟骨髓微环境,因此可在临床前研究中评估新疗法的疗效。

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