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Tissue Engineering Nanoclay Composite Scaffolds Composed of Poly-Glycerol Sebacate and Poly-Caprolactone

机译:组织工程纳米粘土复合支架由聚 - 甘油癸二酸盐和聚己内酯组成

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Tissue engineered scaffolds play an important role in the repair or regeneration of tissues and organs. Scaffolds provide strength, stability and support for cell and tissue development and growth. Common scaffold materials are natural and synthetic polymers. However, in recent years, an intense research effort has been directed towards developing new scaffold polymers and composite materials. Research on composite scaffolds is focused on identifying composites with enhanced mechanical properties, sustained drug-releasing capabilities, and the ability to support tissue development and growth. We produced and characterized a novel nanocomposite polymer scaffold composed of poly-glycerol sebacate (PGS), polycaprolactone (PCL) and halloysite clay nanotubes (HNTs). PGS, a biodegradable elastomer well known for its desirable mechanical properties and PCL, a hydrophobic aliphatic polyester with exceptional biodegradable and biocompatible properties were used in combination with HNTs, aluminosilicate clay nanotubes to form nanocomposite polymer scaffolds. The HNTs can be loaded with drugs of interest and can be used for regenerative medicine, tissue engineering, and controlled drug release. The nanocomposite polymer scaffold thin films were prepared by the solvent casting method. We characterized the morphological, structural, thermal and physical properties of these novel nanocomposite polymer (PGS-PCL-HNT) scaffolds. Analysis of these scaffold characteristics showed enhanced structural and physical properties with the ability to provide sustained drug loading.
机译:组织工程脚手架在组织和器官的修复或再生中起重要作用。支架为细胞和组织发育和生长提供强度,稳定性和支持。常见的支架材料是天然和合成聚合物。然而,近年来,一项激烈的研究努力旨在开发新的支架聚合物和复合材料。复合支架的研究重点是鉴定具有增强的机械性能,持续的药物释放能力的复合材料,以及支持组织发育和生长的能力。我们生产并表征了由聚 - 甘油癸二酸盐(PGS),聚己内酯(PCL)和霍罗伊岩粘土纳米管(HNT)构成的新型纳米复合材料聚合物支架。 PGS,一种可用于其所需的机械性能和PCL的可生物降解的弹性体,疏水性脂族聚酯,具有出色的可生物降解和生物相容性,与HNT,铝硅酸盐粘土纳米管组合使用以形成纳米复合材料高分子支架。 HNT可以装载兴趣的药物,可用于再生医学,组织工程和受控药物释放。通过溶剂浇铸方法制备纳米复合材料聚合物支架薄膜。我们表征了这些新型纳米复合材料聚合物(PGS-PCL-HNT)支架的形态学,结构,热和物理性质。对这些支架特性的分析显示出增强的结构和物理性质,具有提供持续的药物载荷的能力。

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