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Fabrication and Characterization of Thiol- Triacrylate Polymer via Michael Addition Reaction for Biomedical Applications

机译:通过迈克尔加成反应制备和表征巯基三丙烯酸酯聚合物在生物医学中的应用

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摘要

Thiol-acrylate polymers have therapeutic potential as biocompatible scaffolds for bone tissue regeneration. Synthesis of a novel cyto-compatible and biodegradable polymer composed of trimethylolpropane ethoxylate triacrylate-trimethylolpropane tris (3-mercaptopropionate) (TMPeTA-TMPTMP) using a simple amine-catalyzed Michael addition reaction is reported in this study. This study explores the impact of molecular weight and crosslink density on the cyto-compatibility of human adipose derived mesenchymal stem cells. Eight groups were prepared with two different average molecular weights of trimethylolpropane ethoxylate triacrylate (TMPeTA 692 and 912) and four different concentrations of diethylamine (DEA) as catalyst. The materials were physically characterized by mechanical testing, wettability, mass loss, protein adsorption and surface topography. Cyto-compatibility of the polymeric substrates was evaluated by LIVE/DEAD staining® and DNA content assay of cultured human adipose derived stem cells (hASCs) on the samples over 7 days. Surface topography studies revealed that TMPeTA (692) samples have island pattern features whereas TMPeTA (912) polymers showed pitted surfaces. Water contact angle results showed a significant difference between TMPeTA (692) and TMPeTA (912) monomers with the same DEA concentration. Decreased protein adsorption was observed on TMPeTA (912) −16% DEA compared to other groups. Fluorescent microscopy also showed distinct hASCs attachment behavior between TMPeTA (692) and TMPeTA (912), which is due to their different surface topography, protein adsorption and wettability. Our finding suggested that this thiol-acrylate based polymer is a versatile, cyto-compatible material for tissue engineering applications with tunable cell attachment property based on surface characteristics.
机译:硫醇丙烯酸酯聚合物具有作为生物相容性支架用于骨组织再生的治疗潜力。这项研究报道了使用简单的胺催化迈克尔加成反应合成由三羟甲基丙烷乙氧基化物三丙烯酸酯-三羟甲基丙烷三(3-巯基丙酸酯)(TMPeTA-TMPTMP)组成的新型细胞相容性和可生物降解的聚合物。这项研究探讨了分子量和交联密度对人脂肪来源的间充质干细胞的细胞相容性的影响。制备了八组,用两种不同的平均分子量的三羟甲基丙烷乙氧基化物三丙烯酸酯(TMPeTA 692和912)和四种不同浓度的二乙胺(DEA)作为催化剂。通过机械测试,润湿性,质量损失,蛋白质吸附和表面形貌对材料进行物理表征。通过LIVE / DEAD染色和在7天内对样品上培养的人类脂肪衍生干细胞(hASC)进行DNA含量测定,评估了聚合物底物的细胞相容性。表面形貌研究表明,TMPeTA(692)样品具有岛状图案特征,而TMPeTA(912)聚合物则显示点蚀表面。水接触角结果表明,具有相同DEA浓度的TMPeTA(692)和TMPeTA(912)单体之间存在显着差异。与其他组相比,在TMPeTA(912)-16%DEA上观察到蛋白质吸附减少。荧光显微镜检查还显示,TMPeTA(692)和TMPeTA(912)之间存在明显的hASCs附着行为,这是由于它们的表面形貌,蛋白质吸附性和润湿性不同。我们的发现表明,这种基于硫醇丙烯酸酯的聚合物是一种多功能的,细胞相容的材料,适用于组织工程应用,具有基于表面特性的可调细胞附着特性。

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