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The Influence of Chain Microstracture of Biodegradable Copolyesters Obtained with Low-Toxic Zirconium Initiator to In Vitro Biocompatibility

机译:低毒锆引发剂获得的可生物降解共聚酯链的微观结构对体外生物相容性的影响

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Because of the wide use of biodegradable materials in tissue engineering, it is necessary to obtain biocompatible polymers with different mechanical and physical properties as weE as degradation ratio. Novel co- and terpolymers of various composition and chain microstructure have been developed and applied for cell culture. The aim of this study was to evaluate the adhesion and proliferation of human chondrocytes to four biodegradable copolymers: lactide-coglycolide, lactide-co-e-caprolactone, lactide-co-trimethylene carbonate, glycolide-co-e-caprolactone, and one terpolymer glycolide-colactide-co-e-caprolactone synthesized with the use of zirconium acetylacetonate as a nontoxic initiator. Chain microstructure of the copolymers was analyzed by means of ~1H and ~(13)C NMR spectroscopy and surface properties by AFM technique. Cell adhesion and proliferation were determined by CyQUANT Cell Proliferation Assay Kit. After 4 h the chondrocyte adhesion on the surface of studied materials was comparable to standard TCPS. Cell proliferation occurred on all the substrates; however, among the studied polymers poly(L-lactide-coglycolide) 85:15 that characterized the most blocky structure best supported cell growth. Chondrocytes retained the cell membrane integrity evaluated by the LDH release assay. As can be summarized from the results of the study, all the studied polymers are well tolerated by the cells that make them appropriate for human chondrocytes growth.
机译:由于生物可降解材料在组织工程中的广泛应用,因此有必要获得具有不同机械和物理性能的生物相容性聚合物,如WeE作为降解率。已经开发了具有各种组成和链微结构的新型共聚物和三元共聚物,并将其用于细胞培养。这项研究的目的是评估人类软骨细胞对四种可生物降解的共聚物的粘附和增殖:丙交酯-共乙交酯,丙交酯-co-ε-己内酯,丙交酯-co-三亚甲基碳酸酯,乙交酯-co-e-己内酯和一种三元共聚物用乙酰丙酮锆作为无毒引发剂合成乙交酯-乙交酯-co-e-己内酯。通过〜1H和〜(13)C NMR光谱分析共聚物的链微结构,并通过AFM技术分析其表面性质。细胞粘附和增殖通过CyQUANT细胞增殖测定试剂盒确定。 4小时后,软骨细胞在被研究材料表面的粘附力与标准TCPS相当。细胞增殖发生在所有底物上。然而,在研究的聚合物中,聚(L-丙交酯-共乙交酯)85:15具有最块状结构的特征,最能支持细胞生长。软骨细胞保留了通过LDH释放测定评估的细胞膜完整性。从研究结果可以总结出,所有研究的聚合物都对细胞具有良好的耐受性,使其适合于人类软骨细胞的生长。

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