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The Growth of 3T3 Fibroblasts on PHB PLA and PHB/PLA Blend Films at Different Stages of Their Biodegradation In Vitro

机译:在其生物降解的不同阶段的PHBPLA和PHB / PLA共混薄膜上的3T3成纤维细胞的生长

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摘要

Over the past century there was a significant development and extensive application of biodegradable and biocompatible polymers for their biomedical applications. This research investigates the dynamic change in properties of biodegradable polymers: poly(3-hydroxybutyrate (PHB), poly-l-lactide (PLA), and their 50:50 blend (PHB/PLA)) during their hydrolytic non-enzymatic (in phosphate buffered saline (PBS), at pH = 7.4, 37 °C) and enzymatic degradation (in PBS supplemented with 0.25 mg/mL pancreatic lipase). 3T3 fibroblast proliferation on the polymer films experiencing different degradation durations was also studied. Enzymatic degradation significantly accelerated the degradation rate of polymers compared to non-enzymatic hydrolytic degradation, whereas the seeding of 3T3 cells on the polymer films accelerated only the PLA molecular weight loss. Surprisingly, the immiscible nature of PHB/PLA blend (showed by differential scanning calorimetry) led to a slower and more uniform enzymatic degradation in comparison with pure polymers, PHB and PLA, which displayed a two-stage degradation process. PHB/PLA blend also displayed relatively stable cell viability on films upon exposure to degradation of different durations, which was associated with the uneven distribution of cells on polymer films. Thus, the obtained data are of great benefit for designing biodegradable scaffolds based on polymer blends for tissue engineering.
机译:在过去的世纪中,对其生物医学应用有了显着的发展和广泛应用,可生物降解和生物相容性聚合物。本研究研究了可生物降解聚合物的动态变化:聚(3-羟基丁酯(PHB),聚-L-丙交酯(PLA),及其50:50共混物(PHB / PLA)在其水解非酶(中)磷酸盐缓冲盐水(PBS),pH = 7.4,37℃)和酶促降解(在补充有0.25mg / ml胰脂肪酶的PBS中)。还研究了经历不同降解持续时间的聚合物膜上的3T3成纤维细胞增殖。与非酶促水解降解相比,酶促降解显着加速了聚合物的降解速率,而3T3细胞在聚合物膜上的接种仅加速PLA分子量损失。令人惊讶的是,与纯聚合物,PHB和PLA相比,PHB / PLA混合物(通过差示扫描量热法显示)的不混溶性和更均匀的酶促降解,其显示出两级降解过程。在暴露于不同持续时间的降解时,PHB / PLA混合物在薄膜上显示相对稳定的细胞活力,这与聚合物膜上的细胞的不均匀分布相关。因此,所获得的数据对于基于用于组织工程的聚合物共混物设计可生物降解的支架具有很大的益处。

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