首页> 外文期刊>Journal of biomedical materials research, Part A >Fabrication of poly(lactic-co-glycolic acid) scaffolds containing silk fibroin scaffolds for tissue engineering applications
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Fabrication of poly(lactic-co-glycolic acid) scaffolds containing silk fibroin scaffolds for tissue engineering applications

机译:含丝素蛋白支架的聚乳酸-乙醇酸支架的制备,用于组织工程应用

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The present study deals with the fabrication of poly(lactic-co-glycolic acid) (PLGA) scaffolds modified with silk fibroin for biomedical application. The PLGA solutions were added with salt particles and pressed with high pressures; which were further subjected to salt leaching resulting in the creation of large sized pores in the PLGA scaffolds. To fill up these pores, 2%, 4%, and 8% of silk solutions were added, however, the addition created extra small sized pores. The scaffolds were characterized by various state of techniques; the scanning electronic microscopy revealed the large sized pores in the pristine scaffold can be tailored into smaller architecture by the addition of silk fibroin. The contact angle measurements confirmed the introduction of silk helped to change the hydrophobic nature of PLGA into hydrophilic, which is the main constrain for PLGA. The mechanical properties of scaffold can be easily improved by applying the higher amounts of silk into the scaffolds. The thermal gravimetric analyses and fourier transform infrared spectroscopy confirmed the presence of silk fibroin in scaffolds. The cell viability and cell attachment was checked by culturing the scaffolds with NIH 3T3 fibroblasts and chondrocytes. Furthermore, these results revealed that the introduction of silk had significant impact on the viability of fibroblast also had a good affinity for cell attachment and infiltration of human chondrocytes in scaffolds after culturing the cells for 2 and 5 weeks of time.
机译:本研究涉及用丝素蛋白修饰的聚乳酸-乙醇酸共聚物(PLGA)支架的制备,以用于生物医学应用。向PLGA溶液中加入盐颗粒,并高压加压。将其进一步进行盐浸导致在PLGA支架中形成大尺寸的孔。为了填充这些孔,添加了2%,4%和8%的丝溶液,但是,添加后会生成尺寸较小的孔。支架的特征在于各种技术状态。扫描电子显微镜显示,可以通过添加丝素蛋白将原始支架中的大孔剪裁成较小的结构。接触角测量结果证实,蚕丝的引入有助于将PLGA的疏水性变为亲水性,这是PLGA的主要限制因素。支架的机械性能可以通过在支架中施加更多量的丝绸来轻松地改善。热重分析和傅立叶变换红外光谱证实了支架中丝素蛋白的存在。通过将支架与NIH 3T3成纤维细胞和软骨细胞一起培养来检查细胞活力和细胞附着。此外,这些结果表明,蚕丝的引入对成纤维细胞的活力有显着影响,在培养细胞2周和5周后,其对细胞附着和人软骨细胞浸润的支架也具有良好的亲和力。

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