首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >New approach to modification of poly (L-lactic acid) with nano-hydroxyapatite improving functionality of human adipose-derived stromal cells (hASCs) through increased viability and enhanced mitochondrial activity
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New approach to modification of poly (L-lactic acid) with nano-hydroxyapatite improving functionality of human adipose-derived stromal cells (hASCs) through increased viability and enhanced mitochondrial activity

机译:通过增加的活力和增强线粒体活性改善人脂肪磷灰石的聚(L-乳酸)改性聚(L-乳酸)的新方法

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摘要

The aim of this study was to determine the cytocompatibility of poly (L-lactide) (PLLA) scaffolds fabricated using co-rotating twin screw extrusion technique and functionalized with different concentrations of nano-hydroxyapatite (nHAp). The efforts were aimed on the designing bioactive scaffolds improving the viability and metabolic activity of human adipose-derived multipotent stromal cells (hASCs). The in vitro study was designed to determine the optimal nHAp concentration, based on analysis of hASCs morphology, adhesion rate, as well as metabolic and proliferative potential. Initially, the PLLA filled with three different concentrations of the nHAp were tested i.e. 5%, 10% and 15 wt%. The obtained results indicated that the 10 wt% nHAp in the PLLA (10% nHAp/PLLA) matrices improved the adhesion and proliferation of the hASCs, what was in good agreement with the results of tensile properties of the composites. Further, we performed profound studies regarding the cytotoxicity of 10% nHAp/PLLA. The analysis included the evaluation of the biomaterial influence on viability, apoptosis-related markers expression profile and mitochondrial function.
机译:本研究的目的是确定使用共旋转双螺杆挤出技术制造的聚(L-丙交酯)(PLLA)支架的细胞织立性,并用不同浓度的纳米羟基磷灰石(NHAP)官能化。努力旨在设计生物活跃的支架,提高人脂肪衍生的多能基质细胞(HASC)的活力和代谢活性。设计了体外研究以确定最佳的NHAP浓度,基于HASCS形态,粘合速率以及代谢和增殖潜力的分析。最初,测试填充有三种不同浓度的NHAP的PLLA,即5%,10%和15wt%。所得结果表明,PLLA(10%NHAP / PLLA)基质中的10wt%NHAP改善了HASC的粘附性和增殖,与复合材料的拉伸性能结果吻合良好。此外,我们对10%NHAP / PLLA的细胞毒性进行了深刻的研究。分析包括评价生物材料对生存能力的影响,凋亡相关标记表达谱和线粒体功能。

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