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首页> 外文期刊>Journal of biomaterials science >Fabrication and characterization of hydroxypropyl guar-poly (vinyl alcohol)-nano hydroxyapatite composite hydrogels for bone tissue engineering
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Fabrication and characterization of hydroxypropyl guar-poly (vinyl alcohol)-nano hydroxyapatite composite hydrogels for bone tissue engineering

机译:羟丙基瓜尔聚(乙烯醇) - 羟基磷灰石复合水凝胶制备及表征骨组织工程

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摘要

Biocompatible bone implants composed of natural materials are highly desirable in orthopedic reconstruction procedures. In this study, novel and ecofriendly bionanocomposite hydrogels were synthesized using a blend of hydroxypropyl guar (HPG), poly vinyl alcohol (PVA), and nano-hydroxyapatite (n-HA) under freeze-thaw and mild reaction conditions. The hydrogel materials were characterized using various techniques. TGA studies indicate that both composites, HPG/PVA and HPG/PVA/n-HA, have higher thermal stability compared to HPG alone whereas HPG/PVA/n-HA shows higher stability compared to PVA alone. The HPG/PVA hydrogel shows porous morphology as revealed by the SEM, which is suitable for bone tissue regeneration. Additionally, the hydrogels were found to be transparent and flexible in nature. In vitro biomineralization study performed in simulated body fluid shows HPG/PVA/n-HA has an apatite like structure. The hydrogel materials were employed as extracellular matrices for biocompatibility studies. In vitro cell viability studies using mouse osteoblast MC3T3 cells were performed by MTT, Trypan blue exclusion, and ethidium bromide/acridine orange staining methods. The cell viability studies reveal that composite materials support cell growth and do not show any signs of cytotoxicity compared to pristine PVA. Osteoblastic activity was confirmed by an increased alkaline phosphatase enzyme activity in MC3T3 bone cells grown on composite hydrogel matrices.
机译:由天然材料构成的生物相容性骨植入物在整形外科重建程序中是非常理想的。在该研究中,使用羟丙基瓜尔(HPG),聚乙烯醇(PVA)和纳米 - 羟基磷灰石(N-HA)在冷冻 - 解冻和温和的反应条件下合成新颖和生态抗体脱硫水凝胶。使用各种技术表征水凝胶材料。 TGA研究表明,与单独的HPG相比,复合材料,HPG / PVA和HPG / PVA / N-HA具有更高的热稳定性,而HPG / PVA / N-HA与单独的PVA相比显示出更高的稳定性。 HPG / PVA水凝胶显示出由SEM透露的多孔形态,适用于骨组织再生。另外,发现水凝胶是透明和柔韧的。在模拟体液中进行的体外生物矿化研究显示HPG / PVA / N-HA具有磷灰石状结构。水凝胶材料用作生物相容性研究的细胞外基质。通过MTT,台盼蓝排除和溴化乙锭/吖啶橙染色方法进行使用小鼠骨盆细胞的体外细胞活力研究。细胞活力研究表明,与原始PVA相比,复合材料支持细胞生长,并且不显示任何细胞毒性的迹象。通过在复合水凝胶基质上生长的MC3T3骨细胞中增加的碱性磷酸酶酶活性证实了骨细胞活性。

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