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基于羟基磷灰石和乳清分离蛋白的复合材料在骨再生中的应用

Composites Based on Hydroxyapatite and Whey Protein Isolate for Applications in Bone Regeneration.

作者信息

Słota Dagmara, Głąb Magdalena, Tyliszczak Bożena, Dogulas Timothy E L, Rudnicka Karolina, Miernik Krzysztof, M Urbaniak Mateusz, Rusek-Wala Paulina, Sobczak-Kupiec Agnieszka

机构信息

Faculty of Materials Engineering and Physics, Institute of Materials Science, Cracow University of Technology, 31-864 Krakow, Poland.

Materials Science Institute (MSI), Lancaster University, Lancaster LA1 4YW, UK.

出版信息

Materials (Basel). 2021 Apr 29;14(9):2317. doi: 10.3390/ma14092317.

Abstract

Hydroxyapatite (HAp) is a bioactive ceramic with great potential for the regeneration of the skeletal system. However, its mechanical properties, especially its brittleness, limit its application. Therefore, in order to increase its ability to transmit stresses, it can be combined with a polymer phase, which increases its strength without eliminating the important aspect of bioactivity. The presented work focuses on obtaining organic-inorganic hydrogel materials based on whey protein isolate (WPI) reinforced with nano-HAp powder. The proportion of the ceramic phase was in the range of 0-15%. Firstly, a physicochemical analysis of the materials was performed using XRD, FT-IR and SEM. The hydrogel composites were subjected to swelling capacity measurements, potentiometric and conductivity analysis, and in vitro tests in four liquids: distilled water, Ringer's fluid, artificial saliva, and simulated body fluid (SBF). The incubation results demonstrated the successful formation of new layers of apatite as a result of the interaction with the fluids. Additionally, the influence of the materials on the metabolic activity according to ISO 10993-5:2009 was evaluated by identifying direct contact cytotoxicity towards L-929 mouse fibroblasts, which served as a reference. Moreover, the stimulation of monocytes by hydrogels via the induction of nuclear factor (NF)-κB was investigated. The WPI/HAp composite hydrogels presented in this study therefore show great potential for use as novel bone substitutes.

摘要

羟基磷灰石(HAp)是一种具有巨大骨骼系统再生潜力的生物活性陶瓷。然而,其机械性能,尤其是脆性,限制了它的应用。因此,为了提高其传递应力的能力,可以将其与聚合物相复合,这样在不消除生物活性这一重要特性的情况下提高了其强度。目前的工作重点是获得基于乳清分离蛋白(WPI)并用纳米HAp粉末增强的有机-无机水凝胶材料。陶瓷相的比例在0-15%范围内。首先,使用X射线衍射(XRD)、傅里叶变换红外光谱(FT-IR)和扫描电子显微镜(SEM)对材料进行了物理化学分析。对水凝胶复合材料进行了溶胀能力测量、电位和电导率分析,并在四种液体中进行了体外测试:蒸馏水、林格氏液、人工唾液和模拟体液(SBF)。培养结果表明,由于与液体相互作用,成功形成了新的磷灰石层。此外,根据ISO 10993-5:2009评估了材料对代谢活性的影响,通过鉴定对L-929小鼠成纤维细胞的直接接触细胞毒性作为参考。此外,还研究了水凝胶通过诱导核因子(NF)-κB对单核细胞的刺激作用。因此,本研究中提出的WPI/HAp复合水凝胶作为新型骨替代物具有巨大的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b40f/8125377/7d61747c899e/materials-14-02317-g001.jpg

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