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用于骨科应用的磷酸二氢铵预处理/聚醚酰亚胺涂层对镁的体外骨相容性和增强生物腐蚀性抗性。

In Vitro Osteocompatibility and Enhanced Biocorrosion Resistance of Diammonium Hydrogen Phosphate-Pretreated/Poly(ether imide) Coatings on Magnesium for Orthopedic Application.

机构信息

Institute of Surface/Interface Science and Technology, Department of Material Science and Chemical Engineering , Harbin Engineering University , 150001 Harbin , China.

State Key Laboratory of Solidification Processing , Northwestern Polytechnical University , Xi'an , 710072 Shaanxi , China.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 21;11(33):29667-29680. doi: 10.1021/acsami.9b11073. Epub 2019 Aug 7.

Abstract

Magnesium, as a biodegradable metal, is a promising candidate for biomedical applications. To modify the degradation behavior of magnesium and improve its osteocompatibility, chemical conversion and spin coating methods were combined to develop a diammonium hydrogen phosphate-pretreated/poly(ether imide) (DAHP/PEI) co-coating system. The diammonium hydrogen phosphate pretreatment was employed to enhance the attachment between PEI coatings and the magnesium substrate; meanwhile, it could serve as another bioactive and anticorrosion layer when PEI coatings break down. Surface characterization, electrochemical tests, and short-term immersion tests in DMEM were performed to evaluate DAHP/PEI coatings. Electrochemical measurements showed that DAHP/PEI coatings significantly improved the corrosion resistance of pure magnesium. No obvious changes of the chemical compositions of DAHP/PEI coatings occurred after 72 h of immersion in DMEM. An in vitro cytocompatibility study confirmed that viability and LDH activity of human osteoblast-like cells on DAHP/PEI coatings showed higher values than those on the DAHP-pretreated layer and pure magnesium. The DAHP-pretreated layer could still enhance the ALP activity of MG-63 cells after the degradation of PEI in DAHP/PEI coatings. Besides that, the in vitro cellular response to the treated magnesium was investigated to gain knowledge on the differentiation and proliferation of human adipose-derived stem cells (hADSCs). Cell distribution and morphology were observed by fluorescence and SEM images, which demonstrated that DAHP/PEI coatings facilitated cell differentiation and proliferation. The high level of C-terminals of collagen type I production of hADSCs on DAHP/PEI coatings indicated the potential of the coating for promoting osteogenic differentiation. Positive results from long-term cytocompatibility and proliferation tests indicate that DAHP/PEI coatings can offer an excellent surface for hADSCs.

摘要

镁作为一种可生物降解的金属,是生物医学应用的有前途的候选材料。为了改变镁的降解行为并提高其骨相容性,采用化学转化和旋涂方法相结合,开发了一种磷酸二氢铵预处理/聚(醚酰亚胺)(DAHP/PEI)共涂层系统。磷酸二氢铵预处理用于增强 PEI 涂层与镁基底的附着;同时,当 PEI 涂层降解时,它也可以作为另一个生物活性和耐腐蚀层。通过表面特性、电化学测试和在 DMEM 中的短期浸泡试验来评估 DAHP/PEI 涂层。电化学测量表明,DAHP/PEI 涂层显著提高了纯镁的耐腐蚀性。在 DMEM 中浸泡 72 小时后,DAHP/PEI 涂层的化学成分没有明显变化。体外细胞相容性研究证实,DAHP/PEI 涂层上的人成骨样细胞的活力和 LDH 活性值均高于 DAHP 预处理层和纯镁。在 DAHP/PEI 涂层中 PEI 降解后,DAHP 预处理层仍能提高 MG-63 细胞的 ALP 活性。此外,还研究了处理后的镁对细胞的体外反应,以了解人脂肪来源干细胞(hADSCs)的分化和增殖情况。通过荧光和 SEM 图像观察细胞的分布和形态,证明了 DAHP/PEI 涂层有利于细胞的分化和增殖。hADSCs 在 DAHP/PEI 涂层上产生高水平的 I 型胶原 C 端表明该涂层具有促进成骨分化的潜力。长期细胞相容性和增殖试验的阳性结果表明,DAHP/PEI 涂层可为 hADSCs 提供优异的表面。

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