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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Deferoxamine immobilized poly(D,L-lactide) membrane via polydopamine adhesive coating: The influence on mouse embryo osteoblast precursor cells and human umbilical vein endothelial cells
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Deferoxamine immobilized poly(D,L-lactide) membrane via polydopamine adhesive coating: The influence on mouse embryo osteoblast precursor cells and human umbilical vein endothelial cells

机译:Deferoxamine固定化聚二胺粘合剂涂层的聚(D,L-丙交酯)膜:对小鼠胚胎成骨细胞前体细胞和人脐静脉内皮细胞的影响

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摘要

Osteogenesis and angiogenesis play the prominent role in the bone regeneration. In this study, deferoxamine (DFO), an induced agent for osteogenesis and angiogenesis, was modified onto the surface of poly(D,L-lactide) (PDLLA) membrane via a facile and convenient approach based on the self-polymerization of dopamine (DOPA). The surface composition, morphology, hydrophilicity and surface energy of the original and modified PDLLA membranes were characterized by Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), scanning electronic microscopy (SEM), atomic force microscopy (AFM) and contact angle measurement The surface roughness and hydrophilicity of the PDLLA membrane were obviously increased by introducing either the single polydopamine (PDOPA) or the dual layers of PDOPA and DFO. In vitro cells culture experiments indicated that both the PDLLA/PDOPA and PDLLA/PDOPA-DFO composite membranes were more beneficial to the attachment, proliferation and spreading of MC3T3-E1 cells and HUVECs compared to the original PDLLA membrane. The PDLLA/PDOPA-DFO membrane was supportive for the proliferation of both MC3T3-E1 cells and HUVECs, and especially for HUVECs. The results suggested that the as-prepared PDLLA/PDOPA-DFO composite can be expected to be used as a promising bone regenerative material with promoted angiogenesis. (C) 2016 Elsevier B.V. All rights reserved.
机译:骨发生和血管生成起到骨再生中的突出作用。在该研究中,通过基于多巴胺的自聚合(多巴)。通过傅里叶变换红外光谱(FTIR),X射线光电子能谱(XPS),扫描电子显微镜(SEM),原子力显微镜(AFM)的表面组成并接触角度测量通过引入单个多碳胺(PDOPA)或PDOPA和DFO的双层来显然增加了PDLLA膜的表面粗糙度和亲水性。体外细胞培养实验表明,与原始PDLLA膜相比,PDLLA / PDOPA和PDIPA / PDOPA-DFO复合膜更有利于MC3T3-E1细胞和HUVECS的附着,增殖和扩散。 PDLLA / PDOPA-DFO膜支持MC3T3-E1细胞和HUVEC的增殖,特别是对于HUVEC。结果表明,可以预期由制备的PDLLA / PDOPA-DFO复合材料用作具有促进血管生成的有前途的骨再生材料。 (c)2016年Elsevier B.v.保留所有权利。

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