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首页> 外文期刊>Materials science & engineering >Enhanced antiadhesive properties of chitosan/hyaluronic acid polyelectrolyte multilayers driven by thermal annealing: Low adherence for mammalian cells and selective decrease in adhesion for Gram-positive bacteria
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Enhanced antiadhesive properties of chitosan/hyaluronic acid polyelectrolyte multilayers driven by thermal annealing: Low adherence for mammalian cells and selective decrease in adhesion for Gram-positive bacteria

机译:由热退火驱动的壳聚糖/透明质酸聚电解质多层膜的增强抗粘附性能:对哺乳动物细胞的粘附力低,对革兰氏阳性细菌的粘附力选择性降低

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摘要

The development of antifouling coatings with restricted cell and bacteria adherence is fundamental for many bio-medical applications. A strategy for the fabrication of antifouling coatings based on the layer-by-layer assembly and thermal annealing is presented. Polyelectrolyte multilayers (PEMs) assembled from chitosan and hyaluronic acid were thermally annealed in an oven at 37 ℃ for 72 h. The effect of annealing on the PEM properties and topography was studied by atomic force microscopy, ζ-potential, circular dichroism and contact angle measurements. Cell adherence on PEMs before and after annealing was evaluated by measuring the cell spreading area and aspect ratio for the A549 epithelial, BHK kidney fibroblast, C2C12 myoblast and MC-3T3-E1 osteoblast cell lines. Chitosan/hyaluronic acid PEMs show a low cell adherence that decreases with the thermal annealing, as observed from the reduction in the average cell spreading area and more rounded cell morphology. The adhesion of S. aureus (Gram-positive) and E. coli (Gram-negative) bacteria strains was quantified by optical microscopy, counting the number of colony-forming units and measuring the light scattering of bacteria suspension after detachment from the PEM surface. A 20% decrease in bacteria adhesion was selectively observed in the S. aureus strain after annealing. The changes in mammalian cell and bacteria adhesion correlate with the changes in topography of the chitosan/hyaluronic PEMs from a rough fibrillar 3D structure to a smoother and planar surface after thermal annealing.
机译:具有有限的细胞和细菌粘附性的防污涂料的开发对于许多生物医学应用而言都是至关重要的。提出了一种基于逐层组装和热退火的防污涂料制备策略。将由壳聚糖和透明质酸组装而成的聚电解质多层(PEM)在37℃的烘箱中加热退火72小时。通过原子力显微镜,ζ电位,圆二色性和接触角测量研究了退火对PEM性能和形貌的影响。通过测量A549上皮细胞,BHK肾成纤维细胞,C2C12成肌细胞和MC-3T3-E1成骨细胞系的细胞扩散面积和长宽比,评估退火前后PEM上的细胞粘附性。壳聚糖/透明质酸PEM显示出较低的细胞粘附力,该粘附力随热退火而降低,这是从平均细胞扩散面积的减少和更圆润的细胞形态观察到的。通过光学显微镜定量金黄色葡萄球菌(革兰氏阳性)和大肠杆菌(革兰氏阴性)细菌菌株的粘附力,计数菌落形成单位的数量,并测量从PEM表面脱离后细菌悬浮液的光散射。退火后,在金黄色葡萄球菌菌株中选择性观察到细菌粘附降低了20%。哺乳动物细胞和细菌粘附的变化与壳聚糖/透明质酸PEM的形貌变化相关,从粗糙的原纤维3D结构到热退火后,表面变得更光滑和平坦。

著录项

  • 来源
    《Materials science & engineering》 |2017年第11期|677-687|共11页
  • 作者单位

    Instituto de lnvestigaciones Fisicoquimicas Teoricas y Aplicadas (INIFTA), Departamento de Quimica, Facultad de Ciencias Exactas, Universidad National de La Plata, CONICET, Sucursal 4, Casilla de Correo 16, 1900 La Plata, Argentina;

    Instituto de lnvestigaciones Fisicoquimicas Teoricas y Aplicadas (INIFTA), Departamento de Quimica, Facultad de Ciencias Exactas, Universidad National de La Plata, CONICET, Sucursal 4, Casilla de Correo 16, 1900 La Plata, Argentina;

    Soft Matter Nanotechnology Group, CIC biomaGUNE, Paseo Miramon 182C, 20009 San Sebastian, Guipuzcoa, Spain;

    Soft Matter Nanotechnology Group, CIC biomaGUNE, Paseo Miramon 182C, 20009 San Sebastian, Guipuzcoa, Spain;

    Soft Matter Nanotechnology Group, CIC biomaGUNE, Paseo Miramon 182C, 20009 San Sebastian, Guipuzcoa, Spain;

    Instituto de lnvestigaciones Fisicoquimicas Teoricas y Aplicadas (INIFTA), Departamento de Quimica, Facultad de Ciencias Exactas, Universidad National de La Plata, CONICET, Sucursal 4, Casilla de Correo 16, 1900 La Plata, Argentina;

    Soft Matter Nanotechnology Group, CIC biomaGUNE, Paseo Miramon 182C, 20009 San Sebastian, Guipuzcoa, Spain;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Polyelectrolyte multilayers; Thermal annealing; Cell adhesion; Bacteria adhesion; Topography;

    机译:聚电解质多层;热退火;细胞粘附;细菌粘附;地形;

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