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在共培养流动室中,交联聚(乙二醇)基聚合物涂层上葡萄球菌和成骨细胞的竞争时间和密度依赖性黏附。

Competitive time- and density-dependent adhesion of staphylococci and osteoblasts on crosslinked poly(ethylene glycol)-based polymer coatings in co-culture flow chambers.

机构信息

Department of Biomedical Engineering, University Medical Center Groningen and University of Groningen, Antonius Deusinglaan 1, 9713 AV Groningen, The Netherlands.

出版信息

Biomaterials. 2011 Feb;32(4):979-84. doi: 10.1016/j.biomaterials.2010.10.011. Epub 2010 Oct 27.

Abstract

Biomaterial-associated infections (BAI) remain a serious clinical complication, often arising from an inability of host tissue-implant integration to out-compete bacterial adhesion and growth. A commercial polymer coating based on polyethylene glycol (PEG), available in both chemically inert and NHS-activated forms (OptiChem(®)), was compared for simultaneous growth of staphylococci and osteoblasts. In the absence of staphylococci, osteoblasts adhered and proliferated well on glass controls and on the NHS-reactive PEG-based coating over 48 h, but not on the inert PEG coating. Staphylococcal growth was low on both PEG-based coatings. When staphylococci were pre-adhered on surfaces for 1.5 h to mimic peri-operative contamination, osteoblast growth and spreading was reduced on glass but virtually absent on both reactive and inert PEG-based coatings. Thus although NHS-reactive, PEG-based coatings stimulated tissue-cell interactions in the absence of contaminating staphylococci, the presence of adhering staphylococci eliminated osteoblast adhesion advantages on the PEG surface. This study demonstrates the importance of using bacterial and cellular co-cultures compared to monocultures when assessing functionalized biomaterials coatings for infectious potential.

摘要

生物材料相关感染(BAI)仍然是一种严重的临床并发症,通常是由于宿主组织-植入物整合无法竞争过细菌黏附和生长所致。一种基于聚乙二醇(PEG)的商用聚合物涂层,具有化学惰性和 NHS 活化两种形式(OptiChem(®)),被用于同时比较金黄色葡萄球菌和成骨细胞的生长。在不存在金黄色葡萄球菌的情况下,成骨细胞在玻璃对照和 NHS 反应性 PEG 基涂层上粘附和增殖良好,超过 48 小时,但在惰性 PEG 涂层上则不行。两种 PEG 基涂层上的金黄色葡萄球菌生长都较低。当金黄色葡萄球菌预先在表面黏附 1.5 小时以模拟围手术期污染时,玻璃上的成骨细胞生长和扩展减少,但在 NHS 反应性和惰性 PEG 基涂层上几乎不存在。因此,尽管 NHS 反应性 PEG 基涂层在没有污染的金黄色葡萄球菌存在的情况下刺激组织细胞相互作用,但黏附的金黄色葡萄球菌的存在消除了 PEG 表面上成骨细胞的粘附优势。本研究表明,在评估具有感染潜力的功能化生物材料涂层时,使用细菌和细胞共培养物比使用单一培养物更为重要。

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