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超细晶粒钛表面对细菌黏附的影响。

Effect of ultrafine-grained titanium surfaces on adhesion of bacteria.

作者信息

Truong Vi Khanh, Rundell Stuart, Lapovok Rimma, Estrin Yuri, Wang James Y, Berndt Christopher C, Barnes David G, Fluke Christopher J, Crawford Russell J, Ivanova Elena P

机构信息

Swinburne University of Technology, Hawthorn, Victoria, Australia.

出版信息

Appl Microbiol Biotechnol. 2009 Jul;83(5):925-37. doi: 10.1007/s00253-009-1944-5. Epub 2009 Mar 19.

Abstract

The influence of the ultrafine crystallinity of commercial purity grade 2 (as-received) titanium and titanium modified by equal channel angular pressing (modified titanium) on bacterial attachment was studied. A topographic profile analysis of the surface of the modified titanium revealed a complex morphology of the surface. Its prominent micro- and nano-scale features were 100-200-nm-scale undulations with 10-15 microm spacing. The undulating surfaces were nano-smooth, with height variations not exceeding 5-10 nm. These surface topography characteristics were distinctly different from those of the as-received samples, where broad valleys (up to 40-60 microm) were detected, whose inner surfaces exhibited asperities approximately 100 nm in height spaced at 1-2 microm. It was found that each of the three bacteria strains used in this study as adsorbates, viz. Staphylococcus aureus CIP 68.5, Pseudomonas aeruginosa ATCC 9025 and Escherichia coli K12, responded differently to the two types of titanium surfaces. Extreme grain refinement by ECAP resulted in substantially increased numbers of cells attached to the surface compared to as-received titanium. This enhanced degree of attachment was accompanied with an increased level of extracellular polymeric substances (EPS) production by the bacteria.

摘要

研究了工业纯2级(原样)钛以及经等通道转角挤压改性的钛(改性钛)的超细结晶度对细菌附着的影响。对改性钛表面进行的形貌轮廓分析显示其表面形态复杂。其显著的微米级和纳米级特征是间距为10 - 15微米、尺度为100 - 200纳米的起伏。这些起伏表面是纳米级光滑的,高度变化不超过5 - 10纳米。这些表面形貌特征与原样样品明显不同,原样样品中检测到宽达40 - 60微米的宽谷,其内表面呈现出高度约为100纳米、间距为1 - 2微米的粗糙不平。结果发现,本研究中用作吸附质的三种细菌菌株,即金黄色葡萄球菌CIP 68.5、铜绿假单胞菌ATCC 9025和大肠杆菌K12,对这两种类型的钛表面反应不同。与原样钛相比,等通道转角挤压导致的极端晶粒细化使附着在表面的细胞数量大幅增加。这种增强的附着程度伴随着细菌产生的细胞外聚合物(EPS)水平的提高。

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