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Pulsed electric field treatment as a potential method for microbial inactivation in scaffold materials for tissue engineering: the inactivation of bacteria in collagen gel

机译:脉冲电场处理是组织工程支架材料中微生物失活的潜在方法:胶原凝胶中细菌的失活

摘要

To investigate the effectiveness of pulsed electric field (PEF) treatment as a new method for inactivation of micro-organisms in complex biomatrices and to assess this by quantifying the inactivation of Escherichia coli seeded in collagen gels. PEF was applied to E. coli seeded collagen gels in static (nonflowing) chambers. The influence of electric field strength, pulse number and seeded cell densities were investigated. The highest level of inactivation was obtained at the maximum field strength of 45 kV cm−1. For low levels of E. coli contamination (103 CFU ml−1), PEF treatment resulted in no viable E. coli being recovered from the gels. However, PEF treatment of gels containing higher cell densities (≥104 CFU ml−1) did not achieve complete inactivation of E. coli. PEF treatment successfully inactivated E. coli seeded in collagen gels by 3 log10 CFU ml−1. Complete inactivation was hindered at high cell densities by the tailing effect observed. PEF shows potential as a novel, nondestructive method for decontamination of collagen-based matrices. Further investigation is required to ensure its compatibility with other proteins and therapeutic drugs for tissue engineering and drug delivery applications.
机译:为了研究脉冲电场(PEF)处理作为使复杂生物基质中的微生物失活的新方法的有效性,并通过量化接种在胶原蛋白凝胶中的大肠杆菌的失活来评估此效果。 PEF在静态(非流动)腔中应用于大肠杆菌接种的胶原蛋白凝胶。研究了电场强度,脉冲数和种子细胞密度的影响。在最大场强为45 kV cm-1时获得了最高的灭活水平。对于低水平的大肠杆菌污染(103 CFU ml-1),PEF处理不会从凝胶中回收到活的大肠杆菌。但是,PEF处理含有更高细胞密度(≥104 CFU ml-1)的凝胶不能完全灭活大肠杆菌。 PEF处理成功灭活了通过3 log10 CFU ml-1接种在胶原凝胶中的大肠杆菌。在高细胞密度下,由于观察到的拖尾效应而阻碍了完全失活。 PEF具有潜力,可以作为一种新颖的,无损的基于胶原蛋白基质的净化方法。需要进一步研究以确保其与其他蛋白质和治疗药物的相容性,以用于组织工程和药物输送应用。

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