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首页> 外文期刊>The Journal of Supercritical Fluids >Mocrobial inactivation by high-pressure
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Mocrobial inactivation by high-pressure

机译:高压微生物灭活

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High-pressure treatments are receiving a great deal of attention for the inactivation of micro-organisms in foodstuff processing, pressure instead of temperatue is used as stabilizing factor. In this context, high hydrostatic pressure treatment is the most studied alternative process, many works reported successful results in inactivating a wide range of micro-organisms under different operative conditions such as temperature, cycles of pressure, exposure time. Furthermore, a number of processes using high pressure treatment (HPT) has already been put into the market. Nevertheless this new technology presents the main limitation to be very expensive and difficult to control and manage because of the extremely high pressure employed, so that the widespread industrial diffusion in industry field appears cumbersome. The treatment with supercritical CO_2 could become a relevant alternative to HPT in the field of microbial inactivation of food as well as an innovative technique for the sterilization of thermally and hydrolytically sensitive polymeric materials in biomedical applications, such as polymeric particles for drug delivery or polymeric implants. It has been demonstrated that the effect of microbial inactivation assuring healthy food preservation is already consistent at pressures moderated (lower than 200 bar) when compared with those employed by traditional hydrostatic-pressure HPT methods (2000-7000 bar). In this work the anti-microbial potential of compressed CO_2 was investigated against gram-negative bacteria, gram-positive bacteria and spores; as model species, Pseudomonas aeruginosa, Bacillus subtilis and spores of B.subtilis were used. The experiments were preformed in a semi-continous apparatus at different but mild operative conditions. Excellent results were obtained for micro-organisms, under appropriate conditions the survival ratio of bacteria could be reduced to about seven orders of magnitude. Inactivation of spores under the same conditions, found to be conflicting in open literature, was not satisfactory. Spore inactivation was possible by coupling combination of higher temperature and longer contact time conditions. The application of pressure cycles was also found to be beneficial.
机译:高压处理由于食品加工中微生物的失活而引起了广泛的关注,使用压力代替温度作为稳定因素。在这种情况下,高静水压力处理是研究最多的替代方法,许多工作报道了在不同的操作条件(例如温度,压力循环,暴露时间)下使多种微生物失活的成功结果。此外,使用高压处理(HPT)的许多工艺已经投放市场。然而,由于所采用的极高的压力,该新技术的主要局限是非常昂贵且难以控制和管理,因此在工业领域中广泛的工业扩散显得麻烦。在食品的微生物灭活领域以及在生物医学应用中对热敏和水解敏感的聚合材料进行灭菌的创新技术(例如用于药物递送的聚合颗粒或聚合植入物)的灭菌处理中,超临界CO_2处理可能会成为HPT的相关替代方法。 。已经证明,与传统的静水压HPT方法(2000-7000 bar)相比,在中等压力(低于200 bar)下,微生物灭活确保健康食品保存的效果已经是一致的。在这项工作中,研究了压缩的CO_2对革兰氏阴性菌,革兰氏阳性菌和孢子的抗菌潜力;作为模型物种,使用了铜绿假单胞菌,枯草芽孢杆菌和枯草芽孢杆菌的孢子。实验是在不同但温和的操作条件下在半连续装置中进行的。对于微生物获得了优异的结果,在适当的条件下,细菌的存活率可以降低到大约七个数量级。在公开文献中发现在相同条件下灭活孢子并不令人满意。较高温度和更长接触时间条件的结合可能使孢子失活。还发现施加压力循环是有益的。

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