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Microbiological analyses of eggs and egg products using the MicroFoss system

机译:使用MicroFoss系统对鸡蛋和蛋制品进行微生物学分析

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摘要

This thesis evaluates the MicroFoss system, also known as the BioSys or the SolerisÒ system, as a rapid method for microbiological analyses of eggs and egg products. Commercially assays for assessment of microbiological quality and sanitation conditions during processing, which are total viable counts (TVC), coliforms and Escherichia coli, are evaluated in comparison to the cultural methods. Concurrently, this thesis reports development of a new medium for the MicroFoss Salmonella detection, since this test is not available.Good correlations between the cultural TVCs and the MicroFoss detection times (DTs) were obtained (r ³-0.84) in all egg products. Preliminary results of a correlation between the cultural TVCs dominated by Pseudomonas fluorescens and the MicroFoss DTs suggested that the MicroFoss could be used for investigation of spoilage and shelf life prediction of eggs.High agreements (r ³-0.93) between the MicroFoss and cultural methods for coliforms and E. coli in eggs and egg products was achieved as well as the accuracy, sensitivity and specificity. The MicroFoss for estimations of TVC, coliforms and E. coli could be completed in less than 24h, compared to 48-72h required for the cultural methods. Hence, the MicroFoss could be used as a rapid screening for quality control of eggsand egg products.While a new propylene glycol-based selective medium developed was effective for detection of Salmonella, possible false positive results caused by certain bacteria, such as Enterobacter cloacae, E. coli, Klebsiella pneumoniae and Proteus mirabilis, were encountered. When this selective medium was supplemented with 40 mg/L of novobiocin, or 1 or 2 mL/L of Niaproof 4, these non-salmonellae were greatly suppressed or eliminated, particularly Pr. mirabilis, whilst this did not affect growth of Salmonella. Various serotypes of Salmonella including strains of atypical biotype were able to acidify propylene glycol in these media.Detection of Salmonella in naturally contaminated eggs by the MicroFoss using propylene glycol-based selective media showed equivalent sensitivity and specificity to the Australian Standard 5013.10-2004, according to numbers of egg samples tested in this study. Detection of low level of Salmonella (1-10 CFU/25g of eggs pre-enriched in buffered peptone water) was achieved in less than 24h.
机译:本文对MicroFoss系统(也称为BioSys或SolerisÒ系统)进行了评估,以此作为对鸡蛋和蛋制品进行微生物分析的快速方法。与培养方法相比,对用于评估加工过程中微生物质量和卫生条件的商业化验进行了评估,这些化验是总活菌数(TVC),大肠菌群和大肠杆菌。同时,由于无法进行沙门氏菌检测,本文报道了一种新的检测沙门氏菌的新培养基。在所有蛋制品中,培养的TVC与沙门氏菌的检测时间(DTs)之间具有良好的相关性(r³-0.84)。荧光假单胞菌占主导地位的文化TVC与MicroFoss DT之间存在相关性的初步结果表明,MicroFoss可用于研究鸡蛋的变质和保质期预测。MicroFoss与培养方法之间的高度一致性(r³-0.93)获得了鸡蛋和蛋制品中的大肠菌群和大肠杆菌,以及准确性,敏感性和特异性。估计TVC,大肠菌群和大肠杆菌的MicroFoss可以在不到24小时内完成,而培养方法需要48-72小时。因此,MicroFoss可以用作鸡蛋和蛋制品质量控制的快速筛选。虽然开发出的一种新的基于丙二醇的选择性培养基可有效检测沙门氏菌,但某些细菌(如阴沟肠杆菌,遇到了大肠杆菌,肺炎克雷伯菌和奇异变形杆菌。当该选择性培养基中补充有40 mg / L的新霉素或1或2 mL / L的Niaproof 4时,这些非沙门氏菌会被大大抑制或消除,尤其是Pr。奇迹,虽然这并不影响沙门氏菌的生长。沙门氏菌的各种血清型(包括非典型生物型菌株)都能酸化这些培养基中的丙二醇.MicroFoss使用基于丙二醇的选择性培养基检测自然污染卵中的沙门氏菌,显示出与澳大利亚标准5013.10-2004相当的敏感性和特异性。这项研究中测试的鸡蛋样本数量。在不到24小时的时间内即可检测出低水平的沙门氏菌(1-10 CFU / 25g的蛋白p缓冲液中预先富集的鸡蛋)。

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