Assessment of Heterotrophic Bacterial Count (HPC) Associated with Commercial Freezers in Yenagoa Metropolis

D. V. Zige, F. I. Omeje, Christian Kosisochukwu Anumudu
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Abstract

Microorganism are known to be present anywhere they can proliferate, its presence dictates it pathogenicity or otherwise. The study was embarked to assess the enteric bacterial quality and potential risk of water at the bottom of selected commercial freezers in Yenagoa metropolis. Serial dilution was adopted for the assessment of Heterotrophic bacterial count (HPC). From the analysis, bacterial count ranged between 1.083±0.104×107cfu/mL and 2.0 ± 0.358×107cfu/mL. the highest was in sample 4 (S4) and least in sample 10 (S10), the study thus found the presence of heterotrophic bacteria in all samples. This research reveals that freezers S5, S3, S4 and S8 were seriously contaminated, having mean viable bacterial load of 2.47×107cfu/mL, 2.18×107cfu/mL, 2.00×107 cfu/mL and 2.00×107 cfu/mL, respectively; while freezer S1, S2, S6, S7, S9 and S10 had variably viable bacteria count, the occurrence of heterotrophic bacteria count (HPC) between sampled freezers was statistically very significant (P0.05, 0.01). Bacteria cells using morphological and biochemical characterization identified in the study include Escherichia coli (29.4%), which was the most frequently occurring organism, followed by Citrobacter spp (14.7%), Klebsella pneumonia (14.7%), Shigella spp (11.8%), Pseudomonas aeruginosa (11.8%), Yersinia spp (8.8%) and Campylobacter jejuni (8.8%). E coli were the most frequently isolated bacteria. E. coli and other Eneteric bacteria isolated from freezers are an indication that food items and water stored in these freezers are not safe from public health stand point. Susceptibility of isolates to antibiotics reveals 8(23.5%) were resistant and 26 (76.5%) were susceptible out of 34 cells identified. High resistance was seen in Klebsiella spp which had 2 (60%) and 100% susceptibility was seen among Citrobacter spp and Yersinia spp, on the other hand other isolate had varying drug resistant patterns. The importance of temperature control and regular efficient cleaning regimes need to be communicated to the public so that, effectual management and cleaning of freezers makes frozen food reliable and less likely to act as significant sources of human food and water borne diseases.
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叶纳戈阿市商业冷冻机相关的异养细菌计数(HPC)评估
已知微生物存在于任何它们可以增殖的地方,它的存在决定了它的致病性或其他。本研究旨在评估叶纳戈阿市选定的商业冷冻室底部水的肠道细菌质量和潜在风险。采用连续稀释法评估异养细菌计数(HPC)。细菌计数范围为1.083±0.104×107cfu/mL ~ 2.0±0.358×107cfu/mL。样品4 (S4)最高,样品10 (S10)最低,因此研究发现所有样品中都存在异养菌。研究表明,S5、S3、S4和S8冷冻室污染严重,平均活菌负荷分别为2.47×107cfu/mL、2.18×107cfu/mL、2.00×107 cfu/mL和2.00×107 cfu/mL;冷冻室S1、S2、S6、S7、S9、S10的活菌数存在差异,但不同冷冻室间异养菌数(HPC)的发生差异有统计学意义(P分别为0.05、0.01)。利用形态学和生化特征鉴定出的细菌细胞以大肠杆菌(29.4%)最多,其次是柠檬酸杆菌(14.7%)、肺炎克雷伯菌(14.7%)、志贺氏菌(11.8%)、铜绿假单胞菌(11.8%)、耶尔森氏菌(8.8%)和空肠弯曲杆菌(8.8%)。大肠杆菌是最常见的分离细菌。从冰箱中分离出的大肠杆菌和其他肠道细菌表明,从公共卫生的角度来看,储存在这些冰箱中的食物和水是不安全的。菌株对抗生素的敏感性显示,在鉴定的34个细胞中,耐药8个(23.5%),敏感26个(76.5%)。克雷伯氏菌的耐药率为60%,柠檬酸杆菌和耶尔森氏菌的耐药率为100%,而其他菌株的耐药模式各不相同。必须向公众宣传温度控制和定期有效清洁制度的重要性,以便对冰柜进行有效管理和清洁,使冷冻食品可靠,不太可能成为人类食物和水传播疾病的重要来源。
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