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1.
为了解餐饮厨房中自制即食食品单增李斯特菌污染状况及厨房内各媒介单增李斯特菌污染的分布特征,并据此分析餐饮厨房中导致即食食品发生单增李斯特菌污染的可能高风险点,在我国3个省份的29个餐饮厨房中采集环境样本及厨房自制餐饮即食食品1 455份进行单增李斯特菌检验。检测结果进行统计学分析,探寻餐饮厨房自制即食食品污染与环境暴露之间的关系。结果显示:餐饮厨房中单增李斯特菌的污染广泛存在,自制即食食品、食品原料与环境样品中单增李斯特菌的检出无差异。针对单增李斯特菌的监测,应关注餐饮环节的污染,凉菜间的冰箱可能成为导致餐饮厨房自制即食食品被单增李斯特菌污染的危险因素。  相似文献   

2.
单增李斯特菌污染即食食品的数据来源于前期实验数据,通过对即食凉拌菜中单增李斯特菌的定量暴露评估,了解某市人群因食用即食凉拌菜而患单增李斯特菌病的风险。按照ISO11290-2—1998的检测与计算方法对某市100份试样进行了定量检测,确定初始污染水平; 预测生长模型数据来源于ComBase数据库及前期实验,确定食用时菌的摄入量。采用@Risk5.7软件,定量评估人群因消费即食凉拌菜而患单增李斯特菌病的风险,并进行敏感性分析。结果表明,大约有0.80%的即食凉拌菜中单增李斯特菌量超过风险阈值4,可知市民因食用即食凉拌菜导致单增李斯特菌病的风险较低。敏感性分析结果表明,初始污染水平与单增李斯特菌量的相关性最高,是消费者和食品监管部门需要重视的主要风险控制因素。  相似文献   

3.
通过建立的环介导恒温扩增(Loop-Mediated Isothermal Amplification,LAMP)方法以达到肉中单增李斯特菌快速、灵敏的检出。以特异性的hlyA毒力基因作为靶基因,与6株非单增李斯特菌进行特异性试验,同时对不同培养浓度的单增李斯特菌进行了LAMP和PCR方法的灵敏度比较,进而应用LAMP法检测人工污染肉中的单增李斯特菌。结果表明:纯培养物中单增李斯特菌LAMP检出限为8.8×100CFU/mL,其灵敏度比普通PCR高100倍;在人工污染肉中单增李斯特菌的检出限为8.8×101CFU/mL,在1h内即可完成扩增反应。LAMP方法具备快速、特异、简单、灵敏度高等优势,在食品基质中单增李斯特菌的检测方面具有较好的应用前景。  相似文献   

4.
单增李斯特菌是一种重要的食源性病原菌。单增李斯特菌的分布和存活与其形成生物膜的能力有关,生物膜对逆性环境有抵抗力,细菌会从生物膜中分离导致食品持续性的污染。生物膜的形成、成熟和结构取决于多种外部和内部因素,并且多种调控机制起着重要作用。文中旨在阐述单增李斯特菌生物膜形成过程中的调控机制(包括胞内作用、胞间作用和种间作用),以控制食品加工环境中致病性生物膜的形成,从而为食品安全提供新的干预策略。  相似文献   

5.
单增李斯特菌是一种重要的人兽共患食源性胞内致病菌,广泛存在于自然环境中且易污染动物性食品,人及动物感染后可引起严重的李斯特菌病,死亡率高达30%。单增李斯特菌通常对多种药物敏感,然而,因不合理使用抗菌药或消毒剂形成的选择压力导致李斯特菌多重耐药情况的报道日渐增多。外排泵蛋白是细菌中一类重要的蛋白,可参与机体多种生物学过程,包括影响细菌对抗生素敏感性、促进有毒化合物泵出、影响细菌毒力等。本文综述了近年来关于单增李斯特菌耐药外排泵的功能及调控机制的研究进展,为深入理解李斯特菌耐药等环境适应机制及有效控制该病原污染传播和筛选抗感染药物新靶点提供理论基础。  相似文献   

6.
单核细胞增生李斯特氏菌(Listeria monocytogenes)是重要的食源性致病菌,能引发人类的李斯特菌病,是全球公共卫生问题之一。该菌易感染孕妇,引起胎儿和新生儿的侵袭性李斯特菌病,严重威胁母婴健康。因此,建立有效的单增李斯特菌感染胎盘体内外模型,解析和探究单增李斯特菌经胎盘感染机制,是预防和控制单增李斯特菌感染母婴的关键所在。本文综述了可用于研究单增李斯特菌母婴感染的体内外胎盘模型,总结和讨论了各类模型的优势和局限性;并着重分析了体外三维胎盘屏障模型在单增李斯特菌感染方面的研究进展和未来研究方向。以期为深入解析该菌经胎盘感染的途径、发病机制提供支持,并为预防和控制母婴李斯特菌病提供科学参考。  相似文献   

7.
单增李斯特菌是一种危害极大的食源性致病菌,建立快速及特异的检测方法对于食品安全监控尤为重要。文中联合免疫磁珠与选择性培养基对不同浓度(101~105CFU/mL)单增李斯特菌进行检测,并对3种李斯特菌、金黄色葡萄球菌及副溶血弧菌进行交叉试验;同时模拟食物污染,探索免疫磁珠-平板法检测样品的检测限以及该方法的最快检测时间。结果显示特异性免疫磁珠联合选择性平板法可检出浓度为103CFU/mL及以上的单增李斯特菌;牛奶样品仅需6 h增菌能被检出,检测限为0.7 CFU/mL。联合使用免疫磁珠富集技术与选择性培养基,能在30 h内完成对牛奶样品的检测,较国标法减少38 h以上,且具有同等的灵敏度。  相似文献   

8.
【目的】制备MurA多抗,结合免疫磁珠与选择平板进行单增李斯特菌的快速检测,建立单增李斯特菌的免疫磁珠快速检测方法。【方法】构建MurA的原核表达载体,转化大肠杆菌进行优化表达。镍柱纯化表达产物,质谱鉴定重组蛋白,再免疫小鼠,制备其多克隆抗体。用所获多抗制备免疫磁珠,建立单增李斯特菌免疫磁珠-选择性培养基检测方法,并对人工污染牛奶样品进行检测。【结果】在大肠杆菌中高效表达了分子量约为72 kD的可溶性融合蛋白,质谱鉴定其为MurA蛋白;免疫小鼠获得的抗血清效价达1:10 000,与伤寒沙门氏菌、副溶血弧菌、大肠杆菌及属内其它病原菌均无交叉;所建立的免疫磁珠-选择性培养基检测法可检出浓度为103 CFU/mL及以上的单增李斯特菌,仅与英诺克李斯特菌存在一定交叉反应;牛奶样品单次仅需9 h增菌就能被检出,较常规增菌时间缩短39 h;检测限为0.4 CFU/mL。【结论】表达并纯化得到高纯度的单增李斯特菌MurA蛋白,制备的鼠源多克隆抗体亲和力高,特异性好;建立了快速检测单增李斯特菌的免疫磁珠联合选择性培养基法,在灵敏度不变的情况下,实现24 h内成功对牛奶样品的检测,较国标法减少42 h以上。  相似文献   

9.
牛肉中单增李斯特菌的热失活模型   总被引:1,自引:0,他引:1  
【目的】建立牛肉中单增李斯特菌的热失活动力学模型。【方法】将接种了3种不同血清型的单增李斯特菌混合菌液的牛肉分别在55℃、57.5℃、60℃、63℃、66℃和70℃进行热处理,在不同温度条件下单增李斯特菌数从109CFU/g下降至103CFU/g,其热失活曲线用修正的Gompertz模型进行了拟合;利用线性模型对单增李斯特菌的相对失活率(μ)和所持续时间(M)的自然对数值与温度(55℃-70℃)进行拟合;通过在59℃和64℃对牛肉中单增李斯特菌热处理,对所建的模型进行了验证。【结果】建立了牛肉中单增李斯特菌热失活动力学的一级模型和二级模型,经验证其准确因子和偏差因子均在可接受范围内。【结论】本研究所建立的模型能较好的模拟不同温度(55℃-70℃)对牛肉中单增李斯特菌热失活的影响。  相似文献   

10.
荧光重组酶介导等温扩增检测食品中单增李斯特菌   总被引:2,自引:0,他引:2  
[背景] 单增李斯特菌为肉类及乳制品中常见的食源性致病菌,传统的培养法检测无法满足口岸大批量食品的快速检测要求,建立简便、灵敏、快速及现场可操作的技术至关重要。[目的] 建立快速简便的荧光重组酶介导等温扩增(Recombinase-Aided Amplification,RAA)法检测单增李斯特菌,以适应口岸快速通关及监管的实际需求。[方法] 根据单增李斯特菌hlyA基因保守区设计特异性引物、探针,通过引物两两组合结合探针筛选出扩增效率及灵敏度最佳的引物组合,优化反应温度及引物探针浓度,确定最佳反应条件。将建立的荧光RAA法应用于食品基质及实际样品检测中,同时与国标GB 4789.30-2016进行比对验证。[结果] 单增李斯特菌荧光RAA最佳反应温度为42 ℃,最佳引物、探针终浓度均为400 nmol/L。建立的荧光RAA法特异性强,纯菌灵敏度达到3×102 CFU/mL。加标食品基质牛肉、大西洋鲑鱼及再制干酪LB2增菌只需4 h,即可检测原始浓度分别达到0.3、3、30 CFU/mL的单增李斯特菌。荧光RAA法只需5 min即可观察结果,20-30 min完成扩增,速度及灵敏度明显高于国标法。[结论] 建立的荧光RAA法可用于口岸和其他场所进行单增李斯特菌的快速检测与监控。  相似文献   

11.
An immunochromatography (ICG) strip test based on a monoclonal antibody for the rapid detection of L. monocytogenes in meat and processed-meat samples was developed in this study. A monoclonal antibody (MAb) specific to L. monocytogenes was produced from cloned hybridoma cells (FKLM-3B12-37) and used to develop an ICG strip test. The antibody showed a stronger binding to L. monocytogenes than other Listeria species, and a weak cross-reaction to S. aureus based on an ELISA. The detection limit of the ICG strip test was 10(5) cell/ml. In total, 116 meat and processed-meat samples were collected and analyzed using both the ICG strip test and a PCR. The ICG strip test and PCR indicated L. monocytogenes contamination in 34 and 27 meat samples, respectively. The 7 meat samples not identified as L. monocytogenes positive by the PCR were also tested using an API kit and found to be contaminated by Listeria species. In conclusion, the ICG strip test results agreed well with those obtained using the PCR and API kit. Thus, the developed ICG has potential use as a primary screening tool for L. monocytogenes in various foods and agricultural products, generating results within 20 min without complicated steps.  相似文献   

12.
AIM: Study of the effectiveness of in situ bacteriocin production by lactic acid bacteria (LAB) to control Listeria monocytogenes in dry-fermented sausages. METHODS AND RESULTS: Two bacteriocin-producing strains: Lactococcus lactis subsp. lactis LMG21206 and Lactobacillus curvatus LBPE were grown in a pilot scale fermentor and lyophilized to be directly used in dry sausage fermentation. A commercial starter culture (Bel'meat SL-25) not inhibitory to L. monocytogenes (Bac- starter) was mixed (1 : 1) with each of the two lyophilized bacteriocin-producing strains to obtain starters active against the pathogen (Bac+ starter). Anti-Listeria effectiveness of the Bac+ starters was studied in dry-fermented sausages. The meat batter was experimentally contaminated with a mixture of four different strains of L. monocytogenes (10(2)-10(3) CFU g(-1)). The results showed that L. monocytogenes did not grow in any of the contaminated batches, but no significant decrease (P > 0.05) was observed either in the positive control (no added starter culture) or in samples fermented with the Bac- starter culture during the fermentation period and up to 15 days of drying. When the Bac+ starter contained Lb. curvatus LBPE, cell counts of L. monocytogenes decreased to below the detectable limit (<10 CFU g(-1)) after 4 h of fermentation and no survivors could be recovered by enrichment beyond day 8 of drying. When the Bac+ starter culture containing Lc. lactis LMG21206 was used, a decrease in Listeria counts to below the detectable limit was achieved after 15 days of drying. CONCLUSIONS: The bacteriocin-producing strains studied may be used as adjunct cultures for sausage fermentations to control the occurrence and survival of L. monocytogenes. SIGNIFICANCE AND IMPACT OF THE STUDY: Addition of the Bac+ strains, especially the Lb. curvatus strain would provide an additional hurdle to enhance the control of L. monocytogenes in fermented meat products.  相似文献   

13.
A rapid polymerase chain reaction (PCR) method was developed for detection of Listeria monocytogenes in foods. This method used a pair of primers based on a unique region in the 16S rRNA sequence of L. monocytogenes, which were previously reported by us to yield a specific nucleic acid probe. Our method included use of a shorter denaturing time, a shorter annealing time, a rapid transition, and an increase in the number of cycles, resulting in good sensitivity. Just 3 h for PCR plus 1 h for electrophoresis was required. Additional time for DNA isolation and DNA hybridization was not needed. This method detected as few as 2 to 20 CFU of L. monocytogenes in pure cultures and as few as 4 to 40 CFU of L. monocytogenes in inoculated (10(8) CFU), diluted food samples. Seven of eight foods, including four poultry products, gave positive results. Only one food sample, soft cheese, gave interference. An internal probe hybridization test was used to confirm that the PCR products were from L. monocytogenes. A specificity test indicated that this PCR method was positive for all 13 strains of L. monocytogenes tested but negative for the other 6 species of Listeria, including 6 strains of L. innocua, and negative for 17 other gram-positive and gram-negative bacteria tested.  相似文献   

14.
R F Wang  W W Cao    M G Johnson 《Applied microbiology》1992,58(9):2827-2831
A rapid polymerase chain reaction (PCR) method was developed for detection of Listeria monocytogenes in foods. This method used a pair of primers based on a unique region in the 16S rRNA sequence of L. monocytogenes, which were previously reported by us to yield a specific nucleic acid probe. Our method included use of a shorter denaturing time, a shorter annealing time, a rapid transition, and an increase in the number of cycles, resulting in good sensitivity. Just 3 h for PCR plus 1 h for electrophoresis was required. Additional time for DNA isolation and DNA hybridization was not needed. This method detected as few as 2 to 20 CFU of L. monocytogenes in pure cultures and as few as 4 to 40 CFU of L. monocytogenes in inoculated (10(8) CFU), diluted food samples. Seven of eight foods, including four poultry products, gave positive results. Only one food sample, soft cheese, gave interference. An internal probe hybridization test was used to confirm that the PCR products were from L. monocytogenes. A specificity test indicated that this PCR method was positive for all 13 strains of L. monocytogenes tested but negative for the other 6 species of Listeria, including 6 strains of L. innocua, and negative for 17 other gram-positive and gram-negative bacteria tested.  相似文献   

15.
Pork meat and processed pork products have been the sources of outbreaks of listeriosis in France and in other European countries during the last decade. The aim of this review is to understand how contamination, survival and growth of Listeria monocytogenes can occur in pork meat products. This study discusses the presence of L. monocytogenes in raw pork meat, in the processing environment and in finished products. The prevalence of L. monocytogenes generally increases from the farm to the manufacturing plants and this mainly due to cross-contamination. In many cases, this pathogen is present in raw pork meat at low or moderate levels, but foods involved in listeriosis outbreaks are those in which the organism has multiplied to reach levels significantly higher than 1000 CFU g(-1). In such cases, L. monocytogenes has been able to survive and/or to grow despite the hurdles encountered during the manufacturing and conservation processes. Accordingly, attention must be paid to the design of food-processing equipment and to the effectiveness of the cleaning and disinfecting procedures in factories. Finally, the production of safe pork meat products is based on the implementation of general preventive measures such as Good Hygiene Practices, Good Manufacturing and the Hazard Analysis Critical Control Point.  相似文献   

16.
AIMS: Isolation of bacteriocinogenic lactic acid bacteria (LAB) from the Malaysian mould-fermented product tempeh and characterization of the produced bacteriocin(s). METHODS AND RESULTS: LAB were present in high numbers in final products as well as during processing. Isolates, Enterococcus faecium B1 and E. faecium B2 (E. faecium LMG 19827 and E. faecium LMG 19828, respectively) inhibited Gram-positive indicators, including Listeria monocytogenes. Partially purified bacteriocins showed a proteinaceous nature. Activity was stable after heat-treatment except at alkaline pH values. Both strains displayed a bacteriostatic mode of action. Bacteriocin production was associated with late exponential/early stationary growth. Molecular mass, calculated by SDS-PAGE, was 3.4 kDa for B1 bacteriocin, and 3.4 kDa and 5.8 kDa for B2 bacteriocins. PCR screening of enterocin-coding genes revealed three amplified fragments in total genomic DNA that may correspond with PCR signals for enterocin P, enterocin L50A and enterocin L50B. Both B1 and B2 contained a 42-kb plasmid. No differences in bacteriocinogenic capacity were found between wild type strains and plasmid-cured strains. CONCLUSIONS: It was possible to isolate bacteriocinogenic E. faecium active against various Gram-positive bacteria from final products of tempeh. SIGNIFICANCE AND IMPACT OF THE STUDY: A first step in applying biopreservation to fermented South-east Asian foods is to obtain bacteriocinogenic LAB from this source. Such isolates may also be used for biopreservation of mould-fermented foods in general, including various types of mould-ripened cheese.  相似文献   

17.
An experimental protocol to validate secondary-model application to foods was suggested. Escherichia coli, Listeria monocytogenes, Bacillus cereus, Clostridium perfringens, and Salmonella were observed in various food categories, such as meat, dairy, egg, or seafood products. The secondary model validated in this study was based on the gamma concept, in which the environmental factors temperature, pH, and water activity (aw) were introduced as individual terms with microbe-dependent parameters, and the effect of foodstuffs on the growth rates of these species was described with a food- and microbe-dependent parameter. This food-oriented approach was carried out by challenge testing, generally at 15 and 10 degrees C for L. monocytogenes, E. coli, B. cereus, and Salmonella and at 25 and 20 degrees C for C. perfringens. About 222 kinetics in foods were generated. The results were compared to simulations generated by existing software, such as PMP. The bias factor was also calculated. The methodology to obtain a food-dependent parameter (fitting step) and therefore to compare results given by models with new independent data (validation step) is discussed in regard to its food safety application. The proposed methods were used within the French national program of predictive microbiology, Sym'Previus, to include challenge test results in the database and to obtain predictive models designed for microbial growth in food products.  相似文献   

18.
AIMS: This study was undertaken to investigate the prevalence and lineages of Listeria monocytogenes in different kinds of food products in local Chinese markets. METHODS AND RESULTS: A total of 2686 food samples and 645 water samples were collected and L. monocytogenes was isolated from 2.28% (76 of 3331) of all samples. The prevalence of L. monocytogenes (14 of 290, 4.83%) in raw meat products was significantly higher than that in other raw food products (P < 0.05). Among 844 ready-to-eat (RTE) food samples, 21 samples were positive for L. monocytogenes. RTE packaged food products from two supermarkets had a prevalence ranging from 0.00% to 25.00%. The prevalence of L. monocytogenes in meat products of freshly slaughtered hogs was 0.95% (four of 420), significantly lower than that in raw meat products in the retail markets (P < 0.05). Ten isolates were recovered from 645 water samples, which were collected after hands washing by shopkeepers or waiters. A total of 38 isolates were randomly selected for lineage classification based on the nucleotide variation of actA gene. Eighty percentage of isolates from RTE food products belonged to Lineage II while only 20% belonged to Lineage I. CONCLUSIONS: Food products in Chinese markets are contaminated with L. monocytogenes. Raw meat products have the highest contamination rates among all the raw food samples. RTE food products are more likely to be contaminated with Lineage II strains. SIGNIFICANCE AND IMPACT OF THE STUDY: The data presented here show the main contamination sources of L. monocytogenes in Chinese food products.  相似文献   

19.
AIMS: To evaluate the performances of models predicting the growth rate or the growth probability of Listeria monocytogenes in food. METHODS AND RESULTS: Cardinal and square root type models including or not interactions between environmental factors and probability models were evaluated for their ability to describe the behaviour of L. monocytogenes in liquid dairy products, cheese, meat and seafood products. Models excluding interactions seemed sufficient to predict the growth rate of L. monocytogenes. However, the accurate prediction of growth/no-growth limits needed to take interactions into account. A complete and a simplified form (preservatives deducted) of a new cardinal model including interactions and parameter values were suggested to predict confidence limits for the growth rate of L. monocytogenes in food. This model could also be used for the growth probability prediction. CONCLUSIONS: The new cardinal model including interactions was efficient to predict confidence limits for the growth rate of L. monocytogenes and its growth probability in liquid dairy products, meat and seafood products. In cheese, the model was efficient to predict the absence of growth of the pathogen. SIGNIFICANCE AND IMPACT OF THE STUDY: The suggested model can be used for risk assessment and risk management concerning L. monocytogenes in dairy, meat and seafood products.  相似文献   

20.
Wheat contains various essential nutrients including the B group of vitamins. However, B group vitamins, normally present in cereals-derived products, are easily removed or destroyed during milling, food processing or cooking. Lactic acid bacteria (LAB) are widely used as starter cultures for the fermentation of a large variety of foods and can improve the safety, shelf life, nutritional value, flavor and overall quality of the fermented products. In this regard, the identification and application of strains delivering health-promoting compounds is a fascinating field. Besides their key role in food fermentations, several LAB found in the gastrointestinal tract of humans and animals are commercially used as probiotics and possess generally recognized as safe status. LAB are usually auxotrophic for several vitamins although certain strains of LAB have the capability to synthesize water-soluble vitamins such as those included in the B group. In recent years, a number of biotechnological processes have been explored to perform a more economical and sustainable vitamin production than that obtained via chemical synthesis. This review article will briefly report the current knowledge on lactic acid bacteria synthesis of vitamins B2, B11 and B12 and the potential strategies to increase B-group vitamin content in cereals-based products, where vitamins-producing LAB have been leading to the elaboration of novel fermented functional foods. In addition, the use of genetic strategies to increase vitamin production or to create novel vitamin-producing strains will be also discussed.  相似文献   

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