• Title/Summary/Keyword: Food-borne pathogenic

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Inhibition of Spoilage and Pathogenic Bacteria by Lacticin NK24, a Bacteriocin Produced by Lactococcus lactis NK24 from Fermented Fish Food (젓갈유래 박테리오신 Lacticin NK24에 의한 식품부패 및 병원성 세균의 생육저해)

  • Kim, Hae-Jung;Lee, Na-Kyoung;Cho, Sang-Moon;Kim, Kee-Tae;Paik, Hyun-Dong
    • Korean Journal of Food Science and Technology
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    • v.31 no.4
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    • pp.1035-1043
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    • 1999
  • Bacteriocins are natural antimicrobial compounds produced by many microorganisms associated with foods, so that there is currently much interest in their use as food biopreservatives. Goal of this study was to partially evaluate lacticin NK24 as a food biopreservative by showing antimicrobial activity of L. lactis NK24 and lacticin NK24 against food-borne spoilage and pathogenic bacteria, respectively. Lactic acid bacteria NK24 isolated from jeot-gal, Korean fermented fish foods, was tentatively identified as Lactococcus lactis and showed broad spectrum of activity against all of spoilage and pathogenic bacteria tested by deferred method. Bacteriocin production in jar fermenter was detected at the mid-log growth phase, and reached the maximum at the early stationary phase, but decreased after the stationary phase. Lacticin NK24 was partially purified by 75% ammonium sulfate precipitation followed by subsequent dialysis. This partially purified lacticin NK24 showed antimicrobial activity against Enterococcus faecalis, Staphylococcus aureus, Staphylococcus epidermidis, Clostridium perfringens, some bacilli, Listeria monocytogenes, Listeria ivanovii, Sphin-gomonas pausimobilis, Escherichia coli and Pseudomonas aeruginosa. Thus, lacticin NK24 examined in this study show promise as a biopreservative be-cause of their broad spectrum of activity.

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Microbiological Study using Monitoring of Microorganism in Salt-Fermented Fishery Products (젓갈류에서의 위생지표 미생물 및 식중독균 모니터링을 통한 미생물학적 연구)

  • Lee, Sun-Mi;Lim, Jong-Mi;Kim, Ki-Hyun;Cho, Soo-Yeol;Park, Kun-Sang;Sin, Yeong-Min;Cheung, Chi-Yeun;Cho, Joon-Il;You, Hyun-Jeong;Kim, Kyu-Heon;Cho, Dae-Hyun;Lim, Chul-Ju;Kim, Ok-Hee
    • Journal of Food Hygiene and Safety
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    • v.23 no.3
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    • pp.198-205
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    • 2008
  • In this study, microbial investigation is accomplished for 554 Jeot-kal samples(102 of Jeot-kal, 448 of Seasoned Jeot-kal and 4 of Sik-khe, respectively) that corresponds with Coliform-bacteria, Escherichia coli, Aerobic live bacteria as hygienic indicator microorganisms, and Staphylococcus aureus, Vibrio parahaemolyticus as Food-borne pathogenic microorganisms, Based on the methods in Korea Food Code, reliable data are obtained as follows; in 31.9% rate of the samples, Coliform bacteria are verified in the extent of $0{\sim}20,000$ CFU/g as 2.3 logCFU/g. Especially, Seasoned Jeot-kal(37.7%,2.3 logCFU/g) are detected to 6 and 2 folds higher than those of Jeot-kal, 5.9% and 1.4 logCFU/g. Likewise, Escherichia coli is detected from 9 samples only in Seasoned Jeot-kal, that includes seasoned squid, seasoned octopus, seasoned roe of pollack, seasoned large-eyed herring and seasoned hairtail. Aerobic live bacteria are also detected in the range of $0{\sim}8.9{\times}10^8CFU/g$. Against salinity, E. coli are detected in samples only less than 10% salinity. Concomitantly, aerobic live bacteria count is decreased to $5.5{\sim}3.6$ log CFU/g upon the salinity is increased up to 25%. However, S. aureus and V. parahaemolyticus are not detected in 554 samples, presumptively referring Jeot-kal products are somehow free from such food-borne pathogens. As the results above, we deliberately consider that the sanitary control in Jeot-kal, which be necessarily fermented- as well as non-microbially inactivated should be ensured in near future and also suggest an effectual microbial standard corresponding to the Negativity in E. coli for Jeot-kal products.

Effects of Concentration of ZnO Nanoparticles on Mechanical, Optical, Thermal, and Antimicrobial Properties of Gelatin/ZnO Nanocomposite Films

  • Shankar, Shiv;Teng, Xinnan;Rhim, Jong-Whan
    • KOREAN JOURNAL OF PACKAGING SCIENCE & TECHNOLOGY
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    • v.20 no.2
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    • pp.41-49
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    • 2014
  • This study illustrates the synthesis of gelatin based zinc oxide nanoparticle (ZnONPs) incorporated nanocomposite films using different concentrations of ZnONPs. The ZnONPs were oval in shape and the size ranged from 100- 200 nm. The nanocomposite films were characterized by UV-visible, FE-SEM, FT-IR, and XRD. The concentrations of ZnONPs greatly influenced the properties of nanocomposite films. The absorption peaks around 360 nm increased with the increasing concentrations of ZnONPs. The surface color of film did not change while transmittance at 280 nm was greatly reduced with increase in the concentration of ZnONPs. FTIR spectra showed the interaction of ZnONPs with gelatin. XRD data demonstrated the crystalline nature of ZnONPs. The thermostability, char content, water contact angle, water vapor permeability, moisture content, and elongation at break of nanocomposite films increased, whereas, tensile strength and modulus decreased with increase in the concentrations of ZnONPs. The gelatin/ZnONPs nanocomposite films showed profound antibacterial activity against both Gram-positive and Gram-negative food-borne pathogenic bacteria. The gelatin/$ZnONP^{1.5}$ nanocomposite film showed the best UV barrier and antimicrobial properties among the tested-films, which indicated a high potential for use as an active food packaging films with environmentally-friendly nature.

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An Investigation of Microbial Contamination of Side Dishes sold at Traditional Market and Super Market in Ulsan (울산지역 재래시장 및 대형 할인점 유통 반찬류의 미생물 오염도 조사)

  • Choi, Jeong-Hwan;Park, Joo-Young;Lim, Eun-Gyung;Choi, Myung-Kyu;Kim, Jong-Soo;Choi, Gil-Bae;Jeong, Su-Geun;Hahm, Yu-Sik
    • Journal of Food Hygiene and Safety
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    • v.27 no.1
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    • pp.87-95
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    • 2012
  • This study was investigated to determine the contamination levels of total aerobic bacteria, coliform group, $E.$ $coli$ and food-borne pathogens of side dishes from 2 traditional markets (100 samples) and 2 super markets (100 samples) located on Ulsan. The levels (range) of total aerobic bacteria was 4.75 log CFU/g (1.60~6.92 log CFU/g) in traditional market and 4.62 log CFU/g (2.00~6.46 log CFU/g) in super market, respectively. Coliform was detected in 64 and 66 samples sold at traditional markets and super markets, respectively. $E.$ $coli$ was detected in 4 and 6 samples sold at traditional markets and super markets, respectively. The food-borne pathogens, namely $Bacillus$ $cereus$ and $Listeria$ $monocytogenes$ were detected in 1 sample sold at traditional markets, respectively, and $Bacillus$ $cereus$ was detected in 4 samples sold at super markets. However, other pathogens such as $Salmonella$ spp., $Shigella$ spp., $Vibrio$ $parahaemolyticus$, $Yersinia$ $enterocolitica$, $Clostridium$ $perfringens$, $Camphylobacter$ $jejuni$ and Pathogenic $E.$ $coli$ were not detected. The $Saengchae$ and $Seasoned$ $Jeotgal$ were relatively vulnerable compared to the others in the food-borne pathogens.

Analysis of Food Poisoning Outbreaks Occurred in Chungnam Korea, 2019 (2019년 충남지역에서 발생한 식중독 현황과 원인분석)

  • Lee, Hyunah;Nam, Hae-Sung;Choi, Jihye;Park, Seongmin;Park, Jongjin;Kim, Hyeonmin;Cheon, Younghee;Park, Junhyuk
    • Journal of Environmental Health Sciences
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    • v.46 no.2
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    • pp.184-191
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    • 2020
  • Objectives: This study was performed to analyze cases of food poisoning outbreaks reported in Chungcheongnamdo Province in 2019 and report it as effective data for preventing food poisoning in the future. Methods: Food poisoning outbreaks were analyzed to detect virus, bacteria, and protozoa according to the Manual for Detection of Foodborne Pathogens in Outbreaks to clarify the causes of food poisoning that occurred in Chungcheongnam-do Province in 2019. Results: Among the 79 cases of food poisoning outbreaks, 59 cases (74.7%) were in general restaurants, 15 cases (19.0%) in food service institutions, three cases at banquets, and two cases in take-out food. The 42 cases at general seafood restaurants made up the majority of food poisoning in Chungcheongnam-do. Food poisoning pathogens were shown in 13 cases (86.7%) out of the 15 cases at food service institutions, and 10 cases were related to Norovirus. Among the 79 cases, food-borne pathogens were identified in 35 cases of outbreaks, accounting for 44.3%. The confirmed pathogens were as follows: bacteria (24 cases), Norovirus (12 cases) and Kudoa septempunctata. (five cases). The food-borne bacteria were pathogenic E. coli (12 cases), Staphylococcus aureus (six cases), Salmonella spp. (two cases), Campylobacter jejuni, Bacillus cereus, Clostridium perfringens, and Vibrio parahaemolyticus (one case). Conclusions: To prevent food poisoning, it is necessary to analyze regional characteristics and environments and to hold a campaign for the prevention of food poisoning based on that analysis. In addition, when food poisoning occurs, the results of analyzing its cause and spread based on accurate epidemiological survey need to be shared.

Distribution of Microorganisms in Seonsik and Saengsik (곡류 가공품중의 미생물 오염도 조사)

  • Kim Jung-Beom;Park Yong-Bae;Kang Jeong-Bok;Kim Jong-Chan
    • Journal of environmental and Sanitary engineering
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    • v.20 no.1 s.55
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    • pp.12-22
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    • 2005
  • This study was performed to survey distribution of microorganisms and food-borne pathogenic bacterium in order to estimate microbiological safety in seonsik and saengsik. Total aerobic bacteria was detected over $10^5\;CFU/g$ in raw materials($4.3\%$) and products($35.7\%$) of saengsik. Coliforms were detected over $10^2\;CFU/g$ in seonsik products($27.3\%$) and in raw materials($4.3\%$) and products($35.7\%$) of saengsik. Cl. perfringens was detected in saengsik products($4.8\%$). B. cereus was detected in raw materials($12.5\%$) and products($18.2\%$) of seonsik and raw materials($13.0\%$) and products($23.8\%$) of saengsik. Concentration and detection rate of microorganisms in products were higher than raw materials. These results show some food hygiene problems but do not cause food poisoning because concentration of Clostridium perfringens and B. cereus were lower than $10^5\;CFU/g$.

Synergistic Effect of Combined Treatment of Bacteriocin Produced by Enterococcus faecalis MJ-231 and Potassium Sorbate on Growth of Food-Borne Pathogenic Bacteria (식중독균 생육에 대한 Enterococcus faecalis MJ-231의 박테리오신과 소르빈산칼륨의 혼합처리 효과)

  • Lim, Sung-Mee
    • Korean Journal of Microbiology
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    • v.46 no.2
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    • pp.192-199
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    • 2010
  • The alone and combined effects of bacteriocin produced from Enterococcus faecalis MJ-213 and potassium sorbate against the food-borne pathogenic bacteria were studied. Bacteriocin minimal inhibitory concentration (MIC) values for Staphylococcus aureus ATCC 6538 and Salmonella enteritidis ATCC 13076 were 50 and 100 ${\mu}g$/ml, respectively. Bacteriocin (100 ${\mu}g$/ml) alone was active against S. aureus and S. enteritidis, but it was lower in antimicrobial effectiveness than the combination of bacteriocin (100 ${\mu}g$/ml) with potassium sorbate (100 ${\mu}g$/ml), which reduced initial counts (6 log cycle) of S. aureus and S. enteritidis by 1 and 3 log cycle, respectively. The bactericidal activity of bacteriocin of E. faecalis MJ-213 heated at $100^{\circ}C$ for 30 min or $121^{\circ}C$ for 15 min was markedly decreased as compared with the control. Moreover, the activity of bacteriocin was completely abolished by pepsin or protease II, but not affected by ${\alpha}$-amylase or lipase. The activity of bacteriocin adjusted to pH 6.0-8.0 showed almost the same inhibition ratio compared with the bacteriocin unadjusted pH, and though the inhibition ratio against pathogenic bacteria was reduced than the control, the bacteriocin was stable at pH 4.0 or 10.0, relatively. Furthermore, the combined treatment of bacteriocin and potassium sorbate than the alone treatment of bacteriocin significantly decreased (p<0.05) the viable cell counts of S. aureus or S. enteritidis inoculated on grind beef during storage at $4^{\circ}C$.

Toxin Gene Profiles and Toxin Production Ability of Food-borne Pathogens Isolated from Indoor Air from Lunchrooms at Child Care Centers (보육시설 급식실 실내공기에서 분리된 식중독 세균의 독소 유전자 및 독소 생산 특성)

  • Kim, Jung-Beom;Kim, Jong-Chan
    • Journal of Environmental Health Sciences
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    • v.38 no.6
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    • pp.510-519
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    • 2012
  • Objectives: This study was conducted in order to evaluate the microbiological contamination of the indoor air of the lunchrooms at child care centers and investigate the toxin genes and toxin production ability of food-borne pathogens. Methods: A total of 64 child care centers were sampled to test total aerobic bacteria, coliform bacteria, fungi, Staphylococcus aureus, Bacillus cereus and Salmonella spp. according to the Korea Food Code. All toxin genes of pathogens were detected using the Polymerase Chain Reaction method. The Sthaph. aureus enterotoxin was detected by a Staphylococcus aureus enterotoxin-reversed passive latex agglutination kit. The heamolysin BL (HBL) and non-heamolytic enterotoxin (NHE) produced by B. cereus were detected using a B. cereus enterotoxin-reversed passive latex agglutination kit and Bacillus diarrheal enterotoxin visual immunoassay kit, respectively. Results: The means of total aerobic bacteria and coliform bacteria were $1.91{\pm}1.84$ log CFU/plate and $0.47{\pm}0.62$ log CFU/plate, respectively. The mean of fungi also showed $0.59{\pm}0.71$ log CFU/plate. Among the pathogenic bacteria tested in this study, Staphy. aureus and B. cereus were detected in four (6.3%) and 21 (32.8%) out of 64 indoor air samples from lunchrooms in child care centers, respectively. All Staphy. aureus tested in this study possessed no toxin genes and did not produce enterotoxin. The detection rate of nheABC, hblCDA, entFM and ces toxin gene in B. cereus was 100, 57.1, 76.2 and 0%, respectively. B. cereus isolates were classified into four groups according to the presence or absence of toxin genes. The nheABC gene was the major toxin gene among B. cereus tested in this study. The HBL was detected in 11 out of 21 B. cereus isolates (52.4%) and three B. cereus isolates produced NHE (14.3%). Conclusion: The results indicated that the contamination by microorganisms in the indoor air of lunchrooms was unqualified to supply safe catering in child care centers. The ongoing control of indoor air quality is required.

Virulence and Antimicrobial Resistance Gene Profiling of Salmonella Isolated from Swine Meat Samples in Abattoirs and Wet Markets of Metro Manila, Philippines

  • Rance Derrick N. Pavon;Windell L. Rivera
    • Microbiology and Biotechnology Letters
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    • v.51 no.4
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    • pp.390-402
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    • 2023
  • Salmonella are Gram-negative pathogenic bacteria commonly found in food animals such as poultry and swine and potentially constitute risks and threats to food safety and public health through transmissible virulence and antimicrobial resistance (AMR) genes. Although there are previous studies in the Philippines regarding genotypic and phenotypic AMR in Salmonella, there are very few on virulence and their associations. Hence, this study collected 700 Salmonella isolates from swine samples in abattoirs and wet markets among four districts in Metro Manila and characterized their genotypic virulence and β-lactam AMR profiles. Gene frequency patterns and statistical associations between virulence and bla genes and comparisons based on location types (abattoirs and wet markets) and districts were also determined. High prevalence (>50%) of virulence genes was detected encompassing Salmonella pathogenicity islands (SPIs) 1-5 suggesting their pathogenic potential, but none possessed plasmid-borne virulence genes spvR and spvC. For bla, blaTEM was detected with high prevalence (>45%) and revealed significant associations to four SPI genes, namely, avrA, hilA, mgtC, and spi4R, which suggest high resistance potential particularly to β-lactam antibiotics and relationships with pathogenicity that remain mechanistically unestablished until now. Lastly, comparisons of location types and districts showed variations in gene prevalence suggesting effects from environmental factors throughout the swine production chain. This study provides vital data on the genotypic virulence and AMR of Salmonella from swine in abattoirs and wet markets that suggest their pathogenicity and resistance potential for policymakers to implement enforced surveillance and regulations for the improvement of the Philippine swine industry.

An ELISA-on-a-Chip Biosensor System for Early Screening of Listeria monocytogenes in Contaminated Food Products

  • Seo, Sung-Min;Cho, Il-Hoon;Kim, Joo-Ho;Jeon, Jin-Woo;Oh, Eun-Gyoung;Yu, Hong-Sik;Shin, Soon-Bum;Lee, Hee-Jung;Paek, Se-Hwan
    • Bulletin of the Korean Chemical Society
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    • v.30 no.12
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    • pp.2993-2998
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    • 2009
  • An enzyme-linked immunosorbent assay (ELISA)-on-a-chip (EOC) biosensor combined with cell concentration technology based on immuno-magnetic separation (IMS) was investigated for use as a potential tool for early screening of Listeria monocytogenes (L. monocytogenes) in food products. The target analyte is a well-known pathogenic foodborne microorganism and outbreaks of the food poisoning typically occur due to contamination of normal food products. Thus, the aim of this study was to develop a rapid and reliable sensor that could be utilized on a daily basis to test food products for the presence of this pathogenic microorganism. The sensor was optimized to provide a high detection capability (e.g., 5.9 ${\times}\;10^3$ cells/mL) and, to eventually minimize cultivation time. The cell density was condensed using IMS prior to analysis. Since the concentration rate of IMS was greater than 100-fold, this combination resulted in a detection limit of 54 cells/mL. The EOC-IMS coupled analytical system was then applied to a real sample test of fish intestines. The system was able to detect L. monocytogenes at a concentration of 2.4 CFU/g after pre-enrichment for 6 h from the onset of cell cultivation. This may allow us to monitor the target analyte at a concentration less than 1 CFU/g within a 9 h-cultivation provided a doubling time of 40 min is typically maintained. Based on this estimation, the EOC-IMS system can screen and detect the presence of this microorganism in food products almost within working hours.