• Title/Summary/Keyword: inactivated (non-viable)

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Potential Health-Promoting Benefits of Paraprobiotics, Inactivated Probiotic Cells

  • Akter, Shahina;Park, Jong-Hyun;Jung, Hoo Kil
    • Journal of Microbiology and Biotechnology
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    • v.30 no.4
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    • pp.477-481
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    • 2020
  • Viability plays an important role in the beneficial microbes (probiotics) to produce health benefits. However, this idea has been changed after the invention of the term "paraprobiotics," indicating that non-viable microbes could produce health benefits similar to those produced by live probiotics. Occasionally, it might be dangerous to administer live probiotics to people with weak immunity. In such cases, ingestion of paraprobiotics could be a potential alternative. The definition of paraprobiotics refers to the use of inactivated (non-viable) microbial cells or cell fractions to provide health benefits to the consumer. Paraprobiotics have attracted much attention because of their long shelf life, safety, and beneficial effects, such as modulation of immunity, modification of biological responses, reduction of cholesterol, anti-inflammatory, and antiproliferative properties. These features indicate that paraprobiotics may play a vital role in improving the health of the consumer by enhancing particular physiological functions, even though the exact underlying mechanisms have not yet been completely elucidated. In this mini-review, we briefly discuss the historical backgrounds of paraprobiotics and evidence of their health-promoting effects, prophylactic, and therapeutic properties.

Assessment of Inactivation for Campylobacter spp. Attached on Chicken Meat (계육에 오염된 Campylobacter 균의 불활성화 평가)

  • Jang Keum-Il;Jeong Heon-Sang;Kim Chung-Ho;Kim Kwang-Yup
    • Microbiology and Biotechnology Letters
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    • v.33 no.4
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    • pp.302-307
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    • 2005
  • The inactivation efficiency of Campylobacter jejuni were assessed in vitro and in vivo using confocal laser microscopy and flow cytometry. C. jejuni cells were inactivated with $1\%$ (w/v) trisodium phosphate (TSP) and the live cells and inactivated cells were distinguished by staining with LIVE/DEAD BacLight Bacteria Viability fluorescent probe. After treatment of TSP for 5 min, most of C. jejuni cells turned to coccoid form from original spiral shape. C. jejuni cells lost total cell viability in the absence of organic nutrients but did not lost total cell viability in the presence of organic nutrients. In vivo test, C. jejuni cells turned to viable but non-culturable (VBNC) form after TSP treatment and remained alive on chicken skin. C. jejuni cells attached on chicken meat would transform to coccoid form by sanitizer treatment, but could possibly be alive by the benefits of organic nutrients present in chicken meat.

Changes in Quality Characteristics of Seasoned Soy Sauce Treated with Superheated Steam and High Hydrostatic Pressure during Cold Storage (과열증기와 초고압 처리법을 적용한 간장 소스의 냉장저장 중 품질 특성 변화)

  • Choi, Yoon;Oh, Ji-Hye;Bae, In-Young;Cho, Eun-Kyoung;Kwon, Dae-Joong;Park, Hae-Won;Yoon, Sun
    • Korean journal of food and cookery science
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    • v.29 no.4
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    • pp.387-398
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    • 2013
  • Seasoned soy sauce is one of the popular seasoning sauces added to the Korean traditional foods such as Bulgogi, Galbi. However, industrially processed sauces have poor sensory quality because of heating treatment for sterilization. The purpose of this study was to develop seasoned soy sauce having fresh taste and good quality by applying superheated steam (SHS) and high hydrostatic pressure (HHP) technologies. To maintenance the sauce qualities, food materials such as apple, onion, and garlic were pretreated with SHS (heater $100^{\circ}C$, steam $280^{\circ}C$, 30 s~1 min 30 s) before mixing with other ingredients. During storage of 7 days, color, pH, and browning potential of SHS treated samples (apple, onion and garlic) did not change and also polyphenol oxidase was inactivated (p<0.05). The seasoned soy sauce including SHS treated materials was sterilized by thermal process ($85^{\circ}C$, 30min) or non-thermal process, HHP (550 MPa, $5{\sim}10^{\circ}C$, 3 min). In SHS+HHP treated sauce, salinity, sugar contents, lightness, viscosity did not change (p<0.05), and total viable cell counts were detected below 4 log cycle at $5^{\circ}C$ for 30 days. E.coli and B.cereus are not determined in all samples. In sensory evaluation, Bulgogi prepared with SHS+HHP treated sauce was more acceptable than others.

Effect of High Pressure after the Addition of Vegetable Oil on the Safety and Quality of Beef Loin (식물성 유지 첨가 후 초고압 처리가 우육의 안전성 및 육질에 미치는 영향)

  • Jung, Yeon-Kook;Jung, Samooel;Lee, Hyun-Jung;Kang, Min-Gu;Lee, Soo-Kee;Kim, Yun-Ji;Jo, Cheorun
    • Food Science of Animal Resources
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    • v.32 no.1
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    • pp.68-76
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    • 2012
  • Olive oil and grape seed oil (10% of meat weight) were added to a package of beef loin. The package was then vacuum-sealed, and high pressure was applied (HP, 600 MPa) to investigate the effect of the penetration of vegetable oil into meat and safety and quality of the meat. Non-HP (0.1 MPa) without any oil treatment was considered as a control. The color $L^*$ and $b^*$-values of beef loin were higher and the $a^*$-value was lower than those of the control after HP at 600 MPa. The total aerobic bacterial number was 3 Log CFU/g in the control but no viable cell was detected in the beef with 600 MPa. All inoculated E. coli and L. monocytogenes were inactivated by HP. The beef loin with vegetable oil added without HP did not show any difference in fatty acid composition, but that treated by HP showed a higher oleic and linoleic acid content when olive oil and grape seed oil were added, respectively. The addition of olive oil inhibited lipid oxidation, and sensory evaluation revealed that there was no difference among treatments. The results indicate that the addition of vegetable oil followed by the application of HP enhances the safety of beef loin, changing the fatty acid composition in a health beneficial way. In addition, the use of olive oil can inhibit lipid oxidation induced by HP.