• 제목/요약/키워드: thermal inactivation

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디프테리아 백신의 진화와 물리화학적, 분자생물학적, 면역학적 지식의 진보에 따른 새로운 백신의 개발에 관한 고찰연구 (The Evolution and Value of Diphtheria Vaccine)

  • 배경동
    • KSBB Journal
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    • 제26권6호
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    • pp.491-504
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    • 2011
  • This review article provides an overview of the evolution of diphtheria vaccine, its value and its future. Diphtheria is an infectious illness caused by diphtheria toxin produced by pathogenic strains of Corynebacterium diphtheriae. It is characterized by a sore throat with membrane formation due to local tissue necrosis, which can lead to fatal airway obstruction; neural and cardiac damage are other common complications. Diphtheria vaccine was first brought to market in the 1920s, following the discovery that diphtheria toxin can be detoxified using formalin. However, conventional formalin-inactivated toxoid vaccines have some fundamental limitations. Innovative technologies and approaches with the potential to overcome these limitations are discussed in this paper. These include genetic inactivation of diphtheria toxoid, innovative vaccine delivery systems, new adjuvants (both TLR-independent and TLR-dependent adjuvants), and heat- and freeze-stable agents, as well as novel platforms for producing improved conventional vaccine, DNA vaccine, transcutaneous (microneedle-mediated) vaccine, oral vaccine and edible vaccine expressed in transgenic plants. These innovations target improvements in vaccine quality (efficacy, safety, stability and consistency), ease of use and/or thermal stability. Their successful development and use should help to increase global diphtheria vaccine coverage.

아마리리스에 모자익병을 일으키는 CMV에 관한 연구 (Isolation and Properties of Cucumber Mosaic Virus Inducing Mosaic Symptoms in Hippeastrum hybridum Hort)

  • 김정수;김흥배;이순형
    • 한국응용곤충학회지
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    • 제20권2호
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    • pp.76-82
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    • 1981
  • 아마리리스에 모자익병을 일으키는 병원바이러스의 기주범위, 물리적성질, 혈청반응을 조사하고 바이러스 입자를 전자현미경으로 관찰을 하였다. 바이러스의 지표식물 검정 결과 C. amaranticolor, V. unguiculata, C. sativus G. globosa둥 21종의 CMV감수성식물에 병징이 나타났다. 바이러스의 내열성은 55C(10분간)이며 내희석성은 $10^{-3}$이고 내보존성은 실온에서 2일이었다. 한천내 확산법을 이용한 항혈청반응결과 뚜렷한 반응대가 형성되었으며, 바이러스흡광도는 260nm에서 최고였으며, 245nm에서 최저였다. 전자현미경에 의한 바이러스입자의 검경결과 직경이 90nm내외인 소구형 입자가 관찰되었다. 이상의 결과를 종합하면 아마리리스에 모자익병을 일으키는 것은 CMV에 의한 것으로 보인다.

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The Study of Heat Penetration of Kimchi Soup on Stationary and Rotary Retorts

  • Cho, Won-Il;Park, Eun-Ji;Cheon, Hee Soon;Chung, Myong-Soo
    • Preventive Nutrition and Food Science
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    • 제20권1호
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    • pp.60-66
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    • 2015
  • The aim of this study was to determine the heat-penetration characteristics using stationary and rotary retorts to manufacture Kimchi soup. Both heat-penetration tests and computer simulation based on mathematical modeling were performed. The sterility was measured at five different positions in the pouch. The results revealed only a small deviation of $F_0$ among the different positions, and the rate of heat transfer was increased by rotation of the retort. The thermal processing of retort-pouched Kimchi soup was analyzed mathematically using a finite-element model, and optimum models for predicting the time course of the temperature and $F_0$ were developed. The mathematical models could accurately predict the actual heat penetration of retort-pouched Kimchi soup. The average deviation of the temperature between the experimental and mathematical predicted model was 2.46% ($R^2=0.975$). The changes in nodal temperature and $F_0$ caused by microbial inactivation in the finite-element model predicted using the NISA program were very similar to that of the experimental data of for the retorted Kimchi soup during sterilization with rotary retorts. The correlation coefficient between the simulation using the NISA program and the experimental data was very high, at 99%.

막걸리 초기 효모 농도에 따른 살균특성 (Pasteurization Characteristics of Makgeolli (Korea Rice Wine) with Various Initial Concentrations of Yeasts)

  • 이진원;정윤경;박장우
    • 한국식품영양학회지
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    • 제26권4호
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    • pp.633-637
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    • 2013
  • There is an increasing consumption of Makgeolli in both domestic and foreign markets due to a high interest in Korean traditional alcoholic beverages. However, currently, a standardized system of manufacturing, storing and circulating Makgeolli is not available. Therefore, manufacturing the constant quality of finished products is hardly achieved due to the uncertified quality index of Makqeolli. In particular, quality changes occur as a result of variable initial load of microorganisms during shelf life. Eight different commercially available brands of Makgeolli were obtained, and their initial concentrations of yeasts were measured. One brand with the highest concentration was chosen, and the variable initial concentrations were prepared at a concentration of $10^6{\sim}10^8$ yeast CFU/ml. These Makgeolli samples were heat-treated at 65, 70, 75 or $80^{\circ}C$. It was shown that temperatures higher than $75^{\circ}C$ were needed in order to pasteurize Makgeolli properly. In addition;it is considered that controlling the microorganisms by a standardized system for the processing analysis would improve the quality of Makgeolli.

Immobilization on Chitosan of a Thermophilic Trehalose Synthase from Thermus thermophilus HJ6

  • Kim, Hyun-Jung;Kim, Ae-Ran;Jeon, Sung-Jong
    • Journal of Microbiology and Biotechnology
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    • 제20권3호
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    • pp.513-517
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    • 2010
  • A thermostable trehalose synthase (TtTSase) from Thermus thermophilus HJ6 was immobilized on chitosan activated with glutaraldehyde. The yield of immobilization was evaluated as 39.68%. The optimum pH of the immobilized enzyme was similar to that of the free enzyme. However, the optimal temperature ranges were shifted by about $4^{\circ}C$ owing to better thermal stability after immobilization. The half-life of heat inactivation for free and immobilized enzymes was 5.7 and 6.3 days at $70^{\circ}C$, respectively, thus showing a lager thermostability of the immobilized enzyme. When tested in batch reaction, the immobilized enzyme retained its relative activity of 53% after 30 reuses of reaction within 12 days, and still retained 82% of its initial activity even after 150 days at $4^{\circ}C$. A packed-bed bioreactor with immobilized enzyme showed a maximum yield of 56% trehalose from 100 mM maltose in a continuous recycling system (bed volume: 10 ml) under conditions of pH 7.0 and $70^{\circ}C$.

해수에서 분리한 Vibrio sp. M-96 균주의 열감수성 alkaline phosphatase 성질 (Properties of a Thermolabile Alkaline Phosphatase from the Marine Bacterium Vibrio sp. M-96)

  • 박문경;진덕희;김중균;공인수;김광현;홍용기
    • 생명과학회지
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    • 제6권3호
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    • pp.198-203
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    • 1996
  • A thermolabile alkaline phosphatase has been purified through steps of osmotic shock, ammonium sulfate salting-out, and DAEA-cellulose chromatography from the cultured broth of the marine Vibrio sp. M-96 strain. The optimal temperature for the enzyme activity was 35$\circ$C. The optimal pH was pH11.0, and the range of pHstability was pH10.4 to 12.0. Thermal inactivation occured within 6 mintes at 60$\circ$C. The enzyme was considerably inactivated by 0.1mM concentrations of Hg$^{2+}$, Ni$^{2+}$ and Zn$^{2+}$, whereas activated up to 234% by 1mM of Mn$^{2+}$. The activation energy and deactivation energy by the Arrhenius equation were 4.02 Kcal/mol and 9.098 Kcal/mol, respectively. The Km and Vmax values of the enzyme for p-introphenylphosphate were found to be 0.0465mM and 0.001334mM/min, respectively. Active form of the enzyme had a molecular weight of 57,000 dalton determined by the Sephadex G-200 gel filtration method.

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열처리된 효모의 생육에 미치는 인삼 Saponin의 영향 -Saccharomyces rouxii가 생산한 Amylase의 열변성에 대한 보호작용- (Effect of Ginseng Saponin on The Growth of Heat-Stressed Yeast Saccharomyces rouxii - Protective Effect of Saponin on The Heat Denaturation of The Amylase Produced by Saccharomyces rouxii-)

  • 오영숙;이갑랑
    • 한국식품영양과학회지
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    • 제19권6호
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    • pp.591-595
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    • 1990
  • 인삼saponin이 Saccharomyces rouxii의 생육속도나 고온충격으로부터의 정상회복속도를 크게 증가시킨다는 사실을 확인한 바 있다. 이러한 촉진효과의 원인을 추정하기위해 인삼saponin이 S. rouxii가 생산한 amylase의 활성에 미치는 영향이나 그 효소의 열변성에 미치는 보호효과를 조사해 본 결과는 다음과 같다. S. rouxii가 생산한 amylase의 환성은 pH 6.5에서 5$0^{\circ}C$로 반응시킴으로써 가장 크게 나타났다. 인삼saponin을 0.01% 첨가한 경우 amylase의 활성이 무첨가구에 비해 23% 정도 촉진되었으며, 인삼saponin 0.01%를 첨가한 경우 7$0^{\circ}C$로 가열처리시켜도 amylase의 활성이 무첨가 처리구에 비해 그 잔존활성 기준으로 28%나 열변성으로 부터 보호될 수 있었다. 이 결과로 미루어 보아 heat stress 받은 효모의 정상회복은 인삼saponin이 효소의 환성이나 효소의 열안정성에 기여하기 때문인 것으로 판단되었다.

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Characterization of Aspartate Aminotransferase Isoenzymes from Leaves of Lupinus albus L. cv Estoril

  • Martins, Maria Luisa Louro;De Freitas Barbosa, Miguel Pedro;De Varennes E Mendonca, Amarilis Paula Alberti
    • BMB Reports
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    • 제35권2호
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    • pp.220-227
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    • 2002
  • Two aspartate aminoransferase (EC 2.6.1.1) isoenzymes (AAT-1 and AAT-2) from Lupinus albus L. cv Estoril were separated, purified, and characterized. The molecular weight, pI value, optimum pH, optimum temperature, and thermodynamic parameters for thermal inactivation of both isoenzymes were obtained. Studies of the kinetic mechanism, and the kinetics of product inhibition and high substrate concentration inhibition, were performed. The effect of some divalent ions and irreversible inhibitors on both AAT isoenzymes was also studied. Native PAGE showed a higher molecular weight for AAT-2 compared with AAT-1. AAT-1 appears to be more anionic than AAT-2, which was suggested by the anion exchange chromatography. SDS-PAGE showed a similar sub-unit molecular weight for both isoenzymes. The optimum pH (between 8,0 and 9.0) and temperature ($60-65^{\circ}C$) were similar for both isoenzymes. In the temperature range of $45-65^{\circ}C$, AAT-2 has higher thermostability than AAT-1. Both isoenzymes showed a high affinity for keto-acid substrates, as well as a higher affinity to aspartate than glutamate. Manganese ions induced an increase in both AAT isoenzymes activities, but no cooperative effect was detected. Among the inhibitors tested, hydroxylamine affected both isoenzymes activity by an irreversible inhibition mechanism.

Effects of Pulsed Electric Field on Meat Tenderization and Microbial Decontamination: A Review

  • Se-Ho Jeong;Han-Beak Lee;Dong-Un Lee
    • 한국축산식품학회지
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    • 제44권2호
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    • pp.239-254
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    • 2024
  • This review sought to categorize studies on meat tenderization and safety through pulsed electric field (PEF) treatment, with a particular focus on reconciling conflicting findings regarding the tenderization effect (i.e., the primary outcome of PEF treatment) and to discuss the underlying mechanisms of these effects. While the tenderization effect may vary depending on the homogeneity of PEF treatment and variations in the conditions of texture measurements, the protein associated with tenderization was degraded by PEF treatment in most studies. PEF technology enables the delivery of a high voltage for a brief duration, typically in the microsecond range, making it a non-thermal technology. One of the distinct advantages of PEF is its ability to preserve the freshness of meat due to its exceptionally short treatment time. While PEF studies have traditionally centered on pasteurizing liquid foods, research on its application to meat is steadily expanding. Therefore, this review aims to elucidate the mechanisms of PEF and provide current insights into the applications of this technology for meat tenderization and microbial inactivation.

Nonthermal Sterilization of Animal-based Foods by Intense Pulsed Light Treatment

  • Gyeong Mi Lee;Jung-Kue Shin
    • 한국축산식품학회지
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    • 제44권2호
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    • pp.309-325
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    • 2024
  • The consumption of meat has been increasing, leading to a dynamic meat and meat processing industry. To maintain the quality and safety of meat products, various technologies have been explored, including intense pulsed light (IPL) technology. Several factors affect the inactivation of microorganisms by IPL treatment, including light intensity (fluence), treatment duration, pulse frequency, and the distance between the lamp and the samples. Meat products have been studied for IPL treatment, resulting in microbial reductions of approximately 0.4-2.4 Log. There are also impacts on color, sensory attributes, and physico-chemical quality, depending on treatment conditions. Processed meat products like sausages and ham have shown microbial reductions of around 0.1-4 Log with IPL treatment. IPL treatment has minimal impact on color and lipid oxidation in these products. Egg products and dairy items can also benefit from IPL treatment, achieving microbial reductions of around 1-7.8 Log. The effect on product quality varies depending on the treatment conditions. IPL technology has shown promise in enhancing the safety and quality of various food products, including meat, processed meat, egg products, and dairy items. However, the research results on animal-based food are not diverse and fragmentary, this study discusses the future research direction and industrial application through a review of these researches.