• 제목/요약/키워드: Inactivation effect (Sterilization effect)

검색결과 22건 처리시간 0.032초

Enhancement of Nitric Oxide with nonthermal plasma jet and its effect on Escherichia coli inactivation and various type of cancer cell

  • Shaw, Priyanka;Kumar, Naresh;Attri, Pankaj;Choi, Eun Ha
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.230.2-230.2
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    • 2016
  • A new approach for antimicrobial is based on the overproduction of reactive nitrogen species (RNS), especially; nitric oxide (NO) and peroxinitrite ($ONOO^-$-) are important factors to deactivate the bacteria. Recently, non-thermal atmospheric pressure plasma jet (APPJ) has been frequently used in the field of microbial sterilization through the generation of different kinds of RNS/ROS species. However, in previous study we showed APPJ has combine effects ROS/RNS on bacterial sterilization. It is not still clear whether this bacterial killing effect has been done through ROS or RNS. We need to further investigate separate effect of ROS and RNS on bacterial sterilization. Hence, in this work, we have enhanced NO production, especially; by applying a 1% of HNO3 vapour to the N2 based APPJ. In comparison with nitrogen plasma with inclusion of water vapour plasma, it has been shown that nitrogen plasma with inclusion of 1% of HNO3 vapour has higher efficiency in killing the E. coli and different type of cancer cell through the high production of NO. We also investigate the enhancement of NO species both in atmosphere by emission spectrum and inside the solution by ultraviolet absorption spectroscopy. Moreover, qPCR analysis of oxidative stress mRNA shows higher gene expression. It is noted that 1% of HNO3 vapour plasma generates high amount of NO for killing bacteria and cancer cell killing.

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Enhancement of Nitric Oxide with nonthermal plasma jet and its effect on Escherichia coli inactivation

  • Shaw, Priyanka;Kumar, Naresh;Attri, Pankaj;Kwak, Hyong Sin;Choi, Eun Ha
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2015년도 제49회 하계 정기학술대회 초록집
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    • pp.159-159
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    • 2015
  • A new approach for antimicrobial is based on the overproduction of reactive nitrogen species (RNS), especially; nitric oxide (NO) and peroxinitrite (ONOO-) are important factors to deactivate the bacteria. Recently, non-thermal atmospheric pressure plasma jet (APPJ) has been frequently used in the field of microbial sterilization through the generation of different kinds of RNS/ROS species. However, in previous study we showed APPJ has combine effects ROS/RNS on bacterial sterilization. It is not still clear whether this bacterial killing effect has been done through ROS or RNS. We need to further investigate separate effect of ROS and RNS on bacterial sterilization. Hence, in this work, we have enhanced NO production, especially; by applying a 1% of HNO3 vapour to the N2 based APPJ. In comparison with nitrogen plasma with inclusion of water vapour plasma, it has been shown that nitrogen plasma with inclusion of 1% of HNO3 vapour has higher efficiency in killing the E. coli through the high production of NO. We also investigate the enhancement of NO species both in atmosphere by emission spectrum and inside the solution by ultraviolet absorption spectroscopy. Moreover, qPCR analysis of oxidative stress mRNA shows higher gene expression. It is noted that 1% of HNO3 vapour plasma generates high amount of NO for killing bacteria.

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동종조직에서의 방사선 멸균효과에 대한 연구 (THE EFFECT OF STERILIZATION OF GAMMA IRRADIATION ON ALLOGENEIC TISSUE MATERIALS)

  • 이은영;김성진;박우윤;김경원;엄인웅;류주연
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제27권6호
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    • pp.523-527
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    • 2005
  • Allograft donations are commonly found to be contaminated. The most of tissue banks has promoted the use of ionizing radiation for the sterilization of biological tissues. The potential for transmission of human infectious diseases and contamination of microorganism has created serious concern for the continued clinical use of hard and soft-tissue allografts. Tissue banks have employed 15-25kGy for sterilization of hard and tendon allografts, which, according to the national standards, approaches the level at which the tissue quality is adversely affected for transplantation. The donations of allogeneic tissues to the Korea Tissue Bank over a 2-year period were reviewed, and the incidence and bacteriology of contamination were detailed. Clinical outcomes were determined for donors who had positive cultures at the time of retrieval and during the processing and they were compared with those of post sterilization. After exposure of the frozen block bone to 25kGy and the processed tissues to 15kGy of gamma irradiation, the authors were able to demonstrate complete inactivation of the bacteria. The aim of this study was to obtain the effects of gamma irradiation and the irradiation dose according to the type of tissue, through conventional microbiologic test without on influence of biocompatibility in allografts. The contamination rate after the final irradiation sterilization is 0% in the processed allografts. This may be due to the fact that the gamma radiation and processing steps are effective to control contamination.

회분식 광펄스 처리에 의한 마른 김의 비가열 살균 (Nonthermal Sterilization of Dried Laver by Intense Pulsed Light with Batch System)

  • 김애진;신정규
    • 한국식품과학회지
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    • 제46권6호
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    • pp.778-781
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    • 2014
  • 비가열 살균 기술의 하나인 광펄스 기술을 이용하여 마른 김에 존재하는 미생물에 대한 살균 효과와 품질 변화에 대하여 알아보았다. 마른 김에 1,000 V, 5 pps의 조건하에서 7.9 cm의 거리에서 광펄스 조사를 하였을 때 처리 1분 후에는 0.6 log CFU/g, 처리 10분 후에는 1.6 log CFU/g의 사멸 효과를 보였다. 같은 조건에서 광펄스 조사 후 마른 김의 표면 온도는 약 $1.9^{\circ}C$의 상승을 나타냈으며, 색도에 있어서는 명도가 증가하고, 적색도 및 황색도는 감소하는 경향을 보였으며, 처리 시간이 길어질수록 전체적인 색도의 차이가 크게 나타나는 결과를 보였으나 육안으로는 차이 정도를 확인할 수 없었다. 이러한 결과로 미루어 볼 때 광펄스 살균 기술은 품질 변화없이 마른 김에 존재하는 위해 미생물을 효과적으로 감소시킬 수 있을 것으로 판단된다.

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.

Structural Properties of Plasma-treated Polymer Films and Their Applications

  • Lee, Jin Young;Lee, Geon Joon;Kim, In Tae;Choi, Eun Ha
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.522-522
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    • 2013
  • Plasma can be used to various applications such as sterilization, inactivation/removal of microorganisms, wound healing, tooth bleaching, cancer treatment, surface modification and plasma polymerization. In this research, we studied the effect of plasma irradiation on the structural, optical, and biological properties of the polymer films. Several polymers were synthesized and then deposited on the glass substrates. The polymer films were treated by oxygen and nitrogen plasmas. Plasma-treated films were investigated by contact angle, infrared absorption spectroscopy, cathodoluminescence spectroscopy, and scanning electron microscopy. Functional materials were prepared on plasma-treated surface, and their performances were investigated using various techniques. Next, we discuss relationship between the performance of functional materials and the structural properties of plasma-treated polymer films.

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Inactivation Efficiency of Escherichia coli and Listeria monocytogenes in Ground Pork by Combination of Natural Food Ingredients and High Pressure Processing

  • Jung, Samooel;Yun, Hye-Jeong;Kim, Hyun-Joo;Ham, Jun-Sang;Kim, Il-Suk;Lee, Moo-Ha;Jo, Cheorun
    • 한국축산식품학회지
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    • 제32권1호
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    • pp.1-5
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    • 2012
  • The objective of this study was to examine the effects of a combined treatment regarding antimicrobial food ingredients and high pressure processing (HP) on the inactivation efficiency of Escherichia coli and Listeria monocytogenes inoculated into ground pork. Ethanol extracted from garlic, leeks, onions, and ginger powder was prepared. Half of the prepared powder was irradiated at 5 kGy to see the effect of pasteurization before addition. The prepared food ingredients were added into radiation-sterilized ground pork (1%, w/w), and inoculated with E. coli and L. monocytogenes. The samples were vacuum-packed and applied with HP at 0.1 (control), 300, 450, and 600 MPa. Microbial log reduction increased with the increase of pressure up to 600 MPa. With minor exceptions, overall efficiency of HP treatment with regards to inactivation of pathogens increased. Inoculated microorganisms showed approximately 7-8 Log reductions by 600 MPa, except for L. monocytogenes treated with garlic (5.7 Log reductions). The E. coli reduction in ground pork mixed with ethanol extracted garlic showed the highest efficiency (1.86) compared to leeks (1.25-1.31), onions (1.17-1.44), and ginger (1.50-1.82) when treated at an HP of 450 MPa. There was no evidence for the advantage of pasteurization concerning the food ingredients before addition of antimicrobial food ingredients and HP. Results demonstrate that the combination of antimicrobial food ingredients and HP treatment may help improve the efficiency of sterilization in meat systems.

스팀 가열 및 자외선, 감마선 조사 처리에 따른 고춧가루의 미생물 저감화 효과 (Microbial reduction effect of steam heating, UV irradiation, and gamma irradiation on red pepper powder)

  • 최준봉;천희순;정명수;조원일
    • 한국식품과학회지
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    • 제52권2호
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    • pp.177-182
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    • 2020
  • 본 연구에서는 위생적인 고춧가루 및 고추장 소스의 효과적인 살균방법을 확립하기 위한 기반 연구로서 감마선, 자외선 조사를 이용한 비가열 살균 및 스팀을 이용한 직,간접 가열살균에 의한 미생물 저감화 효과에 대한 세부 고찰을 실시하였다. 실험 결과 호기성 총균 및 내열성균이 10 kGy 선량 감마선 조사에서는 각각 5-6 log CFU/g, 방사조도 12 mW/㎠ 자외선 조사는 1 log CFU/g 내외, 그리고 120℃, 40 s 스팀가열 살균시는 2 log CFU/g 내외의 감균 효과를 나타내었다. 스팀 가열살균 방법은 감마선 조사 대비 사멸효과는 떨어지지만 2 log CFU/g의 유효적인(p<0.05) 미생물 저감화 효과를 나타내므로 가열온도 및 처리시간 등의 살균공정 조건을 최적화하면 살균효과, 상업적 설비, 처리비용 및 소비자 선호도 등을 종합 검토시 색상 품질 손상 없이 효과적으로 고춧가루내 바실루스 계통의 내열성균을 제어할 수 있는 방법으로 사료된다. 또한 120℃ 스팀 순간 가열살균시 흑후추 분말은 4 log CFU/g, 양파 분말은 2 log CFU/g, 그리고 마늘 분말은 1 log CFU/g 내외의 호기성 총균이 감소하여 다양한 향신야채 건조분말의 미생물 제어에도 유효한 방법으로 판명되었다. 그리고 고추장 용액 경우도 고온 순간 가열방식인 HTST 적용시 110℃에서 부터 호기성 총균수가 무처리 5 log CFU/g에서 2.26 CFU/g로 효과적으로 감소하기 시작하여, 121℃ 처리에서는 상업적 멸균상태로 나타나 고춧가루 및 고추장을 함유한 매운맛 소스의 효과적인 살균방법으로 판명되었다.

Escherichia coli O157:H7의 살균을 위한 감마선과 가열처리의 효과 (Effects of Gamma-Ray and Heat Treatment on Sterilization of Escherichia coli O157:H7)

  • 권오진;육홍선;김성애;변명우
    • 한국식품과학회지
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    • 제29권5호
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    • pp.1016-1020
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    • 1997
  • 본 연구는 Escherichia coli O157:H7 균주를 살균하고자 감마선 단독 및 가열과의 병용처리 효과를 조사하였다. E. coli O157:H7 균주의 가열 단독처리시 D값은 $50^{\circ}C$에서 129.2분, $55^{\circ}C$에서 27.1분, $60^{\circ}C$에서 2.4분으로 나타났다. E. coli O157:H7 균주는 0.03 M cysteine, 1% sodium citrate 및 5% sucrose가 첨가된 배지에서는 열에 대한 저항성이 증가하였고 1%, meat extract, 1% casein 및 1% casamino acid가 첨가된 배지에서는 감소하였다. 감마선 단독처리시는 $D_{10}$ 값과 불활성화 계수가 0.116 kGy와 $17{\sim}25$ 이였으나 가열과의 병용처리시는 약 0.07 kGy와 $25{\sim}41$로 나타났다. 이로서 가열과 방사선의 병용처리는 E. coli O157:H7 균주의 방사선 감수성을 현저하게 상승시켜 본 균주의 살균에 효과적이었다.

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Modeling the Chemical Kinetics of Atmospheric Plasma

  • 김호영;이현우;김규천;이재구
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제43회 하계 정기 학술대회 초록집
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    • pp.270-270
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    • 2012
  • Low temperature atmospheric pressure plasmas (APPs) have been known to be effective for living cell inactivation in the water [1]. Many earlier research found that pH level of the solution was changed from neutral to acidic after plasma treatment. The importance of the effect of acidity of the solution for cell treatments has already been reported by many experiments. In addition, several studies have demonstrated that the addition of a small amount of oxygen to pure helium results in higher sterilization efficiency of APPs [2]. However, it is not clear yet which species are key factors for the cell treatment. To find key factors, we used GMoo simulation. We elucidate the processes through which pH level in the solution is changed from neutral to acidic after plasma exposure and key components with pH and air variation with using GMoo simulation. First, pH level in a liquid solution is changed by He+ and He(21S) radicals. Second, O3 density decreases as pH level in the solution decreases and air concentration decreases. It can be a method of removing O3 that cause chest pain and damage lung tissue when the density is very high. H2O2, HO2 and NO radicals are found to be key factors for cell inactivation in the solution with pH and air variation.

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