• 제목/요약/키워드: aerosolization

검색결과 16건 처리시간 0.01초

Foodborne Pathogen Reduction을 위한 항균제의 새로운 Delivery System인 Aerosolization

  • 오세욱;강동현
    • 식품기술
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    • 제18권1호
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    • pp.91-98
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    • 2005
  • Aims: As a preliminary experiment on new sanitizer delivery tools, the efficacy of aerosolizedsanitizer on foodborne pathogens was investigated in larger model chamber system.Methods: Peroxyacetic acid and hydrogen peroxide were aerosolized in a model system againstartificially inoculated target microorganisms on laboratory media. Cultures of 4 different foodborne pathogens were inoculated and affixed onto 3 different heights (bottom, wall, and ceiling), and 3different orientations (face-down, vertical, and face-down) inside a commercial semi-trailer cabinet(14.6 x 2.6 x 2.8 m). Sanitizer was aerosolized into 2 m droplet size fog and treated for 1 h atambient temperature.Results: Populations of Bacillus cereus, Listeria innocua, Staphylococcus aureus, and Salmonellatyphimurium were reduced by an average of 3.09, 7.69, 6.93 and 8.18 log units per plate, respectively.Interestingly, L. innocua, Staph. aureus, and Salm. typhimurium showed statistically not different (P$\leq$ 0.05) reduction patterns relative to height and orientation that were never expected in a sprayingsystemConclusion and significance: Aerosolized sanitizers diffuse like gaseous sanitizers, so it has greatpotential for use in commercial applications.

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에어로졸 형태의 상업적 살균소독제의 병원성 미생물에 대한 저해효과 평가 (Inhibitory Effect of Aerosolized Commercial Sanitizers against Foodborne Pathogens)

  • 이선영;정진호;진현호;김영호;오세욱
    • 한국식품위생안전성학회지
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    • 제22권4호
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    • pp.235-242
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    • 2007
  • Aerosolization 기술은 미생물 제어를 위한 살균처리에 있어서 여러 가지 장점을 가지고 있어서 식품과 식품가공을 위한 시설 및 설비 등에 새로운 살균처리 방법으로의 이용가능성이 높다. 따라서 본 연구에서는 국내에서 유통되고 있는 5종류의 상업적 살균소독제를 aerosol 형태로 model cabinet에서 처리하여 E. coli O157:H7, S. typhimurium, L. monocytogenes에 대한 살균효과를 조사하였다. 과산화수소계와 4급암모늄계를 aerosol 형태로 처리했을 때 세 가지의 병원성 미생물에 대하여 가장 높은 살균력을 관찰하였으며 반면에 다른 종류의 살균소독제인 염소계, 요오드계, 알콜계는 세가지 병원성 미생물을 거의 저해하지 못하거나 아주 약한 저해를 나타냈다. 과산화수소계는 세가지 병원성 미생물에 우수한 살균력(> 4 log reductions)을 나타냈으며 L. monocytogenes에 대하여는 특히 aerosol형태의 4급암모늄계가 강한 살균력을 나타내어 9 log 이상의 저해를 나타내었다. 1.6 MHz와 2.4 MHz 진동자를 비교하였을 때 살균소독제의 종류와 처리된 병원성 미생물에 대하여 차이를 나타내었으나 처리 효과와 특정한 상관관계를 나타내지 않았다. Aerosolization 기술은 새로운 살균기법으로 이용가능성이 높을 것으로 사료되나 응용되는 살균소독제의 종류에 따라서 살균효과에 차이가 크고 미생물이 오염되어 있는 물질 및 표면 등의 처리조건의 차이에 따라서 결과가 달라질 수 있으므로 이 기술의 응용을 위해서는 보다 다양한 조건과 다양한 미생물의 종류에 대한 연구가 이루어져야 할 것으로 사료된다.

Multi-Walled Carbon Nanotube (MWCNT) Dispersion and Aerosolization with Hot Water Atomization without Addition of Any Surfactant

  • Ahn, Kang-Ho;Kim, Sun-Man;Yu, Il-Je
    • Safety and Health at Work
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    • 제2권1호
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    • pp.65-69
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    • 2011
  • Objectives: Carbon nanotubes are an important new class of technological materials that have numerous novel and useful properties. Multi-walled carbon nanotubes (MWCNTs), which is a nanomaterial, is now in mass production because of its excellent mechanical and electrical properties. Although MWCNTs appear to have great industrial and medical potential, there is little information regarding their toxicological effects on researchers and workers who could be exposed to them by inhalation during the handling of MWCNTs. Methods: The generation of an untangled MWCNT aerosol with a consistent concentration without using surfactants that was designed to be tested in in vivo inhalation toxicity testing was attempted. To do this, MWCNTs were dispersed in deionized water without the addition of any surfactant. To facilitate the dispersion of MWCNTs in deionized water, the water was heated to $40^{\circ}C$, $60^{\circ}C$, and $80^{\circ}C$ depending on the sample with ultrasonic sonication. Then the dispersed MWCNTs were atomized to generate the MWCNT aerosol. After aerosolization of the MWCNTs, the shapes of the NTs were examined by transmission electron microscopy. Results: The aerosolized MWCNTs exhibited an untangled shape and the MWCNT generation rate was about 50 $mg/m^3$. Conclusion: Our method provided sufficient concentration and dispersion of MWNCTs to be used for inhalation toxicity testing.

Lettuce leaves에 접종된 Foodborne Pathogen에 대한 Aerosolized Peroxyacetic Acid의 살균 효과

  • 오세욱;강동현
    • 식품기술
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    • 제18권2호
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    • pp.99-108
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    • 2005
  • As an alternative to gaseous sanitizer which having penetrating and diffusing capacities, aerosolsanitizer’s effect on killing pathogens was investigated. To test the efficacy of aerosolized sanitizer, peroxyacetic acid was aerosolized($5.42-11.42\mum$) by nebulizer(Royal-G Enterprise, ShenZhen,China) in a model cabinet against artificially inoculated target microorganisms on lettuce. Lettuceleaves were inoculated with a cocktail of three strains each of Escherichia coli O157:H7, Listeriamonocytogenes, and Salmonella Typhimurium and treated with sanitizer aerosol for 10 min, 30 and60 min in a model aerosol cabinet at room temperature($22\pm2^\circC$). After treatment, surviving cellsincluding injured cells were enumerated on appropriate selective agar or using the over-lay agar method, respectively. Inoculated lettuce leaves exposed to antimicrobial aerosol for 10 min experienceda 0.8 log reduction in E. coli O157:H7, a 0.3 log reduction in Salmonella Typhimurium and a 2.5 logreduction in L. monocytogenes when compared to the control. After 30 min treatment, the threepathogens were reduced in number of CFU by 2.2, 3.3, and 2.7-log and after 60 min, the reductions were 3.4, 4.5, and 3.8-log, respectively. Aerosolization can be new antimicrobial agents deliverysystem in food sanitizing.

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진동 방식을 이용한 곰팡이 공기 부유화 장치의 설계 및 성능 평가 (Design and Performance Test of Fungal Aerosol Generator using Vibration Method)

  • 안지혜;이상구;박철우;황정호
    • 한국입자에어로졸학회지
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    • 제8권4호
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    • pp.143-150
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    • 2012
  • Fungal particles have been known to aggravate indoor air quality. To develop fungal particle cleaning devices requires a well-controlled generator of fungal aerosol particles. In this study, a novel fungal aerosol generator was designed and tested for anti-fungal experiment. Cladosporium cladosporioides was selected as test fungal particle. After aerosolization, the number concentration and the size of particles were measured by aerodynamic particle sizer. The number concentration depended on the vibration strength and vibration period of the designed fungal aerosol generator. For the vibration strength of 10volt and the period of 10 sec (5 sec on and 5 sec off), the stable particle generation with concentration of 10#/cm3 was maintained during 35 minutes.

코로나-19 대유행시대의 후두경 검사 (Laryngoscopy During the COVID-19 Pandemic)

  • 김보해;임윤성
    • 대한후두음성언어의학회지
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    • 제33권3호
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    • pp.160-165
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    • 2022
  • The coronavirus disease 2019 (COVID-19) pandemic has taken a toll on human lives and health systems worldwide and is still affecting all medical practices years later. In particular, much medical staff had to sacrifice in areas where the medical system was overloaded in the early stages of the outbreak and the resulting shortage of medical resources. In the future, another pandemic disease seems to emerge, which should threaten otolaryngologists inevitably. It is necessary to understand viral aerosolization and practice recommendations for COVID-19. These can guarantee the most effective treatment for the patients during the pandemic and protect the safety of our medical staff and patients.

호흡식 분말의약품 제조용 분무동결건조기 설계에 관한 연구 (A Design of the Spray-Freeze Dryer for the Production of pulmonary inhalation Powders)

  • 박성제;송치성;한용식;김재형
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2004년도 추계학술대회
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    • pp.1323-1328
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    • 2004
  • This paper shows the study on the design of the spray-freeze dryer for the production of the pulmonary inhalation powders. Powder production and handling has been an integral part of pharmaceutical processing because of the wide use of oral dosage forms. There are a few commonly used powder preparation methods including mechanical milling, precipitaion, spray drying, freeze drying, and so on. In general, methods available for preparing inhalation powders are limited due to certain inhalation powder's sensitive nature to the processing environments. This is particularly true for preparing dry powder aerosols where the aerodynamic particle size$(<5{\mu}m)$ and the size distribution are pivotal. Supercritical fluid antisolvent and spray freeze drying have recently emerged as promising techniques for producing powders for use in microcapsulation. However, the aerosol applications of these powders are yet to be explored. The purpose of this study is to test the feasibility of using spray freeze-dried pulmonary inhalation powders for aerosolization.

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해양심층수 물질추출용 분무동결건조기에 관한 연구(1) (A Study on the Spray Freeze Dryer for Extracting Valuable Material of the Deep Seawater)

  • 박성제;홍용주;김효봉;김현주;신필권
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2004년도 학술대회지
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    • pp.1-6
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    • 2004
  • This paper shows the study on the design and another applications of the spray-freeze dryer for the production of valuable material powders. Powder production and handling has been an integral part of material extracting processing and pharmaceutical processing because of the wide use of oral dosage forms. There are a few commonly used powder preparation methods including mechanical milling, precipitaion, spray drying, freeze drying, and so on. In general, methods available for preparing inhalation powders are limited due to certain inhalation powder's sensitive nature to the processing environments. This is particularly true for preparing dry powder aerosols where the aerodynamic particle size($<5{\mu}m$) and the size distribution are pivotal. Supercritical fluid antisolvent and spray freeze drying have recently emerged as promising techniques for producing powders for use in microcapsulation. However, the aerosol applications of these powders are yet to be explored. The purpose of this study is to test the feasibility of using spray freeze-dried valuable material powders for aerosolization.

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Infection Source and Epidemiology of Nontuberculous Mycobacterial Lung Disease

  • Jeon, Doosoo
    • Tuberculosis and Respiratory Diseases
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    • 제82권2호
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    • pp.94-101
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    • 2019
  • Nontuberculous mycobacteria (NTM) are ubiquitous organisms that are generally found not only in the natural environment but also in the human engineered environment, including water, soil, and dust. These organisms can form biofilms and can be readily aerosolized because they are hydrophobic owing to the presence of the lipid-rich outer membrane. Aerosolization and subsequent inhalation were the major route of NTM lung disease. Water distribution systems and household plumbing are ideal habit for NTM and the main transmission route from natural water to household. NTM have been isolated from drinking water, faucets, pipelines, and water tanks. Studies that used genotyping have shown that NTM isolates from patients are identical to those in the environment, that is, from shower water, showerheads, tap water, and gardening soil. Humans are likely to be exposed to NTM in their homes through simple and daily activities, such as drinking, showering, or gardening. In addition to environmental factors, host factors play an important role in the development of NTM lung disease. The incidence and prevalence of NTM lung disease are increasing worldwide, and this disease is rapidly becoming a major public health problem. NTM lung disease is associated with substantially impaired quality of life, increased morbidity and mortality, and high medical costs. A more comprehensive understanding of the infection source and epidemiology of NTM is essential for the development of new strategies that can prevent and control NTM infection.

Optimization of Aerosolizable Messenger RNA Lipid Nanoparticles for Pulmonary Delivery

  • Se-Hee Lee;Jong Sam Lee;Dong-Eun Kim;Keun-Sik Kim
    • 대한의생명과학회지
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    • 제29권4호
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    • pp.231-241
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    • 2023
  • Messenger RNA (mRNA)-based vaccines and treatments have recently emerged as a promising strategy. Naked mRNA presents various limitations for direct delivery. Therefore, in this paper, Lipid Nanoparticles (LNPs) were utilized for the delivery of mRNA. Lipid nanoparticle (LNP) mRNA systems are highly effective as vaccines, but their efficacy for pulmonary delivery has not yet been fully established. Additionally, research on effective delivery systems and administration methods for vaccines is required to resolve the stability and degradation issues associated with naked mRNA delivery. This study aimed to determine mRNA delivery efficiency via the inhalation of a lipid nanoparticle (LNP) formulation designed specifically for pulmonary delivery. To this purpose, we built a library of seven LNP configurations with different lipid molar and N/P ratios and evaluated their encapsulation efficiency using gel retardation assay. Among the tested LNPs, LNP1, LNP2-2, and LNP3-2 demonstrated high transfection efficiency in vitro based on FACS analyses luciferase assays, and intracellular accumulation tests. The mRNA delivery efficiencies of the selected LNPs after inhalation and intravenous injection were compared and evaluated. LNP2-2 showed the highest mRNA expression in healthy mouse lungs when aerosolized and was found to be non-toxic. These results indicate that LNP2-2 is a promising carrier for lung mRNA delivery via inhalation.