• Title/Summary/Keyword: House Dust

검색결과 197건 처리시간 0.021초

집먼지진드기에서 분리한 용출단백질의 개옴진드기 감염증에 대한 항원효과 (Antigenetic effects of the eluted proteins from house dust mite (Dermatophagoides pteronyssinus) in dogs infested with sarcoptic mite (Sarcoptes scabiei var. canis))

  • 김태훈;김재원;지차호
    • 대한수의학회지
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    • 제45권1호
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    • pp.105-111
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    • 2005
  • Canine sarcoptic mite (Sarcoptes scabiei var. canis) is ectoparasite which burrow usually in the stratum corneum of the skin of dogs. Antigens from the burrowing mites induce humoral and cellmediated immune responses in the hosts. The effect of antigenecity induced by somatic antigens of house dust mite (Dermatophagoides pteronyssinus) isolated by continuous elution has been evaluated in canine sarcoptic mites infestation. Continuous elution was carried out in 7.5% SDS-PAGE to isolate proteins of common antigens from somatic antigens of house dust mite. These eluted proteins from somatic antigens of house dust mite were confirmed by Western blotting in 7.5% SDS-PAGE, and eluted proteins (65, 60 kDa) were isolated. To evaluate the antigenetic effect of eluted proteins, eight dogs were divided as 4 groups such as non-vaccinated and non-challenged control (Group I), challenged control (Group II), vaccinated (Group III), and vaccinatedandchallenged (Group IV) groups. Group II and IV were artificially infested canine sarcoptic mites. Group III and IV were immunized with eluted proteins (65, 60 kDa). At the 6th week of the vaccination, the antibody titers of Group of IV were statistically significant higher than those of Group II (p<0.05). And antibody titers of Group III were also statistically significant higher than those of Group I (p<0.05). From these result, it is possible to replace somatic antigens of canine sarcoptic mites with eluted proteins from somatic antigens of house dust mites in order to diagnose and prevent the canine sarcoptic mite infestations.

양돈장 작업환경 모니터링을 위한 웨어러블 장비개발 (Development of Wearable Device for Monitoring Working Environment in Pig House)

  • 서일환
    • 한국농공학회논문집
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    • 제62권1호
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    • pp.71-81
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    • 2020
  • Enclosed pig house are creating an environment with high concentrations of gas and dust. Poor conditions in pig farms reduce pig weight and increase disease and accidents for livestock workers. In the pig house, the high concentration of harmful gas may cause asphyxiation accidents to workers and chronic respiratory disease by long-term exposure. As pig farm workers have been aging and feminized, the damage to the health of the harsh environment is getting serious, and real-time monitoring is needed to prevent the damage. However, most of the measuring devices related to humidity, harmful gas, and fine dust except temperature sensors are exposed to high concentrations of gas and dust inside pig house and are difficult to withstand for a long time. The purpose of this study is to develop an wearable based device to monitor the hazardous environment exposed to workers working in pig farms. Based on the field monitoring and previous researches, the measurement range and basic specifications of the equipment were selected, and wearable based device was designed in terms of utilization, economic efficiency, size and communication performance. Selected H2S and NH3 sensors showed the average error of 5.3% comparing to standard gas concentrations. The measured data can be used to manage the working environment according to the worker's location and to obtain basic data for work safety warning.

실내환경 중 집먼지 및 유기필름에서 기인한 프탈레이트 노출평가 (Exposure Assessment of Phthalates from House Dust and Organic Films in the Indoor Environment)

  • 전정인;이혜원;이승현;이정일;이철민
    • 한국환경보건학회지
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    • 제48권2호
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    • pp.75-85
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    • 2022
  • Background: Various types of semi-volatile organic compounds (SVOCs) exist in the public's living environment. They occur in different forms in terms of their physical and chemical properties and partition coefficients. As a consequence, indoor exposure to SVOCs occurs via various routes, including inhalation of air and airborne particles, skin contact, and dust intake. Objectives: To propose a method for assessing human exposure to the SVOCs occurring in the air of an indoor environment, the concentrations of SVOCs in house dust and organic films measured in a real residential environment were estimated in terms of gas-phase concentration using the partition coefficient. Assessment of inhalation exposure to SVOCs was performed using this method. Methods: Phthalates were collected from samples of house dust and organic films from 110 households in a real residential environment. To perform an exposures assessment of the phthalates present in organic films, gas-phase concentration was calculated using the partition coefficient. The airborne gas-phase concentrations of phthalates from the house dust and organic films were estimated and exposure assessment was performed based on the assumption of inhalation exposure from air. Results: As a result of the exposure assessment for gas-phase phthalates from house dust and organic films, preschool children showed the highest level of inhalation of phthalates, followed by school children, adults, and adolescents. Conclusions: This study includes the limitation of not considering different SVOCs exposure pathways in the health impact assessment, including those of phthalates in the indoor living environment. However, this study has the significance of performing exposure assessment based on exposure to SVOCs present in indoor air that originated from organic films in the indoor residential environment. Therefore, the results of this study should be useful as basic data for exposure and health risk assessments of SVOCs associated with organic films in the indoor environment.

The House Dust Mite Allergen, Dermatophagoides pteronyssinus Suppresses the Chemotactic Activity of Human Monocytes

  • Lee, Ji-Sook;Yang, Eun Ju;Kim, In Sik
    • 대한의생명과학회지
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    • 제18권4호
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    • pp.435-437
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    • 2012
  • House dust mite (HDM) is important in the pathogenesis of allergic diseases including asthma and atopic dermatitis. Dermatophagoides pteronissinus (Dp) is one of major HDM allergens. In this study, we investigated that Dp extract (DpE) affects on the chemotactic activity of monocytes isolated from the peripheral blood. DpE inhibited the migration of human monocytes in response to CC chemokines such as MIP-$1{\alpha}$, RANTES, HCC-4, MCP-1, and TARC. DpE did not alter the expression of CC chemokine receptors (CCRs) such as CCR1, CCR2, CCR3, CCR4, and CCR5. These results indicate that DpE blocks the chemotaxis of human monocytes and its mechanism is not involved in alteration of CCR expression. Better understanding of the effect of DpE on monocytes will enable elucidation of the role of Dp in the development of allergic diseases.

Differential Asthmatic Effect Due to House Dust Mite Depending on Age and Exposure Duration

  • Ji-Sook Lee
    • 대한의생명과학회지
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    • 제30권3호
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    • pp.169-172
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    • 2024
  • Asthma is a chronic lung disease characterized by wheezing, cough, and chest pain. The objective of this study was to examine asthmatic effect due to house dust mite (HDM) according to age and exposure duration. Asthma induction in young (6 weeks) and old (12 months) aged C57BL6/J mice was accomplished by HDM administration. Bronchoalveolar lavage fluid (BALF) was collected. Inflammatory cells in BALF were counted. Mucus production in lung tissues was evaluated by periodic acid Schiff (PAS) staining. Intraperitoneal (i.p.) and intranasal (IN) injection of HDM induced infiltration of inflammatory cells into lungs of mice. The increase of total cells was higher in young mice than in old mice. Mucus secretion from goblet cells increased after HDM administration, with young mice showing higher mucus production than old mice. In chronic asthmatic state induced by i.p. and IN (three times) injection, old mice exhibited more inflammatory cells, specifically eosinophils, and mucus production than young mice. Our findings suggest that age and exposure duration are critical factors in different manifestations of asthma. Thus, they should be overarchingly considered in drug development for asthma.

윈치커튼식 계사의 시기 및 작업자 출입에 따른 분진 발생 농도 측정 연구 (Measurement of Dust Concentration in a Naturally Ventilated Broiler House according to Season and Worker's Access)

  • 조예슬;권경석;이인복;하태환;박세준;김락우;여욱현;이상연;이승노
    • 한국농공학회논문집
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    • 제57권6호
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    • pp.35-46
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    • 2015
  • Improvement in domestic poultry production has a positive effect on the export competitiveness of the poultry industry. However, overproduction and enlargement of facilities to assure a supply increase a stocking density which make a poor environment in the broiler house. In particular, an intensive rearing environment is vulnerable to dust control that causes respiratory diseases, such as asthma, bronchitis, etc., to farmers and broilers. However, monitoring data and research for environment control are not adequate, and there are no air quality regulations in broiler houses in Korea. In this study, TSP, PM10, inhalable dust and respirable dust concentration were monitored according to season, age of broiler and broiler's activities. Air quality assessment was also performed in accordance with the threshold limit value by Donham et al. (2000). The TSP concentrations were 77.5 %, 219.7 % higher and PM10 concentrations were 121.2 %, 303.8 % higher when change of season and winter respectively than summer. There were significantly different concentrations according to season and age of broiler. Inhalable and respirable dust concentration were also clearly different according to the season and age of broiler. A high dust concentration was observed, specifically exceeding the threshold limit by 119 % in the winter. In the case of the broiler's motion was activity according to worker's access into the broiler house, concentration level was 769.6 % higher than broiler's motion was stable and exceeded the threshold limit. These results suggest that the worker should put on protective equipment to protect there's respiratory health in the broiler house.

모의 실험주택 모니터링 결과를 활용한 실내공기 및 바닥먼지 중 Di(2-ethyl-hexyl) phthalate (DEHP)의 이론적 총량 비율 산출 (Calculation of the Theoretical Total Amount Ratio of Di(2-ethyl-hexyl) Phthalate in Indoor Air and Floor Dust in a Test House)

  • 천사호;이가원;김승중;정승표;강다영;김기태
    • 한국환경보건학회지
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    • 제49권6호
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    • pp.324-333
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    • 2023
  • Background: Human exposure to phthalates in indoor environments occurs via dermal absorption, oral ingestion of indoor dust, and inhalation of indoor air. However, systematic studies to investigate the exposure rate to phthalates among the three exposure routes in indoor environments are currently limited. Objectives: A theoretical exposure ratio between inhalation and oral exposure was calculated based on the total amount of di(2-ethyl-hexyl) phthalate (DEHP) emitted into indoor air and deposited into floor dust in a test house. Methods: Flooring and wallpaper containing DEHP were installed in a test house and the concentration of DEHP in both indoor air and floor dust were monitored for five months. Based on the measured DEHP concentrations, the theoretical total amount ratio of DEHP that could be exposed through inhalation and oral ingestion was calculated. Results: Considering the period of operation in the test house, the theoretical total amount of DEHP through inhalation and oral ingestion exposures in the entire test house space was calculated to be 0.014 mg and 5.5 mg, respectively. The exposure ratio of the two routes between inhalation and oral exposure corresponding to the total DEHP amount in flooring and wallpaper was 6.0×10-7% and 2.3×10-4%, indicating that theoretical oral exposure to DEHP is approximately 380 times higher than inhalation. Conclusions: Monitoring results from a test house has shown that oral exposure is the main exposure route for DEHP in indoor environments. The experimental design employed in this study and theoretical exposure ratio obtained can be applied to investigate actual exposure to DEHP and to determine the exposure characteristics of various types of semi-volatile organic compounds.

전산유체역학을 사용한 양돈장 내 작업환경 환기효율성 분석 (Analysis of Working Environment and Ventilation Efficiency in Pig House using Computational Fluid Dynamics)

  • 오병욱;이성원;김효철;서일환
    • 한국농공학회논문집
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    • 제61권2호
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    • pp.85-95
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    • 2019
  • The internal environment in pig house is closely related to the animal productivity. In addition, it is important to consider a working environment inside the pig house due to high gas and dust concentrations. The poor working environment inside the pig house can cause health problems including respiratory diseases. To analyze the working environment, it is important to evaluate the ventilation efficiency to effectively remove harmful gases and dust. The purpose of this study is to develop a 3D CFD model to analyze the working environment in the pig house. CFD model was validated by comparing air temperature distributions between CFD computed and field measured data. The average air flow rate at the pig height was 40.1 % lower than the working height when incoming air was concentrated on upper layer by the installed ventilation system on the experimental pig house. Using the validated CFD model, the regional ventilation efficiency was computed by the TGD(tracer gas decay) method at the pig and working heights. There was a difference of ventilation efficiency on 14 % between the air stagnated section and the rest sections. Stagnated gas concentration can be effected by animal and human health.

Isolation of Human scFv Antibodies Specific for House Dust Mite Antigens from an Asthma Patient by Using a Phage Display Library

  • Jung, Wang-lim;Lee, Hee-kyung;Yong, Tae-soon;Cha, Sang-hoon
    • IMMUNE NETWORK
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    • 제2권2호
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    • pp.91-95
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    • 2002
  • Background: In order to characterize human antibodies with specificity for mite allergens at the molecular level, a scFv phage display library was constructed using peripheral blood mononuclear lymphocytes from an asthma patient allergic to mite as Ig gene sources. Methods: Immunoglobulin $V_H$ and V gene fragments were obtained by polymerase chain reaction, and randomly combined in pCANTAB-5E vector. The resulting human scFv phage display library had $3{\times}10^4$ independent clones, and biopanning was performed with house dust mite extracts. Results: Four scFv clones specific for house dust mite extract were isolated. Immunoblot assay showed that our clones reacted to 25 kDa and 50~60 kDa proteins with unknown identity in mite extracts. Sequence analysis indicated that two clones (b7 and c15) are identical, and all clones belong to human $V_H3$ subgroup. On the other hand, light chain usage was different in that two clones (a2 and b7 / c15) belonging to V ${\kappa}4$ subgroup, but a4 used V ${\kappa}1$ light chain gene. Conclusion: Our approach should facilitate provision of useful information on the antibody responses against allergens at the molecular level in humans.

개의 아토피성 피부염에 대한 집먼지 진드기 항원 특이적 IgE와 림프구 증식 반응의 증가 (Increased Allergen-specific IgE Values and Lymphocyte Proliferation Response to House Dust Mites in Dogs with Atopic Dermatitis)

  • Park, Seong-jun
    • 한국임상수의학회지
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    • 제21권2호
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    • pp.93-96
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    • 2004
  • 혈중 항원 특이적 IgE 검사와 피내시험으로 집먼지 진드기 (house dust mites, HDM)에 양성 반응을 보인 20두의 아토피성 피부염으로 진단된 개를 대상으로, 말초혈단핵구 (peripheral blood mononuclear cells, PBMC)를 채취하여 HDM항원에 대한 반응을 검토하였다. PBMC를 분리하여 HDM항원으로 자극한 결과 20두 중 13두 (65%)에서 항원 특이적이 림프구의 증식반응을 확인할 수 있었다. HDM 항원에 증식반응은 아토피성 피부염군에서 대조군에 비해 유의적으로 높은 반응이 확인되었다 (P=0.007). 또한, HDM에 대한 반응은 혈중의 IgE 농도와 유의적으로 상관관계를 나타내었으며 (P=0.035), 이는 체내에서 항원 특이적인 IgE의 생산을 촉진하는 작용을 반영하는 지표가 될 수 있다고 생각되었다. 이러한 결과로, 말초혈액중에 존재하는 HDM 항원 특이적인 림프구는 개의 아토피성 피부염의 병태생리에 관여하고 있는 것으로 시사되었다.