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산업안전보건법 상 유해성 위험성 평가제도 적용을 위한 양-반응 평가의 통일화 방안 연구
임철홍 ( Cheol Hong Lim ),양정선 ( Jeong Sun Yang ),박상용 ( Sang Yong Park ) 한국산업위생학회 2012 한국산업보건학회지 Vol.22 No.3
Objectives: This study developed a harmonized method for risk assessment based on the Hazard & Risk Evaluation of Chemicals (HREC) according to the Industrial Safety and Health Act (ISHA). Methods: Three preliminary studies, performed during 2010 and 2011 by the Occupational Safety and Health Research Institute and three academic research groups, were compared. The differences in risk assessment, especially in the dose-response assessment method, were analyzed. A new harmonized method for dose-response assessment was suggested and its applicability for the HREC was examined. Results:: Considering the various steps of each dose-response assessment, the equivalent steps in quantitative correction, uncertainty factor 2 (UF2) for intra-species uncertainty, and UF3 for the experimental period in the uncertainty correction were relatively high. Using our new method, the total correction values (quantitative correction plus uncertainty correction) ranged from 72~15,789 to 30~60, and the ratio of the threshold limit value (TLV) to the reference concentration decreased from 12.8~1900 to 5.4~11.8. Furthermore, when we performed risk characterization by our new method, hazard quotient (HQ) values for chloroethylene, epichlorohydrin, and barium sulfate became 3.0, 14.1, and 1.13 respectively, whereas three previous studies reported HQ values of 7.1, 4580, and 87.3 considering reasonable maximum exposure (RME) conditions. HQs of the three chemicals were calculated to be 0.6, 2.4, and 0.1 respectively, when compared to their TLVs. Conclusions: Our new method could be applicable for the HREC because the total correction values and the ratio of TLVs were within reasonable ranges. It is also recommended that additional risk management measures be applied for epichlorohydrin, for which the HQ values were greater than 1 when compared with both reference values and the TLV. Our proposed method could be used to harmonize dose-response assessment methods for the implementation of risk assessment based on the HREC according to ISHA
김현영(Hyeon-Yeong Kim),임철홍(Cheol-Hong Lim) 한국가스학회 2015 한국가스학회지 Vol.19 No.3
본 연구는 신발, 타이어, 접착제 제조에 많이 사용되는 클로로프렌(chloroprene)에 대해 취급근로자의 건강장해 예방을 위해 유해성을 조사하고, 취급사업장에 대해 작업환경을 측정 노출농도 및 용량반응을 통해 위험성을 평가하였다. 클로로프렌은 국제암연구소(IARC)로부터 발암추정물질(2B), 표적장기 전신독성 및 생식독성물질로 국내 취급 사업장은 27개소, 연간 약 1,300톤이 사용되었으며, 노출 위험성은 노출환경에 따라 Monte-carlo simulation을 이용하여 산출하였다. 그 결과 국소배기장치가 없으며 1일 4시간 초과 작업시 발암을 일으킬 수 있는 위험성의 평균값은 26,404로, 국소배기장치가 있으며 15분 미만의 단시간 작업 경우 2,199에 비교해 매우 높은 위험성을 보였다. 그리고 표적장기 전신독성의 경우도 169.06으로 단시간 작업 경우 4.10에 비교해 표적장기 전신독성 발생 위험이 높은 것으로 평가되어 물질의 노출시간 및 환기방식에 깊은 상관관계가 있는 것으로 나타났다. 따라서 클로로프렌 노출에 의한 근로자의 건강장해 예방하기 위해 국소배기장치의 가동과 방독마스크의 착용 등 노출저감을 위한 작업환경 관리의 필요성이 있었다. 특히 클로로프렌은 발암성, 생식독성 물질로 미국 산업안전보건청(OSHA)에서는 TWA를 5 ppm(18 ㎎/㎥) 이하로 관리하고 있으며, 본 유해성조사 결과에서도 현행 노출기준 10 ppm이하에서 표적장기독성, 생식기 장해 등 생체에 미치는 영향이 있는 것으로 나타나 있어, 위험성이 강하게 예측되므로 현재 사용하고 있는 우리나라 작업환경 노출기준(TWA 10 ppm)도 5 ppm 수준으로 강화하여 근로자 건강장해 예방에 기여할 필요성이 있는 것으로 판단되었다. In this study, we performed risk assessment of chloroprene by hazard evaluation and workplace investigation. The chemical is used to manufacture of shoes, tires, adhesives, and classified as IARC category 2B (possibly carcinogenic to humans) and target organ systemic toxicity. It is used about 1,300 tons per year in 27 sites. It was calculated the risk of carcinogenesis with chloroprene by Monte-carlo simulation that the averages are 2,199 and 26,404 in each case of working less than 15 minutes per day with local exhaust ventilation and over 4 hours per day without local exhaust ventilation. The risk of target organ systemic toxicity are 4.10 and 169.06 with high correlation with working time to be longer and with ventilation system. Therefore, it is recommended that the local exhaust ventilation and respirators to prevent occupational cancer and target organ systemic toxicity with chloroprene. Especially it is determined that there is a need to strengthen the workplace exposure limit (TWA 10 ppm) in Korea since it is managed with TWA less than 5 ppm (18 ㎎/㎥) by the United States Occupational Safety and Health Administration (OSHA) as well as it has carcinogenicity, reproductive toxicity.
Lewis Lung Carcinoma(LLC) 이식 생쥐에 있어서 천연운지 단백다당체(Copolang)의 면역조절활성
문창규(Chang Kiu Moon),임철홍(Cheol Hong Lim),목명수(Myung Soo Mock),양경미(Kyung Mee Yang),한혜승(Hye Seung Han),최재영(Jae Young Choi) 대한약학회 1993 약학회지 Vol.37 No.1
Immune functions of mice bearing Lewis Lung Carcinoma (LLC) were significantly suppressed when evaluated with mitogen responsiveness, IL-2 production and non-specific suppressor activity. Based on these immunosuppressive characteristics of LLC bearing mice, immunomodulating activates of Copolang were investigated in this model. After 15 days of LLC inoculation, Copolang was intraperitoneally administered for 7 consecutive days with doses of 20 or 200 mg/kg. Immune functions were evaluated 3 days after the final administration of Copolang. The results showed that the growth of LLC solid tumor was not inhibited by Copolang. But, mitogens-induced proliferation, IL-2 production and responsiveness to recombinant IL-2 of splenocytes were significantly augmented by the treatment of Copolang. However suppressor cell activity was not affected by Copolang. These results indicate that Copolang expresses potent immunomodulating activates through the augmentations of IL-2 production and responsiveness to recombinant IL-2, which have been generally known to be suppressed in tumor bearing mice, without affecting the growth of tumor.
산안법 관리대상물질의 변이원성 검색을 통한 GLP 유전독성 시험대상 후보물질의 선정
임경택 ( Kyung Taek Rim ),임철홍 ( Cheol Hong Lim ),안병준 ( Byung Joon Ahn ) 한국산업보건학회 (구 한국산업위생학회) 2015 한국산업보건학회지 Vol.25 No.3
Objectives: There is a requirement to select target materials for mutagenicity(Genotoxicity) testing, so we determined to set the test priorities of them by searching the related database. Methods and Results: We searched a number of databases to find information on mutagenicity tests with chemicals under the Occupational Safety and Health Act(OSH Act), such as KOSHANET, National Toxicology Program(NTP), European Chemicals Agency(ECHA), US National Library of Medicine(NLM), and Genetic Toxicology Data Bank(GENE-TOX), as well as ChemIDplus webpage, and presented the information. Also we anticipated their hazards with ACToR sites to confirm the 58 mutagenicity(Genotoxicity) tests we will perform. Conclusions: We presented target materials for mutagenicity testing with specific GLP tests consisting of reverse mutation(Ames), chromosomal aberration and micronucleus test.
임경택(Kyung-Taek Rim),임철홍(Cheol-Hong Lim),김현영(Hyeon-Yeong Kim),차신우(Shin-Woo Cha),허용(Yong-Heo),윤진하(Jin-Ha Yoon),김형아(Hyung-A Kim) 한국환경보건학회 2017 한국환경보건학회지 Vol.43 No.1
Objectives: In this study, we seek to perform a priority selection for test substances for chronic inhalation toxicity studies, including acute and subchronic inhalation toxicity studies, which are to be performed after the construction of a chronic/carcinogenicity inhalation toxicity study facility and enactment of pertinent legislation. Methods: Through this study, qualitative and quantitative priority evaluation of test substances according to acute, subchronic and chronic categories were respectively performed and priorities were suggested by expert group review, redundancy and other methods. Meanwhile, a draft on test substance selection criteria, procedures and methods referring to the National Toxicology Program (NTP) system was proposed. Results: This study selected priorities for candidate substances for chronic inhalation toxicity studies to be conducted from 2016. Conclusions: In the future, by assessing in advance the toxicological effects of chemicals to which workers can be potentially exposed in the workplace via long-term inhalation, expected health disturbances among workers will be reduced and it is anticipated that occupational disease induced by chemicals will be effectively prevented.