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Research Article
The Relevance of Hyperuricemia and Metabolic Syndrome and the Effect of Blood Lead Level on Uric Acid Concentration in Steelmaking Workers
Deul Lee, Won-Jun Choi, Jae-Seok Oh, Min-Kee Yi, Sung-Woo Han, Jong-Wan Yun, Sang-Hwan Han
Ann Occup Environ Med 2013;25:27-27.   Published online October 25, 2013
DOI: https://doi.org/10.1186/2052-4374-25-27
AbstractAbstract PDFPubReaderePub
Objectives

Uric acid concentration is known to increase the prevalence of metabolic syndrome by affecting its components, resulting in increased risk of cerebrovascular and cardiovascular diseases, and long-term lead exposure is known to affect this serum uric acid level. In this study, we aimed to examine the association between the causes of hyperuricemia and metabolic syndrome, and to determine whether an increased blood lead level affects hyperuricemia.

Method

Anthropometric measurements, surveys, and blood tests were conducted between May and June 2012 in 759 men working in the steelmaking process at a domestic steel company. Workers were divided into 2 groups according to the presence or absence of hyperuricemia, and an analysis was performed to examine its association with metabolic syndrome. In addition, the workers were divided into 3 groups according to the blood lead level to analyze the association between blood lead and hyperuricemia.

Results

The geometric mean (standard deviation) of the blood lead levels in the hyperuricemia group was significantly higher than that of the healthy group (3.8 [1.8] vs. 3.3 [1.8] μg/dL). The adjusted odds ratio for metabolic syndrome of the hyperuricemia group increased significantly to 1.787 (1.125–2.839) compared with the healthy group. In addition, the adjusted odds ratios for the occurrence of hyperuricemia in the tertile 2 (2.61–4.50 μg/dL) and tertile 3 groups (>4.50 μg/dL) according to blood lead level significantly increased to 1.763 (1.116–2.784) and 1.982 (1.254–3.132), respectively, compared with the tertile 1 group (< 2.61 μg/dL).

Conclusion

Hyperuricemia is believed to function as an independent risk factor for metabolic syndrome, while lead seems to increase the serum uric acid level even at a considerably low blood level. Therefore, attention should be given to patients with hyperuricemia and metabolic syndrome who are prone to lead exposure, and a prospective study should be conducted to identify their causal relationship.


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  • A systematic review and meta-analysis of the hyperuricemia risk from certain metals
    Tingting Gu, Guorong Cao, Miao Luo, Nannan Zhang, Ting Xue, Rongchun Hou, Min Leng
    Clinical Rheumatology.2022; 41(12): 3641.     CrossRef
  • Environmental factors and risk of gout
    Zheng-Dong Wu, Xiao-Ke Yang, Yi-Sheng He, Jing Ni, Jie Wang, Kang-Jia Yin, Ji-Xiang Huang, Yue Chen, Ya-Ting Feng, Peng Wang, Hai-Feng Pan
    Environmental Research.2022; 212: 113377.     CrossRef
  • Association of hyperuricemia and metabolic syndrome in type 2 diabetes mellitus patients in Dakar
    Oumou Kesso Barry Nènè, Djite Moustapha, Matar Kandji Pape, Hadji Malick Ndour El, Assane Ndour Michel, Diedhiou Demba, Fatou Gueye-Tall, Palanga Koboyo Alix, Marieme Thioune Ndeye, Fatou Coly Najah, Doupa Dominique, Ndour Mbaye Maimouna, Cisse Aynina, Am
    African Journal of Biochemistry Research.2021; 15(3): 43.     CrossRef
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    Daiki Kobayashi, Atsushi Mizuno, Rie Mitsui, Takuro Shimbo
    Coronary Artery Disease.2020; 31(6): 545.     CrossRef
  • Occupational exposure to inorganic dust and risk of gout: a population-based study
    Valgerdur Sigurdardottir, Lennart Jacobsson, Linus Schiöler, Anna Svärd, Mats Dehlin, Kjell Toren
    RMD Open.2020; 6(2): e001178.     CrossRef
  • Associations between blood lead, cadmium, and mercury levels with hyperuricemia in the Korean general population: A retrospective analysis of population‐based nationally representative data
    Wonkil Jung, Yunkyung Kim, Hoseob Lihm, Jihun Kang
    International Journal of Rheumatic Diseases.2019; 22(8): 1435.     CrossRef
  • The role of cadmium in obesity and diabetes
    Alexey A. Tinkov, Tommaso Filippini, Olga P. Ajsuvakova, Jan Aaseth, Yordanka G. Gluhcheva, Juliana M. Ivanova, Geir Bjørklund, Margarita G. Skalnaya, Eugenia R. Gatiatulina, Elizaveta V. Popova, Olga N. Nemereshina, Marco Vinceti, Anatoly V. Skalny
    Science of The Total Environment.2017; 601-602: 741.     CrossRef
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Original Article
Urinary Hippuric Acid and trans,trans-Muconic Acid Levels According to Commuting Mode and Duration, Residential Environment, and Intake of Preservative-Added Foods and Beverages in University Students
Kyoung Mee Kim, Sang Yong Eom, Dong Hyuk Yim, Sun In Moon, Yong Dae Kim, Heon Kim
Korean Journal of Occupational and Environmental Medicine 2012;24(1):61-71.   Published online March 31, 2012
DOI: https://doi.org/10.35371/kjoem.2012.24.1.61
AbstractAbstract PDF
OBJECTIVES
Automobile exhaust gases contain benzene and toluene, which are excreted in human urine as trans,trans-muconic acid and hippuric acid, respectively. Sorbic acid and benzoic acid, used as food preservatives, are also metabolized into trans,trans-muconic acid and hippuric acid in the human body. The purpose of this study is to estimate the level of benzene and toluene exposure according to the commuting mode and duration, residential environment, and preservative-added foods intake in university students who are not occupationally exposed to benzene or toluene.
METHODS
Spot urine samples were collected from 211 university students who had no occupational exposure to volatile organic compounds. Information about their smoking history, residence type, traffic environments, commuting mode and duration, and their intake of bottled or canned food or beverages was gathered through a self-administered questionnaire. Urinary concentrations of trans,trans-muconic acid and hippuric acid were measured and statistically correlated to the individual's life style factors.
RESULTS
There was no significant difference in the urinary concentrations of trans,trans-muconic acid or hippuric acid according to the smoking history. Mean urinary concentration of hippuric acid in females was higher than that found in males. Subjects living in districts with a population density of 1,000~4,999 people/km2 showed the highest urinary hippuric acid level; individuals living in cities of 5,000~9,999 people/km2 population density were next. The mean urinary trans,trans-muconic acid concentration was higher in students who were living where traffic jams are common compared to those who did not, and in subjects whose residence were within 149 m from a 4-lane road compared to those whose residence was not. However, neither mode nor duration of the commute showed any effect on the urinary trans,trans-muconic acid or hippuric acid concentrations of the students. Urinary hippuric acid levels increased when consuming canned fruit or canned coffee, and urinary trans,trans-muconic acid levels increased when consuming fruit juices or pickled radishes.
CONCLUSIONS
The inhalation of vehicle exhaust and the ingestion of canned or pickled food may increase urinary hippuric acid and trans,trans-muconic acid levels in individuals who are not occupationally exposed to benzene or toluene.

Citations

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  • Comparative Analysis of Heavy Metal Exposure Concentrations and Volatile Organic Compound Metabolites among Residents in the Affected Area According to Residential Distance from a Coal-fired Power Plant
    Jee Hyun Rho, Byoung-Gwon Kim, Jung-Yeon Kwon, Hyunji Ju, Na-Young Kim, Hyoun Ju Lim, Seungho Lee, Byeng-Chul Yu, Suejin Kim, Young-Seoub Hong
    Journal of Environmental Health Sciences.2024; 50(1): 25.     CrossRef
  • Association of Urinary Benzene Metabolite and the Ratio of Triglycerides to High-Density Lipoprotein Cholesterol: A Cross-Sectional Study Using the Korean National Environmental Health Survey (2018–2020)
    Seungju Baek, Eunjung Park, Eun Young Park
    Toxics.2023; 11(12): 985.     CrossRef
  • Concentration of volatile organic compounds(VOCs) in ambient air and level of residents in industrial area
    Kyungsook Woo, Heejin Park, Tackshin Kang, Geunbae Kim, Junmin Jeon, Bongki Jang, Jongwha Lee, Busoon Son
    Journal of Korean Society of Occupational and Environmental Hygiene.2015; 25(1): 104.     CrossRef
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Original Article
Health Effect Assessment on Volunteers Involved in the Cleanup Operation Following the Hebei Spirit Oil Spill Along the Taean Coast, Korea
Chul Ho Lee, Kyung Hwa Park, Min Jung Lee, Wook Hee Choi, Heon Kim, Choong Hee Park, Dae Seon Kim, Seung Do Yu
Korean Journal of Occupational and Environmental Medicine 2010;22(1):11-19.   Published online March 31, 2010
DOI: https://doi.org/10.35371/kjoem.2010.22.1.11
AbstractAbstract PDF
OBJECTIVE: The objetive of this study is to assess the level of oxidative stress by the exposure to volatile organic compounds (VOCs) and polycyclic aromatic hydrocarbons (PAHs) in volunteers who cleaned up the crude oil spilled from the Hebei Spirit on the Coast of Taean County, Korea.
METHODS
The study subjects were 46 volunteers and 37 controls from the National Institute of Environmental Research. A self-administered questionnaire was used for volunteers to examine their working environment and health effects. Urinary concentrations of hippuric acid, 1-hydroxypyrene, and 2-naphthol were measured as exposure markers for VOCs and PAHs, and urinary thiobarbituric acid reactive substances (TBARS) and 8-hydroxydeoxyguanosine (8-OHdG) levels were measured as oxidative stress markers.
RESULTS
Sixty-four percent of the respondents presented a variety of symptoms, including sore eyes and throat, nausea, dizziness, headache, low back pain, and leg pain after participating in the cleanup operation. Urinary 2-naphthol and TBARS concentrations appeared higher in the volunteers. Univariate and multivariate analyses showed that urinary TBARS and 8-OHdG levels were positively correlated with urinary 2-naphthol and 1-hydroxypyrene concentrations respectively, especially among the volunteers.
CONCLUSIONS
The result implies that participating in cleanup work of oil spills may have a possibility to induce oxidative damage by exposure to PAHs in crude oil.

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    Innovative Infrastructure Solutions.2023;[Epub]     CrossRef
  • Survey of airborne organic compounds in residential communities near a natural gas compressor station: Response to community concern
    Kaitlin A. Vollet Martin, Elizabeth Z. Lin, Timothy J. Hilbert, Krystal J. Godri Pollitt, Erin N. Haynes
    Environmental Advances.2021; 5: 100076.     CrossRef
  • Human health and ecological assessment programs for Hebei Spirit oil spill accident of 2007: Status, lessons, and future challenges
    Dawoon Jung, Jung-Ah Kim, Myung-Sook Park, Un Hyuk Yim, Kyungho Choi
    Chemosphere.2017; 173: 180.     CrossRef
  • Health Effect Assessment on Cleanup Workers of an Oil Spill in Yeosu
    Geunbae Kim, Tack Shin Kang, Mira Yoon, Hyejung Jo, Youngkyung Joo, Seung Do Yu, Bo Eun Lee
    Korean Journal of Environmental Health Sciences.2016; 42(6): 385.     CrossRef
  • Association between Metabolic Syndrome and Participation in Clean-up Work at the Hebei Spirit Oil Spill
    Ik-Jin Lee, Bong-Ki Jang, Jong-Wha Lee, Bu-Soon Son, Hae-Kwan Cheong, Mina Ha, Young-Hyun Choi, Myungsook Park
    Korean Journal of Environmental Health Sciences.2015; 41(5): 335.     CrossRef
  • Changes of Eating Habits of the Residents of Taean, Korea after the Herbei Oil Spill Accident Based on Focus Group Interviews
    Ji Hyun Park, Sung Ok Kwon, Woo Cheol Jeong, Jong Il Huh, Se-Young Oh
    Korean Journal of Community Nutrition.2011; 16(4): 466.     CrossRef
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Original Article
Effect of Sodium Benzoate on Change of Urinary Hippuric Acid and Methyl Hippuric Acid among Workers Coexposed to Toluene and Xylene
Kyunghee Jung-Choi, Sounghoon Chang, Hyeongsu Kim, Wonki Oh, Sang Baek Koh, Kunsei Lee, Suekyung Park
Korean Journal of Occupational and Environmental Medicine 2006;18(3):163-170.   Published online September 30, 2006
DOI: https://doi.org/10.35371/kjoem.2006.18.3.163
AbstractAbstract PDF
OBJECTIVES
This study was performed to investigate the effect of drink containing sodium benzoate on the change of urinary hippuric acid (UHA) and methyl hippuric acid (UMHA) excretion among workers coexposed to low toluene and xylene.
METHODS
Study subjects were 55 male shipbuilders who were divided into 3 groups; nonexposed group (n=10, who were not exposed to organic solvent and had drunk sodium benzoate), exposed A group (n=24, who were coexposed to toluene and xylene, and had drunk sodium benzoate), and exposed B group (n=21, who were coexposed to toluene and xylene, and had not drunk sodium benzoate). The study methodology consisted of questionnaire survey, urinary analysis for metabolites of toluene and xylene before and after drinking with or without sodium benzoate, and personal air sampling of toluene and xylene.
RESULTS
Before drinking, there was no significant difference in UHA or UMHA between the exposed A and B groups. After 1.5 hour of drinking, UHA of the exposed A group was significantly higher than that of the exposed B group. After 3 hours, however, UHA of the exposed A group was decreased to the level of the exposed B group, regardless of the ambient toluene level. UMHA exhibited no significant difference between the exposed A and B groups regardless of time and ambient toluene level. The regression model showed that drinking of sodium benzoate was positively correlated with UHA after 1.5 hours of drinking, but not after 3 hours. In addition, sodium benzoate didn't affect UMHA.
CONCLUSIONS
This study showed that sodium benzoate initially increased UHA temporally but that its effect disappeared after 3 hours. In the medical examination of toluene exposure workers, the ingestion of drink containing sodium benzoate should be forbidden during the 3 hours prior to urinary sampling.

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Original Article
Effect of Soft Drink on Urinary Hippuric Acid Excretion in Workers Exposed to Low dose Toluene
Yong Jin Lee
Korean Journal of Occupational and Environmental Medicine 2004;16(4):475-487.   Published online December 31, 2004
DOI: https://doi.org/10.35371/kjoem.2004.16.4.475
AbstractAbstract PDF
OBJECTIVES
To investigate the effect of soft drink containing benzoic acid on the excretion of urinary hippuric acid after ingestion of soft drink containing benzoic acid before working (Edthe deleted section is not an objective).
METHODS
Fifty workers (male, 35; female, 15) exposed to toluene in Choongchung province area were studied. Urinary samples were collected on two days. On the first day, all study subjects were required to avoid any soft drink containing benzoic acid for the 24-hour period before urine collection. After emptying their bladder before starting work, the total volume of urine for the full shift period was collected and spot urine was collected at the end of the shift. On the second day, all workers were provided with soft drink containing benzoic acid before the shift and the same urine collection procedure was applied as on the first day. The air concentrations of toluene for each workers was measured with personal air sampling with 3M organic solvent badge. Personal informations such as age, sex, smoking and drinking habit were collected by self-administered questionnaire method.
RESULTS
The geometric mean of urinary hippuric acid without ingestion of soft drink containing benzoic acid was 0.49+/-0.45 g/g creatinine in total volume urine, and 0.51+/-0.53 g/g creatinine in spot urine, whereas the equivalent results with ingestion of soft drink were increased to 0.92+/-0.61 g/g and 0.96+/-0.78 g/g, respectively. Stepwise multiple regression of urinary hippuric acid with air concentration of toluene, benzoic acid and other covariates revealed that 49% and 11% of urinary hippuric acid concentration in total volume urine analysis were attributed to the air concentration of toluene and benzoic acid, respectively, compared to 45% and 6% in spot urine analysis, respectively. On the other hand, taking the difference of urinary hippuric acid before and after ingestion of soft drink containing benzoic acid as a dependent variable and taking the air concentration of toluene, benzoic acid and other covariates as independent variables, stepwise multiple regression analysis revealed that 14% and 13% of urinary hippuric acid concentration in total volume urine analysis were attributed to the air concentration of toluene and benzoic acid, respectively, whereas only 9% of urinary hippuric acid concentration in spot urine analysis was attributed to the air concentration of toluene, (Ed- note that there is no respective comparison here).
CONCLUSION
Soft drink containing benzoic acid significantly affected the level of urinary hippuric acid after ingestion of soft drink before working. It is recommended that for the accurate elevation of urinary hippuric acid as an index of toluene exposure, detailed information on soft drink containing benzoic acid needs to be checked in the process of the health examination of toluene exposure workers.

Citations

Citations to this article as recorded by  
  • Effects of Factors Associated with Urine Hippuric Acid Correction Values in Urinary Creatinine by HPLC and Jaffe Method and Specific Gravity HPLC Jaffe Method
    Key-Young Kim, Jong-Gyu Kim, Ki-Nam Yoon, Wha-Me Park, Hun-Hee Park
    Journal of Korean Society of Occupational and Environmental Hygiene.2015; 25(4): 493.     CrossRef
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Original Article
Assessment of Neurobehavioral Performance Among Rotogravure Printing Workers Exposed to Toluene
Soo Young Chung, Seong Kyu Kang, Dae seong Kim, Se Hoon Lee
Korean Journal of Occupational and Environmental Medicine 2004;16(2):115-128.   Published online June 30, 2004
DOI: https://doi.org/10.35371/kjoem.2004.16.2.115
AbstractAbstract PDF
OBJECTIVES
The aims of this study were to investigate the occupational exposure level to toluene among rotogravure printers and neurobehavioral effects among them.
METHODS
Fifty rotogravure printers and 147 controls participated in this study. Environmental and biological monitoring was performed for the investigation of toluene exposure level, and neurobehavioral performance test were performed by using the Behavioral Assessment and Research System with Korean language instructions(BARS-K).
RESULTS
The major results were as follows; 1. Geometric mean toluene concentrations in the ambient air of 5 rotogravure printing workplaces were 10.5 (GSD 5.9)~181.9 (GSD 17.7), with a grand total of 56.7 (GSD60.9) ppm. 2. The geometric mean urinary hippuric acid level for rotogravure printers of 5 workplaces were 0.31 (GSD 0.11)~5.14 (GSD 0.55), with the grand total of 1.87 (GSD 2.06) g/g creatinine. 3. There was a linear correlation between hippuric acid levels in urine and the exposed toluene in air: urine hippuric acid (g/g creatinine)=0.03 toluene (ppm) + 0.15 (r=0.899, p<0.01, n=50). 4. After adjustment for confounders, significant associations were found between toluene exposure and Digit span forwards, Digit span backwards, Tapping preferred hand, Symbol digit and Selective attention trials.
CONCLUSIONS
1. Rotogravure printers were occupationally exposed to relatively high concentration to toluene, and their neurobehavioral performances were decreased. 2. The BARS neurobehavioral testing program, which minimizes the use of text in the instructions, was very effective in overcoming the cultural barriers in neurobehavioral testing.

Citations

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  • Evaluation of environmental and biological monitoring methods for toluene exposure assessment in paint industry
    Mansour A. Balkhyour, Radhouane Chakroun, Faycal Faidi
    Saudi Journal of Biological Sciences.2023; 30(2): 103538.     CrossRef
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Original Article
Effect of Toluene on Phenol and S-phenylmercapturic Acid Excretion as Urinary Metabolites of Benzene in Rats
Jong Kook Moon, Chi Nyon Kim, Jae Hoon Roh
Korean Journal of Occupational and Environmental Medicine 2002;14(2):143-153.   Published online June 30, 2002
DOI: https://doi.org/10.35371/kjoem.2002.14.2.143
AbstractAbstract PDF
OBJECTIVES
This study was conducted to provide accurate exposure evaluation of workers in a biologicallymonitored state who were simultaneously exposed to benzene and toluene. For the purpose of this study, an animal experiment was conducted.
METHODS
The following concentrations of solvents were administered orally to Sprague-Dawley rats : benzene at 2.26 mg/kg body weight (equivalent concentration to the 2.5 ppm, Threshold Limit Value-ShortTerm Exposure Limit, in the USA) and 9.02 mg/kg body weight (equivalent concentration to the 10 ppm, Threshold Limit Value-TimeWeighted Average in Korea), simultaneously with toluene at 106.42 mg/kg body weight (equivalent concentration to the 100 ppm, Threshold Limit Value-TimeWeighted RESULTS: The following results were obtained from the analysis of reading taken at 3hour intervals of S-phenylmercapturic acid (SPMA) and phenol concentration in urine metabolites of benzene after oral administration for 30 hours. 1. The concentrations of phenol and SPMA in urine were markedly decreased in the initial phase of the mixed group (both benzene and toluene administered group) as compared with the benzeneonly administered group, and the concentrations were slightly elevated. 2. The total excreted amounts of phenol and SPMA in urine decreased in the mixed group compared with the benzene-only group, and these decreases were more remarkable at the benzene administration concentration of 9.02 mg/kg than at 2.26 mg/kg. 3. The urinary excretions of phenol and SPMA were delayed in the case of the mixed group, and the extent of the delay was dependent on the amount of benzene administrat CONCLUSIONS: Benzene metabolism was suppressed by toluene, and hence the excretion of phenol and SPMA as urinary metabolites of benzene was delayed. This result will have applications in the interpretation of results from future biological monitoring of workers exposed to mixed solvents. We should not underestimate the importance of carefully interpreting the results of biological monitoring data when workers are exposed to mixed solvents. We should not underestimate the importance of carefully interpreting the results of biological monitoring data when workers are exposed to mixed benzene and toluene.

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Original Article
Effects of Respirator Use Evaluated by Urinary Hippuric Acid Concentration in Toluene-Exposed Workers
Bum Seok Kim, Chung Yill Park, Hyeon Woo Yim, Hyoung Ah Kim, Sang Yong Oh
Korean Journal of Occupational and Environmental Medicine 2001;13(4):461-469.   Published online December 31, 2001
DOI: https://doi.org/10.35371/kjoem.2001.13.4.461
AbstractAbstract PDF
OBJECTIVES
This study was carried out in order to raise workers'recognition of the effects of respirator use by providing concrete and practical data.
METHODS
Twenty-six workers who dealt with toluene based ink and diluents at a gravure printing office in Seoul were investigated. The toluene exposure level and urinary hippuric acid level were monitored under respirator non-wearing(RNW) and under respiratory wearing(RW) conditions.
RESULTS
The mean concentrations of toluene exposed to each worker through the air of gravure printing office were 147.52+/-57.34 and 134.55+/-52.44 ppm on respirator non-wearing day and respirator wearing day, respectively. There was no significant difference in toluene exposure concentration for the two days. The mean concentration of urinary hippuric acid in RNW and RW groups were 1.51 (0.53) g/L and 0.49 (0.14) g/L, respectively, as measured at the end of the workday. There was a significant difference seen in urinary hippuric acid concentration between the two days. The urinary hippuric acid concentration began to increase at 4 hours after the start of the workday(13:00) in RNW. However, there was no significant increase until the end of the workday in the case of RW. The urinary hippuric acid concentration in RW reduced 89.3% as compared with the concentration seen in RNW. There was a significant correlation between the toluene concentration and the urinary hippuric acid concentration in RNW. The regression equation was Y (urinary hippuric acid concentration, g/L) = 0.007 X x(toluene concentration in the air, ppm) + 0.665.
CONCLUSIONS
Our results indicate that the respirator intercepted most toluene that may have been absorbed into the respiratory organs, and suggested that properly wearing a respiratory such as wearing the respirator during the entire workday and performing a proper fit test played an important role in the protection from toluene exposure

Citations

Citations to this article as recorded by  
  • Effects of Factors Associated with Urine Hippuric Acid Correction Values in Urinary Creatinine by HPLC and Jaffe Method and Specific Gravity HPLC Jaffe Method
    Key-Young Kim, Jong-Gyu Kim, Ki-Nam Yoon, Wha-Me Park, Hun-Hee Park
    Journal of Korean Society of Occupational and Environmental Hygiene.2015; 25(4): 493.     CrossRef
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Original Article
Effects of Genetic Factor, Life Styles, and Diet on Urinary Hippuric Acid Excretion in Toluene Exposed Workers
Hyeon Woo Yim, Chung Yill Park, Young Man Roh, Kang Sook Lee, Jung Min Lee, Won Chul Lee, Se Hoon Lee, Chee Kyung Chung
Korean Journal of Occupational and Environmental Medicine 2000;12(3):405-420.   Published online September 30, 2000
DOI: https://doi.org/10.35371/kjoem.2000.12.3.405
AbstractAbstract PDF
OBJECTIVES
The purpose was to investigate the distributions and the effects of genetic polymorphism of aldehyde dehydrogenase 2(ALDH2), cytochrome P450 1A1(CYP1A1), and cytochrome P450 2E1(CYP2E1) on the toluene metabolism.
METHODS
The subjects consisted of 160 workers who were exposed to toluene in different industries such as paint manufacturing, painting on steel and wood products, printing, bonding, and coating. The exposed toluene level was monitored by passive air sampler, and the questionnaire variables were age, sex, smoking, drinking, previous nights drinking, use of personal protective equipment, work duration, and taking benzoic acid containing food. The urinary hippurric acid collected in the end of shift was corrected by urinary creatinine concentration. The genotypes of ALDH2, CYP1A1, and CYP2E1 were investigated using polymerase chain reaction-restriction fragment length polymorphism(PCR-RFLP) methods with DNA extracted from venous blood.
RESULTS
The geometric mean and the geometric standard deviation of urinary hippuric acid concentration were 0. 44 g/g creatinine and 2. 80. The urinary hippuric acid concentration was significantly related to personal exposed toluene level among personal exposed toluene level, use of personal protective equipment, and benzoic acid containing food diet. The slope differences of the regression for ALDH2, CYP1A1, and CYP2El genetic polymorphism, age, smoking, and work duration tended to be significant. In multiple regression analysis, the regression coefficient of toluene, ALDH2, CYP1A1, CYP2E1 genetic polymorphism were significant.
CONCLUSIONS
Prom the above results, urinary hippuric acid level after toluene exposure was significantly affected by the genetic polymorphism of ALDH2, CYP1A1, CYP2E1. It is needed further investigation of the urinary hippuric acid level considering the effect of genetic polymorphism.

Citations

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  • Applications of CYP-450 expression for biomonitoring in environmental health
    Ho-Sun Lee, Mihi Yang
    Environmental Health and Preventive Medicine.2008; 13(2): 84.     CrossRef
  • Past and Future Applications of CYP450-Genetic Polymorphisms for Biomonitoring of Environmental Toxicants
    Bitna Yi, Ji-Yeon Yang, Mihi Yang
    Journal of Environmental Science and Health, Part C.2007; 25(4): 353.     CrossRef
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Original Article
Urinary hippuric acid excretion by intake of food and drink
Jung Il Kim, Tae Hyuk Park, Kap Yeol Jung, Hai Rim Shin, Joon Youn Kim
Korean Journal of Occupational and Environmental Medicine 1999;11(4):516-526.   Published online December 31, 1999
DOI: https://doi.org/10.35371/kjoem.1999.11.4.516
AbstractAbstract PDF
OBJECTIVES
Urinary hippuric acid levels have been usually determined to ' evaluate workers exposed to toluene. Food and drink intake could affect urinary hippuric acid excretion and this study was carried out to investigate what kinds of food and drink would affect urinary hippuric acid excretion.
METHODS
The subjects were 136 medical school students. Authors measured urinary hippuric acid levels three times from 10 a. m. to noon; before, one hour after and two hours after food or drink-intake, and they were asked not to eat from the previous night (9 p. m) of testing. We selected six diets (bread and coffee, brown sauce noodle, Korean style meal, noodle, pork'galbi and rice and soybean stew and rice), six fruits (apple, grape, orange, pear, persimmon and plum) and five beverages (Alps-D(R), Demisoda(R), Orange juice(R), Pear juice(R) and Pocari sweat(R)). Analysis of urinary hippuric acid was performed by high performance liquid chromatography.
RESULTS
Intake of popular Korean diets, fruits and some drinks didn' t affect urinary hippuric acid excretion. But intake of sodium benzoate-contained Alps-D(R) increased urinary hippuric acid excretion.
CONCLUSIONS
For the health examination on workers exposed to toluene, the history of diet and fruit intake can be negligible, but that of beverage intake should be included.

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Original Article
ALDH2 Genetic Polymorphism and Urinary Hippuric Acid Concentration in Toluene Exposed Workers
Oh Choon Kwon, Ree Joo, Jung Jeung Lee, Chang Yoon Kim, Jong Hak Chung, Seong Yong Kim
Korean Journal of Occupational and Environmental Medicine 1997;9(2):332-340.   Published online June 30, 1997
DOI: https://doi.org/10.35371/kjoem.1997.9.2.332
AbstractAbstract PDF
In this study we evaluated the effects of the genetic polymorphism of aldehyde dehydrogenase2 (ALDH2) on toluene metabolism and determined biological exposure indices (BEIs) for toluene by the genotypes of ALDH2. The study subject were 77 men workers who are handling toluene in a video tape manufacturing factory and a textile company. Through the face-to-face interview, the information about smoking and drinking behavior wag obtained. For determination of ALDH2 poly morphism, 5 ml of venous blood sample was obtained from each subject after informed consent. DNA was extracted from the buffy coat and ALDH2 genotyping were performed using a polymerase chain reaction (PCR) method. The genotype of ALDH2 was classified into the homozygous genotype of normal ALDH2 (NN), and the heterozygous genotype of normal and inactive ALDH2 (ND), and homozygous genotype of an inactive ALDH2(DD). The concentration of hippuric acid (HA), the main metabolite of toluene, was determined in urine specimens collected at the end of shift, corrected with creatinine (HA/C), and compared with BEI for toluene, which is 2.5 g/g creatinine. The personal exposure level of toluene were monitored, using personal air sampler and analyzed by gas chromatography. The frequencies of the three genotypes in this study subjects were, NN : 45 (58.4%), ND : 26 (33.8%) and DD : 6 (7.8%), and frequencies of the genotypes in the middle or heavy toluene exposure workers were not significantly different from those in the mild toluene exposure workers. The frequencies of the DD type of ALDH2 was lower among alcohol drinkers than among non-drinkers. The urinary HA concentration of DD group was significantly lower than that of the NN or ND group, which suggests that the HA formation from toluene decreased in DD group. Regression lines were used to estimate the BEIs of the NN, ND, and DD groups. NN : y = 0.0085x + 0.23, r = 0.90 ND : y = 0.0074x + 0.21, r = 0.85 DD : y = 0.0041x + 0.82, r = 0.83 The three regression lines revealed that the estimated urinary HA concentration of NN, ND, and DD groups at 377 mg/m3 toluene(TLV-TWA) exposure were 3.43, 3.00, and 2.37 g/g creatinine, respectively. The HA concentration of the NN, and ND group were higher than that of the ACGIH BEI (2.5 g/g creatinine) ; however, the HA level of DD group was lower than the BEI. These results suggests that the ACGIH BEI is not adequate to estimate the toluene exposure of the NN, ND and DD groups at the same time. Based upon those results, a new BEI for ALDH2 deficient workers may be necessary.

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Original Article
Effect of Benzoic Acid Containing Foods on the Urinary Hippuric Acid Concentration in Workers Exposed to Toluene
Sang Hyo Sim, Jeong Il Park, Jeong Il Son
Korean Journal of Occupational and Environmental Medicine 1996;8(3):526-534.   Published online December 31, 1996
DOI: https://doi.org/10.35371/kjoem.1996.8.3.526
AbstractAbstract PDF
This Study was performed to investigate the effect of foods containing benzoic acid on the urinary hippuric acid concentration in the toluene exposed workers. The urinary hippuric acid concentration were measured at 0, 30, 60, 90, 120, and 150 minute after intake of soft drink and bread containing benzoic .acid: in volunteers,: who did not have been exposed toluene occupationally. After that urinary hippuric: acids also were measured at the end of shift in toluene exposed workers. And also the concentration of toluene in air were analysed! by gas chromatography. So the relationships between urinary hippuric acid concentration and age, work duration, concentration of toluene in air and intake of benzoic acid containing food were observed. The results were as follows: 1. The urinary hippuric acid concentration reached the highest level at 30 minute after intake of soft drink with bread at a level of 1.41g/g creatinine and soft drink; alone at a level of 1.04g/g creatinine which contained benzoic acid among unexposed toluene, and then gradually decreased. 2. In toluene exposed group no significant effect of general; characteristics siich; as gender, age, work duration, drinking and smoking on urinary: hippuric acid concentration was showed in toluene exposed group. 3. The mean value of urinary hippuric acid concentration of group taking benzoic acid containing foods was significantly higher than that of group not taking. 4. Multiple regression analysis showed that toluene concentration in .air and benzoic acid containing foods were together significantly influence on urinary ; hippuric acid concentration. And the function between variables is Y = 0.014Tpluene +0.489Benzoic acid +0.745 and the contribution rates were 31%. In conclusion, it was suggested that the information on intake of benzoic acid containing foods should be considered in measurement of urinary hippuric acid for the more accurate toluene exposure evaluation.

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  • Effects of the Exposure to Polycyclic Aromatic Hydrocarbons or Toluene on Thiobarbituric Acid Reactive Substance Level in Elementary School Children and the Elderly in a Rural Area
    Dae-Seon Kim, Chul-Ho Lee, Sang-Yong Eom, Tackshin Kang, Yong-Dae Kim, Heon Kim
    Journal of Preventive Medicine and Public Health.2008; 41(1): 61.     CrossRef
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Original Article
Effect of Aldehyde dehydrogenase2 (ALDH2) Genotypes in Urinary Hippuric Acid Excretion as a Biological Exposure Index of Toluene
Seong Sil Chang, Chung Yill Park, Kang Sook Lee, Young Man Roh
Korean Journal of Occupational and Environmental Medicine 1996;8(3):454-465.   Published online December 31, 1996
DOI: https://doi.org/10.35371/kjoem.1996.8.3.454
AbstractAbstract PDF
We investigated toluene exposure level, urinary hippuric acid concentrations, subjective symptoms and genotype of ALDH2 DNA in 134 exposed workers and 53 nonexposed workers for evaluating the effect of ALDH2 polymorphism on toluene metabolism and urinary hippuric acid concentration as biological exposure indices (BEI) of toluene. The results were as follows; 1. The percentage of inactive genotype of ALDH2 in exposed workers was lower than that of exposed (P=0.081). 2. The percentages of exposed workers with inactive genotype did not have any significant difference by the increase of toluene exposure level or work duration. 3. The frequency of drinking, monthly and maximum amount of alcohol intake in workers with normal genotype were significantly higher than those with inactive genotype. 4. The urinary hippuric acid concentration of nonexposed workers ,with inactive genotype was significantly lower than that with normal genotype. Under 100 ppm of toluene, similar but statistically insignificant trends were found, while above that concentration of toluene, reverse but statistically insignificant trends were found. 5. The number of acute and chronic subjective symptoms were increased positively with the concentration of toluene in workers with normal genotype, but ho such trends were found in workers with inactive genotype. 6. The result of simple linear regression between toluene and urinary hippuric acid concentrations showed a very significant positive linear relation-ship. The mean hippuric acid concentration of nonoccupational exposure was 0.289+/-0.227 (0.062-0.516) g/l. Toluene exposure level unable to discriminate with nonoccupational exposure estimated from regression equation, it range from 7.29 to 9.87 ppm. Considering above all things, it was useful to estimate the exposure level of toluene by means of analysing urinary hippuric acid concentration in both genotype workers, but the biological exposure indices (BEI) of both genotypes were different from each other. The BEI of the total exposed workers was 2.76 g/ I, which was lower than current criteria 3.0g/ I (2.5 g/g Cr), and it also suggest that the BEI for the exposed workers in our country be lowered to the appropriate level after further study.

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  • Effects of Factors Associated with Urine Hippuric Acid Correction Values in Urinary Creatinine by HPLC and Jaffe Method and Specific Gravity HPLC Jaffe Method
    Key-Young Kim, Jong-Gyu Kim, Ki-Nam Yoon, Wha-Me Park, Hun-Hee Park
    Journal of Korean Society of Occupational and Environmental Hygiene.2015; 25(4): 493.     CrossRef
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Original Article
A Study on the Correlation of Ambient Toluene and Xylene with Biological Monitoring Index
Soung Hoon Chang
Korean Journal of Occupational and Environmental Medicine 1995;7(2):295-305.   Published online October 31, 1995
DOI: https://doi.org/10.35371/kjoem.1995.7.2.295
AbstractAbstract PDF
In order to study the correlation of ambient toluene and xylene exposure with their biological monitoring indices, we measured the concentration of toluene and xylene in the workplace. We also measured their biological monitoring indices of workers from August to November in 1994. The exposed group consisted of 103 male workers and the non-exposed group consisted of 34 male workers. The ambient concentration of toluene was 44.7 +/-55.4 ppm and that of xylene was 2.35+/-2.15 ppm. The urinary concentration of hippuric acid in exposed group was 1.72+/-1.53 g/g creatinine and that of non-exposed group was 0.34+/-0.28 g/g creatinine. The difference was statistically significant between two groups (p<.0.001). The urinary concentration of o-cresol in exposed group was 692.9+/-710.8 ug/g creatinine and that of non-exposed group was 184.7+/-167.6 microgram/g creatinine. The difference was also statistically significant between two groups (p<0.001). The urinary concentration of methylhippuric acid which was compensated with urinary creatinine in I exposed group was 62. 7+/-104.6 mg/g creatinine and that of non-exposed group was 64.0+91.5 mg/g creatinine. However the difference was not statistically significant between two groups (p>0.05). When compensated with urinary creatinine, the correlation coefficient of ambient toluene with urinary hippuric acid and ocresol were 0.63(p=0.0001) and 0.65(p=0.0001), respectively. When compensated with urinary specific gravity, the correlation coefficient of ambient toluene with hippuric acid and ocresol were 0.525 (p=0.0001) and 0.547 (p=0. 0001), respectively. The compensation method using urinary creatinine provided a higher correlation coefficient. We could not find any statistically significant differences between the duration of work and other variables (urinary hippuric acid, o-cresol and methylhippuric acid). In order to monitor biological indices of toluene-exposed workers, we suggest the measurement of urinary hippuric acid rather than o-cresol. As the compensation method, we suggest to use urinary creatinine rather than urinary specific gravity.

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  • Effects of the Exposure to Polycyclic Aromatic Hydrocarbons or Toluene on Thiobarbituric Acid Reactive Substance Level in Elementary School Children and the Elderly in a Rural Area
    Dae-Seon Kim, Chul-Ho Lee, Sang-Yong Eom, Tackshin Kang, Yong-Dae Kim, Heon Kim
    Journal of Preventive Medicine and Public Health.2008; 41(1): 61.     CrossRef
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Original Article
Validation of New Derivatization Procedure for the Determination of Hippuric Acid in Urine Using Gas Chromatography
Soo Hun Cho, Yong Hyeon Yim, Sun Min Kim, Ho Jang Kwon, Mi na Ha, Sang Hwan Han
Korean Journal of Occupational and Environmental Medicine 1995;7(1):58-62.   Published online February 28, 1995
DOI: https://doi.org/10.35371/kjoem.1995.7.1.58
AbstractAbstract PDF
Urinary hippuric acid was analyzed by gas chromatography/mass spectrometry method. A simple and economical derivatization procedure using excessive methanol in acidic condition was adopted to esterify hippuric acid. Quantitative analysis was performed with two internal standards, heptadecanoic acid and hydrocinnamic acid, to evaluate the derivatization procedure as an analytical method. Using the standard addition method, linear and reproducible calibration curves were obtained for both internal standards. Calibration experiment showed that good quantitative result could also be obtained with the calibration curve obtained without urine matrix. Recovery rates for the urine samples were in the range of 95.6~111.4%. Using hydrocinnamic acid as internal standard, analysis time could be reduced.

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  • Relationships between airborne exposure and urinary metabolites of nail technicians
    Jin Hee Yang, Ji Young Kim, Aeyong Eom, Hee Kyoung Hyoung, Sang Baek Koh
    Toxicology and Environmental Health Sciences.2010; 2(3): 175.     CrossRef
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Original Article
A Study on Urinary Hippuric Acid and Subjective Symptoms in Toluene Exposed Workers
Joo Ja Kim, Jung O Ham, Kyu Dong Ahn, Byung Kook Lee, Taik Sung Nam, Nam Won Paik
Korean Journal of Occupational and Environmental Medicine 1989;1(2):206-217.   Published online November 30, 1989
DOI: https://doi.org/10.35371/kjoem.1989.1.2.206
AbstractAbstract PDF
To study the relationship between the urinary hippuric acid and subjective symptoms in toluene exposed workers, urinary hippuric acid was measured and subjective symptoms questionnarire was surveyed in 93 toluene exposed male workers and 96 non-exposed office male workers. The results are as follows: 1. Mean concentration of urinary hippuric acid, which is significantly higher in exposed group than in non-exposed group, was 1.3 g/l, 1.2(GM, GSD respectively) in exposed group and 0.6 g/l, 1.2(GM, GSD respectively) in non-exposed group. 2. Mean concentration of toluene in the air in the workplace, which is significantly higher in the department of coater than in the department of mixing, was 23.4 ppm, 6.2(GM, GSD respectively) in the department of mixing and 59.8 ppm, 3.4(GM, GSD respectively) in the department of coater. 3. Complained rates of subjective symptoms were significantly higher in exposed group than in non exposed group in all items. 4. In exposed group, complained rate of CNS related symptoms was higher than that of irritation related symptoms in the first part but there was no significant difference and complained rate of irritation related symptoms in the second part was significantly higher than that of CNS related symptoms. 5. In exposed group, complained rates of subjective symptoms were not compatible with dose-response relationship by the concentration of urinary hippuric acid, duration of work, department of work, and age group retrospectively.

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  • A Study of Working Environment for Automotive Painting in Auto Repair Shops and Workers' Exposure to Hazardous Chemicals
    Sang-Hyo Sim, Chun-Hwa Jeoung, Jin-Suk Lim, Hyung-Gu Lee, Yoon-Shin Kim
    Korean Journal of Environmental Health Sciences.2009; 35(3): 153.     CrossRef
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