Document 377RbZbGv4zM6XmJ4vjwax0E3
Occupational Risks for Pleural Mesothelioma in Sweden, 1961-79*1
Hans S. R. Malker,2 Joseph K. McLaughlin,3 4 Blrgltta K. Malker,5 B. J. Stone,3 *Jan A. Weiner,2 Jan L. E. Erickson,5 and William J. Blot3
ABSTRACT--From national population-based registries linking cancer incidence from 1961 to 1979 with 1960 census data on industry and occupation for.all employed individuals in Sweden, a systematic assessment was made of pleural mesothelioma occur rence according to occupational and industrial classifications. There were 318 cases of pleural mesothelioma recorded during the 19-year follow-up period among males employed in 1960, with significant variation by industrial and occupational categorizations. The observed number of pleural mesotheliomas for men employed in the sugar refining, cellulose, wood and.pulp, shipbuilding, and railroad equipment manufacturing industries was more than three times the number expected. Occupations with at least twofold excess of mesotheliomas included the craftsman categories of plumbers, mechanics and repairmen, electricians, painters, tire makers, and stationary equipment operators. Our findings are consistent with available data relating mesothelioma to occupa tional asbestos exposure in other countries, although unexpected associations were found that deserve further epidemiologic study.--JNCI 1985; 74:61-66.
Malignant pleural mesothelioma is a rare and highly fatal tumor arising from the mesothelial surface lining the pleural cavities. The pleura is the most common site of origin for mesotheliomas in most countries, including Sweden, where 90% of all mesotheliomas among males and 60% among females were from the pleura during the period 1961-79. Throughout the world this neoplasm has been strongly associated with occupational exposure to asbestos (1). The rarity of mesothelioma, however, has made evaluation of occupational associations difficult, except in large heavily exposed groups (2). The CER in Sweden (5, 4), which links cancer incidence data with employment data, provides a unique opportunity to assess systematically the occurrence of pleural mesotheli oma by industry and occupation for an entire country. In this paper we utilize this linked data resource to develop new etiologic hypotheses and provide further information regarding previously reported occupational findings.
METHODS
The CER links the cancer incidence data (1961-79) of the National Swedish Cancer Registry with occupational information obtained in the 1960 national census. The CER now contains about 605,000 cancer cases (5). Every Swedish citizen has a personal identification number, making linkage between data sources easy. A national law requires cancer cases to be reported to the Registry (6). Nonreporting for cancers of the trachea, bronchus, lung, and pleura is estimated to be less than 5% (7). For the period under study (1961-79), 99% of all pleural cancers (ICD 7th Revision, 162.2; ICD 8th Revision, 163.0) and 100% of all cancers recorded as malignant
pleural mesotheliomas were microscopically verified. Only verified malignant pleural mesotheliomas are used for this analysis.
An SIR was used to estimate risks of mesothelioma for various occupational and industrial categories for the 19year period. The SIR is the ratio of the observed number of cases of pleural mesothelioma in a particular industry or occupation to the expected number of cases. The expected number of cases is generated by application of the birth cohort- and sex-specific rates for 1961-79 from the genera] population of Sweden to the birth cohortand sex-specific distributions of the various occupational and industrial groupings. Five-year birth cohorts were used in these calculations. Because of variation in cancer incidence rates by region, the SIR were also adjusted for region, with the use of the 3 metropolitan areas and 24 counties in an indirect standardization (8). Statistical significance was tested under the assumption that the observed number of mesotheliomas followed a Poisson distribution (9). Industrial and occupational classifica tions from the 1960 census (Folk-och Bosiadsrakningen 1960) were used to define industrial and occupational cohorts (10). These codes are revised versions of the standards from the International Labour Office and the United Nations (11,12). SIR were calculated for all broad (1-digit code) industrial and occupational groups, for all manufacturing and craftsman-tradesman groups (2-digit code), and for selected specific (3-digit code) industries and occupations. Since at the 3-digit level there are more than 300 industry codes and 300 occupation codes, only those industries and occupations with 3 or more observed cases were included in the analysis at this level. When numbers permitted, the distribution of pleural mesotheli omas was also determined for occupations within specific industries to enable a more detailed evaluation of risk.
Abbreviations used: CER = Cancer-Environment Registry; ICD=fn-
ternational Classification of Diseases; ind. = industry codefs); NOC=nol
otherwise classified; occ. ^occupational codefs); SIR=standardized
incidence ratiofs).
.
1 Received June 26, 1984; accepted August 15, 1984. * National Board of Occupational Safely and Health, Solna, S-171 84, Sweden. * Environmental Epidemiology Branch, Division of Cancer Etiology, National Cancer Institute,'National Institutes of Health, Public Health
Service, U.S. Department of Health and Human Services, Belhesda, MD 20205.
1 Address reprint requests to Dr. McLaughlin, National Institutes of Health, Landow Building, Room SCI6, Belhesda, MD 20205. '
''National Board of Health and Welfare, Stockholm, S-106 30, Sweden.
61 JNCI, VOL. 74, NO. I. JANUARV 1985
SC-ELEC-08720
Malker, McLaughlin, Malker, etaj.
RESULTS
There were 318 cases of malignant pleural mesotheli omas during the 19-year follow-up among males employed in 1960. The SIR for the 10 broad industries and occupations in Sweden are presented in table I. Significantly elevated SIR were found for the manu facturing and construction industries (ind. 3 and 4). For occupation, a significantly increased risk was observed for craftsmen and production-process workers (occ. 7). These broad industrial and occupational categories also had the largest numbers of mesotheliomas. Significantly low SIR were observed for farmers (ind. 0; occ. 4) and sales workers (occ. 3).
The manufacturing industries (ind. 2 and 3), the construction industry (ind. 4), and the productionprocess workers (occ. 7 and 8) were examined further at the 2- and 3-digit coding levels (tables 2,3). Employment in the general industries (2-digit code level) of paper and allied products (ind. 26), rubber (ind. 30), transportation equipment (ind. 36), and other construction (ind. 41) was associated with a significantly increased SIR (table 2). Other manufacturing industries also showing elevated risks included textile (ind. 22), furniture (ind. 25), chemical (ind. 31), stone, clay, and glass (ind. 33), and machinery and electronics (ind. 35). An examination of the 3-digit level indicates that increased SIR are seen for both cellulose, wood, and pulp (ind. 261) and paper mill industries (ind. 262) within industry 26; that work in shipbuilding and repair (ind. 360) and manufacturing of railroad equipment (ind. 362) account for the high risk within the transportation equipment category (ind. 36); and that painting (ind. 410) and plumbing (ind. 413) are the specific industries accounting for the excess risk within other construction (ind. 41). Significantly elevated SIR were also observed for other specific industries,
including sugar factories and refineries (ind. 206) and other manufacturing of industrial chemicals (ind. 312).
Results for general and specific occupations are pre sented in table 3. Significantly elevated SIR were seen for the general category of toolmakers, machinists, plumbers, welders, and related jobs (occ. 75) and for painters and paperhangers (occ. 78), whereas nonsignificantly in creased SIR were seen for some other general occupa tional categories. Within the general occupation of toolmakers, machinists, plumbers, welders, and related jobs (occ. 75), all of the specific occupations had elevated SIR, two of them significant: mechanics and repairmen (occ. 752) and plumbers and pipe fitters (occ. 754). Of the 16 mechanics and repairmen (occ. 752) who developed pleural mesotheliomas, 4 were employed in the manufac turing of railroad equipment (ind. 362) for an occupation within industry SIR of 9.5, 2 were employed in sugar factories and refineries (ind. 206) for an SIR of 32.5, and 2 were employed in shipbuilding and repair (ind. 360) for an SIR of 11.5. Other specific occupations associated with significantly elevated risks were electricians and electrical repairmen (occ. 761), painters and paperhangers (occ. 781), cellulose and pulp workers (occ. 834), tire workers and vulcanizers (occ. 851), and operators of stationary engines and related equipment (occ. 871). Twofold and greater (nonsignificant) risks were observed for blacksmiths (occ. 735), sheetmetal workers (occ. 753), bricklayers, plasterers, and cement finishers (occ. 791), and craftsmen and production workers (NOC) (occ. 858). Two of the 3 cases in the last occupation occurred in the cement and light concrete industry (ind. 334), which gives an SIR of 3.4 for the occupation within industry. There was also a more than twofold excess risk among woodworkers (NOC) (occ. 779); 2 of these cases were within the sawmill industry (ind. 240), yielding an SIR of 2.1. A fourfold excess (based on I case) was found for the
Table 1.--SIR for pleural mesothelioma by major divisions of industry and occupation among males
Code 0 1 2 3 4
5 6 7
8
9
Major industry
Farming, forestry, hunting, and fishing
Mining and quarrying
Manufacturing I Manufacturing II Construction
Electric, gas, water, and sanitary services
Trade, finance, insurance, and real estate
Transportation and communication
Services
Nonclassifiable estab lishments
Cases 21 0 56 103 63
2 20 20
30
3
SIR" 0.4* -- 1.2 1.5* 1.6*
0.4 0.6 0.8
0.9
3.4
Code 0 1 2 3 4
5 6 7
8
9
Major occupation
Professional, technical, and related workers
Administrative, executive, and managerial workers
Clerical workers Sales workers Farmers, fishermen,
hunters, and related workers Miners, quarrymen, and related workers Transport and communica tions workers Craftsmen, productionprocess workers, and laborers Craftsmen, productionprocess workers, and laborers (NOC) Service, sport, and recreation workers
Cases 41 12 9 9 21
2 20 138
48
18
"Adjusted for age and region. *P<0.01.
JNCI. VOL.. 74. NO. I. JANUARY 1985
SIR" 1.2 1.0 0.7 0.4* 0.4*
1.3 0.9 1.6*
1.0
1.2
Occupational Risks for Pleural Mesothelioma 63
Table 2.---SIR for pleural mesothelioma by general (2-digit) and specific (S-digit) manufacturing industries among males
Code
20
21 22
23
24 25 26
27 28 30 31
32
33
34
35
36
General industry Food products
Tobacco and beverages Textile
Apparel (includes shoes and furs)
Lumber and wood products Furniture and fixtures Paper and allied products
Printing and publishing
Leather
'
Rubber
Chemical
,,
Coal and petroleum refining
Stone, clay, and glass
Fabricated metal products
Machinery and electronics
Transportation equipment
37 Miscellaneous manufacturing
39 . Manufacturing (NOC) 40 House building construction 41 Other construction
Cases 10
0 9
3
4 4 23
3 0 6 9
0
8
11
29
40
0
0 27 36
SIR" 1.1
--
1.6
0.5
0.5 1.4 2.9*
0.6 -- 3.0" 2.2
--
1.3
0.8
1.4
2.3*
--
-- 1.3 1.9*
Code 206
220 221
Specific industry
Sugar factories and refineries
Wool Cotton
.
250 261 262
300 312
334
345
350 352 360 362 .
Furniture manufacturing Cellulose, wood, and pulp Paper mills
Rubber manufacturing Other manufacturing of
industrial chemicals
Manufacturing of cement and light concrete
Iron and steel manufacturing
Machine manufacturing Other electrical industry Shipbuilding and repair Manufacturing of rail-
road equipment
400 House building 410 Painting 413 Plumbing 414 Electrical installation 415 Road and power plant
construction
Cases 7
3 3
3 14 8
5 6
3 6 19 10 25 11
27 13 12 3 6
SIR" 6.3*
2.7 1.3
1.4 4.7* 2.4
2.8 3.7"
2.0 1.1 1.2 2.0 3.0* 7.2*
1.3 2.9* 4.2* 1.6 0.8
"Adjusted for age and region.
*P<.01. "P<05.
specific occupation of insulators (occ. 794), an uncom
mon occupation (1,677 men) in Sweden.
Specific occupations not included in table 3 but with
significantly elevated SIR were chemical engineers (occ.
004; 6 cases; SIR=3.2), railroad engineers and firemen
(occ. 631; 4 cases; SIR=5.0), and transportation workers
(NOC) (occ. 639; 3 cases; SIR=16.4).
.
The small numbers of cases often precluded examina
tion of risks associated with occupations within indus
tries. For the sugar refining, cellulose, wood and pulp,
paper, shipbuilding, and railroad equipment manufac
turing industries, however, elevated SIR were found for
multiple occupations, although the SIR tended to be
highest for mechanics and repairmen.
Although only 41 cases of malignant pleural mesothe
lioma were observed among women employed in 1960,
there were some notable results at the 3-digit industry and
occupation levels. A significantly increased SIR was
observed for the apparel industry (ind. 233; 6 cases;
SIR = 3.1). Five of these cases occurred among seam
stresses (occ. 716), with an SIR of 3.4 for this occupation
within the apparel industry. The occupations of nurses
and midwives (occ. 040 and 043; 6 cases; SIR=3.3) had significantly more cases of mesothelioma than expected.
DISCUSSION
This survey of malignant pleural mesothelioma inci dence in Sweden and its relationship to occupation and industry revealed findings generally consistent with those reported from other countries (13). The highest incidence ratios at the broadest industry and occupation levels were for manufacturing and construction trades, where the potential for exposure to asbestos is greatest. Within this wide category, industries involving the manufacture of ships, railroad cars, paper, pulp, and sugar and occupa tions involving plumbing, metal, machine and electrical, work, and painting showed the largest elevations in the SIR. The four industries account for 20% of the pleural mesotheliomas but only 4% of the work force.
The threefold excess of mesothelioma among shipyard workers adds Sweden to the long list of countries in Europe and North America where this association has been seen (H, 15). Of all pleural mesotheliomas among
JNCI, VOL 74. NO. I, JANUARY 1985
64 Malker, McLaughlin, Malker, et al.
persons employed in 1960, 8% occurred in the ship-. . building industry, which accounts for about 1% of the
total work force. The almost sevenfold excess among railroad car con
struction workers confirms an excess recently reported in the United States and other countries (16) and seems due to asbestos exposure in the fitting and repair of car engines. Similarly, the association with plumbing and pipe fitting is consistent with previous reports (17,18) of mesothelioma following asbestos exposure in these occu pations.
The findings for the paper and pulp industry are new, and the number of tumors found among the workers in this industry was surprisingly high. Mesotheliomas have
not been reported among pulp workers in the United States, where the industry is a major one; nor have lung cancer risks been found to be elevated (19). The excess in Sweden seems related to differences in the mechanical and chemical processes for converting wood to pulp and the consequent heavier use of asbestos as an insulation material in the machines employed in Sweden. Although more pronounced among workers in the cellulose wood and pulp industry, the increased risk also extends to paper production, where chemical and dust exposure to wood products is considered to be lower but where asbestos has been used in processing equipment. The association with the sugar refinery workers appears most likely to be due to asbestos exposure that occurred during
Table 3.--SIR for pleural mesothelioma by general (2-digit) and specific (S-digit) craftsman-tradesman occupation among males
Code 70 71 72 73 74 75
76 77
78 79
80 81 82 83 84 85
86 87 88
General occupation
Spinners, weavers, knitters.
and related jobs
Tailors, cutters, furriers, and
related jobs
Shoe and leather workers
Metal making and treating
workers
Precision instrument makers
Toolmakers, machinists.
plumbers, welders, and
related jobs
Cases 2
1
0 7
1 59
Electricians and electronic workers
Woodworkers
Painters and paperhangers Bricklayers and construction
workers (NOC)
Graphical workers Potters, kilnmen, and glass
workers Food industry workers Chemical and cellulose
workers Tobacco workers Craftsmen and production-
process workers
Laborer (NOC) Stationary engine and
equipment operators Packers, handlers, and long-
shoremen
12 25
12 19
1 1 1 8 0 7
9 9 12
SIR" 0.7 0.4
--
1.3 0.7 2.0*
1.8 1.4
2.0f 1.4
0.3 0.6 0.2 1.6
--
1.8
0.9 1.4 1.0
Code
Specific occupation
735 Blacksmiths
750 Toolmakers and machinists
751 Assemblers and machine erectors 752 Mechanics and repairmen 753 Sheetmetal workers 754 Plumbers and pipe fitters 755 Welders and flame cutters 756 Structural metal workers 758 Other mechanical and metal
workers 761 Electricians and electrical
repairmen 771 Carpenters and joiners 772 Cabinet workers 779 Woodworkers (NOC) 781 Painters and paperhangers 791 Bricklayers, plasterers, and
cement finishers 793 Construction workers (NOC) 794 Insulators
834 Cellulose and pulp workers
851 Tire workers and vulcanizers
858 Craftsmen and production workers (NOC)
871 Operators of stationary engines and related equipment
882 Longshoremen and freight handlers
883 Stockroom workers
Cases
5
11
3 16 4 13 4 4 4 10 12 8 3 12 6 10 1
5
4 3
7 3 9
SIR"
3.2
1.4
1.5 2.4* 2.0 4.8* 1.6 1.8 1.4 2.3c 1.4 1.4 2.5 2.3f 2.1 1.1 4.3
4.0f
4.4C 2.5
3.9* 1.3 1.0
"Adjusted for age and region. *P<01. fP<05.
JNCI, VOL. 74, NO. I. JANUARY 1985
Occupational Risks for Pleural Mesothelioma 65
the annual dismantling of the machinery used in sugar the registration of cancer is thought to be essentially
production (20, 21).
' . complete and since microscopic verification was obtained
We found a small elevation in risk for males in the for all cancers in the study. It cannot be denied, however,
textile industry, consistent with reports of mesothelioma that diagnostic criteria may vary among Swedish pathol
among asbestos textile makers (22), but the excess was ogists. In addition, some diagnoses may have been
limited to several high-risk occupations such as mechan influenced by a knowledge of exposure to asbestos, a
ics and repairmen and operators of stationary equipment, recently observed phenomenon that could result in
and it was not found among the occupation "textile differential reporting (28).
workers."
Finally, the statistical techniques used may have
Other findings that can be considered as new leads for influenced the differential risks by industry and occu
occupationally induced pleural mesothelioma include pation. Because of lack of information on loss to follow
elevated SIR among rubber workers, machinists, metal up, either from departure from Sweden or from death, the
workers, electricians, and painters, although elevated expected values for the SIR calculations were not based
relative risks for mesotheliomas have been reported for on person-years, but rather they were based on the
the rubber products industry, electricians, and painters in assumption that the proportions of individuals within
a recent case-control study in which data from the each sex-region-birth cohort subgroup for each industry
Connecticut Tumor Registry were used (17). In the and occupation remained constant over the 19-year
rubber industry in Sweden large amounts of talc, which follow-up. Thus, if total mortality was elevated (or
may have contained asbestos (23, 24), have been used.
depressed) for a particular industry or occupation, the
The results of this analysis linking census and cancer expected number of mesotheliomas, which does not take
incidence data have served to quantify risks of mesothe into account loss due to mortality, would be too high (or
lioma and identify specific industries and occupations in low) and the corresponding SIR would be too low (or
Sweden where further study may be warranted. The high). Such variations, however, will in most instances
identification of specific industries and occupations for affect the SIR by less than a small percent and thus will
further study was the main rationale for the study, since not alter the interpretation of the data presented (29).
the CER seems most useful as a tool for generating
hypotheses about the occupational causes of cancer.
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