Document oe0NO5mJmrrM8MYdKrGzqd37
:V'rti,2933,p. l,hz, 17-1301
i*a GttW^Zc'
AUTHOR'S PROOF
$ofj l cl' CWiCV.
' AO 1922
Mesthetioma in Connecticut 1955-1977
Occupational and Geographic Associations
Mary Jane Teta, M.P.H.; Hilton C. Lewinsohn, M.B. B.Ch.; J. Wister Meigs, M.D.; Romeo A. Vidone, M.D.; Linda Z. Mowad, R.N.; and John T. Flannery, B.A.
AH cases of malignant mesothelioma (201) and other primary malignant pleural tumors (19) reported to the Connecticut Tumor Registry from 1955 through 1977 were studied in on attempt to identify high-risk jobs, industries and geographic locations and to estimate the risk attributa ble to asbestos exposure in the workplace. Data were ob tained from hospital records, death certificates and city directories for cases, case spouses and a random sample (604) of Connecticut decedents (1955-1975). Three cases involved histories of work in asbestos products manufac ture, but there was no evidence of residential risk in that geographic area. Relative risk (RR) for Carpenters and - cabinetmakers was 2.25 (p < .05); for plumbers and pipe fitters, 3.87 (p < .05); and for persons "ever employed" in the rubber industry, 5.08 (p < .01). Occupational exposure was indicated in 85% of the cases; attributable risk (A R) was 36%. Risk increased with greater exposure and aider age. AR was 81% in men aged 70 to 89 years at diagnosis. Reduction of unnecessary occupational asbestos exposure remains the highest public health priority.
In 1980, Lewinsohn et al1 described mesothelioma in
Connecticut from 1935 through 1977. Problems of diagno sis and ascertainment made results for the years prior to
7 ^ From the Yale School of Epidemiology and Public Health, New * Haven, Conn. (Ms. Teta, Associate in Research, Connecticut Cancer Epidemiology Unit, Or. Meigs, Clinical Professor of Epidemiology and Public Health and Ms. Mowad, Associate in Research); the Union Carbide Corporation, Danbury, Conn. (Dr. Lewinsohn, Assistant Corporate Medical Director); the Yale University School of Medicine (Dr. Vidone, Associate Clinical Professor of Pathology); and the Connecticut Tumor Registry, Connecticut State Depart ment of Health Services, Hartford (Mr. Flannery, Director). . Address correspondence to Connecticut Cancer Epidemiology
' ^ Unit, Yale School of Epidemiology and Public Health, 60 College St., New Haven, CT 06510 (Ms. Teta). This investigation was supported by grants NOl-CP-33235 and N01-CP-61002 awarded by the National Cancer Institute, US Department of Health and Human Services, and by the Institute of Occupational Medicine and Hygiene, Yale University School of Medicine.
1955 of uncertain value. From 1955 through 1977 the age-adjusted rates among males rose from about 0.19 to 0.60/100,000 and among females from 0.13 to 0.19/ 100,000.
Bruckman et al2 claimed in 1977 that increases in the . disease are due to the increase in the "cumulative asbestos consumption" and that emissions into the environment (e.g., building construction, demolition, automobile brake linings) are somehow involved as causative factors. The substantial rise, however, in the male-female ratio is more consistent with occupational exposures of men at work. Bruckman et al were unable to provide complete occupa- ' tional histories for the 133 diagnosed cases of mesotheli oma (1935-1972) drawn from the Connecticut Tumor Registry (CTR) on which their report was based. Despite this limitation, the Air Compliance Unit of the Connecticut Department of Environmental Protection has proposed an ambient air standard of 30 ng/m3, measured over a 30-day interval.3 This proposal was based on estimated asbestos concentrations at several selected sites in Connecticut.
Mesothelioma is a rare disease with approximately 2.2 cases per million population expected annually.4 The proportion of cases not associated with some form of asbestos exposure has been reported to be near 15%.s'7 This disease may serve as a marker for unsuspected past asbestos exposure. The present study was designed pri marily to examine the job categories and industry titles of identified cases of malignant mesothelioma recorded in the CTR in an attempt to (1) identify job categories, in dustries, specific employers,, and Connecticut geographic "* locations that are associated with an excess risk for meso thelioma and that may also be associated with asbestos usage; and (2) determine the proportion of cases involving possible exposure to asbestos in the workplace.
The health implications of the proposed ambient air standard make it desirable to estimate the kinds and num bers of cases that may be due to occupational asbestos exposure, other as yet undetermined risk factors, or possi ble asbestos exposure from the general environment.
There remain numerous unanswered questions concern ing the existence of a threshold and the nature of the as-
UCC 011184
. JOM, 2933, p. 2, hz, 17-130*
AO 1923
bestos-mesothelioma dose-response relationship.8'9 The data available allowed us to approach these problems indirectly. In lieu of dust measurements, job and industry titles, ascertained for study subjects for periods up to 50 years, were used as indicators of exposure.
Methodology
Since mesothelioma has often been confused with other malignant tumors, an anatomic pathology review of all cases reported to the CTR between 1955 and 1977 was undertaken. Histologic material, along with gross autopsy and clinical reports, was submitted to one of us (R.A.V.) for review. No personal identifiers or occupational data were included. Although the final results of this review will be published separately, specific findings will be discussed in the context of the present report.
The CTR registered 196 cases of primary malignant mesothelioma during the years 1955 to 1977 inclusive. With the exception of the Veterans Administration (VA) Hospitals in Connecticut, it is mandatory for hospitals to report diagnosed malignant neoplasms to the central registry. A review of all autopsy records from the larger of the two VA hospitals in the state from 1955 through 1977 yielded five additional cases of mesothelioma, bringing the total number to 201. This included 137 cases with site pleura, 29 with site peritoneum, and 35 of other or un known sites. Concerns about diagnostic sensitivity prompt ed the inclusion of 19 cases reported as pleural tumors other than mesothelioma during the same 23-year period. These concerns were justified by the slide review that identified several cases of mesothelioma in this group. The total case study population size was 220 (Table 1).
Medical, demographic, and occupational data have been collected for these 220 cases. Similar information was gathered by Roush et al10 for a computer-generated ran dom sample of 604 decedents (1955-1975) aged 20 to 98
Tible 1 - Sex, Age and Diagnostic Classification of 201 Cases of Malignant Mesothelioma and 19 Other Pleural Tumors Diagnosed
in Connecticut, 1955-1977
Diagnosis*
Males Females Total Mean Age*
Pleural mesothelioma
Pleural tumor (other than mesothelioma)
Peritoneal mesothelioma
Mesothelioma at other sites and at unknown sites
100 11
IB 21
37 137 8 19
11 29 14 35
63 63
59 54
Tote!
150 70 220
61
* World Health Organization (1976), as originally recorded by CTR
* At diagnosis
years who provided a control group. These controls were drawn without stratification of any kind from the death certificate files of the Division of Health Statistics of the Connecticut State Department of Health Services (CSDHS). Death certificates (DCs) provided demographic data and usual occupation for study subjects at time of death. City directories (CDs) were searched for residential and employ ment histories 1,10, 20, 25, 30, 40, and 50 years prior to date of diagnosis or death, provided that the subject was at least 20 years old at the time.11 The Price and Lee City Directories, which are available for about two thirds of Connecticut towns from 1890 to 1980, have a target population of 92% of the adult males in the state. A similar occupational history and cancer search was conducted for all spouses (n = 193) of the 220 cases to explore the possi bilities for domestic exposure that may have originated in the workplace.
The three-digit 1970 U.S. Census industrial and occupa tional codes12 were assigned to the employment informa tion ascertained. Industrial coding was determined on the basis of product descriptions for each employer which were found in the manufacturing directories of Connecticut published by the State Department of Labor and in the Price and Lee directories for nonmanufacturing industries.13
The study population for occupational analysis was re stricted to males over 30 years of age at death or diagnosis. A large proportion of females (46% cases, 31% controls) had no known work history. Although nonoccupational etiologies may be a possibility, the absence of reliable occupational data for females prevented a formal analysis of their occupational asbestos exposure. Since all cases were born after 1874, controls born prior to 1875 were ex cluded. There remained 611 male subjects for the occupa tional analysis: 136 mesothelioma cases; 11 cases of pleural tumors, other than mesothelioma; and 464 controls. The case-control ratio was approximately 1:3. Seven cases included in the analysis were those of individuals who were alive at the time of the data collection period (1978).
Study subjects were first compared on the basis of whether they had "ever worked" in selected jobs or indus tries with known potential for occupational asbestos ex posure or for which there were sufficient numbers to be informative. Formal statistical comparisons were made for seven job categories (engineers; brickmasons and stone masons; cabinetmakers and carpenters; electricians; fore men; painters, construction and maintenance workers; and plumbers and pipefitters) and for eight industry cate gories (construction; miscellaneous nonmetallic mineral and stone products; electrical machinery equipment and supplies; aircraft and parts; ship and boat building; yarn, thread and fabric mills; rubber product; and automobile repair and related service). The Mantel-Haenszel odds ratio was used to estimate relative risk (RR).14
To increase statistical power and provide a more direct measure of causation, efforts were made to classify study stubjects in terms of the probability of occupational asbes tos exposure. A subset of jobs and another subset of in dustries were selected for which exposure to asbestos was considered either "possible" or "likely" (Tables 2 and 3). These subsets were developed by one of us (H.C.L.) with out reference to information about disease status. Compari sons of case-control proportions with occupational asbestos
UCC 011185
)0.M, 2933, p. 3, hz, 17-1301
/
Table 2 - Estimates a* the Probability it Atbtitoi ERp4tur i* Tw* Clttitrin by U-S. Cnui Code ni Job Tide
Ui Ceesus Cade
_________________Cwjjry___________
likely
FoeMbit
MTMt
US. Cum
Cbde
Job Title
HU
Oil OU 404 406 *522 *534 *525 *601
015
022
*251
Electrical end electronic engineer
Industrial engineer Mechanical engineer Boilermaker Railroad and car tfiop Plumbers and pipefitters
Roofers end slim Power station operator Asbestos end insulation workers Ory wall installers end lathers furnacemen. smeltermen, end pouran Construction laborers. etc. carpenters' helpers
006 011 022 023 056 140 142 *151 152 173 190 216 221 326 403 410 413 415 424 t43Q *433 436
441 442 446 454 *455 461 471 *473 481 482
483 492 495 SQ2 503 510 514 533 535 545 550 552 561
810
611 621 *623 641 650 651 661 662 *670 *672 *673 *674 *680 *681 690 *694 695 710 753 *760 44
Aeronautical and amoaautical engineer
Chril engineer
Sales engineer .
Engineer, n.e.c. Personnel end labor relation! workers
Teachers, college and university
Elementary school teachers
Chemical technicians
Draftsmen
Technicians, rvt.t.
Painters end sculptors
Manager* end tuperintandents, building
Officers, pilots, end pursers; ship
Ivunmct adjusters, exam iners and investigators
Blacksmiths
Brickmasons and stonemsoru
Cabinetmakers
Carpenters
Cranemen, derrickmen, hoistmen
Electricians
Electric power linemen and cablemen
Excavating, grading, and road machine operators.
xc. bulldoieT
Foramen, n.t.c.
Forgeman and hammermen
Heat traaters, annealers, and tarnparan
Job and dia wtiars. metal
Locomotive engineer
Machinists Mechanics and repairman; aircraft
Automobile mechanics
Heavy equipment mechanics; including diesel
Household appliance and accessory installers
and mechanics
loom fixers
Miscellaneous mechanics and mpornnan
Mot specified mechanics and repairman
Millwrights
Molders, metal
Painters, construction and maintenance
Pattern and model makers, exc. paper
Pollers and finishers, metal
Shectmetal workers and tinsmiths
Stationary engineers
Structural metal craftsmen
Telephone installers and repairmen
Tool and die makers
Checkers, axominen. end inspectors;
manufacturing
Clothing tronors end praam
Fieri, polishers, senders, buffers
Garage workers and gas station attendants
Mixing operatives
Drill press operatives
Grinding mechine 0pentnrvs
Sailors and deckhands
,
Sawyers
Carding, lapping and combing operatives
Spinners, twisters and winders
Weavers
Textile operatives, rue.c.
Welders end flame-cutlers ~ >.
Windmg operatives, n.e.c.
Machine operatives, mMethaneous ^ccHied
Miscellaneous operatives
Not specified operatives
Motormen; mine, factory, logging camp, etc.
Freight and material handlers
longshoremen and iteuedores
Hardressars and cosmetologists
* An occupation identified in reference sources at having potential lor asbestos exposure or ctuaffy described in conjunction with a case in the literature
* Occupations in textile factories that need further investigation to datarmina whether asbestos
textiles umra involved as distinct from cotton, wool or manmade fibers
exposure {possible and likely) were analyzed separately for each of three sources of information -- job title, industry title, and job title and industry title. For each of these comparisons, adjustment was made (nonsimultaneously) for age (30 to 49 years, 50 to 69 years, 70 to 89 years), year of
Table 3 - Estimete ef the Probebility el Asbestos E xposures in Two Categories by II.S. Census Cede and Industry Title
US. Census Cade
likely U.S.
Industry Title
VS. Census Cede
Possible Industry Title
057 Nonmetahit mining and quarrying
127 Cement, concrete, gypsum, and plotter
except fuel 067 General building contractors
products 128 Structural day products
068 General contractors, except building
158 Fabricated structural metal product
069 Special vide contractors
189 Btveraga industries
lit Miscellaneous nonmetali* mineral end stone products
318 Miscellaneous textile mill products 328 Pulp, paper, and paperboard mills
139 Blast fumtncn. steel works, rolling
337 Paperboard containers and boxes
and finoning mills
34B Plastics, synthetics and mins, tic.
147 Other primary iron and steel
fibers
industr.es 148 Primary aluminum industries
379 Rubber products 407 Railroads and railway express service
149 Other primary nonferrous industries 168 Miscellaneous fabricated metal
products
417 T rocking service 419 Water transportation 427 Au transportation
177 Engines end turbines
567 Alcoholic beverages - wholesale
199 Household appliances
207 Radio, TV. and communication equipment
609 Department and mail order establish menu
627 Miscellaneous general merchandise
208 Electrical machinery, equipment
Stores
end susmb, n..c.
648 Gasoline service stations
209 Mot specified electrical machinery.
649 Miscellaneous vehicle dealers
equipment end supplies 227 Aircraft eng pern
758 Electrical repair shops 759 Miscellaneous repair services
229 Shipbuilding and boat building and
867 Elementary end secondary schools
rapain-;
858 Colleges end universities
229 Railroad locomotive* and equipment
867 Educational services, n.e.c. 886 Engineering end architectural
239 Scientific fc-d controlling
services
matron arm
258 Ordnance
467 Electric li;-t and power
477 Water sue: ,
529 Eleetriul goods - wholtalt
539 Machinery equipment end uppliis -
wholes i
558 Petroleum products - wholesale
568 Paper end re products - wholesale
569 lumber and construction materials whole*
607 Lumber end building materia!
retail'-:
639 Motor vtFcii dealers
647 Tire, battt-. end eccmtory dealers
668 Household appliances, TV and radio
stem
757 Automob e repair and related wrvicex
779 Leunderm; cleaning, end othei
garment services
917 Federal public admmwtration
927 State pub -c administration
837 Local pub : adminartvation
birth (1870-1889, 1890-1909,1910-1929,1930-1949), and geographic location. The 1966 labor market area (LMA) divisions of Connecticut were utilized for the geographic risk analysis.15 Particular attention was given to the LMAs surrounding Connecticut's five largest urban areas and two rapidly expanding, previously rural regions.
A scoring procedure was developed to provide an indica tor of the duration and severity of occupational asbestos exposure for both cases and controls. For each job title in the "likely" category that could be documented from DCs, CDs or both for an individual, a score of 2 was as signed. A job title from the "possible" group was given a score of 1 and from the "unlikely" subset, a score of 0. These values were summed across all available time periods for which employment information was available. Indi viduals lacking any employment history', which included those never employed and those for whom data were mis sing, were excluded. Each of the remaining study subjects was assigned a final single job index of exposure. This
UCC 011186
JCM, 2933, p. 4, hz, 17-1301
AG 192b
crude measure provided an ordered exposure variable, which was categorized into five levels. Level 0 included a job index of 0, level 1 included a job index of 1, level 2, a job index of 2; level 3, job indexes of 3 and 4; and level 4, job indexes greater than 4. Each study subject with a job index of exposure was assigned to one of the five groups. (Although the medical records of some cases noted past occupational asbestos exposure, this information could not be incorporated into the analysis since such data is lacking for controls and has not been systematically collected for cases over time.)
Mantel-Haenszel standardized odds ratios were com puted, comparing cases and controls across each of the four levels of "exposure" to "no exposure." Finally, the Cochran-Mantel-Haenszel Test of Partial Association16 was applied to test the disease-exposure relationship for trend while controlling for the potential confounding of age, which was stratified into 20-year intervals: 30 to 49 years; 50 to 69 years; 70 to 89 years. The 90+ stratum with too few numbers to be informative (two cases, seven controls) was excluded from the dose-response analysis. These results are reported for an estimated exposure index based on job only. The coding of industries into the broad categories of the U.S. Census does not discriminate satisfactorily among jobs with different exposures.
Controls tended to be older at death with a mean age of 68 years as opposed to 64 for cases (Table 4). They pre dominated in the earlier birth cohorts with 81% bom prior to 1910. Since age and year of birth are likely to be related to occupational asbestos exposure, as well as to disease status, they were considered potential confounders and controlled for in the analysis whenever sample size per mitted. The confounding effect of these variables, however, - was not substantial. The standardized odds ratios differed minimally from the crude, and simultaneous adjustment was not deemed necessary.
The proportions of individuals with at least one job title from DCs, CDs or both were comparable for cases and con trols and virtually complete using all sources -- 98% for cases, 99% for controls (Table 5). The percentages with 1-4 and 5-8 job titles were nearly identical. CDs provided fewer job and industry titles than DCs but more names of specific employers. One year prior to death or diagnosis less in formation was obtained for controls from CDs, most likely
Table 4 - Demographic Characteristics ol Cases and Controls*
Cises
Controls
Mean year of death or diagnosis Mean age at death or diagnosis Birth Cohort Distribution, %
1870-1889 1890-1909 1910-1929 1930-1949
1969 64
8 56 33
3
ISO
1969 68
32 49 18
1
100
* Males older than 30 years at death or diagnosis, bom after 1874
attributable to the larger proportion of retirees in the latter group. For all other time periods the percentages of cases and controls with a job or industry title were similar. Using both CDs and DCs, at least one industry title was available for 89% of cases and 90% of controls.
Results
We have described secular and time trends for mesothel ioma in Connecticut from 1935 through 1977 in an earlier report.1 In the present case-control occupational risk analy sis for the years 1955 through 1977, based on job title alone, the more than twofold risk for cabinetmakers and carpenters and the nearly fourfold risk for plumbers and pipefitters were significant (p < .05) (Table 6). Excess risk was observed for engineers, masons, electricians, foremen, and painters, but in none of these categories did it reach statistical significance at the .05 level. It should be noted that for the job- and industry-specific analyses the study provided adequate power to detect only large associations for the less common categories of employment. Fourteen of the 15 cases among the carpenters were diagnosed as pleural mesothelioma and the single case of periotoneal mesothelioma occurred in the only individual who had worked in a boat yard. All seven plumbers and pipefitters were registered at the CTR with pleural mesothelioma, and all death certificates reported them to be in this job category. Although CD data were available for only four of these cases, it was in perfect agreement with DC data and revealed first employment in this category to be at least 30 years before diagnosis for each.
A parallel comparison of cases and controls using indus try title alone revealed a significant association with the rubber industry (relative risk (RR) = 5.08;p < .01) (Table 7), which was particularly striking when limited to subjects 70 to 89 years of age at death or diagnosis (RR = 16.97; p < .005). Three different employers were represented among the five individuals with pleural and one with peri toneal mesothelioma who had worked at one time in the rubber industry.
The proportion of cases with ` possible" or "likely ex posure" to asbestos on the basis of job title was 67% for the entire state, yielding an LMA-adjusted RR of 1.63 (p < .01). The attributable risk (AR) in the exposed group was 39%. There was little variation in risk across these geo graphic regions. The study provided more than 90% power to detect relative risks of 2 or more at the .05 level for this comparison.
On the basis of industry title, the overall proportion considered to have been exposed was 66% with an RR of 1.36 (p < .10) and an AR of 26%. Power calculations for this portion of the analysis yielded results similar to those described above. Substantial interregional variation was observed in the percent "exposed" and in the risk for disease. One large industrialized region (LMA1) exhibited nearly a four fold risk (p = .02). One employer in LMA1 accounted for three times as many cases (six) as controls (two) with an unadjusted RR of 9.83. All the cases from LMA5 (with the exception of one with "industry un known") had worked at one time in an industry judged to be associated with "probable" or "possible exposure." Histologic review of all male cases from LMA1 (an area in which an asbestos plant is located) and LMA5 (an area in
UCC 011187
_ JOM, 2S33,p. 5, hz, 17-1301
AO I 923
Tables- Completeness of Occupational Data for Cases and Controls From Death Certificates and City Directories
Source
% with Job Title*
Cases
Controls
% With Industry Title
Cases
Controls
DC CD 1 yr prior to Dx 10 yr prior to Dxf 20 yr prior to Dx* 25 yr prior to Dx* 30 yr prior to Dx* 40 yr prior to Ox* 50 yr prior to Dxl DC and CD 1-4 job titles11 5-8 job titles11
92*
76 46 53 46 41 30 26 10 98 71 27
96 73* 69 69 26 45 42 43 45 39 39 36 35 30 24 19 18 8 99 89 72
27 ...
85 67 23 40 45
39 36 23 14 94
... ...
* Uninformative titles such as retired, student excluded * When seven cases in living persons excluded from the denominator, percentages become 96,76, 62
j * Cases less than 20 years of age at search year excluded from denominator
NA indicates not available \
:
-
11 Total number of jobs for cases = 475 (3.23/case); for controls = 1,412 (3.04/control)
%With Employer Name
Cases
Controls
59* 71 47 45 40 34 31 19
3 NA?
...
41 53 17 28 29 27 25 15
8, NA
...
which shipyards are located) resulted in reclassification of two (8%) and one (17%), respectively, as "not mesothelio ma'' or "probably not mesothelioma." There was no ob servable indication of diagnostic bias (false-positives) in these regions where knowledge of an exposure hazard was available in the medical community.
Using "exposure" either through job or industry as a criterion, the statewide proportion of cases with an indica tor of occupational exposure was 85%, yielding an ageadjusted RR of 1.57 (p < .05) and an AR of 36%.
In an examination of a birth cohort effect, all indi viduals, except those bom between 1930 and 1949, were more likely than controls to have been exposed to asbestos
on the basis of their job title. The differences were statis tically significant (RR = 2.16, p < .02) for the 1910-1929 cohort only. The overall cohort-adjusted (1870-1889; 1890 1909; 1910-1929; 1930-1949) RR was 1.69 (p < .01)
Utilizing the job "exposure" score as previously defined, a monotonic increase in risk associated with higher levels of estimated asbestos exposure was suggested, particularly for the oldest age group (Table 8). There was a slight increase
Table 7 - RR of Mesothelioma Associated With Selected Industry Categories
Table fi - RR of Mesothelioma Associated With Selected Job Categories
Job Tide
95%
Confidence
RR
Interval
N*
Engineers Brickmasons and stonemasons Cabinetmakers and carpenters Electricians Foremen Painters, construction, and
maintenance Plumbers and pipefitters
2.72 2.15 2.25* 1.29 1.57 1.39
'3.87*
(.85, 8.68) (.37,12.50) (1.13, 4.48) (.39, 4.24) (.84, 2.94) (.52, 3.71)
(1.38,10.82)
11 5 35 14 50 20
13
* N indicates the number of male cases and controls older than 30 years at death or diagnosis, born after 1874, who "ever worked" in the category; total N for each independently calculated RR was 611 (147 cases, 464 controls)
* p < .05
Industry Title
95%
Confidence
RR
Interval
N*
Construction Miscellaneous nonmetallic
mineral and stone products Electrical machinery equipment, and supplies Aircraft and parts Shipbuilding and boat building Yarn, thread and fabric mills Rubber product Automobile repair and related service
1.21 (.60, 2.45) 45
1.64 (.15,18.06) 3
2.79 (.86, 6.67) 20 1.03 (.43, 2.49) 25
1.09 .57 5.08*
(.35, 3.42) (.17, 1.92) (1.60,16.11)
16 20 10
.65
(.08, 5.53)
6
* N indicates number of male cases and controls older than 30 years at death or diagnosis, born after 1874, who "ever worked" in the category; total N for each independently calculated RR was 611 (147 cases, 464 controls)
* p < .01
UCC 011188
% JOM, 2933, p. 6, hz, 17-1301
Table 8 - RR of Mesothelioma Associated With Level of Occupational Asbestos Exposure by Age
Age Group
Level of Occupational Asbestos Exposure
0 \ 2 3*
x2 for N Trend
30-49 50-69 70-99 All ages11
1.00 .39 .47 1.17 ...* 66 NS
1.0D 1.11 1.59 1.60 1.67 257 NS 1.00 2.19 1.78 4.59 5.35 S 272 .0001 1.00 1.19 1.34 2.20* 2.73 611 .0005
* Level 3 is exposure scores 3 or 4 * Level 4 is exposure scores 5 to 18
$ RR could not be calculated due to 0 denominator; one case, 0 controls with "exposure"
pc.001 II Age-adjusted relative risks I p c .005
v for the 30 to 49-year-old- group, but numbers were small and the variances of the RR estimates were large. There was a sizeable number of cases (80) and controls (177) in the
J 50- to 69-year-old group, and a fairly constant risk asso ciated with increasing estimated exposure was indicated. Those males 70 years or older (n = 272) with job exposure scores in levels 3 and 4 exhibited highly significant relative risks for this disease. The ARs for those exposed in these two levels were 78% and 81%, respectively. The test for trend that compared the relative proportions of cases and controls across increasing levels of estimated asbestos exposure, while controlling for age, was highly significant
` overall (p < .0005) and for the 70 to 89-year-o)d age group (p< .0001).
Discussion
The major difficulties encountered in a noninterview retrospective study of an asbestos-mesothelioma association relate to the inadequacy of occupational histories, the potential for misclassification of exposure status, and errors in diagnosis. Although partial employment data were ob tained for nearly all study subjects, complete work histories were available for very few and information regarding part time work or hobbies was completely absent. The level of completeness varied geographically, with the less mobile industrialized regions having more complete CD coverage than the more rural less populated areas. Completeness by geographic region did not differ, however, between cases y and controls. For the seven cases in living persons, occupa tional information could be obtained from CDs only. When the analyses were repeated excluding these individuals, however, the findings were unchanged. These occupational history limitations were balanced in part by the advantage that respondent memory bias and faulty interviewing tech niques, associated with widely publicized carcinogenic hazards such as asbestos, were avoided in this noninterview approach.
Although the inability to reconstruct dust measurements prevented direct examination of a dose-response relation ship, the job "exposure" index, a correlate of asbestos exposure, demonstrated increasing disease risk with higher
A01927
scores, particularly for the 70 to 89-year-old age group. An attempt was made to tegt the possibility of a systematic inflation of case scores apt to more complete occupational information for the diseased population. Job title availa bility for the maximum of eight time periods searched was comparable for both groups (Table 5j with 71% of cases
and 72% of controls having 1-4 job titles and 27% of each having 5-8 job titles. In addition the age-stratified relative risk calculations made adjustment for the large proportion of retirees in the control group with fewer job titles one year prior to death. The elevated risks associated with the older age group and with the 1910-1929 birth cohort are consistent with the poor dust control measures in most workplaces prevalent in earlier years.
Peto et al17 in their review of a number of studies showed a wide variation in the pleural-peritoneal ratio among asbestos-exposed persons. We have determined this ratio in our cases and attempted to relate it to some param eters that seem to influence its distribution. An analysis of proportions of cases of mesothelioma by site within each of three age groups, 30 to 49 years, 50 to 69 years, and 70 to 89 years, for each sex separately, showed that among men the proportions of pleural disease increased as age in creased, while the proportions of peritoneal disease decreased. Pleural mesothelioma accounted for 79% of cases aged 50 to 69 years and 93% of cases aged 70 to 89 years at diagnosis. Job ARj?in the exposed were about 80% for these older men. Results (Table 6) for carpenters and cabinetmakers (I^Lof 15 pleural) and plumbers and pipe fitters (2eo of seven pleural) are consistent with the above
proportions and with Table 8 in suggesting that pleural mesothelioma, in men over 50 in Connecticut, is highly likely to have been associated with and probably caused by exposure to asbestos at work. These data also indicate that occupational exposure to asbestos probably explains most of the disease in these older men and that it began in the 1930s.
Peto et al17 showed that mesothelioma death rates were independent of age at first exposure, and it may therefore be assumed that age in itself has no direct influence. These authors did show a strong correlation between disease and length of time since first exposure. The fact that the inci dence of mesothelioma of the pleura increases sharply in the males in the older age groups with the higher "ex posure" scores in our cases, is consistent with the long latency known to be associated with this disease. This is also in conformity with Peto et al's findings.
The potential for random misclassification of exposure status, based on subjective, "blind" review of limited work histories restricts our ability to draw firm conclusions, be cause such errors produce attenuation toward art RR of 1. This is particularly relevant with regard to the "true" proportion occupationally exposed and the "true" magni tude of the RR, which is likely to be higher than our find ings indicate. "Blind" subjective review has also been used by other investigators in estimating exposure, but most often in conjunction with interview data.18-19
It is widely held that relatively low exposure levels 20 to 50 years prior to diagnosis may lead to the development of mesothelioma. The cases described with no known ex posure may fall into this category, may have been exposed from the general environment, or may be related to some
UCC 011189
)OM,2933,p.7,tiz, 17-1303
AO 1928
other unknown etiologic factor. Careful examination of the occupational data for these cases and the controls with no known exposure did not reveal any unusual differences. There were no geographical associations of peritoneal mesothelioma with asbestos cement pipe used in Connecti cut in a search made by one of us (J.W.M.) in a report to the Environmental Protection Agency.
The possibility of misdiagnosis is important. Dr. Ray mond Yesner, chairman of the World Health Organization Committee on Nomenclature of Lung Cancer, and one of us (J.W.M.) recently reviewed 964 randomly sampled autopsy cases reported to the CtR as primary lung cancer during the 45 years from 1935 through 1979. One of these was diagnosed as a mesothelioma. The five cases of meso thelioma in the present study identified from VA hospital autopsies included two pre-1963 cases in which the initial diagnosis had been lung cancer. This suggests that in the past, as many as one or two per thousand cases dianosed as lung cancers may have been mesotheliomas, but the propor tion is probably smaller at present because of increased awareness by clinicians and pathologists.
The association with the rubber industry requires addi tional exploration because of the lack of specific informa tion regarding the many aspects of manufacturing processes lumped into this broad category and the potential for chance association due to the examination of multiple comparisons. McDonald19 reported three cases and one control who were employed by a factory making rubber products in her North American survey of mesothelioma. These were selected from all male cases (150) and their matched controls who did not work in occupations asso ciated with likely asbestos exposure. Exposure to rubber among all 344 case-control matched pairs in her survey did not reveal an elevated RR. The association was in fact in the opposite direction (RR = 0.6).
The manufacture of asbestos-containing friction materi als was associated with job histories in only three cases in the present study. First hire was in the 1920s and 1930s with time intervals of about 30 years before mesothelioma was diagnosed. Slide review confirmed a diagnosis of peri toneal mesothelioma in a female clerical worker (case 1) with approximately 30 years' employment. In this indi vidual asbestosis was also considered to be present Similar ly, in a male employee (case 2) with the same surname, a diagnosis of ``possibly pleural mesothelioma" was made. These two individuals were discovered to be brother*and sister-in-law. Their common relative (the husband of case 1 and brother of case 2) was employed by the same asbestos company for a period of at least 30 years and died at age 56 years of an acute coronary thrombosis. He resided consecu tively with his brother for at least 17 years and with his wife for over 15 years prior to his death. The third case from the same plant, that of a female clerical worker who hap been employed there less than five years, was classified as "probably pleural mesothelioma." In a search of city directories by single years, no other employment was found for this woman.
Two of the three cases in employees at the asbestos plant were K?erftmciJ by McDonald and Fry20 in their
recently reported cohort study, which was based on death certificate information and employee records. The diagnosis of mesothelioma, however, was not ascertained since no
mention of this disease was made on either death certifi cate. The third person, a male who was employed during the period 1921 to 1932, was not included in McDonald and Fry's cohort which was defined as persons employed in the period 1937 to 1959 only. These three cases repre sented only small proportions (one of 30 males, two of 12 females) with mesothelioma in the LMA that included the plant making asbestos products. Most of the remaining male cases had occupational history indicators of asbestos expo sure at work.
There was no support for the hypothesis of a significant residential risk to persons living in the vicinity of this plant. The original case-control proportions among those residing in LMA1 at time of death or diagnosis were 20% and 12% for males and 17% and 18% for females, respec tively. After excluding all males with "possible" or "likely" occupational asbestos "exposure," based on job title or industry title or both, there remained 9.5% of all male cases and 9.2% of all male controls in that LMA. No real residential difference was observed for either males or fe males. This result may be related to the asbestos fiber type used at the plant, which McDonald and Fry reported to have been the less hazardous chrysotile and would, there fore, not foe extrapolated to all asbestos products manu facturers.
One of the female cases, an employee who worked at the asbestos friction materials plant, may have had domestic exposure from her husband who also worked there for many years. We explored this general issue by reviewing cancer incidence among 193 spouses, the majority of whom were female. Twenty-seven case spouses have been reported to the CTR (1935-1978) with a confirmed malignancy. There are no reported tumors of the pleura, lung, peri toneum, or ovary in the spouse group. This provided no indication of domestic risk. However, since there were no control spouses, inferences involving domestic exposure were very limited.
Only two persons with "probable" cases and one with a "possible" case of mesothelioma were known to have worked in shipbuilding or repair. The LMA that included these industries showed no excess proportion of cases over controls. Selikoff (personal communication) has suggested that heavy asbestos "exposures occurred in the late 1940s and that cases might develop in the 1970s and later. The two "probable" cases with recorded shipbuilding employ ment in the present study were diagnosed in 1975 and ` 1976, which is consistent. The findings of Peto etal21 how ever, indicate that the consequences of wartime exposure ; may have been exaggerated. Future data from Connecticut should clarify this question.
Conclusion
Difficulties in ascertaining occupational asbestos expo sure histories in our study population indicate a need for better recordkeeping in industry, medical institutions, and tumor registries. Our methodology, utilizing indirect means of ascertainment, has enabled us to estimate the extent to which occupation or industry may affect the incidence of mesothelioma among males In Connecticut. Job-related or industry-related factors appear to account for a large per centage of all mesothelioma cases in males diagnosed in the State between 1955 and 1977. Lack of detailed informa-
UCC 011190
JCf 1, 2933, p. 8, hz, 17-1301
lion regarding the residual cases may obscure the true number occupationally exposed. The large proportion of cases of older men with some indication of occupational exposure, the increase over time in the maie-female ratio, and the lack of difference between the proportion of cases and controls without evidence of occupational exposure residing in the LMA containing an asbestos plant do not provide support for the view that ambient air concentra tions were a major factor in influencing the observed incre ment in cases of mesothelioma during the course of the study period. The reduction of unnecessary exposure to asbestos in the workplace remains the highest public health priority.
Future studies of the mesothelioma cases recorded in the CTR should endeavor to clarify the clusters of cases in the rubber manufacturing industry and in the plant located in LMA1 where an RR of nearly 10 was observed. Collab oration of the industry or industries concerned will be sought to explore the implications of these results. This will be attempted in conjunction with continuing surveillance of mesothelioma in Connecticut.
Acknowledgments
Lawrence Hally, Regina Robinson, and Marianne Delpo of the Connecticut Cancer Epidemiology Unit and Nora Naughton of the CTR provided technical assistance.
References
1. Lewinsohn HC, Meigs JW, Teta MJ, et al: The influence of occupational and environmental asbestos exposure on the incidence of malignant mesothelioma in Connecticut, in Wagner )C (Ed.): Biological Effects of Mineral Fibres. Lyon, France: IARC Publica tions No. 30, voi 2,1980, pp 655-660.
2. Bruckman L, Rubino RA, Christine B: Asbestos and meso thelioma incidence in Connecticut. APCA /27:121-126, 1977.
3. Bruckman L: A study of airborne asbestos fibers in Con necticut, in Gravatt GC, LaFleur PD, Heinreich KF| (Eds.): Work shop on Asbestos: Definitions and Measurement Methods. Washing ton, D.C.: National Bureau of Standards Special Publication 506, 1978, pp 179-190.
4. Cutler 5), Young )L, (Eds.): Biometry Branch, Division of Cancer Cause and Prevention: Third National Cancer Survey: Inci dence Data. Washington, D.C.: U.S. Gov't Printing Office, No. 75 787,1975, voi 41, p 442.
AO 1 929
5. Craighead )E, Mossman BT: The pathogenesis of asbestos associated diseases. N Engl / Med 306:1446*1455, 19S2.
6. Parkes WR: Silicates and lung disease, in Occupational Lung Disorders, ed 2. London: Butterworth & Co Ltd, 1982, pp 233-332.
7. Whitwell F, Scott J, Grimshaw M: Relationship between occupations and asbestos-fibre content of the lungs in patients with pleural mesothelioma, lung cancer, and other diseases. Thorax 32: 377-386, 1977.
8. Beckiake MR: Asbestos-related diseases of the lung and other organs: Their epidemiology and implications for clinical practice. Am Rev Respir Dis 114:187-227,1976.
9. Beckiake MR: Asbestos-related diseases of the lungs and pleura: Current clinical issues. Am Rev Respir Dis 126:187-194, 1982.
10. Roush GC, Meigs JW, Kelly, |, et al: Sinonasal cancer and occupation: A case-control study. Am / Epidemiol 111:183-193, 1980.
11. The Price & Lee Co Price and Lee City Directory. New Haven, Conn.: 1890-1977.
12. U.S. Department of Commerce, Bureau of the Census: 1970 Census of the Population: Alphabetical index of Industries and Occupations. Washington, D.C.: U.S. Gov't Printing Office, 1971.
13. Connecticut Labor Department: Connecticut Manufacturing Directories, 1936-1973. Hartford; State of Connecticut.^-
14. Mantel N, Haenszel wTTtatistitaraspects^bf the analysis of data from retrospective studies of disease. JNCI 22:719-748,1959.
15. Connecticut Labor Department, Employment Security Division, Department of Research and information: Commuting Patterns in Connecticut, )une 1966. Hartford: State of Connecticut.
16. Landis JR, Cooper MM, Kennedy T, et al: A computer pro gram for testing average partial association in three-way contingency tables (Parcat). Biostatistical Technical Report No. 18,1978.
17. -Peto J, Seidman H, Selikoff 1): Mesothelioma mortality in asbestos workers: Implications for models of carcinogenesis and risk assessment. Br ) Cancer 45:124-135,1982.
18. Milne JEH: Thirty-two cases of mesothelioma in Victoria, Australia: A retrospective survey related to occupational asbestos exposure. Br J Ind Med 33:115-122,1976,
19. McDonald AD: Malignant Mesothelioma in North America. Cancer 46:1650-1656,1980.
20. McDonald AD, Fry )S: Mesothelioma and fibre type in three American asbestos factories -- Preliminary report. Scond / Work Environ Health 8:53-58,1982.
21. Peto J, Henderson BE, Pike MC: Trends in mesothelioma incidence and the forecast epidemic due to asbestos exposure during World War 11, in Peto R, Schneiderman M (Eds.): Banbury Report 9 Quantification of Occupational Cancer. Cold Springs Harbor: Cold Springs Harbor Laboratory, 1981,pp 51-72.
./>
.i
/ -
' 'v /
UCC 011191
Mesothelioma in Connecticut/Teta et al Mesothelioma in Connecticut/Teta et al Mesothelioma in Connecticut/Teta et al Mesothelioma in Connecticut/Teta et al Journal of Occupational Medicine/Vol. OD, No. 0/Month, 1983 Journal of Occupational Medicine/Vol. 00, No. 0/Month, 1983 Journal of Occupational Medicine/Vol. 00, No. 0/Month, 1983 Journal of Occupational Medicine/Vol. 00, No. O/Month, 1983
AO 1 93C
UCC 011192