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A MORTALITY STUDY AMONG WORKERS IN AN l
ENGLISH ASBESTOS FACTORY
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S. Howard, L. J. Kinlen,* H. C. Lewinsohn,
J. Peto and R. Doll. D.H.S.S. Cancer
Epidemiology and Clinical Trials Unit,
Department of the Regius Professor of
Medicine, Oxford University, and TBA
Industrial Products, Rochdale.
.
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This cohort study of workers in an asbestos textile
factory in the North of England has been the subject of three
previous reports (Doll, 1955; Knox et al., 1965; Knox et
al<, 1968). These dealt particularly with mortality from
lung cancer and respiratory disease in workers exposed to
the high dust levels preceding the 1931 Asbestos Industry
,
Regulations, and examined the dependence of lung cancer
incidence on age and duration of exposure. The. last
report, published in 1968, showed little evidence of increased
mortality among workers who had entered the factory after the
implementation of the 1931 regulations, but pointed out that
no firm conclusions could be drawn, as little carcinogenic
, effect would be expected for 20 years after first
exposure. As time is so limited today we shall deal partic-
-- ularly with the post-1932 population which, although initially
exposed to dust levels higher than present permitted levels,
has an experience more relevant to modern industrial conditions.
The results for earlier workers and the dependence of lung
cancer incidence on age and exposure will be discussed more
fully in a later report.
RESULTS
* > '
The total population is divided into 5 cohorts on the
basis of duration and period of work in scheduled {dust risk)
areas of the factory
(Table 1). Re-examination of
personnel records since.the last report revealed a further
23 workers eligible for inclusion in cohorts 1 and 2, and
204 who have completed 10 years employment since June 1966
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*Gi bb Fellow of the C?ncer Ro<;rr.rr.h Camnainn
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/ have been added to cohorts3, 4 and 5.
The study population
thus comprises 284 women and 831 men, of whom all but 25
(2,3 per cent) have been followed up to the end of 1974.
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The numbers of deaths in each group due to lung cancer,*
` * '*
other cancers, respiratory diseases and other causes are
compared in Table 2 with the numbers expected from national X
death rates, * Workers first exposed before 1933 (cohorts 1
and 2) suffered a marked excess of lung cancer and respiratory
disease, particularly those with 10 or more years' exposure
prior to 1933. There is also some excess mortality from
lung cancer (35 observed, 19.3 expected; p**=.001) and
perhaps respiratory disease (33 observed, 25.4 expected;
p=0.06) in those who entered scheduled areas after January
1st 193Jx{cohorts 3, 4 and 5 combined), although very much less than in the first two cohorts. ^1o distinguish
exposure immediately after 1933 from present conditions
these three cohorts were divided into those first entering
scheduled areas from 1933 to 1950 and those starting later.
1951 was taken as the start of the 'modern period1 because
-it was the year in which routine dust sampling was initiated, * V*
although dust levels in some areas remained high for at least
6 years after this. Observed and expected deaths for those t.
first exposed between 1933 and IDSC^and those first exposed later are shown in Table 3. ^there is clear evidence of some
excess of lung cancer and respiratory deaths among those first
exposed between 1933 and 1950, although less than in cohorts t'
1 and 2. The numbers are rather small for those first exposed
in 1951 and subsequently, but there still appears to be an
excess of deaths due to lung cancer after 15 or more years*
Deaths due to mesothelioma of the pleura are included under lung cancer.
** All significance levels give the probability of observ
ing the actual number of deaths or more in a Poisson
distribution with the expected mean.
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exposure (5 observed, 1.86 expected; p=.04), and the '/ relative risk increases progressively with time since first
exposure/(Table 4). ^he six men in this group who died
of lung cancer were all smokers, 5 worked in areas where dust levels were high in 1951, and one may have been exposed to asbestos dust from 1925 to 1930 in a previous occupation. Asbestosis was found at post-mortem in two of the six cases.
It is difficult to interpret the relevance of these results to modern conditions. The implementation of the Asbestos Industry Regulations, 1931, started a drive to . improve dust control interrupted only by the relaxation of regulations during World WI ar II, when working hours were increased and black-out restrictions interfered with ventilation. Technical improvements over this period included major changes between 1953 and 1957, and dust levels have fallen by approximately 50 to 80 per cent through out the factory, the largest reductions being in areas where levels were highest in 1951,^^'''
The object of this study was to establish the value of technical improvements since 1931, but as there is a delay of^ 15 or more years between first exposure and any resulting cancer our results may not reflect the effects of working conditions over the last 15 or 20 years. We therefore propose to continue follow-up on those entering scheduled areas since 1951, and subsequent analysis, when the numbers are substantially larger, will focus on the relation ship between mortality and dust levels at first' exposure. Such estimates will contribute to the establishment of hygiene standards designed to eliminate; asbestosis and lung cancer.
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ACKNOWLEDGEMENTS
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We would like to thank.. Mr. ;I. Waters and his staff in the Personnel Department of TBA Industrial Products Ltd.
and the Office of Population Censuses and Surveys* including
the N.H.S. Central Register,for their co-operation.
*
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REFERENCES
Asbestos Industry Regulations (1931). Asbestos Industry
Regulations: Statutory Rules and Orders, 1931,
No. 1140. H.M.S.O., London
'.
Doll, R. (1955). Mortality from lung cancer in asbestos
workers. Brit. 0. industr. Med. J_2, 81-86.
Knox, J.F., Doll, R.S., and Hill, KD. (1965). Cohort
analysis of changes in incidence of bronchial carcin
oma in a textile asbestos factory. Ann. N.V. Acad.
Sci. , J32, 526-535.
Knox, J.F. , Holmes, S., Doll , :R. , and Hill, I.D. (1968).
- Mortality from lung cancer and other causes among
workers in an asbestos textile factory, Brit. 0.
industr. Med., 25, 293-303.
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TABLE 1
NUMBER OF WORKERS IN EACH EXPOSURE COHORT
Cohort Sex Years in Scheduled
Areas
Years In
Scheduled Areas Before 1933
Number
PersonYears Observation
1 Male 20 or more 10 or more
2 Male 20 or more less than 10
3 Male 20 or more None
4 Male 10-19
None .
5 Female 10 or more' None
69 74 263 678* 284 '
1 *097 . 1,398
2,049 7,251 4,360
Total
1*105
16,155 .
* Including the 263 men in cohort 3 before they had completed 20 years in scheduled areas.
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TABLE 2
NUMBER OF DEATHS OBSERVED AND EXPECTED, BY EXPOSURE COHORT AND CAUSE
Cause of death
Cohort
Observed deaths
Expected deaths
Ratio
Probabi1ity
Observed/ of observed
Expected number or mor
Lung cancer
1 2 3 4 5
Other cancers
1 2
3 4 5
Res pi ratory
1 2 3 4 5
Other causes
1 2
--3 4 5
All causes
1 2 3
4 5
15 10
9 23
3
8 3 6 11 6
14 7 8
21 4
27 23 36 72 11
64 43 . 59 127 24
1.58 3.05 5.56 12.83 0.92
4.72 4.31 6.62 17.89 7.63
5.31 4.36 5.93 17.63 1.81
23.68 18.04 26.58 76.09 13.35
35.29 29.76 44.69 124.44 23.71
9.5 3.3 1.6 1.8 3.3
1.7 0,7 0.9 0.6 0.8
2.6 1.6 1.3 1.2 2.2
1.1 1.3 1.4 0.9 0.8
1.8 1.4 1.3 1.0 1.0
<.001 .001 .11 .01 .07
.11 . .80
.65 .97 .77
.001 .15 .25 .24 .11
.27 .15 .05 i .7._7_80
<^01 .01 .02 .42 .50
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TABLE 3
NUMBERS OF DEATHS OBSERVED AND EXPECTED, BY DATE OF FIRST EXPOSURE
Cohort
Men and women first exposed 1933-1950 (n=615)
Cause
Lung cancer Other cancers Respiratory Other causes
Observed
29 20 31 108
Expected
16.11 27.11 22.26 98.99
Ratio 4
P rob a bi1ity of observed number or more
1.8 .01 0.7 .93 1.4 .05
1.1 .19
Men and women Lung cancer
6
3.20 *
1.9
first exposed Other cancers
3
5.03
0.6
1951 or later Respiratory
2.
3.11
0.6
(n=347)
.
Other causes
13
17.02
0.8
.11 .88 .82 .87
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TABLE 4
OBSERVED AND EXPECTED DEATHS DUE TO LUNG CANCER
BY TIME SINCE FIRST EXPOSURE IN 347 WORKERS FIRST
EXPOSED SINCE 1.1.1951-
________________ -
Period Since First Entering Scheduled Area
(Years)
Number Contributing To Analysis
Number Of Deaths
Expected Number Of Deaths
Ratio Observed/ Expected
Probabi1ity Of Observed Number Or More
<15 15-20 Over 20 Total
,
347 285 133 347
1
1.34
0.7
0 .74
3
1.34
2.2
0.15
2
0.52
3.8
0.10
6
3.20
1.9
0.11
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