Document DGr6MaVQDae9zRQOLGjgJR6Xd
ORIGINAL ARTICLE
The effect of asbestosis on lung cancer risk beyond the dose related effect of asbestos alone
A Reid, N de Klerk, G L Ambrosini, N Olsen, $ C Pang, G Berry, A W Musk
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' Occup Environ Med 2005,-62:885-089. doi: 10.1136/oem.2005.020834
See end of article for authors' affiliations
Correspondence to: Ms A Reid, Occupational & Environmental Epidemiology Group, School of Population Health, M435, University of Western Australia, 35 Stirling Highway, Crowley WA 6009, Australia; alisonr@ipli.iwci.edu.au
Accepted 15 July 2005
Aims: To determine if the presence of asbestosis is a prerequisite lor lung cancer in subjects with known
exposure to blue asbestos (crocidolite)
Methods: Former workers and residents of Wittenoom with known amounts of asbestos exposure
(duration, intensity, and time since first exposure), current chest x ray and smoking information,
participating in a cancer prevention programme (n= 1988) were studied. The first plain chest radiograph
taken ot the time of recruitment into the cancer prevention programme was examined for radiographic
evidence of asbestosis according to the U!CC (IIQ) classification. Cox proportional hazards modelling was
used to relate asbestosis, asbestos exposure, and lung cancer.
Results: Between 1990 and 2002 there were 58 cases of lung cancer. Thirty six per cent of coses had
radiographic evidence of asbestosis compared to 12% of study participants. Smoking status was the
strongest predictor of lung cancer, with current smokers (OR = 26.5, 95% Cl 3.5 to 198), having the
greatest risk. Radiograph ic asbestosis (OR =1.94, 95% Ct 1,09 to 3.46) and asbestos exposure
(OR= 1.21 per f(ml-year, 95% Cl 1,02 to 1.42) were significantly associated with an increased risk of
lung cancer. There was an increased risk of lungi cancer with increasing exposure in those without
asbestosis.
.. .,
Conclusion; In this cohort of former workers and residents of Wittenoom, asbestosis is not a mendatory
precursor for asbestos related lung cancer. These findings support the hypothesis that it-is the asbestos
fibres per se that cause lung cancer, which can develop with or without the presence of asbestosis.
B
xposure to blue asbestos (croddolite) increases the risk '
We aimed to examine the effect oh lung cancer risk of
Eof lung cancer.1 * Less certain is our understanding of the having asbestosis, beyond the dose related effect of asbestos roie of asbestosis (pulmonary fibrosis) in the pathogen alone among former workers and residents of the croddolite esis of lung cancer in people exposed to asbestos. Threemining and milling town of Wittenoom participating in a
studies have suggested that asbestosis is a necessary cancer prevention programme.
precursor to lung cancer," but these studies have been
criticised for their methods," and their findings have not been replicated elsewhere.*-'11 Statistical co-linearity in the dose-response relations between lung cancer and exposure and asbestosis and exposure are suggested to explain the relation between asbestosis and lung cancer.,l' McDonald7 concluded that on balance, "present evidence suggests that a direct link exists between asbestos exposure and lung cancer". In the medico-legal setting, compensation awards for lung cancer made to persons exposed to asbestos may be determined by the presence of asbestosis. In Australia, the
METHODS Because of the projected inddence of mesothelioma to the former workforce of Wittenoom,1'1in early 1990 all surviving former workers who had replied to a questionnaire on smoking in 1979 (ti = 2373) were invited to take part in a cancer prevention programme to examine the efficacy of beta carotene and retinol in reducing the risk of malignant mesothelioma, lung cancer, and other cancers.31 33 Former residents of Wittenoom were not'actively recruited into the programme but were included when approached to do so. A
presence of asbestosis is not necessary for a compensation total of 1196 former workers (50% of workers who replied to
award for asbestos related lung cancer in either Western smoking questionnaire) and 792 former residents (17% of
Australia or New South Wales.
former residents' cohort) joined the programme between
Crocidolite was mined at Wittenoom Gorge in the remote 1990 and 1996, most in the first year. Standard posterior-
Pilbara region of Western Australia between 1943 and 1966." anterior plain chest radiography was carried out on ait
During that time 6493 men and 415 women were known participants at the time of joining the programme. Subjects
from employment records to have been employed in either were randomly assigned to take either 30 mg synthetic ali-
the mining or milling process of the now defunct Australian trans beta carotene or 25 000 IU retinyl palmirate daily,
Blue Asbestos Company.13 A further 4890 are recorded to except former Wittenoom residents, women of childbearing
have iived and worked in the town and surrounding age, and subjects with abnormal liver function who were
settlements.1"* These two cohorts have been followed up randomised to either 0.75 mg or 30 mg beta carotene daily.31
since 1975 to document the epidemiology of asbestos related Results after five years showed that the risk of mesothelioma
diseases.1711 Cohort members are unique in that their was significantly lower in participants assigned to receive
exposures were almost exclusively to crocidolite as few retinol supplementation, but there was no effect associated
people had worked or went on to work in other jobs where with beta carotene.31 31 Supplementation with beta carotene
they were exposed to other forms of asbestos. The exposures was ceased in 1997 after this result and the results of other
have been extensively documented,11-1' and the rates of
asbestos related diseases in both the cohorts carefully Abbreviations: Cf, confidence interval; HR, hazard ratio;
followed.
QR, odds ratio
836 Raid, de Klerk, Ambrosini, et el
trials finding increased rates of lung cancer among smokers
taking similar doses of synthetic beta carotene. Thereafter
all participants were assigned to 25 000 IU retinol/day, except
women of childbearing age and participants with abnormal
liver function who were offered 5000 IU retinol daily. All
participants are reviewed annually and the results of liver
function test performed to identify possible vitamin A
toxicity.
Asbestosis was classified in accordance with the UICC/ILO
classification1* using the plain chest radiograph taken at the
first visit (n = 1988). Asbestosis was recorded when the
profusion of small irregular opacities was 2=1/0 in one zone
bilaterally. All films were read in duplicate or triplicate by
trained and experienced readers. Analysis was done using
one reader. This reader was chosen as the one who, when
three readers were available, agreed most closely with the
median reading of all three. Smoking history was classified as
never, past, and current based on the information given at
the first visit.
'
Case ascertainment Participants have been followed up actively through atten dance at the clinic each year and passively thorough death and cancer registries. Incident cases of lung cancer were determined from the Western Australian Cancer Registry up to September 2002 and the National Cancer Clearing House to September 2000. Lung cancer was identified using ICP0, 2nd edition, categories C33.9-C34 9 Subjects were censored at their date of diagnosis of lung cancer, date of death, September 2000 for non-Westem Australian residents, or September 2002 for West Australian residents, whichever was earliest.
Ethics approval was obtained from the Human Research Ethics Committee of the University of Western Australia.
Asbestos exposure assessment Workers Periodically between 1948 and 1958, measurements of dust concentrations were taken in the mine and the mill by the Mines Department of Western Australia using a kpnimeter,*' and a survey of fibre counts using'a Casella losrjg running thermal precipitator was performed across the industry in 1966." These measurements and the employment records provided by the Australian Blue Asbestos Company, supple mented by records of contributions to a Mine Workers Relief Fund for workers prior to 1943 enabled the calculation of each former asbestos miner dr miller's cumulative exposure in fibre-years per ml, by adding over all their jobs the product of their estimated fibre concentration and the length of time in the job.
Residents Based on surveys of fibre counts performed periodically by the Health Department of Western Australia and the Mines Department of Western Australia, former residents of the township of Wittenoom not working directly with asbestos were assigned an intensity of exposure of 1.0 fibres f>5 g long) per millilitre of air (f/ml) from 1943 to 1957 (when a new mill was commissioned and the town was moved), and then 0.5 f/inl between 1958 and 1966, when the mining operations ceased," 16 Interpolation between surveys using personal monitors assigned exposures from 0.5 f/ml in 1966 to 0.010 f/ml in 1992. Duration of residence was extracted from a questionnaire sent to the subject, or was taken as those found in various documentary sources; state primary school records, admission and outpatient records from the hospital, the State Electoral Roll for the Pilbara district, and information supplied by other participants' questionnaire
responses. Cumulative exposure (fibre-years per ml) was calculated from the intensity and duration of exposure.-'"'
Former workers who joined the cancer prevention pro gramme were similar in age (57, range 40-84) than those former workers who did not join the programme (58, range 40-85) and in their intensity of asbestos exposure (24 f/ml, range 1-130; and 23 f/ml, range 1-130, respectively)/' Former residents of Wittenoom who joined the programme were similar in age (mean 43, SD 13.6) to those who did not join (mean 45, SD 17.3) and in their intensity of asbestos exposure (median (range) 2.1ft f/ml (2.01-2.93) and 2.09 f/ml (1.53-2.68) respectively). Those former residents who joined the programme had spent more time at Wittenoom (730 days (335-1461)) compared to those who did not join the programme (457 days (183-1126)).
Statisficol analysis Asbestos exposure variables were positively skewed and so were transformed to their natural logs. Cox proportional hazards modelled the risk of lung cancer incidence, con
sidering the covariates of cumulative asbestos Exposure, smoking status, age at the start of the study, and the presence of profusion of small irregular opacities 3=1/0. A test for interaction was used to examine the slope of the doseresponse relation for lung cancer and cumulative asbestos exposure between those with asbestosis and those without it at the start of the study. The analysis was undertaken on all participants and then repeated on those without asbestosis at the start of the study separately. Insufficient numbers were available to examine those with asbestosis at the start of the study separately. All analysis was: undertaken using Stata
8.0.l!
INSULTS
Between 1990 and 2002 there were 52.inddent cases of lung
cancer in men and six fit women (table 1). Cases had a
greater intensity of asbestos exposure and greater cumulative
exposure than the remainder of the cohort. Twelve per cent of
participants had radiographic evidence ofasbestosis (table 1).
The prevalence of asbestosis on the plain chest radiograph
was much greater for cases than non-cases.
Smoking was the strongest predictor of lung cancer and
ament smokers had the greatest risk (table 2). Over one
third of cases had radiographic asbestosis compared with one
tenth of the non-cases. After adjusting for smoking and age
at the start of the study, both cumulative asbestos exposure
and radiographic asbestosis significantly increased the risk of
lung cancer. The interaction between cumulative asbestos
exposure and asbestosis was not significant (HR = 0,82, 95%
0 0.59 to 1.13, p= 0.23).
.
The models were repeated on those without asbestosis at
the start of the study. Cumulative asbestos exposure
(HR= 1.31 per log f/ml-y, 95% Cl 1.06 to 1.62), ex-smoking
(HR = 7.07, 95% Cl 0.93 to 53.65), and current smoking
(HR = 21.8, 95% Cl 2.85 to 166.8) remained significantly
associated with an increased risk of lung cancer in those
subjects who did not have evidence of radiographic asbestosis
at the start of the study. Being a resident (HR = 0.51, 95% Cl
0.16 to 1.63) or male (HR = 1.12. 95% Cl 0.35 to 3.57) were
not associated with an increased risk of lung cancer in those
subjects who did not have asbestosis at the start of the study.
DISCUSSION In this cohort of former workers and residents of Wittenoom, subjects with lung cancer had a greater intensity of exposure to asbestos than did non-cases. The presence of asbestosis further increased the risk of long cancer beyond the doseresponse effect of asbestos exposure alone, but this study also shows that the presence of radiographic asbestosis is not a
Asbestos, asbestosls, end lung cancer
mandatory precursor for Jung cancer in this cohort. The test for interaction between cumulative asbestos exposure and asbestosls showed there was no difference in the slope of the dose-response relation between those with or without asbestosls. Cumulative asbestos exposure was significantly associated with an . increased risk of lung cancer in persons without asbestosls at the start of the study.
The particular strength of this study in comparison with' others that have examined this issue is the availability of quantified asbestos exposure information to a single known type of asbestos fibre: workers and residents of Wittenoom were exposed almost exclusively to crocidolite. This informa tion enabled us to examine the effect of asbestosls on lung cancer, taking asbestos exposure into account. Wilkinson and colleagues'* examined chest radiographs for asbestosis and histories to determine asbestos exposure of 271 lung cancer cases and 678 controls. After adjusting for age, sex, smoking history, and place of referral, the group with asbestosis showed an OR of 2.03 (95% Cl 1.00 to.4.13), while those without asbestosis had an OR of 1.56 (95% Cl 1.02 to 2.39). The present study expands on this work because we examined the effect of asbestosis on lung cancer, adjusting for quantified levels of asbestos exposure, rather than examining asbestos exposure categorised as definite, prob able, possible, or unlikely.
In the current study we found asbestos exposure (cumu lative exposure) had an independent effect on lung cancer
after adjusting for Smoking status, age, and asbestosis as categorised by the UICC/JLO classification, Sluis-Ctemej and coEeagues* did not find an excess of lung cancer mortality among 302 men exposed to asbestos but without asbestosis. However they did find that duration or exposure, the most accurately measured exposure variable/ was independently associated with lung cancer (0R" 1.08,93% CX 1.02 to 1.14) after adjusting for smoking status, age, and grade of
asbestosis. Our findings differ from those of Hughes and Weill' who
examined mortality among 839 male manufacturers of
asbestos cement products and found no increase in lung cancer risk with increasing exposure among workers without radiographically detectable lung fibrosis. This study had a low power to detect a lower risk of lung cancer in subjects without asbestosis/ They report 26 deaths from respiratory malignancy. 10 of which did not have asbestosis. In contrast we report 58 incident cases of lung cancer, 37 of whom did not have radiographically defined asbestosis. A further strength of our study is a greater length of follow up after first exposure to asbestos, which was on average 31 years prior to joining the cancer prevention programme, compared with a mean of 24.3 years (SD 4.3) for men with the greatest cumulative exposure in the study of Hughes and Weill.
As would be expected, the present study shows that current and past smokers have a much greater risk of lung cancer compared to never smokers, after adjusting for both
asbestos exposure and asbestosis. We are currently addres
sing this issue in the Wittenoom workers cohort in more
detail and hope to have the results published soon.
One way of assessing if asbestosis is a necessary precursor
for lung cancer in persons exposed to asbestos is to examine
if there is, a significant statistical interaction between
asbestos exposure and asbestosis in their association with
lung cancer. This question has not previously been answered
by studies examining this topic.1 ' We found no difference in
the effect of cumulative asbestos exposure on lung cancer in
those with asbestosis and those without, indicating that the
slope of the dose-response relation (between asbestos
exposure and lung cancer) is not different between those
with asbestosis and those without. This provides further
evidence against the hypothesis that lung cancer is necessa
rily preceded by asbestosis in persons exposed to asbestos. We
also repeated our models on those without asbestosis at the
start of the study separately and found again that cumulative
asbestos exposure was related to an increased risk of lung
cancer in persons without radiographic evidence of asbes
tosis.
'
-
The estimates of asbestos exposure in the Wittenoom
cohorts have been criticised for being underestimates of the
true exposure.'0 We have validated these estimates as
internally valid by showing an agreement with lung fibre
burdens/1 and a clear relation between all asbestos related
diseases and dose-response has been repeatedly documented
wttbta the cohort." "11 " In a review of several studies
assessing asbestos exposure and lung cancer risk, Hodgson
and Darhton found the Wittenoom exposures comparable to
exposures reported from other crocidolite mines, and in
addition found the lung cancer risk (RL) similar to that from
other studies." We accept that our exposure estimates are
possibly underestimates, given the paucity of the dust
. measurements collected at Wittenoom, but recognising their
internal validity are confident of using them as a measure of
quantified asbestos exposure.
hr the present study we found that the relative risk of lung
cancer Was higher in former Wittenoom workers and ex-
residehts, with asbestosis than those without asbestosis, even
after adjusting for the amount of asbestos exposure. A
possible explanation for this excess risk, is that the fibrosis
itself is causing some action over and above she dose-
response effect of the asbestos exposure,1 Greater exposure to
asbestos is one other possible explanation for this excsss risk.
It is possible that any underestimation of asbestos exposure
in this cohort is neatest in those with heavier exposure.
Therefore the presence of asbestosis may be a marker of
heavy asbestos exposure, rather than being causal of lung
cancer itself.
The relative risk of lung cancer in former Wittenoom
residents was half that of the former miners and millers. This
ratio is consistent with that found between former residents
and workers for mesothelioma, where the mesothelioma rate
was about half for the former residents than workers in. each
exposure category." The asbestos exposure assessment for
residents may give higher exposures compared to workers
with equivalent exposures. The data available for estimating
asbestos exposure was of a different form for residents and
workers, as described in the methods section, so it is perhaps
not surprising that there is a differential effect.
Former workers and residents who participated in the
vitamin A cancer prevention programme were younger and
had higher asbestos exposure than those who were invited
but who did not join. In this study we have done a within
group analysis, assessing those with and without asbestosis
as determined by radiological examination. Therefore the
higher exposure estimates and younger age of our study
participants would not unduly influence this study's findings.
fn this study of former workers and residents of the township of Wittenoom, the presence of asbestosis is not a necessary precursor for lung cancer. This study provides further evidence to support the hypothesis that it is the asbestos fibres per se that cause lung cancer in persons exposed to asbestos. However, the presence of asbestosis is also associated with an increased risk of lung cancer which may be due to some action of the fibrosis itself, but in this study this excess risk may also be due to an underestimate of asbestos exposure.
ACKNOWLEDGEMENTS We acknowledge the following: Jan Sleith; Cancer prevention programme staff, Lynne Defrenne, Meralyn Pearce, Leanne Reich The Jem Foundation; National Health and Medical Research Council; Naomi Hammond; Philip Etherington; Health Department of Western Australia; Zeb Jamrozik; and Sarah de Klerk.
Authors' affiliations . A Reid, N de Klerk, G t Ambrosial, N Otsen, A W Musl^ School of Population Health, University of Western Aushalio 5C Penfj, Perth Chest Clinic, Health Deportment of Western Australia 6 Berry, School of Public Health, University of Sydney, Australia
Competing interests; none declared
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