Document ORNqxqBBr0nmypk3NKmLwmDj
^ ICEH 5336
DEPARTMENT OF HEALTH. EDUCATION. AND WELFARE
I'llMUC III M.TH SERVICE
.
NATIONAL TOXI< OLOGV I'llOCIIAM
ILO. IIOX 12233 RESEARCH TRIANGLE PARK. N.C. 27709
- Biological Effects of Ingested Asbestos
.
. ,.
Code 9
43
44 45 46 56
72
80
Status Report January 22, 1981
Introduction `
`- 1 '
The NIEHS is conducting a series of studies on the effects of ingested asbestos. These studies are-part of the NIEHS commitment that is directed by the recently established National Toxicology Program. The Environmental Protection Agency has contributed approximately 10% of the total funding.-' A summary of the evolution of the study is to be found in Appendix A. A paper, given at a Workshop on Asbestos, Gaithersburg, Maryland, July 1977, detailing the studies* design and implementation is attached (Appendix B).
Current Status
Test Materials - Two samples of chrysotile, and single samples of amosite and crocidolite asbestos plus a tremolite material are being tested. A repository of these materials was established and has also served as a source for other scientific studies on asbestos.
. --*
Each material has been extensively characterized as to physical and * chemical properties. The fiber size characterization performed by the Illinois Institute of Technology Research Institute (IITRI), Chicago, Illinois, has been completed and a final report received. The'chemical and physical property characterization performed by the U. S. Bureau of Mines is also completed.
Hamster Studies
.
.
Three asbestos materials are being studied at IIT Research Institute,
Chicago, IL. The lifetime exposure phase of these experiments has been completed. There was no indication of major differences in the
mortality rate betv/een the hamsters receiving the asbestos diet or the control diet. Histopathologic examination of tissues from female banisters has been completed. The contractor has reported that a preliminary analysis of the hamster data indicates that no carcinogenic or cocarcino genic effect was observed. A standard independent quality review of the pathology results has been completed for the female hamster. A similar review of the male hamsters is in progress and is expected to be completed in March 1981. Analyses of the verified data and preparation of the draft report is in progress. The report is expected to be completed and sub mitted to the NTP Board of Scientific Counselors' Technical Report Sub committee for independent public peer review in May 1981.
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FMSI 04941
Rat Studies
.
.
Five test materials are being studied in this species at the Hazleton- * ,,
Laboratories, Vienna, Virginia. In addition, a subsetof two studies-.. :
;
includes neonatal as well as lifetime oral exposure to asbestos. TheS> :1'-
lifetime exposure phase of the study has been completed. Although data '
has not yet been statistically analyzed, it appears that longevity was .
not affected bv exposure to the various types of fibers, aTfliough the "
known carcinogen (DMH) did significantly shorten lifespan. The histo
pathologic phase of the study is in progress and is projected to be \
completed in October 1981--there are a total of 5,158 rats to be examined.
The histopathologic evaluation is to be completed by group and thein sub
jected to pathology quality review. Sequential issuance of final reports
by asbestiform type is. being considered with the first reports projected
to be available for public peer review in December 198K .
, -' * / -
FMSI 04942
Prorti: ^Biological Effects of Mineral Fibres * (Effets biologiques des fibres mingrales)
1 Voltime 2, Ed.: O.C. Wagner, International Agency for Research on Cancer Scientific Publications No. 30, Lyon,
1930: 587-601.____________________ ________
IOEH 5369 Code 0
10 36 37 38
70
90 81
ASBESTOS-RELATED DISEASE: AN EPIDEMIOLOGICAL REVIEW
r,',;,
J.C. McDCNKID
'
TUC Centenary Institute of Occupational Health, London School of Hygiene and Tropical Medicine,
London, UK
INTRODUCTION
.
Epidemiology is concerned with disease incidence, etiological, evidence and evaluation of control measures. This review will exawrt ne what has been achieved in these three fields, focussing on recommendat ions on asbestos and cancer made to the UICC in 1964 (UICC Working Group on Asbestos Cancers, 1965) and to the IARC In 1972 (Bogovski et al., 1973). Five of the six points which the epidemiological recommendatlons of 1964 comprised were repeated in 1972. Why the sixth, which related to the effects of exposure under different Industrial and environmental conditions, was omitted is unclear, since it remains un answered. The main concern in both lists was etiological, with some reference in 1964, and rather more in 1972, to questions of social impact and effectiveness of control.
It was natural that asbestos-related cancers should figure promin
ently in reports to the UICC and IARC. Epidemiological surveys of
mortality, case-control or cohort, are more straightforward and easier
to interpret than those required for the chronic and insidious mani
festations of asbestosls. Certainly the information now available on
the asbestos cancers is relatively more complete and so provides the
main theme for this review. However, asbestosls will not be ignored,
if only because its detection underlies several approaches to the
prevention of both types of disease.
.................
The main issues to be considered' are (1) whether or not asbestos exposure is a causal factor in the disease in question, (2) whether all fibre types are equally implicated, and (3) whether any other fac tors, personal or environmental, significantly modify the link between cause and effect. These three facets are interrelated and cannot be
-587-
FMSI 04943
GO
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MCDONALD
considered in isolation. The nature of exposure-response relationships '
is basic to any consideration of etiology; however, evidence aimed at
.
precise quantification will be left to Professor Donald Acheson1;;, ?. t
- ASBESTOS-RELATED DISEASES
Lung cancer
.
.
`
On the central question of whether asbestos causes lung cancer there can now be little doubt. There is direct epidemiological evi dence for the carcinogenicity of chrysotile, crocidolite, amoslte and anthophyllite (IARC, 1977); all the, usual criteria have been met (J.C. McDonald, 1980); and the view that the risk was confined to smokers is no longer tenable (Hammond et al., 1979; McDonald et al., 1980). The relative potency of the different fibre types is less clear, however, as is the form of interaction with tobacco smoking.
'
Fibre type
'
^
All discussions on this subject are bedevilled by the problem of comparing like with like. Thus, even in the same industrial process at apparently similar dust/flbre levels, the distribution of particles by length and diameter may well vary with different types of asbestos. Add to this the extreme paucity of epidemiological surveys in which there are any data whatever on dust or fibre concentrations, and it will be evident that only substantial differences in observed risk have much meaning. Moreover, for obvious reasons, similar industrial processes are seldom carried out with different types of asbestos or different mixtures.
Mining and milling (i.e., fibre production) have therefore been of particular interest; but, until recently, there have been no findings reported for comparison with Quebec chrysotile workers. Thus, the reports on crocidolite mining in Wittenoom, Western Australia, by Hobbs et al.12 and in the Cape Province, South Africa, by Talent et al.3 are
especially welcome. As the South African study was cross-sectional in type, only the Quebec and Australian findings can be compared directly, and then with some difficulty. The populations studied differed
socially, in entry criteria and in the mortality to date - 41% in Quebec
and 8% in Western Australia. A comparison of those employed one year or more and followed at least 15 years from first employment (Australia),
1 See p. 737 2 See p. 615 3 See p. 723
FMSI 04944
EPIDEMIOLOGICAL REVIEW
589
or 20 years (.Quebec), appears to show that the lung cancer experience of
the crocidollte miners was several times worse than that of men who
produced chrysotiler the standardized mortality ratio (SM&) in Quebec
miners was 1.28 and that In miners in Western Australia, 2.47. However'
this comparison takes no account of environmental conditions, fibre -r;'-*
concentrations, type and duration of work, etc.
*.....
,
Within the industries which work with asbestos, the position has, with few exceptions, been obscured by the use of mixtures. Despite very short periods of exposure to Australian crocidollte - seldom in excess of 2i years - the Nottingham and Canadian gas-mask workers (Jones et al. ; A.D. McDonald & J.C. McDonald, 1978) both had about twice the number of lung cancer deaths expected. Amosite factory workers and several cohorts exposed to amphlbole-chrysotlle mixtures have also suffered very severely from this disease (IARC, 1977).
. ..
Enterline & Henderson (1973) and Hughes & WelH2 both attempted the .
difficult task of separating the effects of different fibre types in
factories where more than one was used. To the extent that this was
achieved, their studies also point to lower risks after exposure to
chrysotile only, than after exposure to amphlboles or amphlbole--contain
ing mixtures.
.................
'
.
Apart from two small cohort studies reported by Elwood & Cochrane (1964) and Weiss (1977), there has been no Information on factory workers exposed to chrysotile only. In the first-mentioned where, in fact, some crocidollte had been used, there were seven cases compared with 3.02 expected; in the latter, the SMR for lung cancer was 0.93 (but only 0.61 for 'all causes').
;
The mortality of men 20 or more years after first employment In the Rochdale textile plant (Peto3) may eventually provide more comparable
data. At face value, the textile workers experienced a much higher
excess mortality from lung cancer (30 deaths observed, 15.47 expected)
than Quebec chrysotile miners at similar exposure levels (J.C. McDonald et al.4). However, crocidollte was also used at Rochdale, and there is
still uncertainty about the fibre concentrations to which the men were
exposed.
.....
.
. ....
... , , .
1 See p. 637 2 See p. 627 3 See p. 829 4 See p. 811
FWIS1 04945
590
MCDONALD
Smoking
,
r _ -* -r "''jrws* - ,
,' ,, " r,\Y|s
In 1977, Saracci (1977) reviewed the nature of the asbestos-smoking
Interaction, as it affected the occurrence of lung cancer. ' He identified three simple models, though recognizing that there could be others ofViwff'-ij',
greater complexity; these were: (1) that the effects are independent
and simply additive; (2) that asbestos and tobacco act synergistically,'
perhaps even multlplicatively; and (3) that asbestos produces lung
cancer only in those who smoke.
' 15 *"'
"
With the data then available to him, he had some difficulty in dis
carding model 3, found nothing to support the additive model, and -
tentatively concluded that the multiplicative model appeared the most
plausible. It should be noted that in none of the reports at his '
disposal were both asbestos exposure and smoking adequately quantified.
Since then two further sets of results bearing on the question have
become available. One based on the large cohort of North American
insulation workers (Hammond et al., 1979) gave relative risks which'
agreed perfectly with the multiplicative model, as below:
lb*8?
Asbestos exposure
Never
Ever
i<*&Si
Never smoked Ever smoked
1 10.85
5.17 53.24
The other set of data, based on our most recent findings for Quebec chrysotile miners and millers (J.C. McDonald et al., 1980), appear more than additive but less than multiplicative:
Asbestos exposure Little Moderate
Heavy
Nonsmokers Moderate smokers Heavy smokers
1: 6.3 11.8
2.0 7.5 13.3
........6. .9 12..8 25,.0
It may be too much to expect that a single biostatistical model will apply exactly in all circumstances. However, both studies agree on two important points: (1) that the relative risk for nonsmokers exposed to asbestos is at least as great as that for smokers and (2) that in absolute terms most asbestos-related lung cancers occur in those who have smoked.
FMSI 04946
EPIDEMIOLOGICAL REVIEW
591
Mesothelioma
Since Wagner and his colleagues (1960) reported a concentration of
cases of mesothelioma in the crocidolite mining area of the Cape Prov--
ince, South Africa,, epidemiological interest has focussed on the impor
tance of fibre type* This led to parallel research by physical and:,
experimental scientists (see, for example, Pooley, 1973; Timbrell, > ..
1973; Wagner & Berry, 1973), which has added greatly to the under- .
standing of factors that influence the penetration of fibrous particles
and the critical importance of shape and size. It was hardly a stir-
prise that malignant mesothelial tumours would eventually be found .<r '
associated with other mineral fibres of the required dimensions (Baris
et al., 1978, 1979). Clearly, asbestos substitutes must be viewed with
fresh caution.
'
In recent reviews of all cases of malignant mesothelioma reported
to the end of 1975, including those in industrial and community surveys
(J.C. McDonald, 1978; J.C. McDonald & A.D. McDonald, 1977), the follow
ing conclusions were drawn:
"
.'
(1) The geographical distribution was uneven, with concentrations near
dockyards and certain large asbestos plants. Elsewhere the incidence
was low, perhaps approaching the 'background* level present before the .
commercial exploitation of asbestos.
,
`
(2) Exposure to airborne crocidolite in man had clearly proved far more hazardous than that to chrysotile, although, in animal experiments, the . carcinogenic potential of all types of asbestos and other mineral fibres seemed similar.
(3) The status of amosite was uncertain; the substantial Incidence of
mesothelioma in amosite factory workers conflicted with the apparent
infrequency among amosite miners. From 1930 on, amosite had been used
for insulation materials in the USA; and from about 1950 it had become
the major constituent. Possibly, this explained the high incidence '-
among American insulators.
J'
, ;?
Papers submitted to this conference bring much further evidence bn these issues. The cohort survey by Hobbs et al.1 of Australian crocid
olite miners identified 30 cases of mesothelioma, 17 (3.3Z) among 519 ascertained deaths. The authors note an unusual absence of peritoneal tumours and, indeed, a deficit of abdominal tumours of all types. With only 8Z of the cohort dead, it is too soon to estimate the eventual impact of mesothelioma. At a comparable stage in the Quebec chrysotile mining cohort study there had been no deaths from mesothelioma.
1 See p. 615
FMSI 04947
592
MCDONALD
The survey of black South African crocldollte mi.nework.er3 by Talent et al.1 Is cross-sectional and therefore most difficult to interpret.
*
The very existence of prevalence rates for mesothelioma.''based on some
68 cases detected in various defined groups, is disturbing;" A most '
useful figure is that four cases were found In a representative sample
of 236 men examined 21 or more years after first exposure--- a'prev-"'4
alence rate of 21. For comparison, we estimated that the"' average
`
` *,11
prevalence of mesothelioma in Quebec chrysotile mlneworkers during the years 1965-1977 was roughly 0.05Z; and In Canadian gas-mask workers B . -
during the years 1965-1976, between 1-2Z. These estimates assume that - *
cases of mesothelioma would be detectable two years before death. It
may be recalled that in the Canadian gas-mask cohort, nine (16Z) of 56
deaths to the end of 1975 were probably due to mesothelioma (A.D. McDonald & J.C. McDonald, 1978); in the current paper by Jones et al.2
on Nottingham gas-mask workers, 17 (10Z) of 166 deaths to the end of
1978 were ascribed to mesothelioma. -
,
An Indication of the possible role of crocldollte Is contained in the report by Rossiter & Coles3 on mortality In naval dockyard workers.
In a cohort of 6292 employees followed to the end of 1978, there was a
total of 1042 deaths: 28 deaths were from mesothelioma, but only 13 r
deaths were from all other asbestos-related diseases. This suggests ~
that the exposure to asbestos was not heavy but was particularly liable
to cause mesothelioma. The use of crocldollte in the British Navy .
could well explain this pattern.
- ->
The same Issue is implicit in problems identified by Peto'* in his paper on mesothelioma in the Rochdale factory. Although the employees are described as 'chrysotile asbestos textile workers', in fact, crocidollte was also used. Without electron microscopic analyses of lung tissue, data from this survey will remain difficult to interpret1
An analysis is presented by A.D. McDonald5 of the occupational histories of all known deaths from mesothelioma in the Province of Quebec between 1960-1968, with special attention to cases in persons r exposed only to chrysotile in mim> and mills and in workers employed in four factories, two of which had used crocldollte and one amosite for " limited periods. There were 22 cases in the latter three factories compared with 10 cases from the mines and mills, where the workforce was some eight times larger. After exclusion of cases attributable to asbestos (almost all in men), the remaining incidence was similar in the two sexes and might conceivably have had some other etiology.
1 See p. 723 2 See p. 637 3 See p. 713 4 See p. 703 5 See p. 673
'
FMS1 04948
EPIDEMIOLOGICAL REVIEW
593
Lastly, two important sets of data describe results from Dr F.D. Pooley's laboratory on the mineral fibre content of lung from cases of mesothelioma and controls obtained from (a) the 1976 national survey in the UK and (b) national surveys in the US and Canada in 1972. * In the first of these, reported by Jones et al.1, 108 cases (86 confirmed) and ' 56 'controls' were investigated. The authors were aware that their^ * 'controls' were unsatisfactory and may not be wholly comparable with the case series. In the North American study (A.D. McDonald12), 100 care
fully matched case-control pairs were submitted to Dr Pooley, and the results for 37 pairs are so far available. In both studies, the labor atory examined the specimens without knowledge of their provenance.
The results from these surveys are shown side by side in Table
1. In neither is there any difference between cases and controls in
the distribution of chrysotile; the levels are considerably higher,
however, in the American series. In both studies amosite Is present In .
much larger quantities in the cases than in the controls, whereas crocid-
olite is more in evidence in the UK. These findings reflect the
relatively low levels of Importation of croddollte to North America
and, indeed, the apparently lower incidence of mesothelioma on that
continent (J.C. McDonald & A.D. McDonald, 1977). The figures so far
available thus support the hypothesis that amosite has played an impor--
tant part in the etiology of American mesotheliomas and goes some way to
counter the doubts expressed by Nicholson et al.3. .....
-
Table 1. Distribution {%) of chrysotile, crocidolite and amosite in lung tissue from mesothelioma cases and controls in North America and the United Kingdoms
Fibre (* 10*) par g dried lung tissue
Nil <1 1 < 10 10 < 100 100 or more
Chrywtlla Aawrlca Casts Controls
30 11 15 56 59 24 19 .
66
UK Cant Controls
40 Z1 14 16 31 54 IS 9 i-
00
Creeldsllta taarlca Care Controls
70 81 16 19
80 50 00
UK Casts Controls
10 39 30 36 27 21 20 t 13 4
Anoslta Anarlea Caw Controls
38 54 ' ..
zr si ;r
16 3 11 0
B0
UK Casts Controls
20 61, 29 25 31 n 0--
82
North Ansrfcs - 37 cist-control pairs (A.D. McDonald, p. ; Uni tod Klngdot - 106 casta and 56 controls (Jonas at al., p. 637)
1 See p. 187 2 See p. 681 3 See p. 823
FNISl 04949
594
MCDONALD
Other malignancies
,
. :'-s 4%
_ ^ .
.. j
*/*>,-
T ' .1
Gastrointestinal cancers.- Since those who Inhale asbestos fibres
may well swallow even more. It is reasonable to suppose that, this might * '
lead to malignant disease of the gastrointestinal tract. 1 In some r* . ^
industrial populations a substantial risk has been demonstrated, e.g.,
in Insulation workers In Belfast and In North America and In American
amosite factory workers; in other groups, however, there has been no
excess, e.g., in London factory workers, Finnish anthophylllte miners
and Rochdale textile workers. The studies of Quebec chrysotlle miners
and millers have also been difficult to interpret; for example, there
was substantial excess mortality from cancer of the oesophagus and
stomach in the most heavily exposed men, but no systematic exposure-
response relationship; and differences between the two main pHn-tng ,
areas were not readily explained by dust exposure.
In a careful review of the subject. Miller (1978) concluded that, despite irregularities and inconsistencies, the weight of evidence pointed to a causal relationship, affecting all sites in the gastro- ' intestinal tract. He doubted whether further data of the kind antic ipated would clarify the situation. There appear to be unrecognized factors of Importance, perhaps in the diet, which are not being taken into account: it is as though the effects of asbestos on the respira tory tract were being studied in ignorance of tobacco. Identification of the missing link could have similar Importance.
Laryngeal cancer.- Some studies have shown an association between
asbestos exposure and cancer of the larynx; others have not. In the
cohort of insulation workers studied by Selikoff et al. (1979), nine
deaths were recorded, compared with 4.7 expected. In London factory
workers (Newhouse & Berry, 1973), there were two cases and 0.4 expected.
In Quebec chrysotlle workers (J.C. McDonald et al., 1980), 17 cases were
observed and 16.1 expected; however, there was a direct relationship <.
here with smoking. An excess of laryngeal cancer in Italian chrysotlle
miners Is difficult to interpret as the mine is located in a province .
with a very high incidence of the disease (Rubino et al., 1979).
A
case-control study in Liverpool by Stell & McGill (1973) showed a very ;
high relative risk (14.5), but the inquiries were not made blind, and it
is difficult to accept that only 3Z of control subjects in that city had
been exposed occupationally to asbestos. In a smaller case-control
study in Toronto by Shettigara & Morgan (1975), also not made blind, an
association was found with both asbestos exposure and smoking. Newhouse et al.1 now report the results of a substantial case--control
survey from the London area, based on living subjects. Neither patients
nor interviewer were aware of the diagnosis at the time of the inquiry,
and the control series seems particularly appropriate. The cancer
patients smoked more heavily than the controls but had not been any more
frequently exposed to asbestos.
1 See p. 687
m
FMSI 04950
EPIDEMIOLOGICAL REVIEW
595
Other sites,-,.In the most recent report by Sellkoff et al. (1979) on North American" insulation workers, 922 deaths from cancer were J
recorded on death certificates, compared with 319.7 expected.,. Of the . 602.3 excess, 472.2 were ascribed to mesothelioma or to* cancer of^the respiratory or alimentary tracts. There thus remained an excess of 130.1 deaths from malignant disease at other sites (SMR,.1.9). Review / of 'best available information (autopsy, surgical, clinical)' reduced * the ratio to 1.4, but the effect of similar review of all death certif icates in the OS, from which the 'expected' figures were calculated, is . of course unknown. Indeed, it may be questioned whether national rates for a large country, such as the USA, provide a fair basis of comparison for a specific and unevenly distributed occupational group such as insulation workers. In our own cohort study of chrysotile miners and millers the comparable mortality from cancer at other sites was: observed, 304; expected, 285.8 (SMR, 1.06). Whether there are other organs in which malignant disease is induced by asbestos must be consld-- ered, but the diagnostic problems (see Sellkoff et al., 1979) seem wellnigh insuperable and the pathogenic mechanisms correspondingly obscure.
.. . . Asbestoses
'' * - .
- ~'
- " r
-
/... ,> es'tei/J'.-a&v- m~ MZ \\
- . 1 '-*
' *r
*'J - " -
Pulmonary and pleural fibrosis have been common causes of dis-- .
ability, and less frequently of mortality, in asbestos workers in many
countries (e.g., Lopez-Areal Del Amo1). The early detection and ~ v ^
removal from exposure of affected workers, biological monitoring systems "
and the definition of hygiene standards, are preventive measures which
,
all rely on epidemiological understanding. Considerable effort has
been put in recent years into the development of radiological, physio--
logical and clinical tests for the presence of disease manifestations
and into standardizing them for epidemiological surveys. 1 Even so,
problems of inter-- and intra--observer error and subject variation remain
enormous; the specificity and sensitivity of tests inevitably conflict; v
and their validity is largely unmeasured. Peto (1978), in discussing
the lack of information on the prognostic significance of crepitations,
states: 'if data on severe disability or death are sufficient to
evaluate the significance of the sign, they will also be sufficient to :
assess the serious risk directly, so there may be little advantage in
considering the prevalence of such a sign in framing a hygiene standard'.
This lack of information on prognostic significance applies to
virtually every sign and symptom used in studies of asbestosis. The current paper by Liddell12 is therefore something of a landmark. It summarizes results of his more extensive studies on the relation between radiological findings in Quebec chrysotile workers while still employed and their subsequent mortality. While it is true that the findings
1 See p. 201 2 See p. 667
FMSI 04951
596
MCDONALD
iSlf convincingly validate the TJICC/ClncI nnati classification (and "by - ;
inference, the ILO O/C system also), they do so in a relative rather
% sAip
than in an absolute sense.' Thus, it was theruse of the classification
scales by a specific group'of six readers on*a'unique*sample of chest
radiographs which was validated, rather than any particular level of
reading. Feto's reservation therefore stands: until*signs and symptoms
can be recorded and interpreted objectively,' mortality*may still be the ..
most reliable basis for hygiene standards. - `
The paper submitted by Berry1 deals with validation of another
kind, that of compensation procedures under the Industrial Injuries Act
in the OK. As in a similar study some years ago (McVittie, 1965), the
observed mortality was between too and three times expectation: 52Z of
the excess was due to lung cancer, 32Z to asbestosls, 14Z to mesothelioma
and 3Z to other cancers. Despite the special nature of the study
material, the very low figure for gastrointestinal and other cancers is
worth noting. '
' '-.- 'v.
- : -z->
'`
;
tivLs .
The finding of pleural plaques in general populations raises anal
ogous questions as to their significance. Localized areas of pleural
thickening may or may not be calcified and calcified areas of pleura may .
or may not be thickened. The endemic phenomenon in question Is mainly .,
one of 'calcified plaques', and while they Tiave certainly occurred in '
areas where asbestos is found, they are also found elsewhere. Indeed, ..
the evidence that there is any causal relationship between pleural
-
calcification and mineral fibre per se is-unconvincing. Nevertheless, "
some environmental mineral, often closely associated'with asbestos
deposits, must surely be implicated (see for example Gibbs, 1979).
We
certainly need to know more about the etiology and prognostic Import
ance of these mysterious changes.
..
SOME METHODOLOGICAL POINTS
lav s.'.
Four papers in this section deal with problems which may be loosely classified as methodological. Lewinsohn et al.z describe preliminary
phases in a study of mesothelioma cases in the Connecticut Tumor Registry, which has still to overcome serious problems of diagnostic reliability . and in recording asbestos exposure. Ferdrizet et al.13 2discuss the
objectives and achievements of the French mesothelioma register, init iated in 1975. As a measure of disease Incidence, the procedure
1 See p. 603 2 See p. 655 3 See p. 697
FMSI 04952
EPIDEMIOLOGICAL REVIEW
597
failed to secure the universal collaboration of French pathologists.
On the other hand, it appears to be leading to a wider recognition of
mesothelioma as a disease entity and to better diagnostic standard*-
ization. For all Its imperfections, the authors believe that the t,
register will enable useful etiological observations to be made,
-r*
specially if backed by tissue analyses. -
.
i- va tA -
*'
- Z .. ZJ.zm X
Di Menza et al.1 Investigated, the important question of whether
valid information on past asbestos exposure is obtainable from micro-,,
scopic examination of lung washings. Their data showed good correlat
ion between the presence of ferruginous bodies and a definite history of
exposure. Other relationships were inconclusive. More information
might be obtained if time since last exposure were taken into account.
Liddell's paper12 on latent periods in lung cancer mortality stems
from the frequent suggestion that the period between first exposure and
appearance of the tumour is related Inversely to dose. His analysis,
based upon the experience of Quebec chrysotlle workers, showed no
evidence of this relationship. The question Is of more than academic
importance, since the presence of such a relationship would greatly
complicate efforts to define exposure-response models and to establish
hygiene standards.
'
. v.zaaz: a : z a';
IMPORTANCE OF CONTROL
Faced with an environmental hazard, several strategies are possible: simple steps to minimize the effects, application of hygiene standards, or complete ban (with or without substitutes). The public and their governments make these decisions on the basis of their appreciation of what scientists tell them about various aspects of cost and benefit. Epidemiology ban done much to identify and explain the health effects of asbestos - indeed few environmental problems have been studied so extensively; it has not done so well in putting the risks into proper perspective or in evaluating the control options. It would be invid ious to identify the incompetent and misleading estimates and unfair to blame it all on the news media, vested interests or political pres
sures. The fact remains that more than 40 years after the introduction
of hygiene standards and 15 years after the 1964 New Tork Conference, few if any industrial countries have reliable or comprehensive data on the health costs of asbestos, and there is next to no information on what control measures have achieved. There are a few exceptions; for example, Hammond et al. (1979) demonstrated that asbestos workers- who gave up smoking had substantially lower death rates than those who s continued. Or again, Becklake et al. (1979) studied the effect of removal of asbestos workers from further exposure, with less encouraging results. The need for better data on the importance and effectiveness of control is a challenge for epidemiological research.
1 See p. 609
2 See p. 661
FMSI 04953
598
MCDONALD
_ ....
,
..............
v *,, iij-t < t*- J;? i'. >'* 'j -,-fptx_ * *,
*> , ' . *
-------- 4;
' ^ 'f
CONCLUSIONS - -v; s i
m - zasp.
... _ ............_
Several important etiological questions seem now to have been1
r-
:
mmi
settled. Lung cancer Is caused by all kinds of asbestos ..without need
for any other factor. The interaction between smoking and asbestos Is
at least additive and in some circumstances multiplicative. The amphi-
boles appear to carry a higher risk of lung cancer than chrysotile; however, there are still no comparable data on exposure-response relation
ships with different fibre types or in various industrial circumstances.
The risk of mesothelioma after chrysotile exposure appears small,
and most asbestos-related cases are probably due to crocldolite or
amosite. A low incidence of this tumour, of unknown etiology, ante--
dated the commercial use of asbestos and probably continues. ,, . The
implications of fibre size and shape, rather than type per as, deserve
attention. The causal association with other cancers - notably of the
upper gastrointestinal tract and larynx - is less consistent and suggests.
a role for other unidentified factors.. . , t., -
- .... ' A major difficulty in the study of the pleural and parenchymal,.,. . changes of asbestosis lies in the standardization of tests and in defining their prognostic significance. The HO U/C radiological
p* is- fcitflltei
1| .
classification has now been validated in terms of mortality in chryso-
tile workers, but the findings cannot be generalized. The etiology and significance of pleural calcification is still unknown.
a*
mm
The present and future Impact of asbestos-related disease on the community remains controversial, and few estimates are based on ade quately representative data. Evidence of the effectiveness of environ mental and other control measures is equally deficient. ;
" -I
RESUMEII
II semble que plusleurs questions etiologiques lmportantes solent maintenant resolues. Le cancer du poumon est provoque par toutes les varietes d'amiante sans que 1'intervention d'un autre facteur solt necessaire. Les interactions entre 1'usage du tabac et 1'amiante sont pour le meins additives et, dans certains cas, multiplicatives. Les amphiboles paraissent comporter un plus fort risque de cancer du poumon que le chrysotile; mais il n'existe toujours pas de donnees comparables sur les relations exposition-effet avec diffSrents types de fibres ou dans diverses situations industrielles.
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EPIDB4I0L0GICAL REVIEW
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Le risque de mesotheliome apres exposition au chrysotile semble . faible, et la plupart des ran lies a l'amiante sont probablement dus a la crocidolite ou 3. l'amosite. Une faible incidence de cette tumeur, d'etiologie inconnue, precedait 1'utilisation commercialede l'amiante / ' et subsiste probablement. Les effets de la taille et de la forme des fibres, plutot que de la variete elle-mane, meritent attention. L'assoelation causale avec d'autres cancers - ceux des voles digestives'supirleures et du larynx notamment - est moins reguliere et lalsse supposer 1'intervention d'autres facteurs non identifies. '
L'une des grandes difficultes de 1'etude des lesions pleurales et
parenchymateuses dues a l'amiantose reside dans la normalisation des ,
tests et la determination de leur signification pronostique. La clas
sification radiologlque BIT U/C a maintenant ete valldSe en ce qui
conceme la mortality des travailleurs exposes au crysotlle, maia on ne
saurait generaliser ces observations. L'etiologie et la signification
de la calcification pleurale demeurent lnconnues.
''
Les repercussions actuelles et futures des maladies liees a l'amiante
sur la collectlvite restent matibre 3 controverse, et peu d'estimations
reposent sur des donnees suffisamment representatives. Les indices de
l'efficacite des mesures de lutte envlronnementales ou autres sont
egalement insuffisants.
.............
kKKkhhTM >>i
Baris, Y.I., Sahin, A.A., Ozesmi, M., Kerse, I., Ozen, E., Kolagan, B., Altinors, M. & Goktepell, A. (1978) An outbreak of pleural meso thelioma and chronic fibrosing pleurisy in the village of Karain/
- Urgup in Anatolia. Thorax, 33, 181-192
Baris, Y.I., Artvinli, M. & Sahin, A.A. (1979) Environmental meso-- thelioma in Turkey. Ann. N.I. Acad. Sen., 330, 423-432 ......
Becklake, M.R., Liddell, E.D.K. , Manfreda, J. & McDonald, J.C. (1979) Radiological changes after withdrawal from asbestos exposure. Br. J. ind. Med., 36, 23-28 .
Bogovski, P., Gilson, J.C., Timbrell, V. & Wagner, J.C., eds (1973) Biological Effects of Asbestos (IARC Scientific Publications No. 8), Lyon, International Agency for Research on Cancer, pp. 341-346
Elwood, P.C. & Cochrane, A.L. (1964) A follow-up study of workers from an asbestos factory. Br. J. ind. Med., 21, 304-307
600
MCDONALD
Enterline, F.E. & Henderson, V. (1973) Type of asbestos and respiratory cancer in the asbestos Industry. Arch, environ.' Healthy 27,'
'
Gibbs, G.tf. (1979) Etiology of pleural calcification: a study of `t*
Quebec chrysotlle asbestos miners and millers. Arch, environ.-
Health, 34, 76-83
-. ,
' , '
Hammond, E.C., Selikoff, I.J. & Seidman, H. (1979) Asbestos exposure, cigarette smoking and death rates. Arm. N.I. Acad. Sci., 330, 473-490
IARC (1977) IARC Monographs on the Evaluation of the Carcinogenic
Risk of Chemicals to Man, Vol. 14, Asbestos, Lyon, International
Agency for Research on Cancer
- u. .t
McDonald, A.D. & McDonald, J.C. (1978) Mesothelioma after crocldolite exposure during gas-mask manufacture. Environ. Res., 17, 340-346
McDonald, J.C. (1978) Exposure relationships and malignant mesothelioma. In: Glen, H.W., ed.. Proceedings of Asbestos Symposium, Johannesburg, 1977, Randburg, National Institute for Metallurgy, pp. 67-79 is! r.ws '
McDonald, J.C. (1980) Asbestos and lung cancer: has the case been'.'^
proven? Chest (in press)
.. '
T'
McDonald, J.C. & McDonald, A.D. (1977) Epidemiology of mesothelioma
from estimated incidence. Prev. Med., 6, 426-446
.
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McDonald, J.C., Liddell, F.D.K., Gibbs, G.tf., Eyssen, G.E. & McDonald, A.D. (1980) Dust exposure and mortality in chrysotlle mining, 1910-75. Br. J. ind. Med., 37, 11-24
.
McVittie, J.C. (1965) Asbestosls in Great Britain. Sci., 132, 128-138
Arm. N.I. Acad.
Miller, A.B. (1978) Asbestos fiber dust and gastrointestinal malig-
nancies. Review of literature with regard to a cause/effect rela-
tionship. J. ohron. Dis., 31, 23--33
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.. -
Newhouse, M.L. & Berry, G. (1973) Lancet, ii, .615'
Asbestos and laryngeal cancer.
Peto, J. (1978) The hygiene standard for chrysotlle asbestos. .v ,
Lancet, i, 484-489
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"
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Pooley, P.D. (1973) Mesothelioma in relation to exposure. In: Bogovski, P., Gilson, J.C., Tlmbrell, V. & Wagner, J.C., eds. Biological Effects of Asbestos (IARC Scientific Publications No. 8), Lyon, International Agency for Research on Cancer, pp. 225
222
Rubino, G.F., Pidlatto, G., Newhouse, M.L., Scansetti, G., Aresini, G. A. & Murray, R. (1979) Mortality of chrysotlle asbestos workers at the Balangero Mine, Northern Italy. Br. J. ind. Med., 36, 187-194
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Saracci, R. (1977) Asbestos and lung cancer: an analysis of the
epidemiological evidence on the asbestos-smoking interaction.
Int. J. Corner, 20, 323-331 ' - -
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Selikoff, I.J., Hammond, E.C. & Seidman, H. (1979) Mortality experl-, ences of Insulation workers in the United States and Canada, 1943-- . 1976. Arm. N.I. Acad. Sci., 330, 91-116
Shettigara, P.T. & Morgan, R.W. (1975) Asbestos, smoking and laryngeal cancer. Arch, environ. Health, 30, 517-519
Stell, P.M. & McGill, T. (1973) Lancet, ii, 416-417
Asbestos and laryngeal cancer.
Timbrell, V. (1973) Physical factors as etiological mechanisms. In: Bogovskl, P., Gilson, J.C. , Timbrell, V. & Wagner, .J.C., eda. Biological Effects of Asbestos (IARC Scientific Publications No. 8), Lyon, International Agency for Research on Cancer, pp. 295-303 ,
UICC Working Group on Asbestos Cancers (1965) Report. Br. J. ind.
Med., 22, 165-171
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Wagner, J.C. & Berry, G. (1973) Information obtained from animal experiments. In: Bogovskl, P., Gilson, J.C., Timbrell, V. & Wagner, J.C., eds. Biological Effects of Asbestos (IARC Scientific Publications No. 8), Lyon, International Agency for Research on
Cancer, pp. 285-288
Wagner, J.C., Sleggs, C.A. & Marchand, P. (1960) Diffuse pleural meso thelioma and asbestos exposure In the North Western Cape Province. Br. J. ind. Med., 17, 260-271
Weiss, W. (1977) Mortality of a cohort exposed to chrysotlle asbestos. J. occup. Med., 19, 737--740
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