Document 99VJBOvLqjgJm1OZYDyr04zyp
British Journal of Industrial Medicine 1982;39:344-348
Mortality of two groups of women who manufactured gas masks from chrysotile and crocidolite asbestos: a 40-year follow-up
E D ACHESON,' M J GARDNER,' E C PIPPARD,' AND L P GRIME2
From the MRC Environmental Epidemiology Unit,' University of Southampton, Southampton General Hospital, Southampton S09 4XY, and Lancashire Area Health Authority, Pendle and RossendaIe> Burnley General Hospital, Burnley BB10 2PQ, UK
abstract Two groups of women were exposed to asbestos while manufacturing gas masks in Lancashire before and during the second world war. One group (in Blackburn) is believed to have been concerned almost exclusively with the manufacture of civilian respirators (containing chrysotile) while the other (in Leyland) made respirators for the armed Forces (containing crocidolite) and a much smaller number of civilian respirators. Excess mortality ascribed to lung cancer and ovarian cancer were found at the second factory (statistically significant at the 1 % level) but not at the first. Mesothelioma was mentioned on the death certificates of five women who had worked in Leyland and one woman in Blackburn.
The starting point of this study was an attempt to define two populations similar in other ways, exposed respectively to crocidolite and chrysotile asbestos in the manufacture of gas masks. It was known that the standard respirators issued to the armed Forces of the British Commonwealth before and during the second world war contained filters consisting of activated charcoal, merino wool, and West Australian crocidolite.1 Studies of the mortal ity of factory workers employed in manufacturing Service respirators in Nottingham, England, and Ottawa, Canada, have been published.1-5 Both groups of workers have suffered from excess mortal ity due to mesothelioma of the pleura and peritoneum. A study of women who worked in the Nottingham factory has also shown excesses of cancer of the lung and ovary.4
In Britain respirators were also manufactured to protect the civilian population. A contract was placed with a factory in Blackburn. Lancashire, in 1936 to manufacture more than 70 million civilian gas masks and work continued in this factory until the end of the war. From contemporv data (Ministry
Requests for reprints to: Professor E D Acheson.
Received 14 December 1981 Accepted 18 February 1982
of Supply, Home Office, and War Office papers
1927-45) and analysis of the contents of surviving
masks, civilian gas masks are known to have con
tained chrysotile, charcoal, and merino wool but not
crocidolite.
..
At Leyland, Lancashire, the same firm operated a
factory that from 1927 held a monopoly tor the
manufacture of gas masks for the armed Forces. At
an unknown date in the 1930s these respirators were
modified to contain crocidolite, and gas masks of the
improved type continued to be manufactured there
throughout the war and thereafter. Industrial gas
masks containing crocidolite were made there until
1969. From the testimony of workers it is known
that some civilian gas masks containing chrysotile
were also made during the war at the Leyland fac
tory. Some workers travelled from Preston to work
in the Leyland factory.
We describe the mortality during 1951-80 of the
two groups of female gas mask makers. The 570
women resident in Blackburn were working in 1939
at the factory that manufactured civilian respirators
containing chrysotile. The 757 women resident in
Leyland (435) and Preston (322) were engaged in
1939 principally in manufacturing Service
respirators and had been exposed to crocidolite but
also to some chrysotile. They are referred to here
after, for convenience, as the Leyland group.
jMortality of two groups of women who manufactured gas masks
345
Method
Using the National Health Service Central Register, staff of the Office of Population Censuses and Sur veys searched the records of everyone resident in September 1939 at Leyland, Preston, and Black burn. They identified those whose occupations at that time indicated that they were manufacturing gas masks. The vital status of these workers on 30 June 1980 was ascertained, and in the case of those who had died the date and cause of death was abstracted.
The main analysis was restricted to women, thus excluding the 95 men employed at Leyland and the 58 employed at Blackburn. The number of deaths expected in these women was calculated using the person-years method,5 and compared with the number observed. Deaths from 1 January 1951 to 30 June 1980 were included, and five-year age group cause-specific death-rates for five-year calen dar periods were used to calculate the expected numbers.67 The rates used were for England and Wales as a whole, and an area correction was then incorporated into the analysis to adjust for local mortality during the years 1968-78. Although these years do not span the .whole period of 1951-80 they
Table 1 Female gas mask makers by status, person-years
offollow-up, and area
Leyland
No %
Size of group
Status at 30 June 1980: Alive Died (before 1951) Died (after 1950) Embarked
Person-years of follow-up from I January 1951-30 June 1980
757 100
493 65 27 4
219 29 18 2
18 781
Blackburn
No %
570 100
367 64 21 4
177 31 51
14 324
are the only ones for which rates for Leyland, Pre
ston, and Blackburn are available. Tests of the
statistical significance of the observed number of
deaths compared with the numbers expected are
based on the Poisson distribution.
The average age of each group of women in 1939
was 28-3 years, although the spread of ages was
slightly greater in Leyland than in Blackburn (the
standard deviations are 8-7 and 7-2 years respec
tively).
I. netaU loo/kets
Results
fi*\oJ slujy
Z. SWt dcfl-rhz (ll \(f. oJTable 1 shows the basic follow-up information c
the women in each area. A few left England ar
()
WWales during the period, and their vital status sul
sequent to embarkation is unknown. Also, the sms ?. `/j ef bM (jftuf
number of deaths occurring before 1951 has bee di'U (z($ sM fa JtiJj
omitted from the main analysis as having only
short elapse time since exposure in 1939. Overa QyJ wd- 0W 60
about a third of each group have died, and most
those still alive were over 60 in 1980.
(fanfcf
effects?)
In table 2 the general mortality experience of tl
two groups of women during 1951-80 is set oi
Both groups showed a statistically significant exce
of deaths from all causes combined compared wi
the numbers expected on the basis of rates for En
land and Wales. In Leyland, after adjustment f
local area mortality, this excess is principally due
deaths from cancer. On the other hand, for Blac
bum there is only a slight excess of deaths from
cancer, but there is a large increase in deaths from
other causes. On breaking the latter down into indi
vidual causes the excess can be shown to be due to
deaths from acute myocardial infarction (ICD No
410, 8th revision).8
Mortality from malignant neoplasms is given by
site in table 3 for the leading causes of death from
cancer in women. Only sites with more than five
Table 2 Mortality offemale gas mask makers in Leyland and Blackburn between 1 January 1951 and 30 June 1980, and
relation to local area mortality
Cause of death
Area
Gas mask makers . No of deaths Obs Exp
Standardised mortality ratio
SMR
L
u
All causes
Leyland
219
185
118*
103
135
Blackburn
177
128
138**
119
160
All malignant Leyland
neoplasms
Blackburn
66 44
54 123 41 109
95 156 79 146
Other
Leyland
153
131
117
99 137
causes
Blackburn
133
88
152**
127
180
'P < 0 05. "p < 0 01. T * Lower 95% confidence limit. U = Upper 95% confidence limit.
Area mortality ratio
Ratio gas mask makers SMR to area SMR
110 1-07 116 1-19*
95 1-29* 103 106
114 103 119 1-28*
348 Acheson, Gardner, Pippard, and Grime
mortality of female asbestos workers. Sr J hid Med 1972;29:134-41.
Newhouse ML, Pearson RM, Fullerton JM. Boesen EAM, Shan non HS. A case control study of carcinoma of the ovary. Sr J Prcv Soc Med 1977:31:148-53.
11 Swerdlow M. Mesothelioma of the pelvic peritoneum resembling papillary cyst adenocarcinoma of the ovary. Am J Obsiet Gyr--"' 1 QSQ;77:197--200.
11 Keal EE. Asbestosis and abdominal neoplasias. Lancet 1960;ii:12l 1-6.
11 Chan PSF, Balfour TW, Bourke JB, Smith PG. Peritoneal mesothelioma. Br 7 Surg 1975;62:576-80.
" Morgan A, Holmes A. Concentrations and characteristics nf amphibole fibres in the lungs of workers exposed to crocidolite in the British gas mask factories, and elsewhere, during the second world war. Br J lnd Med 1982;39:62-9.
Vancouver style
All manuscripts submitted to the Br J lnd Med should conform to the uniform requirements for manuscripts submitted to biomedical journals (known as the Vancouver style).
The Br J lnd Med, together with many other international biomedical journals, has agreed to accept articles prepared in accordance with the Vancouver style. The style (described in full in Br MedJ, 24 February 1979, p 532) is intended to standardise requirements for authors.
References should be numbered consecutively in the order in which they are first mentioned in the text by Arabic numerals above the line on each occasion the reference is cited (Manson1 confirmed other reports2-5 ...). In future refer ences to papers submitted to the Br J lnd Med should include: the names of all authors if there
are six or less or, if there are more, the first three followed by et al\ the title of journal articles or book chapters; the titles of journals abbreviated according to the style of Index Medicus; and the first and final page numbers of the article or chapter.
Examples of common forms of references are:
1 International Steering Committee of Medical Editors. Uniform requirements for manuscripts submitted to biomedical journals. Br Med J 1979;1:532-5.
1 Soter NA, Wasserman SI, Austen KF. Cold urticaria: release into the circulation of histamine and eosino phil chemotactic factor of anaphylaxis during cold challenge. N Engl J Med 1976;294:687-90.
1 Weinstein L, Swartz MN. Pathogenic properties of invading micro-organisms. In: Sodeman WA Jr, Sodeman WA, eds. Pathologic physiology: mechanisms of disease. Philadelphia: W B Saunders, 1974:457-72.