Document 8O3BBxmJBOONJ07Rwe3X4NZ8d
British Journal of Industrial Medicine 1987;44:96-100
Pulmonary fibrosis in asbestos insulation workers'*with lung cancer: a radiological and histopathological evaluation
H M KIPEN,* RUTH LILZ5, Y SUZUKI, J A VALCFUKAS, I J SELIKOFF From the Environmental Sciences Laboratory, Mount Sinai School ofMedicine ofthe City University ofNew York, New York, USA
abstract This study was undertaken to determine the relation between radiographic and histological manifestations of pulmonary asbestosis (interstitial fibrosis) in insulation workers who had died of lung cancer. Of 450 confirmed deaths from lung cancer a chest radiograph suitable for determining evidence of pneumoconiosis was obtained in 219. Of these cases, 138 also had a tissue specimen submitted that was suitable for histological study to determine the extent of histological fibrosis. There was a significant albeit limited correlation between the radiographic and histological findings (r -= 0-27, p < 0-0013). All 138 cases had histological evidence of parenchymal fibrosis; in 25(18%), however, there was no radiographic evidence of parenchymal fibrosis. In 10 cases (7%) both parenchymal and pleural disease were undetectable on the radiograph. Thus a negative chest radiograph does not exclude the presence of interstitial fibrosis (asbestosis) in a substantial propor tion of insulation workers previously exposed to asbestos who develop lung cancer.
Cancer of the lung is a leading cause of death in workers exposed to asbestos.' For example, it has been found to account for as much as one fifth (21%) of deaths in a large prospective mortality study of asbestos insulation workers.6
In individuals with lung cancer there are many different ways to assess retrospectively whether or not they have had significant exposure to asbestos. In the clinical setting exposure is often inferred from the presence of non-malignant effects of asbestos exposure: pleural fibrosis and interstitial pulmonary fibrosis.
Histopathologically, asbestosis includes diffuse interstitial pulmonary fibrosis developing as a con sequence of inhaling asbestos fibres; it is usually asso ciated with the presence of asbestos bodies, although these may vary in number and ease of demonstra tion.7 Clinical studies in manjiowever, often do not use histopathological criteria for the diagnosis of asbestosis but the more easily obtained and less invasive chest x ray (and clinical) data. Such radio-
Present address: Department of Environmental and Community Medicine, UMDNJ--Rutgers Medical School, Piseataway, NJ 08854.
Accepted 14 April 1986
logical and clinical evidence has been reported to be less sensitive to the presence of asbestosis (and other types of interstitial fibrosis) than histopathological examination.8 9 This study examines further the relation between the radiographic and histo pathological evidence of asbestosis in a population of asbestos insulation workers with lung cancer.
As part of a continuing cohort mortality study of 17800 members of the insulation workers' union (International Association of Heat and Frost Insu lators and Asbestos Workers, AFL-CIG, CLC), we examined deaths from lung cancer which occurred between January 1967 and September 1983.
Methods
IDENTIFICATION OF CASES FOR ANALYSIS
On learning from the union of a member's death, we requested death certificates, medical records, chest radiographs, pathology reports, and surgical nec ropsy pathological specimens, or both, from hospitals and attending physicians. These were reviewed and only after pathological confirmation of the presence of primary lung carcinoma was a case eligible for the further analyses described here.
96
Pulmonary fibrosis in asbestos insulation workers with lung cancer
97
RADIOLOGICAL AND PATHOLOGICAL
ASSESSMENT
Of the 450 pathologically confirmed lung cancers observed by September 1983, we obtained chest radiographs from 229, Of these, 219 were adequate for assessing interstitial pulmonary fibrosis. The chest radiographs had been taken at various times, any where from immediately preceding death to a few years before. When multiple films were available, the film that showed the earliest evidence of carcinoma was interpreted for the purposes of this study. To avoid confusion of radiological changes related to tumour with non-malignant changes of fibrosis, the radiological abnormalities in the hemithorax con tralateral to the side of the tumour were interpreted according to the ILO 1980 Internationa! Classification of Radiographs of Pneumoconioses.10
According to the International Classification, cate gory of profusion is based on assessment of the num ber of small opacities per surface unit by comparison with standard radiographs. Use of the ILO Inter nationa! Classification allows stratification of radio logically detectable small opacities (interstitial fibrosis) into the 12 catagories ranging from 0/- to 3/4 (0/0,0/1, 1/0,1/1,1/2, etc). Pleural changes were also graded in the standard fashion regarding width and extent according to the International Classification.
Initial chest x ray readings (by RL and HK) were made in the absence of any clinical information except for the date and cause of death--lung cancer. Where no tumour was radiologicatly evident, where previous therapeutic intervention was dearly evident, or where a diagnosis other than lung cancer and asbestosis was considered, clinical and pathology records were reviewed to provide information about the side of the cancer. Films taken before the onset of terminal illness often helped. On six films, the paren chyma was assessed on the side of the tumour because of obscuring contralateral disease such as pleural effusion or cardiac enlargement. On seven additional films, tumours were either not seen or were present
bilaterally, so a contralateral side could not be
identified. In all these cases we were confident of the
accuracy of the (possibly) ipsilateral reading, and
these cases are included in the analysis. All findings
were reviewed separately with a third reader (IJS),
and the consensus of the three readers is reported.
All cases have, by definition, a pathological diagno
sis of lung cancer by virtue of histological exam
ination of tumour tissue. Adequate tissue for micro
scopic assessment of the degree of parenchymal
fibrosis, however, was not always obtained, as when
the diagnosis of neoplasm was established by bron-
choscopic biopsy. Of the 219 cases with adequate
radiological data, 138 had enough non-malignant
pulmonary tissue submitted as part of a surgical
specimen, a biopsy, or a necropsy to permit the
assessment of the presence of absence of diffuse inter
stitial pulmonary fibrosis and its degree, on the level
of light microscopy. It is in these 138 cases that we
could compare the radiological and microscopical
evidence of asbestosis. Consistent with our tissue
sources, pathological analysis was often done on the
side ipsilateral to the tumour.
Grading of the degree of parenchymal fibrosis was
performed by YS according to a seven point scale:
Mw--No histological evidence of interstitial
fibrosis.
Minimal--Rare presence of focal, mild thickening
of the interstitium.*
Mild--Presence of multiple foci of an increased
amount of fibrosis in the interstitium. ,,
Moderate--Interstitial fibrosis associated with
obliteration of alveoli and showing early consoli
dation.
Severe--Pronounced fibrosis associated with con
solidation, honeycomb formation, and obliteration of
airways.
,
`The imersiitiunj includes the peribronchiolar, perivascular, alveolar septal, and sitbpteurai connective tissues. Interestingly, however, asbestos related diffuse pulmonary interstitial fibrosis starts in the peribronchiolar connective tissue.
Histopathotogical and radiologicalfindings, ( Complete absence ofx ray changes including pleural abnormalities shown in parentheses)
X ray profusion ofsmall opacities
Histopathotogicalfibrosis
No ofcases
Minima!
Mild
Moderate
Severe
Totals
0/0
0/1
1/0
1/1 1/2 2/1 2/2 2/3
3/2 3/3 Totals
5(2)
5
2(1)
11(6)
7(1)
20
i1
5 6 13
i 2 20 16 "39
6 6 12
1 5 ? 13
1 10 ? IS
I3
4
25
7
]6
7
2 7 66 63 138
,98 Kipen, Lilts Suzuki, Vatciukas, Selikoff
Fig 1 Distribution patterns ofradiological small irregular opacities (median and mean SD derivedfrom the / to 12 code) and ofhistopathohgwal changes (median andmem SD derivedfrom the 1 to 6 code usedfor numerical transformation of severity offibrosis). (See text.)
Intermediate categories of mild-moderate and Results
moderate-severe were read in a few cases, yielding
seven gradations of fibrosis. (For representational Of the 138 cases, 113 (82%) had radioiogicaliy
purposes only the four major categories are shown in detectable small irregular opacities (ILO profusion
the table, with intermediate readings included in the equal to or greater than 1/0). The mean degree of
next higher category.)
profusion was 5-8 (SD 2-3), corresponding to between
1/1 and 1/2 on the ILO scale (fig!).
In all 138 cases there were histopathologicai signs
statistical analysis
of diffuse interstitial fibrosis. The mean degree was 4-7
The major radiographic variable analysed was the (SD 1-3), corresponding to between moderate and category of profusion of small irregular parenchymal severe on the scale (fig I). One or more asbestos bod
opacities. Categories of profusion beginning with 0/ ies were seen in 94% of cases (130/138).
were assigned sequential integer values front 1 to 12 coded such that 0/- = I, 0/0 = 2, 0/1 =* 3, and so on up to 3/4 12. Pathological gradings of fibrosis from
Profusion of radioiogicaliy detectable small irregu lar opacities was significantly correlated with the degree of microscopic fibrosis (r 0-27, p < 0-0GI3)
"none" to "severe" were similarly assigned successive (fig 2 and table).
integer values from 0 to 6.
Of the 138 cases, 94 (68%) had a radioiogicaliy
The presence or absence of asbestos related pleural detectable pleura! abnormality (circumscribed or
thickening, including diaphragmatic plaques, was the ^diffuse pleural fibrosis, calcification).
other major radiographic variable analysed. The
The. presence/absence of any pleural abnormality
width of tangential pleural thickening was also scored and treated as a separate variable.
Descriptive statistics were calculated for each vari
on the chest radiograph was not significantly cor related with the profusion of irregular opacities (r = 0-09, p = 0-29) nor with the extent of micro
able. Because the variables were ratings, non- scopic fibrosis (r = 0-12, p - 0-16).
parametric correlational procedures were used.
The width of tangential pleural thickening was
Spearman correlation coefficients were calculated for significantly correlated with profusion of small irreg
all pair combinations of variables using the SAS ular opacities (r = 0-33, p < 0-0075) but not with
program.
microscopic fibrosis (r = -- 0 09, p = 0-46).
Pulmonary fibrosis in asbestos insulation workers with lung cancer
99
g 3/3|3/2-
5 2/3g 2/2S2fl-
r=Q-272 p<0-0013
with the degree of microscopic fibrosis (r = 0-11, p = 0-22) (fig 3).
Duration from onset of asbestos work to death in the 25 radiographically negative cases (32'8 y) was not significantly less than that of the group as a whole (34-1 y 8-4 y).
g 1*3 i/i- i. i/o- *
H 0/1'
* * m
Discussion
The first reports associating lung cancer with asbesr tosis appeared in 1935115 2 and many studies since
then have convincingly shown an increased incidence
| 0/0 j
of lung cancer in asbestos exposed workers.1 ~5 All
' 1-----------fTM Min Mild
common cell types occur more frequently.1314
T
'''' 1----------
''
'l
Mod Mod Severe
In this large study of exposed asbestos insulation
Severe
workers parenchymal fibrosis was present in all those
Degree of histopathotogieol fibrosis
Fig 2 Correlation between radiographic and histopathologicai assessments ofinterstitial pulmonary fibrosis in 138 insulation workers with lung cancer fr = 0-27,
with lung cancer whose pulmonary tissues were microscopically examined. Jt has been estimated that asbestos exposures in this group were generally in the range of 4~15 fibres per ml.15 Because of the large size
p < 0 0013).
of this cohort (17 800, with 485 of the first 2275 deaths
In 18% of the cases {251138} interstitial pulmonary fibrosis of asbestosis was not radiographically detectable (small Irregular opacities not seen) although diffuse interstitial fibrosis was invariably present on microscopic examination {1381138} (table).
Pleural thickening and plaques were also absent in f 0 of the 25 cases without radiographically detectable interstitial fibrosis, making 7% of the 138 films negative for any evidence of benign asbestos related pleuropulmonary changes. Pulmonary fibrosis by histopathologicai assessment was moderate or severe in nine of these ten.
Duration from onset of asbestos work to death was significantly correlated with radiological profusion of small irregular opacities (r = 0-24, p < 0-006) but not
due to lung cancer6), it seems probable that a large majority (perhaps all) of the lung cancers developing in similarly exposed workers will occur in the pres ence of microscopic fibrosis. This is confirmed by the recent report that 90% of a cohort of British asbestos factory workers who died with lung cancer had histo logical evidence of asbcstosis.5 Radiological data were not"reported for this group,
In the insulation workers whom we are following up, an increasing radiographic profusion of small opacities was found with increasing duration from onset of exposure. Longer exposures presumably rep resent greater cumulative exposure to asbestos dust. No such correlation was found between duration from onset of exposure and the pathological grading. This may be explained by the high proportion of cases
with moderate or severe fibrosis (93%). Most of these
cases had probably passed some relative threshold of
exposure beyond which moderate fibrosis usually
develops. Analysis of groups with shorter duration
from onset of exposure (10 to 20 years) might well
yield a higher correlation between the amount of
fibrosis on histopathologicai study and the duration
from onset as a measure of exposure.
It is well known that for interstitial pulmonary
fibrosis to become radiologkaily detectable, a certain
amount of fibrotie change has to haveJeveloped; the
summation effect will then produce the irregular
opacities visible on the posteroanterior chest x ray
film, allowing the diagnosis of interstitial pulmonary
fibrosis to be made. The same summation effect oper
ates in the case of small rounded opacities, character
Duration tram onset of exposure (years) Fig 3 Correlation between durationfrom onset of insulation work {in years} and radiographic profusion ofsmall irregular
istic of silicosis or coal worker's pneumoconiosis. Unless a certain minimum number (and size) of nod ules have developed, rounded opacities do not
opacities (r = 0-24, p < 0-006).
become recognisable on the radiograph.
100 Kipen, Lilis, Suzuki, Valciukas, Seiikoff
Interstitial fibrosis was*_tno radiographically Conclusions
detectable in the parenchyma of 25 (18%) of our 138 cases with lung cancer. Pleural abnormalities associ ated with asbestos exposure (pleural thickening, plaques, or calcification) were also absent in 10 of the 25 cases in whom parenchyma! fibrosis was radio logically undetectable, making the presence of asbes tos related disease completely hidden (in the absence of tissue examination) in 7% of the 138 cases of lung cancer in this series.
Published reports on the relationship between radiographic and histopathological manifestations of asbestos related disease are sparse. Although no study has previously reported on this relation in individuals with lung cancer, our findings are in accord with two large studies of patients with various intersitial fibroses including asbestosis. From an unselected series of patients with chronic diffuse infiltrative lung disease, six of 58 patients (!0%) with asbestosis
We have found that in the presence of lung cancer
occurring in asbestos insulation workers with
occupational asbestos exposure asbestosis was invari
ably present when 'histopathological findings were
used as the criterion for diagnosis. Discrepancies in
the results of radiological and pathological exam
ination for interstitial fibrosis were present in 18% of
those heavily exposed insulators and may be even
more sion
frequent at of pleural
lower levels thickening
of exposure. The inclu-: as an indicator of
s
significant asbestos exposure may help to reduce, but
will not eliminate, errors made on this basis. These
findings indicate the primacy of the history of asbes
tos exposure, irrespective of the presence or absence ft
6of non-malignant x ray changes (asbestosis) when
considering lung cancer possibly associated with
occupational exposure to asbestos.
confirmed by biopsy had normal radiographs.8 Simi References
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