Document OzLQvr6X30NJV16869vkkRkXQ
Saint Lukes Hospital
JtL VhLJ.j Ck~.l 11311 Shakir Boulevard
Cleveland. Ohio 44104
April 8, 1969
Mr. Frank Zimmerman National Gypsum Company 325 Delaware Avenue Buffalo, New York 14202
Dear Frank,
Enclosed is a copy of the proposal that ha*s been submitted to our Scientific Committee by Doctors, Weill and Ziskind of New Orleans. Our Committee has not looked at this officially as yet, and will not do so until sometime in May. It has been circulated.
As I indicated to you on the telephone today, I hope that 70U will look at this, especially from the point of view of whether or not there is anything there that might be troublesome for National Gypsum Company, and which we could avoid-by making the necessary adjustments at the outset. I can only repeat that these are two very high-caliber people, and they are as anxious as I am to do the work properly and without causing disturbance where it is at all avoidable.
I will be in town on Monday, the 14th, and if there blems will appreciate knowing about it on that day. seeing Bill Duncan on the 18 and 19th and will talk
it.
are any pro I will fc2
to him about
With best wishes.
GWW:vk Enclosure
George Wp Wright, M.D. Director of Medical Research
PLAINTIFF'S EXHIBIT
36G35
A STUDY OF THE HEALTH EFFECTS RELATED TO ASBESTOS EXPOSURE IN WORKERS OF THE INDUSTRY AND OTHER RESIDENTS OF NEW ORLEANS
Introductory State ment
New Orleans is well represented in the manufacture of asbestos
cement products, an industry which accounts for the major use cf asbestos
liber in the United States. There has been increasing interest in the role of
long term asbestos fiber inhalation in the production of pulmonary and pleural
neoplasms. This interest extends not only to the workers in the manufacturing
plants using asbestos materials but also to the community at large, particular: y those individuals living in areas adjacent to the industrial installations where
the fiber is used. Carcinogenic or co-carcinogenic properties of asbestos
have become apparent since improved industrial hygiene techniques have led
to dust suppression with the result that workers incur a smaller risk of early
development of diffuse pulmonary fibrosis and cor pulmonale. In addition,
the better control of infectious diseases has also resulted in greater longevity
for the workers and larger numbers are surviving to develop malignancies.
Since pleural mesotheliomas have been adequately associated with prolonged
exposures to asbestos dust, these tumors in addition to the pulmonary and
gastrointestinal carcinomas and peritoneal mesotheliomas must be sought for
in populations thought to be at increased risk due to their occupational or
geographic proximity to the asbestos industry.
3GG3G
* .'
2
Although the clinical, radiographic, and pulmonary physiologic
abnormalities encountered in classical cases of asbestosis have been recognized
for many years, several patterns of dlff-is**
.H.i tea pe have emerged in local
plant worker
Those different radiographic and physiologic patterns are un
doubtedly related to varying mixed dust exposures, although all of these
workers who develop diffuse pulmonary infiltrations with or without respiratory
functional impairment are labelled as having Masbestosi6The investigators
have evidence that a significant number of these workers may actually have
simple silicosis or silico-asbestosis as a result of exposure to silica dust ir t
the plants which produce asbestos cement products. There is an obvious need
for identifying these individuals with abnormal deposits in their lungs, correlatin
the x-ray, clinical and physiologic changes with the exact nature of their work
exposures and properly identify their pulmonary disease. It is of interest to
note that inhalation of asbestos dust has been thought to foster the retention of
quartz dust with a resultant pulmonary disease which followed sooner and
attained a more serious grade than could have been expected on the basis of
mere additive action. Whether this experimental finding has clinical application
in the production of disease in workers of this industry should be investigated.
The importance of correlating radiologic changes with pulmonary functional
impairment is further demonstrated by the finding that where this mixed dust a
exposure produced widespread nodulation (as seen in workers from the local
manufacturing installation) it was associated with little or no clinical symptoms
and normal pulmonary function.
3C637
Research Plan:
3
It is proposed that this investigation be conducted in two phases,
one involving the workers of the Johns Manville and National Gypsum Plants
in New Orleans, and the other dealing with selected portions of the New Orleans
population outside the plant. During the first year, the Phase I investigation
will be actively started as outlined below. The community study, or Phase II,
will undergo intensive planning during the first year with full employment of
consultative resources so that a meaningful active program can be started at
the beginning of the second year, aimed at assessing the risk of the develop-
ment of pulmonary or pleural neoplasia outside the plant but as the result.jaf.,
.Jprolonged environmental exposure to asbestos dust Marked stability of
residence in the New Orleans population will significantly aid the follow-up of
the study groups.
I. Phase I
The aim of this portion of the investigation is to determine the
frequency, functional effect, and extent of abnormal diffuse pulmonary infil
trations secondary to occupational dust exposures in the Johns Manville and
National Gypsum plants which in New Orleans produce a variety of asbestos
cement products. Current chest x-ray films, including the PA, right anterior %
oblique and left anterior oblique projections, will be carefully examined in
all workers for the presence of abnormal parenchymal infiltrations. Ir.divi-
duals with abnormal lung fields will be further studied in the Pulmonary Function
Laboratory, Department of Medicine, Tulane University School of Medicine.
3CG38
4
At this time, complete clinical information will be gathered with particular
emphasis on the detailed occupational history, the presence of respiratory
or cardiovascular symptoms, and the physical examination. These individuals
will then have complete studies of pulmonary function including the measurements
of lung volume; ventilatory capacity, including the parameters of air flow rates;
pulmonary mechanics, including compliance and airway resistance, arterial
blood gas measurements at rest and during exercise; and determination of the
pulmonary diffusing capacity, using the carbon monoxide single breath method.
Clinical, radiographic, and physiologic data obtained will be correlated with
the length and type of work exposure. Plant records and previous medical
history will be fully utilised for this purpose.
The incidence of pleural fibrosis and/or calcification will be determined
in this group of workers. Pulmonary function studies will also be completed
in those individuals with pleural changes but no detectible infiltrations in the
lungs. ^^^th^j^rk^r^ will have a brief questionnaire administered ;n order
to survey the presence of respiratory symptoms and, in addition, simple
ventilatory tests performed in order to detect the presence and severity of
diffuse airways obstruction so that this process will not be confuse f with the
potential effect of prolonged dust exposure.
.
An important part of this investigation will be its prosp?ctive aspects,
which will include the careful clinical, physiologic, and radiograrhic follow-v.p
of all of these workers in future years, whether they continue employment in
. 36G39
another type of work. ^
the plant, retire, or change to
The late development
5
of pleural or pulmonary changes will thus be detected even though asbestos
exposure has not been continuous. It is suggested that all future employees
at these two plants be included in this study and have pre -cmployment radio-
graphic and ventilatory examination. In this way changes related to the
development of chronic obstructive pulmonary disease can be separated from
dust effects on the lungs.
The identification of pulmonary, pleural, or abdominal malignancies
in these workers will, of course, result from the stfcdy as outlined above. In
raddition, individuals who have worked in these plants in the past will be carefully
traced and their current health surveyed.! In those workers who have expired, an energetic attempt will be made to ascertain the cause of death and, when
possible, autopsy data will be reviewed and the worker's physician contacted.
Because of the imperfections known to be associated with the collection of this
type of retrospective data, the prospective aspect of the search for malignant
change in asbestos workers will be strongly emphasized. During the long
term period of this study, every effort will be expended to obtain autopsy or
other pathologic documentation of the cause of death ir. workers who have been
employed in these plants. Information gained from the plant work records will
lead to correlation of the onset of the malignant disease with the onset of
occupational exposure, the years of exposure, any latent period during which
3GC40
p
6
the occupational exposure had ceased, and the residential history. Parti cular attention will be directed toward individuals who develop thoracic or abdominal malignancies and who had very short exposures to asbestos fiber v--____________ ___________ ___ twenty ot more years ago.
Another aim of this investigation will be to characterize the present and past plant conditions in regard to dust exposure and measures undertaken for its control and to detect any consequent change in incidence or type of disease. Workers and executive personnel who have been employed in these plants for long periods of time will be carefully questioned in this regard and attempts will be made to quantitate impressions of changing dust_concer.trations with actual particle counts obtained in the past. Jobs resulting in high dust exposures will be identified in order to correlate disease patterns with various jobs which are associated with different degrees of dust exposure. It is anticipated that particle and fiber counts will be made in these two plants periodically in the future and that the resulting data will be made available to the investigators. II. Phase II
The aim of the community investigation will be to provide data which will help to assess the risk of individuals outside the plant developing malignancies related to asbestos fiber exposure. The complexity of this problem requires a detailed planning stage which is projected for the first year of this overall program. During this period discussions will be conducted by the investigators and consultative advice will be sought both in New Orleans
3GC31
7
and from workers in other areas. It is expected that a workable and productive epidemiologic design will result from this planning phase and that the active part of the community investigation will begin in the second year.
0
The advisability of implementing a citywide "ferrugenous body" survey will be considered and this, together with a system for reporting pleural meso theliomas, will be discussed with local pathologists. Case detection of
t mesotheliomas can be increased by a systematic search of the hospital records. An attempt will also be made to gain information regarding the incidence of this tumor and geographic location of these patients from past and present cancer surveys which are being conducted in this city. In future,,years other occupational exposures to asbestos materials may also be considered and a more definitive plan of investigation involving insulation workers will be discussed during Phase II of this proposal. Early in this investigation the application of modern statistical and computer techniques will be planned for the collection, retrieval and analysis of data relating to the plant and community study groups.
b. Data colle :ted from a careful prospective study of the asbestos cement industry will be highly significant if it helps to answer some of the difficult questions poseci by the incomplete information on human health effects
resulting from this exposure. Can the early diffuse changes of asbestosis be detected by x-ray or modern pulmonary function testing so that further deterioration of function as a result of advancing disease will be prevented?
3GG42
8
Will the acknowledged rei'.-ction of dust concentrations in the industry over
the past several years ha\ *.n effect on the incidence of fibrotic and neoplastic
disease? Is bronchogenic
dnoma of asbestos workers seen only in those
individuals who are also c` ; ette smokers, as has been suggested, and does
this increased incidence o' bronchogenic carcinoma in exposed subjects, also
include individuals without the parenchymal changes of asbestosis ? We hope
that this investigation will provide useful information on these problems to industry and^Dthers interested]in occupational health. This study will help
to evaluate the usefulness of new tools for the stud^ of this environmental exposu such as ferru'genous body counts, atmospheric fiber counts, and^selected pul monary physiologic parameters. Certainly, recent studies have provided conflicting opinions concerning many of these vital points. It has been evident that an integrated approach has usually been lacking and often information regarding environmental occupational conditions is available but not correlated with human health effects, or the reverse is true. It is this common pitfall which we hope to avoid in our proposed investigation.
c^ The Human Righhts Committee of the Tular.e Medical School will review tills proposed study. Only standard and accepted methods for the
collection of clinical, radiographic, and physiologic data will be used. d. The facilities of the Tulane Pulmonary Diseases Section and
0
Pulmonary Functior. Laboratory will be fully utilized for this investigation. The we.l equipped and modern Pulmonary Function Laboratory contains the following pieces of major equipment: Several spirometers and gas analyzers
36G13
9
for the measurement of lung volumes and ventilation; blood gas analyzers with
Pc>2 PcO2 ant^
electrodes, Scholander gas analyzers for analysis of
expired air; appropriate pneumotachygraph screens; electrical transducers;
pre-amplifie'rs, integrators, and oscilloscope for the measurement of pul
monary compliance; body piethysmograph and appropriate attachments for the
measurement of airway resistance and thoracic gas volume; gas chromatograph
.and carbon monoxide infrared analyzer for alveolar gas analysis in measure
ment of pulmonary diffusing capacity. A second system for the collection of
alveolar gas samples in diffusing capacity measurements is being requested in
the budget, in addition to two portable waterless spirometers far use in the
plants.
III. Previous work done on this project
a. The investigators have conducted a number of studies in the field
of occupational and environmental respiratory disease. A bibliography and
selected reprints are included with this application. Additionally, a number
of cases from the local asbestos cement industry demonstrating varying patterns
of diffuse respiratory disease has come to the attention of our group. Cases of
P1 eural mesotheliomas from within and outside the plant have also been
IV. Perscnal Publications Weill. H., Ziskind, M. M. , Dickerson, R.C. and Dcrbes, V.J. * Allergenic air pollutants in New Orleans. J. Air Pol. Control Assn. 15:467, Oct., 1965
36614
10
Weill, H. , Ducchner, II. A., Gonzalez, E., Herbert, S.J., Aucoin, E. , Ziskind, M.M.: Bogassosis: A study of pulmonary function in 20 cases. Ann. Int. Med. 64:737, 1966
For cman, Spencer, Weill, Hans, Duke, Roy, George, Ronald and Ziskind, Morton: Bullous disense of the lung: Physiologic improvement following surgery. As;n. Int. Med., 69:757, 1969
Weill, Hans, George. Ronald, Munsokul, Narong, Ziskind, Morton, and Buechner, Howard: Management of acute respiratory failure in chronic obstructive pulmonary disease. Submitted for publication
Weill, Hans, George, Schwarz, Marvin, Ziskind, Morton: Evaluation of pulmonary function after acute exposure to chlorine gas. Am. Rev. Resp. Dis., March, 1969
V. Results obtained by Others
1. Selikoff has found a very high incidence of asbestosis in insulation workers
after twenty years of exposure. Additionally, he found pleural calcification in
one-fourth of these workers exposed for more than twenty years. These investi
gators also found a significantly increased incidence of bronchogenic carcinoma
and mesotheliomas in these workers.
2. Thomson and Bader in separate studies confirmed that asbestosis results
in reduction in lung volume, disturbance of gas transfer and increased stiffness
of the lungs (reduced pulmonary compliance). Evidence of airways obstruction
was only rarely encountered.
3. McVittie showed that intra-thoracic malignancy accounted for 40% of
the deaths in a group of asbestos workers.
4. Thomson found that 30% of urban males living in Cape Town, South Africa,
or Miami, Florida, had asbestos bodies demonstrated in the lungs at autopsy,
an indication of the wide exposure to asbestos fiber among the general population.
Attention has recently also been directed to the possible role of talc ancl other
36G15
%,
/
n
fibers in the production of ferrugcnous bodies by Cralley.
5. Knox and Doll have found that with the decreasing dust concentrations
in an asbestos textile plant the current risk of developing bronchogenic
carcinoma is ^considerably less and may perhaps hot be above the expected
general incidence.
These are brief illustrations of recently reported studies. The
current literature indicates an increasing public concern regarding the
association of asbestos exposure and neoplasia. There is also the strong
indication that diffuse pulmonary fibrosis is now occurring later in the life
of an asbestos worker and its incidence may be decreasing. VI. Biographical Sketches are attached.
1
3CC16
>
PROPOSED BUDGET *
12
Personnel
Hans Weill, M. D. , Principal Investigator ' Morton Ziskind, M. D., Co-Investigator Research Associates (3) Carmel Wagenspack, Field Coordinator Pulmonary function technician Clerk TIAA
FICA
25% 25% 30% 100% 100% 100%
$ 4,500 5, 000 -
11, 000 7, 000 4, 000 2,460 1,091
Consumable Supplies
Analyzed gases Parts for gas chromatograph Electrodes for blood gas analysis Esophogeal balloons (at $8.00 each) Chemicals, buffers, etc. Glassware and tubing Maintenance of equipment Clerical and secretarial supplies, telephone Photographic and reproduction expense
1,500 500 500
-soo
500 500 1, 500 2, 000
1,000
8, 500
Other Expense
Biostatistical and computer consultations Travel and other expenses for Field Coordinator
and study subjects Travel for investigators, meetings and conferences Radiologic expenses ($20 for each complete chest
survey) Sub-total
1,000 3, 000
2, 000 2,000 ___________
8, 000 51,551
Overhead Rate (45. 2% of S&W
.
14, 23S
Permanent Equipment
Box balloon-spirometer collecting system for pulmonary diffusion measurements
Jones Pulmonar Spirometers, 2 at $300 each
2,500 600
3, 100
Total
$ 68,889
* The first year budget is largely devoted to the initiation of the plant study and planning for the non-industrial phase of the investigation. Future budget requirements will in addition include the cost of carrying out the community stud