Document RJrkQ9dBVj2zGNxzwg9zE8Gvv
ALBERT C. CLARK TCCVHICMKtCWALMOIDinKeMcTrtM
MANUFACTURING CHEMISTS ASSOCIATION
1625 CONNECTICUT AVENUE, N.W. WASHINGTON, D.C. 20009 (202) 483-6126
August 30, 1974
George Roush, Jr., M.D. Monsanto Company 800 N. Lindbergh Boulevard St. Louis, Missouri 63166
Dear Dr. Roush:
Herewith is an invoice for payment of your company's proportionate share of research programs on the metabolism of vinyl chloride and on possible teratogenic properties of vinyl chloride, in accord with your earlier commitment. These programs were recently approved by the MCA Board of Directors. As they are now in progress by The Dow Chemical Company, an early response would be appreciated.
Although we now have commitments in support of additional chronic inhalation studies and a pro posed study involving a single massive exposure of mice to vinyl chloride, the final protocols have not been decided. A decision is expected soon and you will be advised accordingly.
Sincerely,
(/l^
ACC:tp
Enclosure
Bill for $1,200.00 for Monsanto's shareresearch program on metabolism and possible teratogenic properties of vinyl chloride sent to D. W. McDonald for payment on 9/4/74.
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MANUFACTURING CHEMISTS ASSOCIATION
1*2S CONNECTICUT AVENUE, N.W. WASHINGTON, O.C. 20009 {202) 4*3-6126
August 30, 1974
To:
Technical Task Group on Vinyl Chloride Research
Subject: Percutaneous Absorption of Vinyl Chloride Monomer
Gentlemen:
The Dow Chemical Company has made available to the Task Group the attached preliminary report from their company-sponsored studies on the percutaneous absorption of vinyl chloride. These data suggest that, in the rhesus monkey, although percutaneous absorption does occur, it is (if my slide rule didn't stick) less than 0.1% as rapid as the take-up by the lungs from an atmosphere of equal VCM concentration.
Sincerely,
KDj/mb
Enclosure
cc:
Dr. D. P. Duffield Mr. A. W. Barnes Dr. Tiziano Garlanda
Technical Task Group on Vinyl Chloride Research
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percutaneous absorption op vinyl CHLORIDE (VCM) gas in THE RHESUS MONKEY
By: R. Hefner, P. Watanabe, P. Gehring Dow Chemical U.S'.A. - Midland; Michigan
The experiments described herein were designed to de
termine the degree to which vinyl chloride monomer (VCM)
gas (Matheson Gas Products, Joliet, 111.# 99*9% purity)
may be percutaneously absorbed. A male Rhesus monkey
(Macaca mulatta) weighing 5 kg was used in the experi-
ment. Prior to exposure, 30 mg/kg sodium pentobarbital
was administered intravenously. An endotracheal catheter
with an inflatable collar was inserted into and the trachea
connected to a Harvard respiratory pump adjusted to deliver
a volume of 20 ml of air at a rate of 28 to 38 cycles per
minute. A catheter was placed in the saphenous vein of the
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left leg so that additional sodium pentobarbital could be
administered during exposure. The body of the monkey
was placed in a 191.5L plexiglas chamber with the head
protruding from the chamber through a silastic rubber membrane. After the hair around the neck had been
carefully removed with clippers the membrane was fitted
around the neck and secured to the skin with tape, to
provide an adequate seal. The body of the monkey rested
on 3 large glass bell jars in the chamber. A slight vacuum
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was pulled on the chamber, and 1.5L of VCM gas was metered
in to establish a VCM concentration of approximately 7000
ppm in the chamber. Chamber concentrations were periodically
monitored by infrared analysis (10.9 y).
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To trap VCM in the expired air, a polyethylene tube
filled with 0.5g of carbon made from saran beads was placed
in the exhaust port of the respiratory pump. A similar
tube placed on the intake port filtered any.VCM.from the
air pumped into the monkey. The expired air traps were changed at 1/2 or 1 hour intervals while the intake traps
were changed every 2 hours. The VCM from these traps was
eluted with carbon disulfide atadry Lee temperature and
analyzed by gas chromatography. Additionally, a sample,
of control saran carbon was checked for VCM.
It was found that the VCM concentration in 4the exposure chamber declined more rapidly when a monkey was
present than if empty, however, it was not possible to
attribute this difference solely to percutaneous absorption.
Comparison would be valid only if identical chamber
conditions could be obtained. This is .not possible since
an empty chamber could not be made to simulate the leakage
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characteristics, adsorption to fur, and thermal mixing
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characteristics in the test solution.
A nonkey was exposed to approximately 7000 ppm Cfr\rpu'' * - ? '"'* VOI (specific activity 0.180 yCi/mg) for 2 hours. .Immediately
post-exposure the monkey was sacrificed and tissues (brain,
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heart, lung, liver, muscle, stomach, duodemum, thymus,
spleen, mesenteric fat, testes, kidney) were sampled and homo
genized. Urine was taken from the urinary bladder and bile
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from the gall bladder. Aliquots of the tissue homogenates were combusted and the ^C-COj trapped in 2-methoxyethanolmonoethanolamine solution. The resulting CO2-2methoxyethanol-monoethanolamine solutions, as well as aliquots of urine and bile were counted in scintillation cocktails using a Mark II liquid scintillation counter. 14C activity in excess of twice background was detected in only the bile, kidneys, and liver. 1792 DPM of ^4C activity was in the bile, 11,352 DPM in the kidneys, and 105,821 DPM in the liver, for a total of 118,965 DPM. Expired air samples contained a total of 182,709 DPM for the 2 hour exposure period, thus a total of 314,618 DPM or 0.024% of the VCM (3.28 g or 1,316,987,916 DPM) in the chamber was absorbed percutaneously. over the 2" hour period. Of the total dose absorbed percutaneously, 39.4% was in the tissue, while 60.6% was in the expired air. The aforementioned experimental results demonstrate that small amounts of VCM are percutaneous ly absorbed by a monkey maintained under the described experimental conditions.
Assuming that the percutaneous absorption of VCM is proportional to the surface area of the body, extrapolating the amount absorbed by the monkey under the specified conditions to that which would be absorbed by a 6 ft, 90 kg
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man yields 4.76 109 of VCM. Possible influence of fur and clothing was not determined and,, therefore* not considered in making this extrapolation. However, this data indicates that the amount of VCM a man would absorb through the skin in an atmosphere containing 7000 ppm in two hours would be equivalent to the man breathing an atmosphere containing 0.186 ppm VCM for an eight hour working day. This theoretical calculation assumes that a 10 m^ volume of air was breathed over eight hours and all-.VCM was assimilated.
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