Document Xzme0E8bDkngJYRJOmevave7R
FILE NAME Talc TALC
DATE 1971
DOC TALC149
DOCUMENT DESCRIPTION Memorandum of a Symposium Asbestos and Talc Aug 3 1971 with Cover Letter from the FDA
i, a ed
~
DEPARTMENT OF HEALTH FDUCATION AND WELFARE
PUBLIC HEALTH SERVICE FOOD AND DRUG ADMINISTRATION
WASHINGTON DC 20204
Catch^r_6 Catch^r_6 1971
To
Participsats in Asbestos and Talc Discussion Session at FDA on August 3 1971
Attached
:
in a summary of our recent Discussion
many of you know I have
proceduzca from all ofof
At
work this writing
proceed with the LynthesisLynthesis of
circulatedcirculated for comments
these
into into a
are
package package package package
package
package package
con
Thank you once again for your assistance and pasticipation
Sincerely yours Wester Alfred Wester Wester
Alfred Alfred
Wester
Wester
Alfred Alfred
Wester Wester Wester
Wester
Product TechnologyTechnologyTechnology Technology
CPC2-00000001
MEMORANDUM OF A SYMPOSIUM
August 3 1971
ASBESTOS AND TALC
Held at the Food and Drug Administration 200 C Street S.W.
Washington D.C. 20204
Moderator Dr. Alfred Weissler Director Division of Colors & Cosmetics Technology
SUMMARY
The amount of asbestos fibers in talcum powder
health hazards associated with their presence
interest but differing reports
products and the inhalation are subjects of current
At a symposium held on August 3 at the Food and Drug Administration attende
by over 40 scientists physicians and consumers it was generally agreed
manufacturers that most talcum powders of major
asbestos
are
Nevertheless on behalf of consumers FDA is working laboratory procedure for the analysis of asbestos in will give consistent meaningful resulta
on the talcum
details powders
of a which
Accurate analyses for the amount of asbestos in talcum powder will be
obtainable according to many of the participants only through the use of
a battery of specialized instruments and techniques including ray diffrac
tion polarizing optical microscopy electron microscopanyd electron
_ diffraction of selected particles
In addition to extensive discussions of the analytical methods for asbestos used by various laboratories the group also considered such topics as the medical significance of asbestos and other fibers and the mineralogy of
asbestos and tald ore deposits
INTRODUCTION
Dr. Weissler opened the meeting by outlining some of the events which had
brought the question of asbestos particles in tale to the attention of FDA
He indicated that in response to a letter from Jerome Kretchmer Administrat
Environmental Protection Agency New York City to HEW Secretary Richardson
on June 28 1971 the FDA was
tos particles in talc
taking
steps
to
investigate
the
problem of
asbe
CPC2-00000002
As a first step the FDA would like to establish a laboratory procedure for the determination of asbestos in talcum powder products that will give meaningful and consistent results Once the methodology is agreed upon FDA would be in a position to determine if such products on the market
contain asbestos fibers
The format of the meeting consisted of short presentations by each participant followed by informal discussions which served to pool the knowledge of the experts present A list of the discussion topics is attached
GENERAL DISCUSSION
1 Dr. Ross of the U.S. Geological Survey made the first presentation Dr. Ross a minerologist outlined the various associations of asbestos mineral species with talc During this presentation and the discussion which ensued the following salient points emerged
a Definition Asbestos is a generic term for a variety of hydrated silicate minerals which have one common attribute
the ability to be separated into relatively soft silky fibers Although the name is ordinarily associated with those varieties which have technologic importance it is applicable to all minerals which fit the above descriptions The term asbestoform
minerals is perhaps most descripti1 ve
b The known varieties of asbestoform minerals can be divided
into two main classes on the basis of their crystal structures serpentine and amphiboles The sole member of the serpentine class is chrysotile asbestos which is by far the most common of
the asbestoform minerals It accounts for more than 95 of the
asbestos fiber produced today
There are five recognized asbestoform varieties of amphibole
crocidolite amosite anthophyllite tremolitaned actinolite
Although the amphiboles are common rock forming minerals the asbestoform varieties are much less abundant than chrysotile 1
c The empirical formula of talc and some asbestoform minerals can
be represented as follows
.
Talc Mg3 Si4 010 OH
Serpentine Class
Chrysotile Mg3 Si2 05 OH
1 Speil S. and Leineweber J.P. Environmental Research 2 166-208 1969
CPC2-00000003
Amphibole Class
Page 3
Anthophyllite Mg Fe Sig 022 OH 2
Tremolite Ca2 Mgs Sig 022 OH
Actinolite Caq Mg Fe Sig 022 OH
d It is not unusual to find large variations in the composition of a mineral within a relatively small area of a given deposit The differences depend to a great extent on the mineralogy
involved
2. Dr. Cralley of the National Institute for Occupational Safety and Health spoke on the fibrous content of cosmetic talcum products Hia
. presentation centered in part on a paper he authored entitled
Fibrous and Mineral Content of Cosmetic
dustrial Hygiene Association Journal 29
conclusions were made in this paper
Talcum Products Amer In350-4 1968 The following
With the exception of 4 of the 22 cosmetic talcum
products analyzed the levels of free silica cobalt
nickel chromium and manganese were generally of a
low magnitude and within a narrow range It is not known whether the four products represent a significant proportion of sales in the industry or to what
extent the sources of the talc in these four form-
lations are the same as sources of talc specified for use in other talcum products in the competitive
market in these to be of
The levels of silica chromium and nickel four products are sufficiently high however concern in their potential to cause disease
All of the 22 talcum products analyzed have an appreciable fiber content ranging from 8 to 30 by count of the total talcum particulates and averaging 19
The fibrous material was predominantly talc but probably contained minor amounts of tremolite anthophyIlite and chrysotile as these are often present in
fibrous talc mineral deposits Cosmetic talcum products should be included as a source of the fibers from which may be derived ferruginous bodies observed in the lungs of humans The meaning of the presence of these ferruginous bodies however is uncertain
3. The third discussion topic on the program dealt
medical significance of asbestos and other fibers
themselvetso this topic
.
with the biological and Three speakers addresse
a Dr. Selikoff of Mount Sinai School of Medicine outlined briefly the
history fibrosis in asbestos workers which has been known to
when officials the medical
years ago
profession for over 30
he met with FDA
years He reported that a few
there was no apparent
CPC2-00000004
Page 4
problem presented to the general population with regard to asbestos It was considered at that time to be mainly an occupational problem He reported that recently acquired knowledge has greatly increased his concern over the whole question of asbestos fibers the environment He felt
that the new dimension added to the problem was the possibility that lung cancer may result even from exposures at
less than occupation levels
b Dr. Hildick Director of Clinical Research for Johnson and Johnson & outlined briefly the medical aspects of
talc production and uses He reported that & has been in the talc business for over 70 years Talc along with a whole host of other materials can give rise to a biological response
& has not noted any adverse effects from the use of talc in either their employees or reported in the literature
Tole manufactured by J is highly refined to produce a platy talc Available data indicates that there is no health hazard associated with the use of cosmetic grade talc It was aiso pointed out that talc introduced surgically does not apparently cause mesotheliomas
c Dr. Gross of the Medical University of South Carolina reported
that there is very little if any data on the effects of talc in
man or animal Intratracheal injection of talc in hamsters
caused no ill effects In these animals no lung scarring was
seen Asbestos particles do not cause lung damage
less than 5 microns in length This point however has not
reportedly
'
been
definitely confirmed
4. Dr. Kraybill of FDA's Bureau of Foods reported that the subject of
asbestos in food and the environment had been evaluated within the past few years and that no need for regulatory action was indicated Recent
events however may require that the problem be restudied
Dr. Barzilai of the Bureau of Drugs reported that particulate matter in drug products are under study and that he would be very interested in learning about the analytical methodology which can be used for the identification of small particles
5. Morris Kaplan of Consumers Union indicated that we always seem to be looking at problems after they occur rather than anticipating them He hoped that existing knowledge on the subject of asbestos and talc would
be resolved in the interest of the consumer rather than in the interest
of the producer
CPC2-00000005
Page 5
6. Dr. Estrin of the Cosmetics Toiletry and Fragrance that the Association was ready to join with FDA and the to determine if there is a consumer safety problem with
Association reported academic community
talc
ANALYTICAL METHODOLOGY
The afternoon session was devoted to a discussion of analytical methods that could be used for the identification and determination of asbestos in talc Six presentations were given outlining methods used in various laboratories
1 Mr. Eisenberg of the Division of Microbiology reported on optical
methods such as the use of the polarizing microscope for the
detection of asbestoform minerals in tale
3 Dr. Levin a consultant for Whittaker Clark and Daniels reported
that ray powder diffraction woulbde an ideal screening techniqu
for rapidly determining which samples of talc contain asbestos
minerals He indicated that there are talcs on the market which
appear to be objectionable
4. Dr. Langer and Dr. Maggiore of Mount Sinal reported that they use the following techniques to detect and determine asbestoform miner
als light microscopy ray powder diffraction electron microsco
electron microprobe and electron diffraction During the discussi
that followed Dr. Langer's presentation he was asked if he had
analyzed a sample referred to as 344 from Johnson and Johnson
He said that he had and that it was a high quality talc He
added that all the talc producers represented at the meeting pro-
duced a high quality talc product'
.
5 Dr. Norwood of Charles Pfizer and Company agreed that ray diffra
tion woulbde the method of choice for the analysis of asbestos in
talc He indicated that by using step scanning and other sophisti
techniques you could probably detect down to 0.1 of chrysotile ir
talc
6. Dr. Nashed of Johnson and Johnson introduced Dr. Rolle who made
available a table which outlined Methods of Analysis of Fibers in Talc Copy attached Dr. Rolle recommended that optical microscopy be used as a first step in detecting fibers in tale If very few or no fibers are seen electron microscopy with elect diffraction should be used If many fibers are seen ray diffract
should be used
CPC2-00000006
Page 6
7. In closing the meeting Dr. Weissler thanked the participants and
summarized the most promising approaches which might be used to determine
the presence of asbestos in talc Detailed procedures on analytical
methodology be sent to FDA by some of the participants at the meeting
and these will be synthesized by FDA and circulated
for comments
nig
nnigig nig John John a
Assistant Chief Cosmetics Branch Division of Colors & Cosmetics Technology
The following people attended the symposium
Lewis J. Cralley Ph.D.
National Institute of Occupational Safety and Health Cincinnati Ohi
Irving J. Selikoff M.D. Arthur M. Langer Ph.D. William J. Nicholson Ph.D. C. J. Maggiore Ph.D.
Sinai School of Medicine
" " It
Malcolm Ross Ph.D.
U. S. Geological Survey
Wilson Nashed Ph.D. Gavin Hildick R. F. Rolle Ph.D. T. H. Shelley Ph.D.
A. Goudie Ph.D.
M.D.
G. R. Grieger Ph.D. Consultant
Dr. Norwood
Harold D. Stanley Jr. Ph.D.
Commr Harold Romer
S. R. Mountsier Jr.
Prof. S.Z. Lewin Consultant
Paul Gross M.D.
Sidney Speil Ph.D.
Morris Kaplan
Norman Estrin Ph.D. Murray Berdick Ph.D.
. Charles Pfizer & Company
"
N.Y.C. Dept. of Air Resources
Whittaker Clark & Daniels
"
Medical University of South Carol Manville
Consumers Union
Cosmetic Toiletry & Fragrance As
$
-
CPC2-00000007
Herman F. Kraybill Ph.D. Robert M. Schaffner Ph.D. Alfred Weissler Ph.D. John M. Gowdy M.D. Sylvan H. Newburger Ph.D.
John A. Wenninger Charles J. Kokoski Ph.D.
George Thompson Ph.D. Dennis J. McGrath M.D.
J. W. Cook
Byman R. Gittes William V. Barzilai M.D. Jule K. Lamar M.D.
Mrs. Manjeet Singh Armand R. Casola Ph.D. M. A. Weinberger M.D.
Paul E. Corneliussen
K. S. Heine
Albert C. Kolbye M.D.
"
Page 7
Food and Drug Administration
11 t
.
It
19
" 1 " 11 " = = = = =
.
=
CPC2-00000008
METHOD
tical . croscopy
anning
ectron croscopy
ectron roscopy
FIBER QUAL
ANALYSIS QUANT
Yes Presence
and Kind of
Fiber
Yes Point Point
and Area Count
MINIMUM PARTICLE SIZE DETECTABLE
~ 0.5...m
Presence of
Fiber
Yes Point
and Area Count
~
0.14
Yes Presence
and Kind of
Fiber
Yes
Point
and Area Count
~ 0.01...
LOWER LIMIT OF DETECTABILITY
Not Applicable
Not Applicable
Not Applicable
lay fraction
Kind of Fiber
Yes
+
wt.
Minimum Particle Size for Diffraction
is ca. 0.1... 0.1...
~ 0.5
#
More Favorable
Cases
From R. F. Rolle Ph.D.
Johnson and Johnson Research Division
New Brunswick N.J.
08903
TIME
FOR QUANTITATI ANALYSIS
1/2 Day
One Day
One Day
Two Hours to a Day Depending on Metho
CPC2-00000009
DIVISION OF COLORS AND COSMETICS TECHNOLOGY FOOD AND DRUG ADMINISTRATION
WASHINGTON D.C.
ASBESTOS AND TALC
Discussion Session August 3 1971 Room 1409 200 C Street
Moderator Dr. Alfred Weissler
S.W.
Discussion Topics
1. Asbestos and Talc Mineral Deposits - Dr. Malcolm Ross U.S. Geological Survey
,
2 Fibrous Content of Cosmetic Talcum Products - Dr. L. J. Cralley
NIOSH
Biological
Significance of Asbestos and Other Fibers -
Dr. I. J. Selikoff Mt. Sinai School of Medi
|
Dr. G. Hildick Johnson & Johnson
Dr. Paul Gross Medical University of S.C.
Current FDA Interests in Asbestos - Dr. R. E. Barzilai Bureau of Drugs
Dr. J. K. Lamar Bureau of Drugs Dr. H. F. Kraybill Bureau of Foods
Consumer Interest in Asbestos - Morris Kaplan
Consumers Union
Cosmetics Industry Interest in Asbestos - Dr. Norman Estrin
CTFA -
6
Analytical Methods for Asbestos - William Eisenberg FDA Dr. S. Speil Johns Manville S. R. Mountsier Jr. Whittaker Clark & Dr. A. M. Langer Mt. Sinai Dr. Norwood Chas Pfizer & Company Dr. W. Nashed et al Johnson & Johnson
CPC2-00000010