Document vBk2vBDmbzNEGMB6kMLN2YjGw
Industrial Hygiene Digest
December, 1067
1191
are many questions which have to be answered such as: whether different kinds of fibers
exert the same biological effects; the nature of the dose-disease relationship; sources and
extent of environmental contamination; the range of industrial exposure; the range of neoplastic
effects of asbestos exposure; and whether asbestos bodies may not sometimes result from
mineral fibers other than asbestos.
-- APCA Absts.
Fiber Glass. Chemistry and Technology. C. P. McCord. J. Occ. Med. 9, 339-344 (July, 1967).
Fiber glass, like all common forms of glass, is a chemically inert substance. It possesses no known toxic properties. On a mechanical basis, spicules may abrade the skin leading to superficial and transitory irritation. Among fiber glass makers, particularly new workers who are most exposed, skin irritation occurs,' but is not remarkable. Although free silica is a major primary ingredient of the batch before melting, no free silica occurs in the glass fibers or in the ultimate products. Silicosis is not a fiber glass hazard. The present consen sus is that, because of the particle size, fiber glass is not respirable, and thus unlikely to reach the alveoli of the lungs, but it may reach the tissues of the upper respiratory tract. In animal experiments the introduction of fiber glass particles into the respiratory tract has failed to provoke pneumoconiosis. However, some minor tissue changes have been observed, chiefly reflecting a foreign-body reaction. Fiber glass is not a known carcinogen. Animal experimental work with fiber glass particles introduced into the.lungs has failed to provoke lung cancer. No clinical cases of lung cancer have been traced to fiber glass as the source. A fair number of chemicals in ancillary use in fiber glass production may possess some harm ful properties. As example, the number includes partially polymerized resins of phenol formaldehyde, urea formaldehyde and epoxies, and fluorides, and trichloroethylene. Such substances involve the fiber glass makers, whose exposures are not contemplated in this pre sentation, but do not carry over to secondary fabricators, to installers, or to consumers. All considered, fiber glass, on a relative basis, is one of the least harmful substances known to industry.
1192 Pulmonary Hazards From Exposure to Glass Fibers. A. N. M. Nasr. J. Occ. Med. 9, 345-348 (July, 1967).
The results from animal experiments and human experience with respect to the effects of
fibrous glass upon the respiratory tract have been reviewed. The opinion that inhalation
of glass fibers may result in irritation of the upper respiratory tract, with no prospect of
significant pulmonary involvement, is repeatedly encountered in the literature. The size
of the glass fibers in common application and their tendency to form felt-like masses upon
any object with which they come in contact probably prevent inhaled glass fibers from pen
etrating into the pulmonary alveoli. Three cases in which exposure to fibrous glass was
associated with the development of inflammatory lung disease have been reported by in
dividual authors. In those cases the illness was acute, and infection played the major
role. A case of bronchial asthma in association with exposure to fibrous glass has been
also reported.' In all four cases, no appraisal was made concerning other air contam
inants that may have been present in the work environment. In a limited number of work
ers who had been exposed for years to glass fibers, cardiac and pulmonary-function studies
revealed no functional impairment. As far as could be ascertained from a search of the
American and European literature, available evidence indicates that fibrous glass is a
relatively inert material with no fibrogenic or other significant toxic properties. There
are 23 references.
-- Author's summarv
PHYSICAL ASPECTS OF THE ENVIRONMENT
1193 Barometric Pressure Fluctuations: Effects on the Activity of Laboratory Mice. R.L. Sprott. Science 157, 1206-1207 (September 8, 1967).
Fluctuations in naturally occurring levels of barometric pressure appear to be an important determinant of activity in laboratory mice. In three experiments, activity was higher after increases in barometric pressure than it was after decreases. When the barometric pressure remained relatively stable, intermediate levels of activity were observed. -- Author's abst.
18.
03122725