The biopersistence of Canadian chrysotile asbestos following inhalation: Final results through 1 year after cessation of exposure

被引:51
作者
Bernstein, DM
Rogers, R
Smith, P
机构
[1] Rogers Imaging Corp, Needham, MA USA
[2] Res & Consulting Co Ltd, Fullinsdorf, Switzerland
关键词
D O I
10.1080/08958370590885663
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
Chrysotile asbestos, a serpentine mineral, has been shown to be notably different from amphibole asbestos such as amosite, crocidolite, and tremolite in that chrysotile once inhaled is rapidly removed from the lung while the amphiboles persist. This has been demonstrated for three different chrysotile samples from Canada, the United States, and Brazil. The initial results of the inhalation biopersistence study on the Canadian chrysotile were reported earlier. This article presents the full results through 365 days after cessation of exposure. In order to fully understand the dynamics of the clearance of chrysotile from the lung, the study included a standardised inhalation biopersistence study following the recommendations of the European Commission ( EC) Interim Protocol for the Inhalation Biopersistence of synthetic mineral fibers ( Bernstein & Riego-Sintes, 1999) in which the lungs were digested to evaluate fiber content remaining. In addition, confocal microscopy was used to examine lungs in three dimensions to determine where and what size the remaining fibers were in the lung tissue. The results showed that Canadian chrysotile is cleared from the lung with a clearance half-time of 11.4 days for the fibers longer than 20 mum. Canadian chrysotile clears in a range similar to that of glass and stone wools. It remains less biopersistent than ceramic and special purpose glasses and considerably less biopersistent than amphibole asbestos. At 1 yr after cessation of exposure, no long ( L > 20 mum) chrysotile fibers remained in the lung. In contrast, with amosite asbestos there were 4 x 105 long fibers ( L> 20 mum) remaining in the lungs at one year after cessation of exposure ( Hesterberg et al., 1998). These results fully support the differentiation of chrysotile from amphiboles reported in recent evaluations of available epidemiological studies ( Hodgson Darnton, 2000; Berman Crump, 2004).
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页码:1 / 14
页数:14
相关论文
共 20 条
[1]  
*AG TOX SUBST DIS, 2003, REP EXP PAN HLTH EFF
[2]   CHRYSOTILE ASBESTOS - COLLOIDAL SILICA SURFACES IN ACIDIFIED SUSPENSIONS [J].
ATKINSON, RJ .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1973, 42 (03) :624-628
[3]  
Berman D.W., 2004, TECHNICAL SUPPORT DO
[4]  
Bernstein D., 1999, 18748EUR
[5]   AN EXPERIMENTAL APPROACH TO THE EVALUATION OF THE BIOPERSISTENCE OF RESPIRABLE SYNTHETIC-FIBERS AND MINERALS [J].
BERNSTEIN, DM ;
MAST, R ;
ANDERSON, R ;
HESTERBERG, TW ;
MUSSELMAN, R ;
KAMSTRUP, O ;
HADLEY, J .
ENVIRONMENTAL HEALTH PERSPECTIVES, 1994, 102 :15-18
[6]   The biopersistence of Brazilian chrysotile asbestos following inhalation [J].
Bernstein, DM ;
Rogers, R ;
Smith, P .
INHALATION TOXICOLOGY, 2004, 16 (11-12) :745-761
[7]   Comparison of Calidria chrysotile asbestos to pure tremolite: Inhalation biopersistence and histopathology following short-term exposure [J].
Bernstein, DM ;
Chevalier, J ;
Smith, P .
INHALATION TOXICOLOGY, 2003, 15 (14) :1387-1419
[8]   Evaluation of soluble fibers using the inhalation biopersistence model, a nine-fiber comparison [J].
Bernstein, DM ;
Morscheidt, C ;
Grimm, HG ;
Thevenaz, P ;
Teichert, U .
INHALATION TOXICOLOGY, 1996, 8 (04) :345-&
[9]   The biopersistence of Canadian chrysotile asbestos following inhalation [J].
Bernstein, DM ;
Rogers, R ;
Smith, P .
INHALATION TOXICOLOGY, 2003, 15 (13) :1247-1274
[10]  
ETHERINGTON DJ, 1981, ACTA BIOL MED GER, V40, P1625