Predicting health effects of exposures to compounds with estrogenic activity: Methodological issues

被引:28
作者
Rudel, R
机构
关键词
estrogen; environmental estrogen; phytoestrogen; dose response; risk assessment; mechanism; pharmacokinetics;
D O I
10.2307/3433385
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Many substances are active in in vitro tests for estrogenic activity, but data from multigenerational and other toxicity studies are not available for many of those substances. Controversy has arisen, therefore, concerning the likelihood of adverse health effects. Based on a toxic equivalence factor risk assessment approach, some researchers have concluded that exposure to environmental estrogens is not associated with estrogen receptor (ER)-mediated health effects. Their rationale cites the low potency of these compounds in in vitro assays relative to estradiol, and the widespread exposure to pharmaceutical, endogenous, and dietary estrogens. This reasoning relies on two assumptions: that the relative estrogenic potency in in vitro assays is predictive of the relative potency for the most sensitive in vivo estrogenic effect; and that ail estrogens act via the same mechanism to produce the most sensitive in vivo estrogenic effect. Experimental data reviewed here suggest that these assumptions may be inappropriate because diversity in both mechanism and effect exists for estrogenic compounds. Examples include variations in ER-ligand binding to estrogen response elements, time course of nuclear ER accumulation, patterns of gene activation, and other mechanistic characteristics that are not reflected in many in vitro assays, but may have significance for ER-mediated in vivo effects. In light of these data, this report identifies emerging methodological issues in risk assessment for estrogenic compounds: the need to address differences in in vivo end points of concern and the associated mechanisms; pharmacokinetics; the crucial role of timing and duration of exposure; interactions; and non-ER-mediated activities of estrogenic compounds.
引用
收藏
页码:655 / 663
页数:9
相关论文
共 69 条
[21]   ESTROGENIC ACTIVITY OF THE INSECTICIDE CHLORDECONE (KEPONE) AND INTERACTION WITH UTERINE ESTROGEN-RECEPTORS [J].
HAMMOND, B ;
KATZENELLENBOGEN, BS ;
KRAUTHAMMER, N ;
MCCONNELL, J .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1979, 76 (12) :6641-6645
[22]  
HARRIS MW, 1996, TOXICOLOGIST, V30, P734
[23]  
HAYES CL, 1996, TOXICOLOGIST, V30, P182
[24]  
HUANG Z, 1996, TOXICOLOGIST, V30, P182
[25]   CROSS-TALK BETWEEN PEPTIDE GROWTH-FACTOR AND ESTROGEN-RECEPTOR SIGNALING SYSTEMS [J].
IGNARTROWBRIDGE, DM ;
PIMENTEL, M ;
TENG, CT ;
KORACH, KS ;
MCLACHLAN, JA .
ENVIRONMENTAL HEALTH PERSPECTIVES, 1995, 103 :35-38
[26]   A VARIETY OF ENVIRONMENTALLY PERSISTENT CHEMICALS, INCLUDING SOME PHTHALATE PLASTICIZERS, ARE WEAKLY ESTROGENIC [J].
JOBLING, S ;
REYNOLDS, T ;
WHITE, R ;
PARKER, MG ;
SUMPTER, JP .
ENVIRONMENTAL HEALTH PERSPECTIVES, 1995, 103 (06) :582-587
[27]   RAT UTERINE GROWTH AND INDUCTION OF PROGESTERONE-RECEPTOR WITHOUT ESTROGEN-RECEPTOR TRANSLOCATION [J].
JORDAN, VC ;
TATE, AC ;
LYMAN, SD ;
GOSDEN, B ;
WOLF, MF ;
BAIN, RR ;
WELSHONS, WV .
ENDOCRINOLOGY, 1985, 116 (05) :1845-1857
[28]   Inhibition of gap junctional intercellular communication in normal human breast epithelial cells after treatment with pesticides, PCBs, and PBBs, alone or in mixtures [J].
Kang, KS ;
Wilson, MR ;
Hayashi, T ;
Chang, CC ;
Trosko, JE .
ENVIRONMENTAL HEALTH PERSPECTIVES, 1996, 104 (02) :192-200
[29]   STILBESTROLS AND STILBESTROL DERIVATIVES - ESTROGENIC POTENCY AND TEMPORAL RELATIONSHIPS BETWEEN ESTROGEN-RECEPTOR BINDING AND UTERINE GROWTH [J].
KATZENELLENBOGEN, BS ;
IWAMOTO, HS ;
HEIMAN, DF ;
LAN, NC ;
KATZENELLENBOGEN, JA .
MOLECULAR AND CELLULAR ENDOCRINOLOGY, 1978, 10 (01) :103-113
[30]   PERSISTENT DDT METABOLITE P,P'-DDE IS A POTENT ANDROGEN RECEPTOR ANTAGONIST [J].
KELCE, WR ;
STONE, CR ;
LAWS, SC ;
GRAY, LE ;
KEMPPAINEN, JA ;
WILSON, EM .
NATURE, 1995, 375 (6532) :581-585