Table 4.5 Genetic and related effects of DDT in non-human mammals in vitro

Similar documents
DICHLOROACETONITRILE. 1. Exposure Data

DIBROMOACETONITRILE. 1. Exposure Data

GLYCIDALDEHYDE. 1. Exposure Data

1,4-BENZOQUINONE (para-quinone) 1. Exposure Data

Lecture -2- Environmental Biotechnology

Comparison of different genotoxicity tests in vitro for assessment of surface water quality E. Dopp, J. Richard, S. Zander-Hauck

Genotoxicity Testing Strategies: application of the EFSA SC opinion to different legal frameworks in the food and feed area

Genotoxicity of formaldehyde in vitro and in vivo. Günter Speit

DIMETHYLCARBAMOYL CHLORIDE. 1. Exposure Data

NITRILOTRIACETIC ACID AND ITS SALTS. 1. Exposure Data

SECTION 1 CHEMICAL PRODUCT AND COMPANY IDENTIFICATION COMPOSITION, INFORMATION ON INGREDIENTS

Mutagenesis. David M. DeMarini, Ph.D. University of North Carolina at Chapel Hill.

Scientific Opinion of the Panel on Food Additives, Flavourings, Processing Aids and Materials in Contact with Food (EFSA-Q G)

VICH GL23: Studies to evaluate the safety of residues of veterinary drugs in human food: genotoxicity testing

Genetic Toxicology. Toxicology for Industrial and Regulatory Scientists

COMMITTEE FOR VETERINARY MEDICINAL PRODUCTS

DISCUSSION GROUP 3. Mechanism of carcinogenicity. EFSA Scientific Colloquium on Acrylamide carcinogenicity, 22/23 May

METHYL IODIDE. 1. Exposure Data

(Question No EFSA-Q K) (Adopted on 3 July 2007)

COMMITTEE FOR VETERINARY MEDICINAL PRODUCTS

COMMITTEE FOR VETERINARY MEDICINAL PRODUCTS

MATERIAL SAFETY DATA SHEET

Scientific opinion on genotoxicity testing strategies applicable to food and feed safety assessment 1

CALIFORNIA ENVIRONMENTAL PROTECTION AGENCY DEPARTMENT OF PESTICIDE REGULATION MEDICAL TOXICOLOGY BRANCH SUMMARY OF TOXICOLOGY DATA BENEFIN

Scientific opinion on genotoxicity testing strategies applicable to food and feed safety assessment 1

The effect of REACH implementation on genotoxicity and carcinogenicity testing Jan van Benthem

International Agency for Research on Cancer (IARC) - Summaries & Evaluations

COMMITTEE FOR VETERINARY MEDICINAL PRODUCTS

MATERIAL SAFETY DATA SHEET

Chapter 2. Mitosis and Meiosis

Committee for Risk Assessment RAC. Opinion proposing harmonised classification and labelling at EU level of. acetaldehyde; ethanal

CHLOROTHALONIL. 1. Exposure Data

SISTER CHROMATID EXCHANGE FREQUENCY AND CHROMOSOME ABERRATIONS IN RESIDENTS OF FLUORIDE ENDEMIC REGIONS OF SOUTH GUJARAT

Chapt 15: Molecular Genetics of Cell Cycle and Cancer

COMMITTEE FOR VETERINARY MEDICINAL PRODUCTS

Scientific Opinion on Flavouring Group Evaluation 78, Revision 1 (FGE.78Rev1):

Genotoxicity of 2-Hydroxy-1,4-naphthoquinone (Lawsone, CAS )

Table of Validated and Accepted Alternative Methods

ESTIMATION OF TOXICITY TO HUMANS

ENVIRONMENTAL REGULATIONS AND STANDARD SETTING Health Based Standards: Oncology - Luc Hens

EFSA Panel on Food Contact Materials, Enzymes, Flavourings and Processing Aids (CEF) 2,3. European Food Safety Authority (EFSA), Parma, Italy

EFFECTS OF IONIZING RADIATION United Nations Scientific Committee on the Effects of Atomic Radiation

Cell Division and Inheritance

BIOLOGY - CLUTCH CH.15 - CHROMOSOMAL THEORY OF INHERITANCE

BENZYL ACETATE. 1. Exposure Data

Glyphosate Hazard and Risk Assessment: A Comparison of the Approaches of Two International Agencies

X-RAY-INDUCED CELL KILLING AND MUTATIONS IN CULTURED HUMAN CELL LINES (XERODERMA PIGMENTOSUM CELLS AND HELA 53 CELLS)

(Question No EFSA-Q M) (Adopted on 3 July 2007)

Section 9. Junaid Malek, M.D.

Antimicrobial AlphaSan Test Report Summary Table 08/21/01

Chapter 8: Cellular Reproduction

The Comet Assay Tails of the (Un)expected

Computational Systems Biology: Biology X

GLYPHOSATE (addendum)

Development of Screening Tests for

Flavouring Group Evaluation 51, (FGE.51) 1

SCIENTIFIC OPINION. EFSA Panel on Food Contact Materials, Enzymes, Flavourings and Processing Aids (CEF) 2, 3

Example: Distance in M.U. % Crossing Over Why? Double crossovers

Safety and Toxicity Custom Services

SEX. Genetic Variation: The genetic substrate for natural selection. Sex: Sources of Genotypic Variation. Genetic Variation

Summary of Toxicity Studies on Imazapyr

COMMITTEE FOR VETERINARY MEDICINAL PRODUCTS

Mugimane Manjanatha, Ph.D

Cell Division and Mitosis

DDT (General Fact Sheet) For more technical information, please refer to the Technical Fact Sheet

A gene is a sequence of DNA that resides at a particular site on a chromosome the locus (plural loci). Genetic linkage of genes on a single

GENOTOXICITY: SPECIFIC ASPECTS OF REGULATORY GENOTOXICITY TESTS FOR PHARMACEUTICALS *)

(Question No EFSA-Q F) (Adopted on 16 May 2007)

COMMITTEE FOR VETERINARY MEDICINAL PRODUCTS

MUTATIONS, MUTAGENESIS, AND CARCINOGENESIS. (Start your clickers)

Genomic Instability Induced by Ionizing Radiation

AZIRIDINE. 1. Exposure Data

Lecture: Variability. Different types of variability in Biology and Medicine. Cytological essentials of heritable diseases. Plan of the lecture

1,3-PROPANE SULTONE. 1. Exposure Data

August 2007 Check you have the most recent fact sheet by visiting

(Z)-1-Chloro-2,3,3,3-tetrafluoropropene (2017)

The bases on complementary strands of DNA bond with each other in a specific way A-T and G-C

Cellular Reproduction Chapter 8

A review of human carcinogens -Part F: Chemical agents and related occupations

Darwin s dilemma 8/14/2014. Meiosis & Inheritance Lecture 18 Summer Mitosis & Meiosis. The Modern Synthesis

Cell Division. The Process of Cell Division Section Section 10.2: The Process of Cell Division 12/8/2010

COMMITTEE FOR VETERINARY MEDICINAL PRODUCTS

Committee for Risk Assessment RAC. Opinion proposing harmonised classification and labelling at EU level of. cobalt

CoCAM 2, April 2012 INITIAL TARGETED ASSESSMENT PROFILE

COMMITTEE FOR VETERINARY MEDICINAL PRODUCTS

FULL PRESCRIBING INFORMATION: CONTENTS*

Opinion of the Scientific Panel on food additives, flavourings, processing aids and materials in contact with food (AFC) on a request related to

VIROLOGY. Engineering Viral Genomes: Retrovirus Vectors

Mastery. Sexual Reproduction and Meiosis. Chapter Content CHAPTER 3 LESSON 1. Directions: Study the diagram. Then answer the following questions.

Ploidy and Human Cell Types. Cell Cycle and Mitosis. DNA and Chromosomes. Where It All Began 11/19/2014. Chapter 12 Pg

The Cell Cycle CHAPTER 12

Genotoxic and acute toxic properties of selected synthetic cannabinoids

Chapter 11 Gene Expression

BIOLOGICAL DISTRIBUTION. Prokaryotes

HYDROGEN PEROXIDE HUMAN HEALTH EFFECTS. CAS No.: EINECS No.: REPORT VERSION: Draft of 24 April 2001

1042SCG Genetics & Evolutionary Biology Semester Summary

The bases on complementary strands of DNA bond with each other in a specific way A-T and G-C

COMMITTEE FOR VETERINARY MEDICINAL PRODUCTS

EPICHLOROHYDRIN. 1. Exposure Data

Transcription:

Table 4.5 Genetic and related effects of DDT in non-human mammals in vitro Species Tissue, cell line End-point Test Results Dose out Rat Primary hepatocytes DNA Alkaline elution NT 106 μg/ml DDT Sina et al. Rat Primary hepatocytes DNA UDS assay NT 35 μg/ml DDT Probst et al. Rat Primary hepatocytes DNA UDS assay NT 35 μg/ml DDT Maslansky & Williams Mouse Primary hepatocytes DNA UDS assay NT 35 μg/ml DDT Maslansky & Williams Mouse, Balb/c Primary hepatocytes DNA UDS assay NT 35 μg/ml p,p -DDT Klaunig et al. (1984) Chinese hamster Primary hepatocytes DNA UDS assay NT 35 μg/ml DDT Maslansky & Williams Chinese hamster V79 cells DNA Alkaline elution 354 μg/ml DDT Swenberg et al. Chinese hamster V79 cells DNA Alkaline elution 1060 μg/ml DDT Swenberg Rat Liver epithelial cells ARL/HGPRT assay NT NR DDT Telang et al. Rat, Fisher Primary hepatocytes Host-mediated assay (in vitro) NT 10 4 M DDT Tong et al. Mouse Balb/c 3T3 fibroblasts Cell transformation assay + + 10 μg/ml DDT Fitzgerald et al. (1989) Mouse Embryo cells Cell transformation assay NT 15 μg/ml p,p -DDT Langenbach & Gingell (1975) Chinese hamster V79 cells Hprt mutation assay NT 14.2 μg/ml p,p -DDT Tsushimoto et al. Chinese hamster V79 cells Hprt mutation assay NT 35 μg/ml p,p -DDT Kelly-Garvert & Legator (1973)

Table 4.5 Genetic and related effects of DDT in non-human mammals in vitro Species Tissue, cell line End-point Test Results Dose out Chinese hamster V79 cells 6-thioguanine (6-TO) resistance assay Rat, kangaroo Potorous tridactylis aplicalis Aneuploid established cell line Chinese hamster V79 cells Chinese hamster B14 F28 cells Rabbit, New Zealand White Artic beluga whale Delphinapterus leucas Lymphocytes Skin fibroblasts Diphtheria toxin (DT) resistance assay NT 14.2 μg/ml p,p -DDT Tsushimoto et al. NT 14.2 μg/ml p,p -DDT aberrations + NT 10 μg/ml p,p -DDT Palmer et al. (1972) + NT 10 μg/ml o,p -DDT aberrations NT 45 μg/ml p,p -DDT Kelly-Garvert & Legator (1973) aberrations + NT 49 μg/ml 4h p,p -DDT Mahr & Miltenburger aberrations NT 100 μg/ml p, p -DDT Hart et al. (1972) Micronucleus formation + 10 μg/ml p, p -DDT Gauthier et al. (1999) +, positive;, negative; DDT, dichlorodiphenyltrichloroethane; HIC, highest ineffective concentration; LEC, lowest effective concentration, NT, not tested; UDS, unscheduled DNA synthesis

Table 4.6 Genetic and related effects of metabolites of DDT in non-human mammalian cells in vitro Species Tissue, cell line End-point Test Results Concentration out Rat Rat Rat Mouse Primary hepatocytes Primary hepatocytes Primary hepatocytes Primary hepatocytes DNA Alkaline elution + NT 95 μg/ml p,p -DDE Sina et al. DNA UDS assay NT 31 μg/ml DDE Maslansky & Williams DNA UDS assay NT 2000 μg/ml p,p -DDE Williams et al. (1982) DNA UDS assay NT 31 μg/ml DDE Maslansky & Williams Mouse Embryo cells Cell transformation assay Mouse Mouse Mouse Chinese hamster L5178Y mouse lymphoma cells L5178Y mouse lymphoma cells L5178Y mouse lymphoma cells Wild-type V79 cells (6TG s ) and a 6TG-resistant clone, T2 14 cells (6TG r ) NT 15 μg/ml p,p -DDE Langenbach & Gingell (1975) TK mutation assay + + 30 μg/ml p,p -DDE Clive et al. (1979) TK mutation assay + NT 25 μg/ml p,p -DDE McGregor et al. (1988) Hprt mutation assay + NT 16 μg/ml p,p -DDE Amacher & Zelljadt (1984) Inhibition of cooperation assay + NT 10 μg/ml DDE Kurata et al. (1982) + NT 2.5 μg/ml TDE

Table 4.6 Genetic and related effects of metabolites of DDT in non-human mammalian cells in vitro Species Tissue, cell line End-point Test Results Concentration out Chinese hamster Rat, kangaroo Potorous tridactylis aplicalis Chinese hamster Chinese hamster V79 cells Hprt mutation assay + NT 25 μg/ml p,p -DDE Kelly-Garvert & Legator (1973) Aneuploid established cell line V79 cells CHO cells aberrations aberrations aberrations Sister-chromatid exchanges + NT 10 μg/ml p,p - DDE Palmer et al. (1972) + NT 10 μg/ml o,p -DDE + NT 10 μg/ml p,p -DDD + NT 10 μg/ml o,p -DDD NT 100 μg/ml p,p - DDA + NT 35 μg/ml p,p -DDE Kelly-Garvert & Legator (1973) 60 μg/ml DDE Galloway et al. (+) 5 μg/ml DDE Chinese B14 F28 cells + NT 44 μg/ml 4 h p,p -DDE Mahr & hamster aberrations Miltenburger + NT 41 μg/ml 4 h p,p -DDA NT 75 μg/ml 4 h p,p -DDD +, positive;, negative; DDA, 2,2-bis(4-chlorophenyl)-acetic acid; DDD, dichlorodiphenyldichloroethane; DDE, dichlorodiphenyldichloroethylene; DDT, dichlorodiphenyltrichloroethane; HIC, highest ineffective concentration; LEC, lowest effective concentration, NT, not tested; TDE, 1,1-dichloro-2,2-bis(p-chlorophenyl)ethane; UDS, unscheduled DNA synthesis

Table 4.7 Genetic and related effects of DDT in non-mammalian systems Phylogenetic class Species, strain, tissue End-point Test Results Concentration out Invertebrates Insects Zebra mussel, Dreissena polymorpha Shrimp, Litopenaeus stylirostris Shrimp, Litopenaeus stylirostris Drosophila melanogaster y/r(1)2,vf/b 5 Yy +, male, germ-line cells Drosophila melanogaster y/r(1)2,vf/b 5 Yy +, male, germ-line cells Drosophila melanogaster, male, somatic cells Drosophila melanogaster Canton-S, male, germ-line cells Drosophila melanogaster, male, germ-line cells Drosophila melanogaster, male, germ-line cells, germline cells Micronucleus formation + NA 0.1 μg/l for 168 h p,p -DDT Binelli et al. (2008b) DNA DNA adducts + NA Sublethal concentration NR DNA DNA strand breaks + NA Sublethal concentration NR aberrations aberrations + NA 1 μg, in feeding media NA 25 ppm, in feeding media Exposed to DDT for 4 days; DDT replaced daily and dead larvae removed Exposed to DDT for 4 days; DDT replaced daily and dead larvae removed Formulation (p,p -DDT, 80%; o,p -DDT, 18%; p,p -DDE, 2%) Formulated product of DDT not specified Galindo Reyes et al. (2002) Galindo Reyes et al. (2002) Clark (1974) Woodruff et al. Accord insertion + NA NT DDT Catania et al. (2004) Dominant lethal + NA 1 μg, in feeding media Sex linked recessive lethal Sex linked recessive lethal ± NA 0.14 mm,, in feeding media NA 20 μg, in feeding media Formulation (p,p -DDT, 80%; o,p -DDT, 18%; p,p -DDE, 2%) Clark (1974) DDT Vogel (1972) p,p -DDT Pielou (1952)

Table 4.7 Genetic and related effects of DDT in non-mammalian systems Phylogenetic class Species, strain, tissue End-point Test Results Concentration out Lower eukaryote (yeast, mould, fungi) Drosophila melanogaster Canton-S, male, germ-line cells Sex linked recessive lethal Saccharomyces cerevisiae Mitotic gene conversion Saccharomyces cerevisiae D61.M Saccharomyces cerevisiae D61.M Aspergillus nidulans haploid strain 35 Aspergillus nidulans diploid strain P1 Neurospora crassa heterokaryon 12 Neurospora crassa heterokaryon 12 Tetrahymena thermophila Cu428 Colony formation assay loss assay NA 20 μg/week, in feeding media up to 8 mo Formulation (p,p -DDT, 80%; o,p -DDT, 18%; p,p -DDE, 2%) Clark (1974) NT NR DDT Fahrig (1974) 0.140 mm p,p -DDT Albertini et al. (1988) 0.140 mm p,p -DDT Albertini et al. (1988) Forward mutation NT 2.8 mm p,p -DDT Crebelli et al. (1986) Aneuploidy NT 2.8 mm p,p -DDT Crebelli et al. (1986) Host-mediated assay (in vivo) Host-mediated assay (in vitro) NT 75 mg/ml Formulation (p,p -DDT, 80% ; o,p -DDT, 18%; p,p -DDE, 2%) ± NT 75 mg/ml Formulation (p,p -DDT, 80% ; o,p -DDT, 18%; p,p -DDE, 2%) Toxicogenomics Gene expression + NA 4 10 6 mol/l per 24 h Inconclusive results DDT Clark (1974) Clark (1974) Chang et al. (2011)

Table 4.7 Genetic and related effects of DDT in non-mammalian systems Phylogenetic class Species, strain, tissue End-point Test Results Concentration out Prokaryote (bacteria) TA92 Reverse mutation NT 1000 μg/plate DDT Glatt & Oesch Reverse mutation 500 μg/plate DDT De Flora et al. (1989) Reverse mutation 2500 μg/plate DDT Byeon et al. Reverse mutation 170 μg/plate DDT Bartsch et al. (1980) Reverse mutation 177 μg/plate DDT Nishimura et al. (1982) Reverse mutation 370 μg/plate DDT Van Dijck & Van de Voorde Reverse mutation 500 μg/plate DDT Bruce & Heddle (1979) Reverse mutation 35 μg/plate DDT Probst et al. Reverse mutation NT 2500 μg/plate DDT Simmon et al. (1977) Reverse mutation NT 1000 μg/plate DDT Glatt & Oesch Reverse mutation 5000 μg/plate p,p -DDT Moriya et al. Reverse mutation 177 μg/plate p,p -DDT Planche et al. (1979)

Table 4.7 Genetic and related effects of DDT in non-mammalian systems Phylogenetic class Species, strain, tissue End-point Test Results Concentration out Reverse mutation 35 μg/plate DDT Probst et al. Reverse mutation 370 μg/plate DDT Van Dijck & Van de Voorde Reverse mutation 177 μg/plate DDT Nishimura et al. (1982) Reverse mutation 170 μg/plate DDT Bartsch et al. (1980) Reverse mutation 500 μg/plate DDT De Flora et al. (1989) Reverse mutation 2500 μg/plate DDT Byeon et al. Reverse mutation 500 μg/plate DDT Bruce & Heddle (1979) Reverse mutation NT 1000 μg/plate DDT Glatt & Oesch Reverse mutation NT 2500 μg/plate DDT Simmon et al. (1977) Reverse mutation 5000 μg/plate p,p -DDT Moriya et al. Reverse mutation 177 μg/plate p,p -DDT Planche et al. (1979) Reverse mutation 35 μg/plate DDT Probst et al.

Table 4.7 Genetic and related effects of DDT in non-mammalian systems Phylogenetic class Species, strain, tissue End-point Test Results Concentration out TA1536 Reverse mutation 2500 μg/plate DDT Byeon et al. Reverse mutation 2500 μg/plate DDT Marshall et al. Reverse mutation 500 μg/plate DDT Bruce & Heddle (1979) Reverse mutation NT 1000 μg/plate DDT Glatt & Oesch Reverse mutation NT 2500 μg/plate DDT Simmon et al. (1977) Reverse mutation 5000 μg/plate p,p -DDT Moriya et al. Reverse mutation 2500 μg/plate DDT Marshall et al. Reverse mutation 35 μg/plate DDT Probst et al. Reverse mutation 2500 μg/plate DDT Marshall et al. Reverse mutation 500 μg/plate DDT Bruce & Heddle (1979) Reverse mutation NT 1000 μg/plate DDT Glatt & Oesch Reverse mutation NT 2500 μg/plate DDT Simmon et al. (1977) Reverse mutation 5000 μg/plate p,p -DDT Moriya et al.

Table 4.7 Genetic and related effects of DDT in non-mammalian systems Phylogenetic class Species, strain, tissue End-point Test Results Concentration out TA1978 C3076 D3052 Reverse mutation 2500 μg/plate DDT Byeon et al. Reverse mutation 35 μg/plate DDT Probst et al. Reverse mutation 2500 μg/plate DDT Marshall et al. Reverse mutation NT 2500 μg/plate DDT Simmon et al. (1977) Reverse mutation NT 1000 μg/plate DDT Glatt & Oesch Reverse mutation 5000 μg/plate p,p -DDT Moriya et al. Reverse mutation 370 μg/plate DDT Van Dijck & Van de Voorde Reverse mutation 35 μg/plate DDT Probst et al. Reverse mutation 35 μg/plate DDT Probst et al. G46 Reverse mutation 35 μg/plate DDT Probst et al. Escherichia coli Q-13 DNA DNA-cell-binding NT 150 μm DDT Kubinski et al. Escherichia coli PQ37 SOS chromotest 1000 μg/ml DDT Dayan et al.

Table 4.7 Genetic and related effects of DDT in non-mammalian systems Phylogenetic class Species, strain, tissue End-point Test Results Concentration out Acellular systems Escherichia coli WP2 uvra Reverse mutation 35 μg/plate DDT Probst et al. Escherichia coli WP2 uvra Reverse mutation NT 1000 μg/plate DDT Glatt & Oesch Escherichia coli WP2 hcr Reverse mutation 5000 μg/plate p,p -DDT Moriya et al. Escherichia coli Reverse mutation Pol-A mutation 500 μg/plate p,p -DDT Fluck et al. Bacillus subtilis M 45 Rec, Rec assay NT NR DDT Shirasu et al. H17 Rec + Serratia marcescens Host-mediated assay (in vivo) Isolated DNA from ColE1 plasmid DNA DNA single-strand breaks/alkaline labile sites NT NR DDT Buselmaier et al. (1973) NT 100 μg/ml DDT Griffin & Hill (1978) +, positive;, negative; ±, equivocal (variable response in several experiments within an adequate study); DDE, dichlorodiphenyldichloroethylene; DDT, dichlorodiphenyltrichloroethane; HIC, highest ineffective concentration; LEC, lowest effective concentration; NA, not applicable; NR, not reported; NT, not tested

Table 4.8 Genetic and related effects of metabolites of DDT in non-mammalian systems in vitro Phylogenetic class Species, strain End-point Test Results Concentration out Prokaryote (bacteria) TA92 Reverse mutation NT 1000 μg/plate DDE Glatt & Oesch Reverse mutation NT 1000 μg/plate DDE Glatt & Oesch Reverse mutation 500 μg/plate p,p -DDE Mortelmans et al. (1986) Reverse mutation 5000 μg/plate p,p -DDE De Flora Reverse mutation 860 μg/plate p,p -DDE Bartsch et al. (1980) Reverse mutation 500 μg/plate p,p -DDE De Flora et al. (1989) Reverse mutation 2500 μg/plate p,p -DDE Brams et al. Reverse mutation 5000 μg/plate p,p -DDE Moriya et al. Reverse mutation 370 μg/plate p,p -DDE Van Dijck & Van de Voorde Reverse mutation NT 1000 μg/plate DDE Glatt & Oesch Reverse mutation 500 μg/plate p,p -DDE Mortelmans et al. (1986) Reverse mutation 5000 μg/plate p,p -DDE De Flora

Table 4.8 Genetic and related effects of metabolites of DDT in non-mammalian systems in vitro Phylogenetic class Species, strain End-point Test Results Concentration out Reverse mutation 860 μg/plate p,p -DDE Bartsch et al. (1980) Reverse mutation 500 μg/plate p,p -DDE De Flora et al. (1989) Reverse mutation 2500 μg/plate p,p -DDE Brams et al. Reverse mutation 5000 μg/plate p,p -DDE Moriya et al. Reverse mutation 370 μg/plate p,p -DDE Van Dijck & Van de Voorde Reverse mutation NT 2500 μg/plate p,p -DDE McCann et al. (1975) Reverse mutation 1000 μg/plate DDE Marshall et al. Reverse mutation NT 1000 μg/plate DDE Glatt & Oesch Reverse mutation 500 μg/plate p,p -DDE Mortelmans et al. (1986) Reverse mutation 5000 μg/plate p,p -DDE De Flora Reverse mutation 2500 μg/plate p,p -DDE Brams et al. Reverse mutation 5000 μg/plate p,p -DDE Moriya et al. Reverse mutation 370 μg/plate p,p -DDE Van Dijck & Van de Voorde

Table 4.8 Genetic and related effects of metabolites of DDT in non-mammalian systems in vitro Phylogenetic class Species, strain End-point Test Results Concentration out TA1536 TA 1537 TA 1537 TA 1538 Reverse mutation 1000 μg/plate DDE Marshall et al. Reverse mutation 1000 μg/plate DDE Marshall et al. Reverse mutation NT 1000 μg/plate DDE Glatt & Oesch Reverse mutation 500 μg/plate p,p -DDE Mortelmans et al. (1986) Reverse mutation 5000 μg/plate p,p -DDE De Flora Reverse mutation 2500 μg/plate p,p -DDE Brams et al. Reverse mutation 5000 μg/plate p,p -DDE Moriya et al. Reverse mutation 370 μg/plate p,p -DDE Van Dijck & Van de Voorde Reverse mutation NT 2500 μg/plate p,p -DDE McCann et al. (1975) Reverse mutation 1000 μg/plate DDE Marshall et al. Reverse mutation NT 1000 μg/plate DDE Glatt & Oesch Reverse mutation 5000 μg/plate p,p -DDE De Flora Reverse mutation 5000 μg/plate p,p -DDE Moriya et al.

Table 4.8 Genetic and related effects of metabolites of DDT in non-mammalian systems in vitro Phylogenetic class Species, strain End-point Test Results Concentration out TA1950 TA1978 Escherichia coli WP2 uvra Escherichia coli WP2 uvra Reverse mutation 370 μg/plate p,p -DDE Van Dijck & Van de Voorde Reverse mutation NT 2500 μg/plate p,p -DDE McCann et al. (1975) Reverse mutation 370 μg/plate p,p -DDE Van Dijck & Van de Voorde Reverse mutation 370 μg/plate p,p -DDE Van Dijck & Van de Voorde Reverse mutation NT 0.10 μg/plate Metabolite 2,2- bis(p-chlorophenyl)- 2- chloroacetaldehyde (αc1-ddcho) Reverse mutation + 3.15 μg/plate Metabolite 1,1- bis(p-chlorophenyl)- 2,2-dichloroethane was mutagenic when norharman was added to the metabolizing system Reverse mutation + NT 0.025 μg/plate Metabolite l-chloro- 2,2-bis(pchlorophenyl)ethene (DDMU)-epoxide Gold et al. Glatt & Oesch Gold et al. Reverse mutation NT 1000 μg/plate DDE Glatt & Oesch Reverse mutation NT 1000 μg/plate p,p -DDE Mamber et al. (1984)

Table 4.8 Genetic and related effects of metabolites of DDT in non-mammalian systems in vitro Phylogenetic class Species, strain End-point Test Results Concentration out Lower eukaryote (yeast, mould, fungi) Invertebrates Escherichia coli WP2 hcr Reverse mutation 5000 μg/plate p,p -DDE Moriya et al. Escherichia coli Pol-A Reverse mutation 500 μg/plate p,p -DDE Fluck et al. Escherichia coli Pol-A Reverse mutation 500 μg/plate p,p -DDD Fluck et al. Serratia marcescens a21 Reverse mutation + NT NR DDD Buselmaier et al. Leu - (1973) Serratia marcescens a31 Reverse mutation + NT NR DDD Buselmaier et al. His - (1973) Serratia marcescens Host-mediated assay (in vivo) Serratia marcescens Host-mediated assay (in vivo) Saccharomyces cerevisiae Saccharomyces cerevisiae Saccharomyces cerevisiae Saccharomyces cerevisiae RS112 Zebra mussel Dreissena polymorpha Mitotic gene conversion Mitotic gene conversion Mitotic gene conversion Intrachromosomal recombination assay NT NR DDE Buselmaier et al. (1973) NT NR DDA Buselmaier et al. (1973) NT NR DDE Fahrig (1974) NT NR DDD Fahrig (1974) NT NR DDA Fahrig (1974) + 100 μg/ml p,p -DDE Schiestl (1989); Schiestl et al. (1989) DNA Comet assay + NA 0.1 μg/l for 168 h p,p -DDE Binelli et al. (2008a)

Table 4.8 Genetic and related effects of metabolites of DDT in non-mammalian systems in vitro Phylogenetic class Species, strain End-point Test Results Concentration out Zebra mussel Dreissena polymorpha Micronucleus formation + NA 0.1 μg/l for 168 h p,p -DDE Binelli et al. (2008a, b) Zebra mussel Dreissena polymorpha Micronucleus formation + NA 0.1 μg/l for 168 hours p,p -DDD Binelli et al. (2008b) Insects Drosophila melanogaster Canton-S, male, germ-line cells Drosophila melanogaster, male, germ-line cells Drosophila melanogaster, male, germ-line cells Drosophila melanogaster, male, germ-line cells Drosophila melanogaster, male, germ-line cells Drosophila melanogaster Canton-S, male, germ-line cells Sex-linked recessive lethal Sex-linked recessive lethal Sex-linked recessive lethal Sex-linked recessive lethal Sex-linked recessive lethal Heritable translocation assay + NA 10 000 μg/ml, in feeding media + NA 3.4 mm, in feeding media NA 3.1 mm, in feeding media NA 0.3 mm, in feeding media NA 3.7 mm, in feeding media NA 10 000 μg/ml, in feeding media p,p -DDE Valencia et al. (1985) DDA Vogel (1972) DDE Vogel (1972) DDD Vogel (1972) DDOM Vogel (1972) p,p -DDE Valencia et al. (1985) +, positive;, negative; DDA, 2,2,-bis(4-chlorophenyl)-acetic acid; DDD, trichlorodiphenyldichloroethane; DDE, dichlorodiphenyldichloroethylene; DDOM, 2,2-bis(p-chlorophenyl-ethane); DDT, dichlorodiphenyltrichloroethane; HIC, highest ineffective concentration; LEC, lowest effective concentration; NA, not applicable; NR, not reported; NT, not tested