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M J Iatropoulos

Publications and source records attributed to M J Iatropoulos.

At least 19 recordsLinked to original sources

Protective effect of acetaminophen against colon cancer initiation effects of 3,2'-dimethyl-4-aminobiphenyl in rats.

A previous investigation demonstrated the anticarcinogenicity of acetaminophen (APAP) against colon carcinogenesis in rats induced by 3,2'-dimethyl-4-aminobiphenyl (DMAB). DMAB was selected as a structurally related surrogate for heterocyclic amines, formed during cooking of protein, which are believed to be involved in human colon cancer. The objective of the present study was to ascertain whether the early initiating effects of this colon carcinogen are inhibited by APAP. Six groups of male F344 rats were treated over a 6-week period as follows: (1) vehicle (corn oil) for 6 weeks; (2) APAP in the diet at 1000 ppm daily for 6 weeks; (3) 50 mg/kg DMAB by gavage once a week for the last 4 weeks; (4) 5 mg/kg DMAB as for (3); (5) 1000 ppm APAP for 6 weeks and 50 mg/kg DMAB for the last 4 weeks; and (6) 1000 ppm APAP and 5 mg/kg DMAB as for (5). Colonic tissue was within normal limits in the control and APAP groups. In the APAP only group, apical enterocytic hypertrophy and hyperaemia over the entire surface epithelium was present. In the high-dose DMAB group, in the lower third of the crypts, foci of enlarged glands with hypertrophic cells exhibiting karyomegaly and anisokaryosis (FHE) of 3+ degree of severity were evident in 100% of the animals. Also, there were increases in periglandular fibrocytes, matrix and mononuclear cells (PF). In the low-dose DMAB group both FHE and PF changes with the same degree of severity were reduced. In rats given the low dose of DMAB plus APAP, FHE and PF with the same degree of severity (3+) was absent. Both DMAB exposures increased significantly the replicating fraction of colonic enterocytes in an exposure-related fashion and the replicating fractions were significantly reduced by APAP. In 32P-postlabelling of colon, liver and urinary bladder DNA, high-dose DMAB produced 2-6 distinct dose-related spots reflecting DNA adducts. These spots were reduced or were no longer detectable in all three tissues when APAP was given 2 weeks before and during DMAB exposure. Using immunohistochemical detection of DMAB adducts in the colon, a dose-related colour intensity was present for both doses of DMAB. APAP reduced this by 94-fold. Thus, APAP produced a marked protective effect in colonic enterocytes against several parameters of neoplastic development by the carcinogen.

Acetaminophen↗

Bioassay of mannitol and caprolactam and assessment of response to diethylnitrosamine in heterozygous p53-deficient (+/-) and wild type (+/+) mice.

Alternative bioassays of mannitol (MAN) and caprolactam (CAP) were conducted in transgenic p53-deficient mice. Also, to assess the sensitivity of the transgenic mice to a model DNA-reactive carcinogen, the hepatic effects of diethylnitrosamine (DEN) were compared in the wild type background strain of mouse and in the transgenic derivative. Fifty-one male wild type strain C57BL/6 mice p53 (+/+), 8 weeks old, and 51 heterozygous p53 (+/-) C57BL/6 Tac-[KO] Trp53 N5 mice, 8 weeks old, were allocated to six experimental groups as follows: groups 1 (wild type +/+) and 2 (p53 +/-) served as room controls, groups 3 (+/+) and 4 (+/-) were exposed orally (gavage) to 50 mumol/kg body weight DEN weekly for a total of ten doses during the first 10 weeks of the study, group 5 (+/-) was exposed to 15,000 ppm CAP in the diet for up to 26 weeks, and group 6 (+/-) was exposed to 50,000 ppm MAN in the diet for up to 26 weeks. After 10 weeks, liver from control and DEN-exposed mice was used for O4-ethylthymidine (O4-EtT) DNA adduct analysis by the immunoslot blot method. The cell replicating fraction (RF) in the liver was determined by quantification of the percentage of immunohistochemically stained hepatocytes positive for proliferating cell nuclear antigen. No significant or consistent body or liver weight changes were present in any of the treatment groups. No consistent and pertinent changes in RF values were present in any of the treatment groups. None of the tested substances produced neoplasms of any type in p53 (+/-) mice. DEN induced comparable levels of O4-EtT adducts in the liver in both wild type and p53 +/- genotypes, but no morphologic changes were evident in the livers of either genotype. The lack of response to DEN, in spite of formation of DNA adducts, may reflect the resistance to hepatocarcinogenesis of the background C57BL/6 strain of the transgenic, and calls into question the general sensitivity of this transgenic for detection of carcinogenic effects.

Administration, Oral↗

Assessment of chronic toxicity and carcinogenicity in an accelerated cancer bioassay in rats of moxifloxacin, a quinolone antibiotic.

The chronic toxicity and carcinogenicity of Moxifloxacin (MOX), a bacterial gyrase-inhibiting fluoroquinolone antibiotic, were studied in male and female Wistar rats in an accelerated cancer bioassay (ACB). The ACB is a mechanistic initiation/promotion chronic toxicity and carcinogenicity study designed to assess potential carcinogenic activity of a test substance in critical organs in which human carcinogens are active. The organs studied were liver, lungs, urinary bladder, mammary gland, bone marrow, thymus, spleen and stomach. MOX was given daily by intragastric instillation at 500 mg/kg bw/day for the first 13 weeks to produce potential initiation, followed by promoters (PROs) for 24 weeks, or for the last 24 weeks after 13 weeks of exposure to initiators (INs). The INs, administered during the first 13 weeks, were diethylnitrosamine for the liver, N-n-butyl-N-(4-hydroxybutyl)nitrosamine for the urinary bladder, ethylnitrosourea for the hematolymphoreticular system, N-nitrosodimethylamine for lungs, methylnitrosourea for the stomach and 7,12-dimethylbenz(a)-anthracene for the mammary gland. The PROs, administered during the last 24 weeks after MOX, were phenobarbital for the liver, nitrilotriacetic acid for the urinary bladder, azathioprine for the bone marrow, butylated hydroxytoluene for the lung, butylated hydroxyanisole for the forestomach, and diethylstilbestrol for the mammary gland. The INs produced preneoplastic and neoplastic lesions which were not enhanced by MOX, and MOX plus PROs elicited no neoplastic effects, documenting that MOX did not produce either initiation or promotion of neoplasia in any of the target sites, or in any of the other twenty tissues examined.

Administration, Oral↗

Diethylnitrosamine exposure-responses for DNA ethylation, hepatocellular proliferation, and initiation of carcinogenesis in rat liver display non-linearities and thresholds.

In previous exposure-response studies, we have documented non-linearities for some of the early effects in rat liver of diethylnitrosamine (DEN) and a near no-effect levels for initiation of promotable liver neoplasms at the lowest cumulative exposure of 0. 5 mmol/kg body weight; this in spite of formation of DNA adducts and induction of hepatocellular altered foci (HAF). To extend these investigations, in an initiation segment, young male F344 rats were administered four exposures of DEN ranging from a cumulative total of 0.25 mmol, which is half of the previously used low exposure, up to 2 mmol per kg body weight, an effective initiating exposure. These exposures were achieved by once weekly intragastric instillations of one-tenth the total exposures for up to 10 weeks. The initiation segment was followed by a 4 week recovery segment, to allow for remission of acute and subchronic effects of DEN, after which the groups were maintained on 0.06% phenobarbital in the diet for 24 weeks to promote liver tumor development in order to assess initiation. During and after initiation and at the end of recovery, selected groups were studied for several crucial effects involved in hepatocarcinogenicity. The low exposure produced a low-level of DNA ethylation at both 5 and 10 weeks of exposure, measured as O(4)-ethylthymidine, the most persistent promutagenic ethylation product. At the 5 week interval, the adduct values of the higher exposures were less than proportional to the increment of exposure, suggestive of nonlinearity. Assessment of cellular proliferation by staining for proliferating cell nuclear antigen revealed that the lowest exposure did not increase the replicating fraction of hepatocytes during the initiation (10 weeks) or recovery (4 weeks) segments, whereas in the three higher exposure groups, proliferation was increased in relation to dose and time. Preneoplastic HAF expressing glutathione S-transferase-placental-type were present at low multiplicity in control livers and their multiplicity was increased in all exposure groups by the end of exposure, at which time the increase in the high exposure group was disproportionately greater than the increment of exposure. After phenobarbital administration in the promotion segment, all exposure groups exhibited further HAF increases at 39 weeks. At the end of the promotion segment, no hepatocellular neoplasm was found in 80 controls or in 40 rats in the low exposure group. In the mid-low exposure group, which was the previously studied low exposure, only one adenoma was found, yielding a 3% incidence, while in the two higher exposure groups, 32 and 80% of rats exhibited liver neoplasms, which were increased disproportionately greater than the increments of exposure. Thus, the findings document non-linearities of early DEN effects and at the lowest cumulative dose, a no-effect level (NEL) or threshold for initiation of promotable liver neoplasms. These findings provide a conceptual basis for understanding why low-level exposures to DNA-reactive carcinogens may convey no cancer risk.

Animals↗

Inhibition of lung carcinogenesis by black tea in Fischer rats treated with a tobacco-specific carcinogen: caffeine as an important constituent.

Here, we examined the effect of black tea and caffeine on lung tumorigenesis in F344 rats induced by the nicotine-derived carcinogen 4-(methylnitrosamino)-1-(3-pyridyl)-1-butanone (NNK) in a 2-year bioassay. NNK was administered s.c. at a dose of 1.5 mg/kg body weight three times weekly for 20 weeks. Animals were given either black tea as drinking water at concentrations of 2%, 1%, or 0.5%, or caffeine in drinking water at concentrations identical to those in 2% and 0.5% tea infusions for 22 weeks. The treatment period began 1 week before and ended 1 week after the NNK administration. The animals were sacrificed on week 101 for the examination of tumors in target organs, including lung, liver, nasal cavity, and other major organs. The NNK-treated group, given 2% black tea, showed a significant reduction of the total lung tumor (adenomas, adenocarcinomas, and adenosquamous carcinomas) incidence from 47% to 19%, whereas the group given 1% and 0.5% black tea showed no change. The 2% tea also reduced liver tumor incidence induced by NNK from 34% in the group given only deionized water to 12%. The tumor incidence in the nasal cavity, however, was not affected by either black tea or caffeine at any of the concentrations tested. The most unexpected finding was the remarkable reduction of the lung tumor incidence, from 47% to 10%, in the group treated with 680 ppm caffeine, a concentration equivalent to that found in the 2% tea. This incidence is comparable to background levels seen in the control group. This study demonstrated for the first time in a 2-year lifetime bioassay that black tea protects against lung tumorigenesis in F344 rats, and this effect appears to be attributed, to a significant extent, to caffeine as an active ingredient of tea.

Animals↗

Nonlinearities in 2-acetylaminofluorene exposure responses for genotoxic and epigenetic effects leading to initiation of carcinogenesis in rat liver.

The dose responses for several effects of low-level limited exposures to 2-acetylaminofluorene (AAF) in the livers of male Fischer 344 rats were measured and a subsequent phenobarbital tumor promotion regimen was used to manifest initiation of carcinogenesis. Three doses over a 10-fold range yielding cumulative total exposures of 0.126, 0.42, and 1.26 mmol AAF/kg body weight were achieved by daily intragastric instillation for up to 12 weeks with interim terminations. This was followed by 24 weeks administration of 500 ppm phenobarbital (PB) in the diet to promote liver tumor development. At 12 weeks at the end of AAF administration, all exposures produced adducts in liver DNA, measured by 32P postlabeling, and the level of adducts increased with exposure, except that the high exposure did not produce a dose proportional increase. Measurement of arylsulfotransferase activity, a key enzyme in the metabolic activation of AAF, revealed that in livers from the high exposure animals, the enzyme was inhibited. To assess for toxicity, the centrilobular zone of glutamine synthetase-positive hepatocytes was quantified immunohistochemically at 12 weeks. The area of the zone was reduced in the high exposure group and there was a trend to reduction in relationship to exposure. The two lower exposures to AAF produced no increase in cell proliferation, whereas the high exposure resulted in a marked increase, about 8-fold over controls. Initiation was assessed by induction of hepatocellular altered foci (HAF) that expressed the placental form of glutathione S-transferase. AAF induced HAF in the high exposure group, 9-fold at 8 weeks and 170-fold at 12 weeks compared to controls. In rats maintained on PB for 24 weeks after exposure, the multiplicity of HAF increased in controls and comparably in the low and mid exposure groups, but remained at the about the same high level in the high exposure group. The high exposure produced a substantial incidence of benign neoplasms by 12 weeks, and with promotion by 36 weeks, all rats developed hepatocellular neoplasia. In the mid exposure group, only one adenoma occurred at 36 weeks in 17 rats, while in the low exposure group, no liver tumor occurred in 23 rats. Thus, these findings document nonlinearities for some of the effects of AAF, with supralinear effects at the high exposure for cell proliferation and induction of HAF, and a no-observed-effect level for induction of promotable liver neoplasms at the lowest cumulative exposure of 0.126 mmol/kg, in spite of the formation of DNA adducts. We conclude that the effects of this DNA-reactive hepatocarcinogen leading to initiation exhibit nonlinearities and possible thresholds.

2-Acetylaminofluorene↗

Assessment of chronic toxicity and carcinogenicity in rats of Wingstay 100, a rubber antioxidant/antiozonant.

The chronic toxicity and carcinogenicity of Wingstay 100 (W 100), a rubber antioxidant/antiozonant, were studied in Fischer 344 (F 344) rats in two chronic studies. Earlier genetic studies indicated that the product had weak activity in a bacterial mutation assay, but lacked activity in chromosomal aberration assays. In an one year study, both genders of F 344 rats were exposed to 53, 310 or 1900 ppm in NIH-07 diet for 52 weeks, and sacrifices were made at 38, 52 and 64 weeks. No test substance related deaths occurred, although the high dose of 1900 ppm caused a decrease in body weight gain and food consumption in both genders. Red blood cell mean corpuscular volume was significantly increased at 38 weeks, accompanied by a significant decrease in mean corpuscular hemoglobin concentration. At 52 weeks, the red blood cell count and hemoglobin values were also significantly decreased in high dose animals of both genders. Total bilirubin and cholesterol were increased in high dose animals of 38 and 52-week sacrifices. During the 3 month recovery, hematology parameters, bilirubin and cholesterol returned to control values. Total protein was reduced in high dose animals of both genders, throughout the entire exposure and recovery periods. W 100 also produced increases in relative liver, spleen, heart and kidney weights in high dose animals. Both genders of all W 100 groups exhibited significant increases in urothelial cell proliferation (measured by PCNA) and adaptive hyperplasia. No regenerative hyperplasia, preneoplasia, or neoplasia were present. There was microscopic evidence of extramedullary erythropoiesis in the spleen and liver of high dose animals in both genders, otherwise no other pertinent microscopic finding was evident. In parallel, an accelerated bioassay (ABA) was conducted, which is a mechanistic initiation/promotion carcinogenicity study designed to assess tumor induction and promotion potential of a test substance in major organs of carcinogenesis. The present study was conducted in male F 344 rats for 38 weeks. The target sites chosen for the ABA were liver and urinary bladder and the dose for W 100 was 1900 ppm previously established to be a toxic dose. The liver tumor initiator was diethylnitrosamine (DEN), and the urinary bladder initiator was N-butyl N-(4-hydroxybutyl) nitrosamine (BBN). The initiators were administered during the first 14 weeks followed by the promoters. The promoters, phenobarbital (PB) for the liver and nitrilotriacetate (NTA) for the urinary bladder, were administered during the last 24 weeks of the study after the test substance. The study had 11 test groups including a negative control. The critical comparisons for initiating activity were conducted between groups 3 (PB) and 6 (W 100 + PB) for the liver and groups 8 (NTA) and 11 (W 100 + NTA) for the urinary bladder. The critical comparisons for promoting activity were conducted between groups 2 (DEN) and 5 (DEN + W 100) for the liver and groups 7 (BBN) and 10 (BBN + W 100) for the urinary bladder. There were 26 and 38-week sacrifices. In this study, most body weight reductions were due to DEN. At 26 weeks, significant increases in liver weights were present in all PB-exposed groups. Significant increases in renal weights occurred in all NTA, BBN and DEN groups. A similar organ weight pattern was present at 38 weeks. At 26 weeks, there were hepatocellular (33%) and urothelial (67%) tumors present in positive control groups (DEN/DEN + PB/BBN/BBN + NTA). In contrast, in the DEN + W 100 (5) and the BBN + W 100 (10) groups no tumors were present indicating absence of promotion. In addition, no tumors were present in groups 6 (W 100 + PB) or 11 (W 100 + NTA) indicating absence of initiation. At 38 weeks, the incidences of hepatocellular adenomas and carcinomas in positive control group (DEN) was 44%. The incidence of urothelial adenomas and carcinomas was 67% in group 7 (BBN). In contrast, groups 5 (DEN + W 100) or group 10 (BBN + W 100) had

Animals↗

Mechanistic studies on genotoxicity and carcinogenicity of salicylazosulfapyridine an anti-inflammatory medicine.

Salicylazosulfapyridine (SASP), which has been in clinical use for over 50 years, was reported by the National Toxicology Program to increase rat (F344 strain) urinary bladder and mouse (B6C3F1 hybrid) liver tumours under ad libitum (AL) feeding conditions, while under a feed restriction (FR) regimen, these tumours were not increased. The present investigations were undertaken to assess the implications of these results for the safety of SASP in humans. SASP and its 2 major metabolites, 5-aminosalicylic acid (ASA) and sulfapyridine (SP) were tested for in vivo induction of micronuclei in mouse bone marrow cells with or without prefolic treatment and for in vivo formation of DNA adducts in rat and mouse liver and urinary bladder. None exhibited mutagenicity or DNA reactivity. SASP and SP have induced sister chromatid exchanges and micronuclei (MN) in cultured human lymphocytes in the absence of liver activation enzymes and in B6C3F1 mice (but not in rats) MN in bone marrow and peripheral RBC. Treatment with folate reduces the frequency of MN. Perhaps the short (28 days) RBC lifespan in mouse underlies the sensitivity of this species. Thus, SASP without folate supplementation is an aneuploidogen. In a 2-year study in AL fed SASP-treated (high dose 337.5 mg/kg) rats, urinary pH was increased and urinary specific gravity was reduced at 60 weeks. At the end, this SASP group showed urothelial hyperplasia and papillomas in the urinary bladders of male rats primarily. In the FR high dose SASP group, the hyperplasia was reduced from 82% to 14%. At the end of 2 years, the incidence of multi-organ leukemia was reduced in both AL and FR high dose SASP groups. Thus, SASP caused intraluminal bladder changes in the rat (especially males) consisting of chronic urothelial stimulation, concretions, hyperplasia which resulted in neoplasia. In the mouse, because of species differences in liver ratios (mouse > rat) and, increasing (3 times higher) liver perfusion in the mouse, compared to the rat, there was hepatocellular toxicity and resulting preneoplasia and neoplasia within 2 years. These findings occurred in all AL SASP groups (flat curve without dose response); but were reduced under FR conditions. In this species, the multiorgan lymphoma incidence was reduced in both AL and FR high dose SASP groups. Thus, SASP and its major metabolites are not genotoxic. Folate deficiency associated with SASP administration is probably responsible for aneuploidy in lymphocytes and erythrocytes. SASP does not induce neoplasia directly in either livers, urinary bladders or other organs. Accordingly, SASP is judged to pose no carcinogenic risk to humans.

Aminosalicylic Acids↗

Initiating activity of the anti-estrogen tamoxifen, but not toremifene in rat liver.

A striking difference between two structurally related anti-estrogen medicines is that tamoxifen is strongly hepatocarcinogenic in the rat, whereas toremifene lacks such activity. To study the basis for this difference, the initiating potential of tamoxifen and toremifene were studied by measurement of rapid induction of hepatocellular altered foci (HAF) that express placental-type glutathione S-transferase in the livers of female Sprague-Dawley (S-D) rats and female Fischer 344 (F344) rats. Both agents were administered by gavage at equimolar doses up to a dose that produced marked weight gain suppression. In rats given the high dose of 40 mg/kg per day tamoxifen continuously for 36 weeks, 75% of S-D rats developed liver neoplasms, in contrast to only 10% of F344 rats. In the S-D strain, tamoxifen produced a tendency to increased HAF at 2 weeks at the dose of 40 mg/kg per day and by 12 weeks, a dose-related increase was evident. In contrast, toremifene induced no HAF even at the equimolar high dose of 42.4 mg/kg per day for 12 weeks. The induction of HAF by tamoxifen was less in the F344 rats. Neither agent elicited increases in hepatocellular proliferation in S-D or F344 rats. When phenobarbital was administered for 24 weeks as a promoting agent after the anti-estrogens, S-D rats given tamoxifen at 20 mg/kg per day for 12 weeks, developed liver neoplasms, but not F344 rats or rats of either strain given even a higher dose (42.4 mg/kg) of toremifene. Thus, tamoxifen has initiating activity in these rat strains whereas toremifene does not.

Animals↗

Inhibition by acetaminophen of intestinal cancer in rats induced by an aromatic amine similar to food mutagens.

The widely used analgesic acetaminophen (APAP) was studied in rats for its ability to inhibit intestinal carcinogenesis induced by 3,2'-dimethyl-4-aminobiphenyl (DMAB), which was selected as the carcinogen because of its similarity to the heterocyclic amines formed during cooking and which are postulated to be involved in colon cancer in humans. APAP was fed to male F344 rats at 250 ppm, which is about 1/4 the human therapeutic dose and at 5000 ppm, which is about fivefold the human dose. DMAB was injected subcutaneously at 50 mg/kg body weight weekly for 20 weeks, to assure identical exposures to all animals, followed by 22 weeks of maintenance. The DMAB was an effective inducer of tumours in the small and large intestines, producing an average of 1.3 tumours per animal. Feeding of APAP began 2 weeks before DMAB administration and continued for 44 weeks. A 9% reduction in the number of colon tumours per rat cancer at the low dose and an 86% reduction at the high dose were found. Small intestinal tumour incidence was reduced at both doses. The number of multiple intestinal tumours per rat was reduced by 27% and 49% for the low and high doses, respectively. The dimensions of these neoplasms, especially those in the colon, were also reduced in both dose groups. Thus, APAP, even at a sub-therapeutic dose, inhibited intestinal carcinogenesis induced by DMAB. This allows us to speculate that the effects of low exposures to dietary carcinogens of the heterocyclic amine type could be inhibited by therapeutic doses of APAP.

Acetaminophen↗

Inhibition of the hepatocarcinogenicity of aflatoxin B1 in rats by low levels of the phenolic antioxidants butylated hydroxyanisole and butylated hydroxytoluene.

The phenolic antioxidants butylated hydroxyanisole (BHA) and butylated hydroxytoluene (BHT) were studied for inhibition of aflatoxin B1 (AFB1) hepatocarcinogenesis in male Fischer 344 rats. The antioxidants were administered at 5, 25, or 125 ppm in AIN-76A diet for 42 weeks. Beginning with week 2, 5 micrograms/kg of AFB1 was given by intragastric instillation three times a week for 40 weeks either alone or concurrently with BHA or BHT feeding. The development of hepatocellular altered foci (HAF) induced by AFB1, as indicators of hepatocarcinogenesis, was monitored using immunohistochemical staining for the placental form of glutathione S-transferase. By 16 weeks the multiplicity of foci was 1.97/cm2 of liver area in rats given only AFB1, and this increased to 4.11/cm2 at 24 weeks and to 10.60/cm2 at 32 weeks. At the final sacrifice at 42 weeks, the multiplicity of foci was 12.90/cm2 compared to 0.75/cm2 in untreated controls. In rats given antioxidants in addition to AFB1, the high dose of BHA reduced the multiplicity to 7.72/cm2 and the high dose of BHT reduced the multiplicity to 9.35/cm2. Lower levels did not reduce foci induction. Thus, in male rats under the conditions of this experiment, the level of 125 ppm of either BHA or BHT inhibited the initiation of hepatocarcinogenesis by AFB1. The BHA effect was slightly greater than that of BHT.

Aflatoxin B1↗

Chemical carcinogen mechanisms of action and implications for testing methodology.

Chemical carcinogens are of two distinct types, DNA-reactive and epigenetic. Testing methodology can be directed toward detecting effects of both types of carcinogen. Carcinogens of the DNA-reactive type are defined by the formation of covalently bound DNA adducts. These chemicals have structures that yield electrophilic reactants either directly or after bioactivation. These agents cause genomic alteration in the structure or function of DNA in the target cell. In addition, these compounds can exert other cellular and tissue epigenetic effects, such as cell proliferation and growth promotion. Carcinogens of the epigenetic (paragenetic) type, in contrast, do not react with DNA, but rather display cellular effects such as neoplasm growth promotion, cytotoxicity, inhibition of tissue growth regulation, peroxisome proliferation, endocrine modification, immunosuppression and/or sustained tissue ischemia that can be the basis for increases in neoplasia. Their chemical structure is such that they do not give rise to a reactive electrophile. The testing methodologies to identify either type follow a Decision Point Approach designed to identify potential carcinogenicity and yield mechanistic information on the production of effects that underlie carcinogenicity. It has 5 stages focusing on the chemical structure, DNA-reactivity, epigenetic effects, limited bioassays and finally the application of the accelerated bioassay (ABA). ABA requires 40 weeks and applies the use of sensitive markers for induction of neoplasia in comparison to positive control compounds for important organs in human carcinogenesis. It enables data acquisition of the entire carcinogenic process directed toward developing mechanistic information. The ABA has the potential to replace the chronic bioassay in rodents in some circumstances and can serve as an alternative to a chronic bioassay in a second species.

Animals↗

Proliferation markers.

Types of growth include embryonic, fetal, neonatal, juvenile and mature. Until full differentiation is achieved, cells grow through proliferation from progenitor cells. At maturity, the cellular genome is fixed with committed patterns of cell cycle duration and adaptation, ranging from static to renewing type 3. The static cell type cannot proliferate and adapts through hypertrophy. The renewing type continuously proliferates even without stimulus. In all cell types the processes of differentiation and proliferation are mutually exclusive. Cellular kinetics involve (a) the duration of the cell cycle, (b) the birth rate of cells, and (c) the growth rate fractions. The duration of the cell cycle is 2-4 days. All growth factors (GF) exert their influence during G1 phase. Release a GF by one cell type can influence the proliferation of another (= paracrine stimulation). At the end of G1 is the point of highest sensitivity to toxicity. Tumor suppressor genes act here through tyrosine phosphorylation. During S, the cell replicates its chromosomes. During G2 the immune surveillance and DNA damage repair mechanisms operate. Injured cells stay here longer enabling repair of their damaged DNA. Cell division involves both nuclear (mitosis) and cytoplasmic (cytokinesis) phases giving rise to 2 new cells. The cell cycle has 2 checkpoints. The first involves the G1-S transition and the second the G2-M transition. The types of cell cycle inhibition include (a) cycle- and phase-specific inhibition; (b) cycle-and nonphase-specific inhibition; (c) noncycle-and nonphase-specific inhibition, and finally (d) noncycle, nonphase-, and nonorgan-specific inhibition. Proliferation is a circadian process and it is stimulated by a variety of stimuli which include (1) interference with hormonal feedback pathways; (2) inhibition of the tissue trophic activity; (3) sustained presence of antigenic substances; (4) tissue ischemia; (5) changes of conditions luminally or on surfaces of tissues; (6) sustained cytotoxicity; (7) cell death; and (8) surgical resection. Proliferation can be arrested through senescence, apoptosis, injury or even during the development of immune cells. In the past, tissue/cell kinetics have been studied by tritiated thymidine histoautoradiography. Recently, monoclonal antibodies to proliferation-associated antigens, have been successfully employed. These antigens are cycle-associated proteins and include (1) PCNA; (2) p53; (3) Ki67; (4) AGNOR; (5) Statin; and (6) BrdU. Practical examples are given comparing PCNA and BrdU markers from 3 tissues, i.e. liver, glandular stomach, and uterus, across 2 or 3 strains of rats. Mean values of labeling indices are cited. Within the PCNA marker, 2 different clones are compared from the glandular stomach of SD rats of 2 different ages. Gender and across species comparisons are also made. All these comparisons denote that in every study where markers are used (a) there is a need for a concurrent study control group of the same age; (b) there is a need for in-house control data for this particular organ by species, strain, gender and age; (c) there is ancillary assessment of the trophic status of the target tissue; (d) there is a need for at least 2 different time points during assessment; (e) there is a need for such proliferation data prior to commencing the 2 year rodent bioassay; and (f) that PCNA is the most reliable and versatile of all markers used, capable of rendering good results even from archival specimens.

Animals↗

Risk assessment of carcinogens in food with special consideration of non-genotoxic carcinogens. Scientific arguments for use of risk assessment and for changing the Delaney Clause specifically.

The document "Risk Assessment of Carcinogens in Food with Special Consideration of Non-Genotoxic Carcinogens" was produced by the International Federation of Societies of Toxicologic Pathologists on the occasion of its triannual meeting in Tours, France, April 23-26, 1995. Subsequently, it was endorsed by the North American Society of Toxicologic Pathologists at its annual meeting in San Diego, CA, USA, June 11-15, 1995. This document was written to address up-to-date risk assessment of carcinogens and anachronisms in the Delaney Clause of the US Federal Food, Drug and Cosmetic Act which have become evident since its enactment in 1958. In the intervening years, major progress has been made in understanding mechanisms of cancer induction and in recognizing causes of human cancer. The Clause in conjunction with its present legal interpretation and implementation does not provide for rational, scientific evaluation of carcinogens. It ignores the fact that the diverse mechanisms now known to underlie cancer increases in rodents exposed to high doses of chemicals are often inapplicable to man. In this regard, current evaluation of chemicals based on the tenets of the Delaney Clause is irrational in many cases. The document presents several examples of chemicals to which humans may be exposed through food and which illustrate the need for science-based risk assessment. Appropriate risk assessment methods are available to provide assurance of negligible risk, and accordingly, it is recommended that the Delaney Clause be rescinded as it has outlived its usefulness. This will enable US governmental agencies to regulate the use of chemicals in foods by using appropriate current scientific methods on a case by case basis within the context of other relevant legislation.

Animals↗

Diethylnitrosamine exposure-responses for DNA damage, centrilobular cytotoxicity, cell proliferation and carcinogenesis in rat liver exhibit some non-linearities.

The exposure-responses for several effects of limited exposures to diethylnitrosamine (DEN) in the livers of male Fischer 344 rats were measured and phenobarbital promotion was used to enhance expression of initiation of carcinogenesis. Five doses ranging from a cumulative total of 0.5 to 4 mmol DEN per kg body weight were given as weekly i.p. injections for 10 weeks. This was followed by 4 weeks recovery, after which the groups were maintained on either a basal diet or 0.05% phenobarbital (PB) to promote liver tumor development. All doses of DEN produced ethylation in liver DNA, which increased with dose. Indicative of toxicity, the centrilobular zone of glutamine synthetase-positive hepatocytes was reduced in relationship to exposure up to a cumulative exposure of 3 mmol/kg. The two lower exposures to DEN produced no increase in cell proliferation, whereas higher exposures resulted in marked increases, approximately 4-fold between 1.0 and 2.0 mmol/kg cumulative. At the end of the recovery period (14 weeks), hepatocellular altered foci (HAF), which expressed the placental form of glutathione S-transferase, were induced by all exposures, with an increase of approximately 4-fold between the exposures of 1.0 and 2.0 mmol/kg being the greatest. In rats maintained on basal diet or PB for 24 weeks after exposure, HAF increased further and with exposures of 2.0 mmol/kg and above, all rats developed hepatocellular carcinomas. With 1.0 mmol/kg, no liver tumor occurred in 12 rats without promotion, whereas in those given PB, two adenomas and two carcinomas were present in 12 rats. At the lowest exposure of 0.5 mmol/ kg, no tumor occurred in rats on basal diet, although HAF increased approximately 7-fold. With PB promotion, only one adenoma developed in 12 rats and HAF increased another 2-fold. Thus, the findings document non-linearity for some of the effects of DEN and a near no-effect level for initiation of promotable liver neoplasms at the lowest exposure in spite of a substantial induction of HAF.

Alkylating Agents↗

Correlation of relaxometry and histopathology: the transplantable human glioblastoma SF295 grown in athymic nude mice.

Human glioblastomas of the brain are characterized by a wide range of proton relaxation rates in vitro (1/T1 and 1/T2) and heterogeneous appearance in magnetic resonance imaging. It was previously found that their 1/T1 values vary widely at magnetic field strengths much below imaging fields, even at the same water content. In the present study, we measure 1/T1 at different magnetic field strengths (NMRD profile) for a specific transplantable, human glioblastoma (SF295), grown subcutaneously in athymic nude mice, to search for histologic characteristics that might correlate with the variability of 1/T1 at low fields (1/T1L). Using a field-cycling relaxometer, NMRD profiles were obtained for 32 fresh, histologically characterized, tumor specimens, 7 to 24 days post implantation of cryopreserved SF295 fragments. Tumor volume, dry weight, and pH of specimens were determined, the extent of hemorrhage and necrosis rated, and specimen location within the tumor recorded. A statistically significant increase in the average 1/T1 was found with increasing level of necrosis at 0.0024 T and below, possibly reflecting progressive protein aggregation in samples with up to 40% necrosis. This correlation was not significant at imaging fields. Although pH was increased in central necrosis, neither pH, dry weight, sample location, nor fresh hemorrhage could explain the changes in 1/T1L. The variability of 1/T1L among SF295 samples is much reduced compared to that of fresh surgical specimens of human glioblastomas of the brain. The heterogeneous appearance of glioblastomas in MRI may have a histologic correlate which reflects molecular changes involved with induction of cell death and necrosis. Further investigations may identify the factors responsible for affecting 1/T1L (hypoxia, radiation, chemotherapy).

Animals↗

Identity and pathogenesis of stomach tumors in Sprague-Dawley rats associated with the dietary administration of butachlor.

Macroscopic stomach tumors induced in Sprague-Dawley rats during two chronic bioassays with the acetanilide herbicide butachlor at a dietary concentration of 3000 ppm, were evaluated histologically and immunohistochemically in order to determine their identity and pathogenesis. The tumors, which occurred primarily in female rats, were a heterogeneous series, including a few consisting wholly or partly of classic solid or anaplastic epithelium, but with the majority containing diffusely distributed primitive neoplastic cells. The latter had either the general appearance of undifferentiated epithelium or presented a more "mesenchyme-like" pattern where the cells were epithelioid, blastema-like, neuroendocrine-like or sarcoma-like with fascicular disposition. Gastric glandular profiles were also present, usually located near the periphery of the tumors, but in some cases extending into the diffuse tumor tissue. Most of the tumors displayed variable immunohistochemical reactivity for cytokeratin, vimentin and neuron-specific enolase but were negative for muscle-specific actin or desmin except in the stromal tracts. Detailed examination of all available gastric tissue revealed the presence of additional microscopic neoplasms and precursor hyperplastic lesions. All of these were typical gastric neuroendocrine cell lesions (gastric carcinoids) originating in the fundic mucosa but occasionally invading submucosally, and consisting of epithelial cells in organized clusters, rosettes or primitive tubules. The enterochromaffin-like (ECL) nature of these microscopic neoplasms and precursor lesions was substantiated by strong immunohistochemical reactivity for cytokeratin, neuron-specific enolase and chromogranin A, and a negative reaction for vimentin. One microscopic tumor showed a transition from differentiated neuroendocrine type in the fundic mucosa to a dispersed "mesenchyme-like" pattern in the submucosal extension. An additional finding in the butachlor-treated male and female rats was atrophy of the fundic mucosa involving, in particular, reduction in the numbers of parietal cells. This effect was dose-related, being most severe in the high-dose (3000 ppm) females. On the basis of their morphological characteristics, coupled with the continuity evident in the microscopic lesions, it is concluded that the macroscopic stomach tumors associated with the dietary administration of butachlor are poorly differentiated gastric carcinoids, in some cases admixed with a non-neuroendocrine epithelial element. Fundic ECL and stem cells are known to be under the trophic influence of gastrin, which is apparently responsible for the induction of the tumors associated with butachlor administration. Gastric tumor development involving gastrin is recognized as a secondary, hormonal mechanism of carcinogenesis, demonstrating a dose-threshold phenomenon.(ABSTRACT TRUNCATED AT 400 WORDS)

Acetanilides↗

A study of the mechanism of butachlor-associated gastric neoplasms in Sprague-Dawley rats.

Long term administration of butachlor to Sprague-Dawley rats in a previous bioassay, resulted in the induction of gastric neoplasms which occurred only in the highest dose group (3000 ppm in the diet), primarily in females and specifically in the fundic region. The tumors were a composite of highly undifferentiated enterochromaffin-like (ECL) cells and mucus producing cells with morphologic characteristics unlike those previously described in the rat stomach. Mucosal atrophy of marked intensity was a consistent feature of the gastric mucosa in animals from the highest dose group. An additional long term study was conducted in female Sprague-Dawley rats at dietary levels of 0, 100, 1000 and 3000 ppm to explore the mechanism(s) involved in the formation of these neoplasms. Cell proliferation was evaluated in both fundic and pyloric regions of the stomachs of rats at multiple time periods from 14 days to 26 months. Mucosal thickness was determined in the fundic region at the same time intervals as were used for cell proliferation studies. Gastric pH and gastric acid production were measured after approximately 21 months of exposure. Serum gastrin levels were analyzed at 14, 60, and 120 days and at 6, 18 and 20 months. Cholecystokinin (CCK)/gastrin receptor binding studies were conducted on samples of four tumors and pooled fundic mucosa from five animals in the control group. Cell proliferation was increased in both the neck and base regions of the fundic mucosa at nearly all time points measured from 14 days to 26 months. The magnitude of the changes in the base region were substantially greater than those in the neck region. Fundic mucosal thickness was decreased beginning at the 30-day time point and continued at all intervals, being less than one half that of controls at 20 and 26 months. Gastric pH in rats from the highest dose was elevated to nearly twice control levels at 21 months. Gastric acid secretion was dramatically decreased in animals from the 3000 ppm group and was moderately decreased in the 1000 ppm group at 21 months. Hypergastrinemia was observed at the 3000 ppm level only, beginning at 120 days with progression to extremely high levels by 18 months. CCK/gastrin receptor binding was demonstrated in all tumors studied, at levels comparable to or higher than that of the pooled control sample. All changes involved only the fundic region, the site of tumor formation. Tumors occurred only in animals from the 3000 ppm level, the only level at which hypergastrinemia occurred.(ABSTRACT TRUNCATED AT 400 WORDS)

Acetanilides↗