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S Rehm

Publications and source records attributed to S Rehm.

At least 55 records · Page 3Linked to original sources

Transplacental induction of mouse lung tumors: stage of fetal organogenesis in relation to frequency, morphology, size, and neoplastic progression of N-nitrosoethylurea-induced tumors.

Pregnant C3H/HeNCr MTV- mice were given a single intraperitoneal injection of 0.5 mmol N-nitrosoethylurea/kg on days 14, 16, or 18 of gestation. Six of the male offspring were sacrificed for study at the ages of 2, 4, 8, 16, 32, and 52 weeks. Grossly visible lung tumors were counted and all lungs were sectioned completely, saving every tenth section for histologic evaluation. All N-nitrosoethylurea-induced mouse lung tumors have previously been shown to originate from alveolar type II cells. Lung tumors were diagnosed as solid, papillary, or mixed solid/papillary types, and at the largest area of each tumor, the perimeter was measured and compared with the number of sections per tumor. The fraction of tumors detected grossly depended on size and, on average, only 51% of neoplasms present were detected macroscopically. A significant correlation was seen between the mean number of histological sections and perimeter length per tumor, in particular for small and medium sized papillary neoplasms. The growth of solid tumors was limited to a maximum size, after which they progressed towards papillary types. The numbers of transplacentally induced mouse lung tumors were distributed in direct proportion to the weight of the individual lung lobes, unrelated to day of treatment of type or tumor. Tumor biology depended on the day of treatment reflecting numbers of degree of differentiation of fetal alveolar type II cells, i.e., the target cell: most tumors developed in offspring treated on day 16, tumor size was greater and progression from solid to papillary neoplasms faster at earlier treatments, increase in tumor multiplicity postnatally was only seen in mice treated late in gestation, and mice treated on day 14 or day 16 showed a consistent ratio of solid to papillary tumors.

Animals↗

Mouse bronchiolar cell carcinogenesis. Histologic characterization and expression of Clara cell antigen in lesions induced by N-nitrosobis-(2-chloroethyl) ureas.

Female Swiss mice (Cr:NIH(S)) developed bronchiolar cell hyperplasia, dysplasia, metaplasia, and various morphologic types of bronchiolar cell tumors after topical (skin) application of N-nitroso-methyl-bis-chloroethylurea (NMBCU) or N-nitroso-tris-chloroethylurea (NTCU). These compounds are the first found to induce systemically bronchiolar cell tumors in mice in high incidence. Twice a week, with a 3-day interval, a 25-microliter drop of 0.04 mol/l (molar) NMBCU or NTCU in acetone was applied to the shaved interscapular integument for a maximum of 35 to 40 weeks. The earliest lung neoplasms were seen in mice that died after 23 weeks of treatment and affected 11 of 19 with NMBCU and 14 of 19 with NTCU treatment. Tumor growth pattern was nodular or the neoplastic tissue was frequently disseminated throughout the parenchyma, starting from multicentric peribronchiolar foci. The most common tumor types were squamous cell carcinomas and adenosquamous carcinomas, followed by adenocarcinomas with or without secretory cells, and a single ciliated-cell tumor. Histochemical and immunohistochemical studies were carried out on paraffin-embedded lungs using the avidin-biotin immunoperoxidase complex procedure and antisera against keratin, Clara cell antigen, surfactant apoprotein, neuron-specific enolase, bombesin, and chromogranin A. In several mice from both groups, hyperplasias and tumors were composed of cells expressing Clara cell antigen. No tumor cells were found expressing alveolar type II or neuroendocrine cell markers. It appeared that bronchiolar cells, in particular Clara cells, had migrated from terminal bronchioles or invaded bronchiolar walls to extend into the alveolar parenchyma. Squamous cell metaplasia with keratin expression was seen within airways or associated with glandular tumors, especially at the periphery. A unique cell type, with large eosinophilic globules and associated eosinophilic crystals, was seen lining airways or forming hyperplastic and neoplastic lesions. N-nitroso-methyl-bis-chloroethylurea- and NTCU-induced mouse bronchiolar cell alterations could be an interesting new model to study mechanisms of bronchiolar cell differentiation and tumor formation.

Adenocarcinoma, Bronchiolo-Alveolar↗

Acute cadmium chloride-induced renal toxicity in the Syrian hamster.

It has previously been reported that cadmium (Cd) induces renal lesions only after sequestration by endogenous metallothionein (MT), and not in the form of simple salts. However, in this report we detail findings of acute CdCl2-induced renal lesions in the Syrian hamster, which appear to be species specific as neither rats nor mice showed such lesions. Adult rats and mice of different strains and Syrian hamsters (Cr:RGH) were given Cd doses ranging from 30-50 mumol/kg, sc, and examined histologically for renal lesions between 2 hr and 7 days later. Hamsters developed necrosis of the proximal renal tubules 12-24 hr after CdCl2 treatment at an average incidence of 60% in both sexes. Tubular regeneration occurred within 1 week as shown by immunocytochemical localization of DNA synthesis with 5-bromo-2'-deoxyuridine. By electron microscopy, initial changes with Cd (16 hr) included cytoplasmic vesiculation and dilatation of endoplasmic reticulum, and swelling of mitochondria followed rapidly by enlargement of vacuoles, nuclear changes, and cellular disintegration. Rats and mice showed no such lesions even at lethal doses of Cd (40-50 mumol/kg). At maximum tolerated doses of Cd (approximately LD 10: for rats and mice, 35 mumol/kg; for hamsters, 50 mumol/kg) renal Cd content was not higher in hamsters than in the other species 24 hr after injection; hamsters, in fact, had the lowest Cd content. Likewise, basal or Cd-induced levels of renal MT were not remarkably different between these species. These results indicate the hamster is uniquely susceptible to acute effects of Cd on the kidney and that this effect is not related to an unusually high concentration of CdCl2 or unusually low basal or induced levels of MT in the kidney.

Animals↗

Inhibition of liver, kidney, and erythrocyte delta-aminolevulinic acid dehydratase (porphobilinogen synthase) by gallium in the rat.

Selective inhibition of enzymes in the heme biosynthesis pathway with concomitant urinary excretion of heme precursors serve as potentially important biological markers of chemical exposure and cell injury. Intratracheal administration of gallium arsenide particulate suspensions has been shown to result in inhibition of delta-aminolevulinic acid dehydratase (ALAD) in several tissues and increased excretion of the heme precursor aminolevulinic acid (ALA). This study was undertaken to evaluate in vivo the role of gallium alone in ALAD inhibition and increased urinary excretion of ALA. Male CD rats received a single ip injection of Ga2(SO4)3 at doses of 12.5, 25, 50, 100, and 200 mg Ga/kg. A dose-dependent inhibition of ALAD was observed 24 hr later in liver, kidney, and erythrocytes. After injection of 25 mg Ga/kg, maximal inhibition (42 to 49% of control) of ALAD occurred between 6 and 24 hr in liver and kidney with full recovery of activity at 96 hr. In erythrocytes, maximal inhibition (48% of control) occurred between 24 and 48 hr with recovery of activity at 96 hr. Mild to moderate renal proximal tubular necrosis in the pars recta was observed 24 hr after administration of 100 and 200 mg/kg, but no histopathologic changes were evident at lower doses. No consistent changes in urinary excretion of ALA were observed. Lineweaver-Burk analyses of renal and hepatic ALAD activities in the absence and presence of gallium indicated that the inhibition of ALAD by this element is noncompetitive (same Km, decreased Vmax). Gallium was shown to possess an inhibition constant (Ki) of approximately 3 microns for ALAD, similar to the Ki obtained for lead in other studies. Incubation of ALAD in vitro with gallium and lead, an active thiol group inhibitor, resulted in a greater inhibition of the enzyme. Further in vitro studies demonstrated the attenuation of gallium inhibition of hepatic and renal ALAD by zinc, suggesting that the mechanism of gallium action may involve competition for or displacement of zinc from the sulfhydryl group of the enzyme active site. Since ALAD inhibition occurred at doses at which no histopathologic changes were evident, the determination of ALAD activity in various tissues, including blood, may be of potential value as a biomarker of exposure/toxicity to metals such as gallium. The effect of chemical form and route of exposure of gallium and effects of other Group III metals on inhibition of ALAD and excretion of ALA is discussed.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Applications of immunohistochemistry in rodent tumor pathology.

Immunohistochemistry can serve as a valuable adjunct to rodent tumor pathology. Specific antigens may be localized to cells and tissues in normal organs, preneoplastic lesions, and benign and malignant tumors. The immunoreactivity of polyclonal and monoclonal antibodies to these antigens provide a more accurate basis for tumor diagnosis and aid in understanding pathogenesis. Ultimately, the application of more precise understanding of tumor histogenesis and diagnosis will lead to more accurate interpretations of tumor incidence data for safety assessment in toxicology.

Animals↗

Vancomycin vs tobramycin elution from polymethylmethacrylate: an in vitro study.

We fabricated batches of cement containing 0.5 gm, 1.0 gm, and 2.0 gm vancomycin and one with 1.0 gm tobramycin and shaped them into cylinders. They were immersed into 0.5 L of normal saline and the fluid volume was changed daily. Samples of fluid were obtained on days 1, 2, 3, 5, 7, 14, and 28. All fluid samples had antibiotic assays performed to quantitate the amount of elution for vancomycin or tobramycin. Vancomycin elution from PMMA occurred under our study conditions in similar quantities to that measured for tobramycin controls. Vancomycin-loaded PMMA cement may have a clinical role in the treatment of musculoskeletal sepsis caused by gram-positive bacteria, particularly if organisms resistant to the usual antibiotic agents are identified.

Biomechanical Phenomena↗

Chemically induced mammary gland adenomyoepitheliomas and myoepithelial carcinomas of mice. Immunohistochemical and ultrastructural features.

Myoepithelial cell tumors of the mammary gland have been observed in several mammalian species and are composed of a single cell type (myoepithelium) or, more often, present as a biphasic process including neoplastic ductal epithelial cells. In dogs, these are common tumors, but in humans they are rare neoplasms of the breast, and little is yet known of their pathogenesis, particularly with respect to myoepithelial origin. The present report describes bicellular mammary gland tumors arising from the duct epithelium that were induced in (C57BL/6NCr X DBA/2NCr)F1 (B6D2F1) mice by four weekly oral applications of 1 mg 7,12-dimethylbenz[a]anthracene (DMBA) starting at 8 weeks of age. Mammary tumors developed 7 to 8 months later in 14 of 57 mice, and most showed great morphologic resemblance to human adenomyoepitheliomas and myoepithelial carcinomas. Ultrastructurally, the induced tumors were composed of cuboidal epithelium with a microvillous border originating from the lining duct epithelium and plump oval or highly elongated cells that were identified as myoepithelial in origin. These spindle cells contained abundant microfilaments in parallel orientation, some with focal densities and intermediate filaments that frequently formed loose bundles or compact tonofibrils. The myoepithelial cells possessed well-developed desmosomes and plasma membrane caveolae and were regularly bordered by single or reduplicated basement membranes. By immunohistochemistry, strong immunoreactivity was observed for actin in the myoepithelial tumor component only, whereas cytokeratin was variably present in both duct epithelium and myoepithelium. Neoplastic myoepithelial cells stained purple with phosphotungstic acid hematoxylin (PTAH) and brilliant red with Masson's trichrome. It is suggested that DMBA-induced mouse mammary gland adenomyoepitheliomas and myoepithelial carcinomas may serve as very useful animal models to study myoepithelial tumorigenesis.

9,10-Dimethyl-1,2-benzanthracene↗

Cadmium carcinogenesis in male Wistar [Crl:(WI)BR] rats: dose-response analysis of effects of zinc on tumor induction in the prostate, in the testes, and at the injection site.

The ability of zinc acetate to modify the carcinogenic effects of CdCl2 in male Wistar [Crl:(WI)BR] rats was studied over a 2-year period. Groups of rats received a single s.c. injection of Cd (30.0 mumol/kg) in the dorsal thoracic midline or i.m. in the right thigh at time 0. Zinc was given in three separate s.c. doses of 0.1, 0.3, or 1.0 mmol/kg (at -6, 0, and +18 h relative to cadmium) in the lumbosacral area or p.o. at 100 ppm in the drinking water (-2 to +100 weeks). Cadmium treatments (s.c.) resulted in the appearance of tumors at the injection site and in the testes. The incidence of s.c. injection site tumors (mostly mixed sarcomas) was markedly reduced by high dose (1.0 mmol/kg) s.c. zinc (50% reduction) and was almost abolished by p.o. zinc (92% reduction). Testicular tumors (mostly Leydig cell adenomas) induced by s.c. cadmium were reduced in a dose-related fashion by zinc and were found to be highly dependent on the ability of zinc to prevent the chronic degenerative effects of cadmium in the testes. Oral zinc had no effect on s.c. cadmium-induced testicular tumors, while i.m. cadmium alone did not induce these tumors. In rats in which s.c. cadmium-induced testicular tumors and chronic degenerative effects were prevented by zinc (1.0 mmol/kg, s.c.), a marked elevation in prostatic tumors (exclusively adenomas) occurred (control, 9.6%; cadmium plus high zinc 29.6%). Cadmium given i.m., which did not result in testicular tumors or degeneration, also induced an elevated incidence (42.3%) of prostatic tumors, again indicating a dependence on testicular function. Prostatic tumor incidence was also significantly elevated (25.0%) in rats receiving 1.0 mmol/kg zinc, s.c., in combination with i.m. cadmium. These results indicate that zinc inhibition of cadmium carcinogenesis is a complex phenomenon, depending not only on dose and route but also on the target site in question.

Animals↗

Transplacental initiation of liver, lung, neurogenic, and connective tissue tumors by N-nitroso compounds in mice.

Epidemiological studies have implicated nitroso compounds as possible causative agents for human childhood cancers, including those of neurogenic origin. Published evidence from animal models, which is reviewed in this report, indicates that capacity for metabolic activation of nitrosamines is limited in rodent fetuses and that nitrosamines are correspondingly weak transplacental carcinogens. The C3H mouse fetus, however, has both moderate capability for activation of N-nitrosodimethylamine (NDMA) and proven susceptibility to transplacental causation of neurogenic tumors by a nitrosourea. We tested whether NDMA could act as a transplacental carcinogen in the C3H mouse, and whether it or N-nitrosodiethylamine (NDEA) would initiate neurogenic tumors. N-Nitrosoethylurea (NEU) served as positive control. C3H/HeNCr MTV- pregnant mice were treated ip on Gestation Day 16 or 19 with NDMA (0.1 mmol, 7.4 mg/kg, maximum nonfetotoxic dose), NDEA (0.5 mmol, 51 mg/kg), or NEU (0.4 mmol, 47 mg/kg). NDMA had significant transplacental carcinogenic effects, resulting in an increase in percentage female offspring with hepatocellular carcinomas and in average number of liver tumors after treatment on either gestational day, compared with controls. In the males there was a significant increase in numbers of liver tumors and carcinomas following Day 19 exposure. An increase in incidence of histiocytic and undifferentiated sarcomas was also of statistical significance. There was no change in number of pulmonary tumors. One intracranial schwannoma resulted. NDEA had no effect when given on Gestation Day 16, but caused a significant increase in liver and lung tumor numbers in both sexes when treatment was on Day 19. NEU induced the expected high incidence of lung tumors, significantly increased liver tumor incidence in females (Day 19 exposure), and produced schwannomas in 14 and 35% of the offspring after Days 16 or 19 treatment, respectively. The results show that NDMA at even a low dose had significant transplacental carcinogenic effects, including one schwannoma, which was most unlikely to have occurred spontaneously. However, this single neurogenic tumor contrasts with the absence of similar neoplasms in mice exposed transplacentally to NDEA, in view of the generally greater efficiency of ethylating agents as carcinogens for the nervous system in rodents. These data thus neither conclusively support nor refute the hypothesis that nitrosamines may initiate neurogenic tumors in fetuses.

Animals↗

Quantitative analysis of alveolar type II cell tumors in mice by whole lung serial and step sections.

Alveolar type II cell tumors were induced transplacentally by intraperitoneal injection of pregnant C3H/HeNCr MTV- or Swiss Webster mice with N-nitrosoethylurea at a dose of 0.5 mmol/kg and 0.74 mmol/kg. At different time points after birth (1-32 weeks), the entire lungs from 40 of the male offspring were inflated with Bouin's fixative, separated into lobes, and sectioned at 5 microns serially to detect every microscopic lesion. Results were compared with those obtained from examining only every 10th, 20th, or a single midlevel section from the same material. On average, 150 serial sections were prepared per mouse lung. Initially, only purely solid/alveolar or purely tubulopapillary types were observed but with tumor progression, papillary structures developed within solid tumors resulting in mixed neoplasms. Analyzing mouse lungs in step sections of every 10th section (50-60 microns), 5/238 (2%) of the tumors were missed, in step sections of every 20th section (100-120 microns), 16/238 (7%) of the tumors were not detected and usually less than half of the tumors were seen in the single mid-level section. The approximate size of the neoplasms is indicated by the total number of sections per tumor. The dimensions of tumors evaluated with step sections of 10 or 20 were comparable to the size observed with serial sections. It is concluded that the evaluation of mouse lung tumors in steps of approximately 50 microns is basically equivalent to the study of serial sections and appears to be a feasible method to assess the complete incidence, histological type, and size of all proliferative processes throughout the entire lung.

Animals↗

Immunohistochemical demonstration of Clara cell antigen in lung tumors of bronchiolar origin induced by N-nitrosodiethylamine in Syrian golden hamsters.

Both alveolar type II cells and Clara cells have been suggested as cells of origin of human bronchioloalveolar lung carcinomas and other pulmonary neoplasms, based on the presence of cell specific markers identified by immunocytochemical methods. Alveolar type II cell origin of solid and papillary lung tumors of the mouse has been demonstrated, and Clara cells have been suggested as cell of origin for hamster pulmonary neoplasms. Therefore, chemically induced bronchiolar hyperplasias and pulmonary neoplasms of Syrian golden hamsters were analyzed by avidin-biotin immunohistochemistry to localize a hamster-specific Clara cell antigen (CCA) and keratin. The hamsters had been treated subcutaneously with multiple doses of N-nitrosodiethylamine (NDEA). Proliferative lesions of low cuboidal, tall columnar, or pleomorphic cells were present within bronchioles or adjacent to airways in the alveolar parenchyma. Frequently areas of squamous cell differentiation were present focally or diffusely that were immunoreactive for cytokeratin. Immunoreactivity for cytokeratin was also noted for hyperplastic bronchiolar neuroepithelial bodies. Cellular hyperplasias extending out into the alveolar parenchyma contained ciliated cells and frequently consisted of cells immunoreactive for CCA, showing them to be of bronchiolar Clara cell origin. Tumors developed from bronchiolar cell hyperplasias localized within bronchioles and from bronchiolar cells lining former alveolar walls. Neoplastic growth patterns were tubulo-papillary, forming loose networks or densely cellular areas. Immunoreactivity for cytoplasmic CCA was found in 50% of the tumors and was seen most frequently in small cuboidal cells and larger, vacuolated cells scattered throughout the neoplasms. In summary, evidence is presented that NDEA-induced pulmonary tumors of the Syrian golden hamster originated from cells lining bronchioles and from extrabronchiolar Clara cell hyperplasias of the terminal bronchioles. As the pulmonary tumors of the hamsters progressed towards a squamoid cell type, CCA was no longer detectable but cells became immunoreactive for keratin.

Animals↗

Comparative transplacental carcinogenesis by directly acting and metabolism-dependent alkylating agents in rodents and nonhuman primates.

Transplacental carcinogenesis by N-ethyl-N-nitrosourea (ENU) was studied in patas (Erythrocebus patas) and rhesus (Macaca mulatta) monkeys. Repeated intravenous injections throughout pregnancy caused gestational choriocarcinoma in female patas monkeys and a variety of non-trophoblastic neoplasms in their offspring. Latent periods for transplacentally induced tumours varied from less than one month to more than ten years. One case of congenital neoplasm was observed. Certain kinds of neoplasms were observed only in transplacentally exposed offspring, and not in monkeys given the same carcinogen during juvenile or adult life. These included a variety of embryonal tumours, especially nephroblastoma, and tumours of the brain, mostly gliomas. Schwannomas of the peripheral nervous system were not observed in patas monkeys given ENU. One embryonal tumour yielded DNA that transformed NIH 3T3 cells in a transfection assay. Similar protocols performed in rhesus monkeys also yielded a variety of tumours in the offspring, including brain tumours; but in this species the most common embryonal tumour was pulmonary blastoma, and no choriocarcinoma was seen in adult females given ENU during pregnancy. Administration of N-nitrosodiethylamine to patas monkeys during pregnancy at first appeared to have had no effect on the offspring, but administration of phenobarbital beginning at four years of age resulted in the rapid appearance of multiple hepatocellular tumours. With regard to potential human risk from prenatal exposure to carcinogens, three conclusions deserve special emphasis: (1) the extreme susceptibility of the fetal primate central nervous system to certain chemical carcinogens, which confirms and reinforces what was previously known from studies in rodents; (2) the prolonged latency of transplacentally initiated epithelial tumours and the importance of subsequent postnatal exposure to promoting agents; and (3) the concurrent risk of transplacental chemical carcinogenesis in offspring and gestational choriocarcinoma in the mother, suggesting that gestational choriocarcinoma with its short latent period may serve as an epidemiologically exploitable marker for human populations in which transplacental carcinogenesis is likely.

Alkylating Agents↗

Cadmium carcinogenesis in male Wistar [Crl:(WI)BR] rats: dose-response analysis of tumor induction in the prostate and testes and at the injection site.

Carcinogenic dose-response effects of CdCl2 in male Wistar [Crl:(WI)BR] rats were studied over a 2-year period. Groups of rats received a single s.c. injection of CdCl2 at doses of 0, 1.0, 2.5, 5.0, 10.0, 20.0, or 40.0 mumol/kg in the dorsal thoracic midline. Other groups received either four separate s.c. doses of 5 mumol Cd/kg each (at 0, 48, 96, and 168 h), or low dose cadmium (5.0 mumol/kg, s.c., at 0 h) followed by a higher dose (10.0 or 20.0 mumol/kg, s.c., at 48 h). The cadmium treatments resulted in appearance of tumors at the injection site, in the testes, and in the ventral prostate. Injection site tumors (mostly sarcomas) appeared to be strictly related to accumulated dose of cadmium and approached a 45% incidence at the highest cadmium dose (40 mumol/kg). Testicular tumors (mostly Leydig cell adenomas) were found to be highly dependent on testicular degeneration caused by cadmium. The highest Leydig cell tumor incidence occurred in the 40 mumol/kg (83%) and 20 mumol/kg (72%) dosage groups. Low dose pretreatment (5.0 mumol/kg) reduced or prevented the testicular degeneration and tumor formation that would otherwise result from a subsequent higher dose of CdCl2 (20 mumol/kg). Prostatic tumors (mostly adenomas of the ventral lobe) were also found to be associated with cadmium treatment, but in a non-dose related fashion. Prostatic tumor incidence was significantly elevated at the 2.5 mumol/kg dose of CdCl2 (eight tumors/26 rats; 31%) and showed a strong positive correlation between 0.0 and 2.5 mumol/kg in both tumor incidence and multiplicity. At higher doses, including those that caused marked testicular degeneration and induced prostatic atrophy, an elevated incidence of tumors did not occur. The occurrence of hyperplastic foci of the prostate, however, showed a strong positive correlation with increasing dose after single injections of cadmium up to and including 20.0 mumol/kg. Results indicate that CdCl2 can induce preneoplastic lesions of the prostate that appear to develop into tumors only at doses well below those causing marked degeneration of the testes and atrophy of the prostate.

Animals↗

Strain dependence in mice of resistance and susceptibility to the testicular effects of cadmium: assessment of the role of testicular cadmium-binding proteins.

The nature of the cadmium (Cd)-binding proteins in the mouse testes is unknown, although some studies have implied metallothionein (MT) is responsible for the marked strain dependence of Cd-induced testicular necrosis in mice. This study attempted to define the role of MT in strain-dependent Cd resistance using NFS (susceptible) and BALB/c (resistant) mice. In all cases, testicular proteins were compared to hepatic MT isolated after treatment with zinc (Zn). A low-molecular-weight (Mr) Zn-, Cd-binding protein was detected in testicular and hepatic cytosol from both strains after gel filtration. These proteins were extractable by heat treatment and sequential acetone precipitation. When such extracts were further purified with reverse-phase HPLC, two forms of authentic MT were shown by amino acid analysis from both NFS and BALB/c livers. However, of two testicular forms separated by HPLC from NFS and BALB/c mice, neither could be classified as MT based on amino acid composition. Methylation of the MT-I gene was also studied in testicular and hepatic DNAs isolated from control mice or from mice made resistant to Cd-induced testicular necrosis by Zn treatment. Major differences in methylation between tissues were seen, as the testicular gene of both NFS and BALB/c mice was highly methylated, a condition often linked to genetic quiescence. Zn treatment had no effect on MT-I gene methylation in testes of either strain, although rendering the NFS strain resistant to Cd. Zn treatment did not alter levels of this testicular protein in either strain while causing a marked induction of hepatic MT in both. These results indicate the low-Mr Cd-, Zn-binding proteins present in the testes of both resistant and susceptible mice are not MTs and further that the MT gene may not be expressed in either strain.

Amino Acids↗

Mouse papillary lung tumors transplacentally induced by N-nitrosoethylurea: evidence for alveolar type II cell origin by comparative light microscopic, ultrastructural, and immunohistochemical studies.

A histogenetic study was designed to evaluate controversial findings on the cell of origin of tubular/papillary lung tumors in mice, i.e., bronchiolar Clara cell versus alveolar type II cell. N-Nitrosoethylurea (0.5 mmol or 0.74 mmol/kg) was given to pregnant C3H (C3H/HeNCr MTV-) and Swiss Webster [Tac:(SW)fBR] mice as a single i.p. injection on Day 14, 15, 16, or 18 of gestation. The offspring were studied at various ages ranging from 7 days to 52 wk. Serial sections of the whole lung (100 to 200 sections per mouse) showed that solid/alveolar and papillary tumors arose from the pulmonary acinus, invading the bronchioles only as the tumors grew. Furthermore, a mixture of solid and papillary patterns within a single module did not represent a merging of two tumors but a progression from the solid to the papillary form. By use of two rabbit antisera against mouse lung surfactant apoproteins found in normal alveolar type II cells, it was shown by the avidin-biotin peroxidase complex procedure, by the peroxidase-antiperoxidase technique, and by indirect immunofluorescence that both solid and papillary tumors contained these proteins that are specific markers for alveolar type II cells. With a rabbit anti-rat Clara cell antiserum, none of the tumors studied was immunoreactive while normal Clara cells were reactive. The nitroblue tetrazolium formazan stain for dehydrogenase enzymes, found particularly in Clara cells, did not reveal these enzymes in any lung tumors from either strain. Ultrastructurally, no typical features of the mature Clara cell were detected in papillary or other pulmonary neoplasms. However, all tumors showed characteristic alveolar type II cell structures such as various stages of lamellar body formation, although these features were less well differentiated in the papillary tumors. Argentaffin dense bodies, representing lysosomes and immature forms of lamellar bodies, were commonly observed in papillary tumors. Some features of the papillary tumors such as cell shape, high glycogen content, and primary cilia were equivalent to those seen in pulmonary epithelial precursor cells during fetal development. With age, the papillary tumors became invasive, accumulated neutral lipids, and developed bizarre cleaved nuclei and lamellated nuclear pseudoinclusions. In conclusion, the papillary lung tumors of the mouse, at least those induced transplacentally by N-nitrosoethylurea, constitute less well-differentiated or poorly differentiated alveolar type II cell adenomas or carcinomas with fetal morphological and biochemical properties.

Age Factors↗

Cadmium-induced ovarian toxicity in hamsters, mice, and rats.

The effects of cadmium on the female genital tract of Syrian hamsters (Cr:RGH), of four mouse strains (BALB/cAnNCr, DBA/2NCr, C57BL/6NCr, NFS/NCr), and two rat strains (F344/NCr and WF/NCr) were studied by light microscopy after a single sc injection of cadmium chloride (CdCl2). Experiments involved animals prior to and after sexual maturity, and employed CdCl2 doses ranging from 20 to 47.5 mumol/kg. Animals were examined at intervals from 24 hr to 8 weeks following treatment. Syrian hamsters were most susceptible to CdCl2-induced ovarian hemorrhagic necrosis at all ages tested. Most severe ovarian lesions occurred in immature hamsters, in mature hamsters at high doses, and shortly before ovulation at all doses. The small arteries of the developing follicles and interstitial stroma seemed selectively susceptible to CdCl2 toxicity while the corpora lutea, mesothelium, primordial oocytes, and the rete ovarii appeared resistant. Pretreatment with zinc acetate markedly reduced the extent of ovarian lesions in hamsters. Although reduced in weight by 45%, the hamster ovaries recovered morphologically within 2 months after severe acute hemorrhagic necrosis. Uterine and cervical stromal hemorrhages were seen only in immature hamsters at doses of greater than or equal to 30 mumol CdCl2/kg. Of the mice, only the DBA/2NCr strain showed significant CdCl2-induced ovarian hemorrhages, and these hemorrhages occurred at doses also producing lethal liver toxicity. Lesions of the uterus were rare. Rats showed dose- and age-dependent toxicity in the ovaries, uterus, cervix, and liver. CdCl2 exposure in mature rats induced uterine lesions only in F344 rats, while acute ovarian and hepatic toxicity was less severe in mature animals of both strains. No lesions were noted after 7 days in mature WF rats. In both rats and mice, no cycle dependency of the ovarian lesions was evident.

Animals↗