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Biomedical subjects

G F Chernoff

Publications and source records attributed to G F Chernoff.

At least 19 recordsLinked to original sources

Prioritizing candidate reproductive/developmental toxicants for evaluation.

To provide a rational method for the timely evaluation of possible reproductive/developmental toxicants, a prioritization scheme was developed by the California Department of Health Services to select chemicals for consideration by the Proposition 65 Scientific Advisory Panel. Initially, four ascertainment methods were used to identify and construct a master list of 164 candidate agents. Using two criteria, the potential for human exposure and the perceived reproductive/developmental hazard as judged by an ad hoc committee of experts, 42 candidates from the master list were identified as priority agents. For practical purposes, the 15 priority agents with the highest rankings will be given the highest priority in the review process. Limitations in the prioritization method used and refinements to be incorporated in an annual update are described.

Algorithms

Hyperthermia-induced exencephaly in mice: effect of multiple exposures.

Pregnant LM/Bc female mice were given a 10-minute hyperthermic exposure in a 43 degrees C waterbath during the period of neural tube closure. On day 15.5 of gestation, the females were killed, and the fetuses were examined for exencephaly. Following a single treatment on day 8.0, 8.5, 8.75, or 9.0 of gestation 1.7, 13.6, 2.9, and 0.8% of the respective fetuses displayed exencephaly. With two treatments, one on each of gestational days 8.5 and 8.75, or three treatments, one on each of gestational days 8.5, 8.75, and 9.0, the percentage of exencephalic fetuses increased to 28.3 and 59.3%, respectively. The increased response to multiple treatments was not due to an increase in the number of susceptible embryos but rather was due to the increased number of treatments. The results of this study suggest that with increasing numbers of treatments, the embryo's ability to recover from the hyperthermic exposure is lessened, resulting in an increase in exencephaly.

Animals

Investigation of the teratogenic effects of exercise on pregnancy outcome in mice.

Swiss Webster female mice were arbitrarily assigned to a heavily exercised group (HE), a moderately exercised group (ME), or a sedentary group (S). Exercised groups were subjected to a progressive treadmill training routine, 6 days a week (60 min per day) for a total of 9 wk. Following mating after 6 wk of training, treatment groups continued to exercise at preconceptual intensities. Pregnant mice were sacrificed on the 19th day of pregnancy, and the fetuses were recovered. A positive training effect was demonstrated by a significant increase in succinate dehydrogenase activity in the gastrocnemius muscles of exercising dams. The numbers of implants, resorptions, live fetuses, mean fetal weight, and developmental stage were unaffected by the exercise treatment. A detailed fetal examination revealed no significant skeletal or gross tissue abnormalities in any of the experimental groups.

Acclimatization

Variable patterns in anticonvulsant drug-induced malformations in mice: comparisons of phenytoin and phenobarbital.

Anticonvulsant drugs are known to induce a varied pattern of malformation in both humans and in experimental rodent models. Often the clinical overlap between the pattern of defects induced by different anticonvulsant drugs is so striking that many clinicians question the role these compounds play relative to the existing maternal seizure disorder in the etiology of the observed malformations. In three inbred mouse strains exposed to phenytoin or phenobarbital in utero, the pattern of malformation differed markedly. From the types of anomalies observed, it is apparent that phenobarbital induced more malformations, while phenytoin produced a higher frequency of anomalies related to incomplete development. Thus, while there exists a certain degree of similarity between some of the minor features characteristic of each drug-induced syndrome, there are distinct differences in pregnancy outcome in experimental animals exposed to these drugs. Given the fact that phenobarbital induces more malformations that can be traced to exposure during early organogenesis, it may be wise to consider a therapeutic strategy in which phenytoin is utilized only during organogenesis, and is then replaced with phenobarbital for the remainder of the pregnancy.

Abnormalities, Drug-Induced

Strain differences in phenobarbital-induced teratogenesis in mice.

Anticonvulsant drugs are widely prescribed medications known to complicate more than 11,500 pregnancies each year in the United States. Although there is no clear consensus as to the teratogenicity of all of the clinically available compounds, it appears that most anticonvulsant drugs can induce congenital abnormalities in susceptible individuals. In a study designed to examine the role of the genotype on sensitivity to phenobarbital-induced malformations, three highly inbred mouse strains (SWV, C57BL/6J, and LM/Bc) received the drug via chronic oral administration. Phenobarbital was found to have a significant teratogenic potential in mice, resulting in skeletal, cardiac, renal, neural, and urogenital defects in a dose-related fashion. The LM/Bc strain was most sensitive to phenobarbital, with 46.7% of the fetuses exposed to the highest maternal plasma concentrations having malformations. C57BL/6J fetuses were the most resistant strain, with only 28.6% abnormalities.

Abnormalities, Drug-Induced

Strain differences in heat-induced neural tube defects in mice.

Neural tube defects are common congenital anomalies affecting approximately 0.1% of liveborn infants. It is widely accepted that these disorders are of a multifactorial origin, having both a genetic and an environmental component to their development. In a study designed to elucidate the genetic factors involved in a mouse model of hyperthermia-induced neural tube defects, it is apparent that a hierarchy of susceptibility exists among various inbred mouse strains. Female SWV mice were extremely sensitive to a 10-minute hyperthermic treatment on day 8.5 of gestation, with 44.3% of their offspring having exencephaly. The other strains used in these studies (LM/Bc, SWR/J, C57BL/6J, and DBA/2J) all had less than 14% affected offspring. In experimental situations where the environment is held constant and the only difference between the strains is their genotype, it is assumed that the difference in response to a teratogen is genetically mediated. To test the hypothesis that several genes are involved, reciprocal crosses were made between strains of high, moderate, and low sensitivity. When this was done, the high sensitivity of the SWV strain was lost in the F1 hybrid, implying not only that multiple genes are involved, but that it is the embryo's genotype and not the maternal genotype that is the major factor in determining susceptibility to heat-induced neural tube defects.

Animals

Crooked calf disease: a histological and histochemical examination of eight affected calves.

Macroscopic, histopathologic, and histochemical investigations were made on a group of eight neonatal Angus X Hereford calves, selected from an ongoing outbreak of crooked calf disease among calving heifers. Arthrogryposis of the forelimbs was seen to varying degrees in all eight animals, and torticollis was present in six calves. Histopathology, using hematoxylin and eosin stain, did not reveal any striking or consistent lesion in the affected animals; the majority of the tissues sampled were normal. Muscle samples were processed for adenosine triphosphatase (ATPase) and NADH-tetrazolium reductase (NADH-tr) histochemistry, and the data suggest that a primary myopathy is not responsible for the congenital anomalies in the affected calves.

Animals

Central nervous system anomalies associated with meningomyelocele, hydrocephalus, and the Arnold-Chiari malformation: reappraisal of theories regarding the pathogenesis of posterior neural tube closure defects.

Complete gross and microscopic neuropathological examinations of 25 children who died with meningomyelocele, the Arnold-Chiari malformation, and hydrocephalus revealed a wide range and frequency of associated central nervous system malformations. The most remarkable of these anomalies were hypoplasia or aplasia of cranial nerve nuclei (20%), demonstrable obstruction of cerebrospinal fluid flow within the ventricular system (92%), cerebellar dysplasia (72%), a disorder of migration of cortical neurons (92%), fusion of the thalami (16%), agenesis of the corpus callosum (12%), and complete or partial agenesis of the olfactory tract and bulb (8%). The anomalies associated with posterior neural tube closure defects can no longer be considered secondary, but rather must be considered part of a spectrum of malformations caused by an unidentified primary insult to the central nervous system. The frequency and pattern of brain malformations associated with neural tube defects of some children with meningomyelocele suggest that such malformations may seriously affect intellectual outcome.

Arnold-Chiari Malformation

Variable patterns of malformation in the mouse fetal hydantoin syndrome.

Controversy over the existence of a fetal hydantoin syndrome continues in medical literature despite numerous recent clinical studies describing additional patients with a characteristic pattern of abnormalities. Resistance to its acceptance as a clinical entity seems to stem from the variability of the component malformations seen in this syndrome. To examine this variability in a controlled experimental situation, we utilized data obtained in previously reported studies of a mouse model of the fetal hydantoin syndrome. In the mouse, prenatally exposed fetuses had congenital anomalies similar to those observed in the human syndrome. In terms of overall frequency of malformation there were no differences among three inbred mouse strains. However, when considering the individual rates of the 11 most common malformations, considerable differences were noted among the strains. These strain differences in the pattern of malformations appear to be related to genotypic differences in susceptibility to specific malformations. These results provide one possible explanation for the variability observed in the human fetal hydantoin syndrome.

Abnormalities, Multiple

Detection of teratogens in the Drosophila embryonic cell culture test: assay of 100 chemicals.

An in vitro assay of teratogenesis has been developed that utilizes Drosophila embryonic cell cultures. The endpoint selected in assessing the teratogenic potential of any substance involves detection of interference with normal muscle and/or neuron differentiation. In the validation phase of this project, 100 chemicals were tested. With drugs for which extensive reliable mammalian data are available, the results in the Drosophila assay equate rather favorably with those observed in animals and humans (i.e., a low percentage of false positives and false negatives has been obtained). In an effort to determine if strain differences exist and also to establish that the system shows a dose response, cultures from three wild-type Drosophila strains (Canton S, Canton S109, and Oregon R) were tested. Dose-response differences were observed when diethylstilbestrol, diphenylhydantoin, imipramine, testosterone, and tolbutamide were added to the cultures. These results suggest that the Drosophila assay, with further testing and refinements, might be capable of identifying agents of high teratogenic potential by their effect on neurons and muscle differentiation. Furthermore, sensitive strains might be used to study mechanisms of abnormal development and gene involvement in teratogenic resistance.

Animals

Possible mesodermal origin for axial dysraphic disorders.

We report four patients who provide clinical evidence supporting the hypothesis that axial dysraphic states may result from a primary disturbance in the chordoaxial mesoderm. One infant had complete craniorachischisis, an omphalocele, and ambiguous genitalia. A second infant had anencephaly and an omphalocele. The third had iniencephaly. The fourth had cervical vertebral fusion defects, an occipital menigocele, and a laterality malformation sequence. Alteration in the development of structures derived from the chordoaxial mesoderm could explain all of the structure defects observed in the four patients. This hypothesis accounts for the nature of the defects seen in association with dysraphic disorders and for the genetic relationship observed between neural tube defects and vertebral anomalies.

Abnormalities, Multiple

Mouse fetal hydantoin syndrome: effects of maternal seizures.

To test the effect of maternal seizure disorders on prenatal structural development, the mouse neurological mutant quaking (qk) was used. Administering phenytoin in the drinking water of females homozygous for the quaking allele reduced the frequency of tonic-clonic seizures typical for this mutant from a background rate of 2.06 to 0.34 seizures per mouse day. As the seizure frequency decreased, the percentage of fetuses exhibiting abnormalities associated with the mouse fetal hydantoin syndrome increased from 0 to 77. As in previous studies with the mouse syndrome, the increase in malformations was associated with increased maternal serum phenytoin levels. The results of this study indicate that the maternal serum phenytoin level, and not the maternal seizure disorder, is the etiologic agent responsible for the malformations observed in this syndrome.

Abnormalities, Drug-Induced

The fetal alcohol syndrome in mice: maternal variables.

CBA, C3H, and C57 female mice maintained on a diet of 20 percent ethanol-derived calories prior to and throughout gestation were mated in a diallele cross. Prenatal death, malformations, and fetal weights were directly related to maternal blood alcohol levels, indicating a maternal effect. Fetal abnormalities and maternal blood alcohol levels varied with maternal strain (CBA > C3H > C57) and were inversely related to maternal alcohol dehydrogenase activity. Microsomal ethanol oxidizing systems induction was directly associated with increased fetal abnormalities, being greatest in CBA females. These results indicate that liability for the pattern of malformation observed in this syndrome is dependent on maternal blood alcohol levels, which are determined by the rate of maternal alcohol metabolism as well as the amount of maternal alcohol consumption.

Alcohol Oxidoreductases