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Heritable, diet-induced hyperlipidemia in California mice (Peromyscus californicus) is due to increased hepatic secretion of very low density lipoprotein triacylglycerol.

California mice (Peromyscus californicus) develop type II diabetes mellitus when fed a high-fat diet. We undertook the current studies to determine whether hyperlipidemia precedes the development of insulin resistance and to establish breeding colonies of hyperlipidemic and normolipidemic mice. For 6 wk, mice (n = 24) received a diet containing 25.8% of energy from fat. Mice representing the upper and lower quartiles of serum triacylglycerol (TAG) response (mean, >1000 mg/dl versus <300 mg/dl, respectively; 6 mice per group) were designated as high (HR) and low (LR) responders, respectively, and were used for further study. After 12 wk of consuming the high-fat diet, HR mice remained hypertriglyceridemic and developed hyperinsulinemia (5.1 +/- 1.3 ng/ml), hypercholesterolemia (309.3 +/- 31.0 mg/dl), and hyperglycemia (205.9 +/- 30.3 mg/dl) compared with LR mice. HR mice were not hyperphagic or obese. Offspring of HR x HR mice had elevated serum TAG concentrations (mean, 1752.2 +/- 209.7 mg/dl), hypercholesterolemia, hyperinsulinemia, and mild hyperglycemia by 5.5 mo of age. Mating HR male and LR female mice produced HR, intermediate, and LR progeny. HR mice had elevated serum concentrations of cholesterol, and plasma concentrations of high density lipoprotein cholesterol, and the very low density lipoprotein TAG compared with LR mice. Lipoprotein lipase and hepatic lipase activities did not differ between HR and LR mice. Studies of in vivo hepatic TAG production indicated that the hyperlipidemia of HR mice is a consequence of TAG hypersecretion.

Animals↗

Spatial and temporal dispersion of immature Ixodes dammini on Peromyscus leucopus in northwestern Illinois.

Infestation by immature Ixodes dammini and infection by Borrelia burgdorferi of the white-footed mouse Peromyscus leucopus were studied in Castle Rock State Park in northwestern Illinois during June-October 1990. Prevalence and intensity of infestation of larvae on mice were highest in August with a smaller peak in early June. The distribution of larvae on mice was highly aggregated during each of the sampling periods. Aggregation appears to be the result of a series of nonrandom successful attachments by single larvae, rather than of simultaneous attachment by clumps of larvae. Infection rate of mice by B. burgdorferi averaged 21.4% with a peak of 28.6% in August. A comparison of the numbers of attached immature ticks collected from mice and of questing ticks collected through dragging indicated that the larvae-to-nymph ratio was higher on mice than on drags. Given the low total numbers of nymphs collected from mice, this suggests a potential role for other hosts of I. dammini nymphs in northwestern Illinois.

Animals↗

Parasitic and phoretic arthropods of sylvatic and commensal white-footed mice (Peromyscus leucopus) in central Tennessee, with notes on Lyme disease.

Sixteen species of parasitic or phoretic arthropods were collected from 56 white-footed mice, Peromyscus leucopus, live-trapped in central Tennessee from April through November 1987. Arthropod infestation was compared for mice taken from sylvatic (woodland) versus commensal (household) habitats. Three species were recorded from hosts in both habitats: the sucking louse Hoplopleura hesperomydis, the flea Epitedia wenmanni, and the laelapid mite Androlaelaps casalis. Twelve of the 13 remaining arthropod species were taken only from mice trapped in woodland whereas the phoretic glycyphagid mite Glycyphagus hypudaei was collected only from commensal mice. Arthropod faunas on commensal hosts clearly were impoverished. The 12 additional arthropod species recorded from the woodland mice consisted of 1 nidicolous beetle, Leptinus orientamericanus; 1 bot, Cuterebra fontinella; 3 fleas, Ctenophthalmus pseudagyrtes, Orchopeas leucopus and Peromyscopsylla scotti; 1 tick, Dermacentor variabilis; 2 mesostigmatid mites, Androlaelaps fahrenholzi and Ornithonyssus bacoti; 3 chiggers, Comatacarus americanus, Euschoengastia peromysci, and Leptotrombidium peromysci; and 1 undescribed pygmephorid mite of the genus Pygmephorus. Two nymphal and 100 larval D. variabilis were examined for spirochetes and found to be uninfected.

Animals↗

Odontomas in Peromyscus leucopus.

A colony of Peromyscus leucopus was established 15 years ago from animals trapped in the deciduous forest at Argonne National Laboratory, Argonne, Illinois. A roentgenographic survey of the skeletons of 189 of these untreated animals dying during a 13-month period disclosed 48 odontogenic growths in 21 of the mice. These growths were diagnosed on histopathologic examination as complex odontomas, the incidence of which was higher in males than in females. In this relatively small sample, these benign tumors appeared to be associated with youth rather than old age.

Age Factors↗

Effect of age and torpor on the circadian rhythms of body temperature, activity, and body weight in the mouse (Peromyscus leucopus).

Age-related alterations in homeostatic mechanisms, as measured by changes in circadian rhythms, have been reported in the literature. The purpose of the present study was to determine if changes in the circadian rhythms of motor activity, body temperature, and body weight occur with age in the long-lived mouse, Peromyscus leucopus, and to determine if the incidence of torpor (hypothermia) was age-dependent. Young and old mice were entrained to an LD 12:12 cycle, and then physiological and behavioral performance was monitored by a data-acquisition system. The major differences between the 6-month and 60-72-month age groups were the following. Significant episodes of torpor occurred in a high percentage of old mice at 0600 hr on consecutive days, but young mice showed no evidence of torpor when food was provided ab libitum. Torpor in young mice was found to occur only during starvation conditions. Old animals phase in and out of torpor over an interval of several days; high-amplitude rhythms and good synchronization of activity and temperature occurred when torpor was expressed, and low-amplitude rhythms, poor synchronization between temperature and activity, and a phase shift of body-weight acrophase occurred on days when torpor was not expressed. Significant changes in acrophase and amplitude occurred between individual animals and days in the old group; no significant change in acrophase and amplitude was observed in the young group. Population-mean cosinor analysis revealed a significant age-related decrease in amplitude and mesor, but no significant change in acrophase was found.

Aging↗

Dichlorvos toxicity in the white-footed mouse (Peromyscus leucopus).

The organophosphate pesticide, dichlorvos (DDVP), is used commonly to control ectoparasites in laboratory rodents colonies. This compound is relatively nontoxic to Mus musculus at dosages several times the therapeutic level. However, usage of a similar therapeutic level in the white-footed mouse (Peromyscus leucopus) resulted in substantial mortality. To determine whether P. leucopus is more susceptible than M. musculus to the toxic effects of DDVP, both species were exposed to 0, 3 and 6 g of pelleted DDVP per cage. In a subsequent experiment, P. leucopus were exposed to 0 and 1 g of DDVP per cage. Mortality was not observed in M. musculus at any dosage level. P. leucopus exposed to 1, 3 and 6 g of DDVP exhibited mortalities of 3%, 20% and 53%, respectively. Mean serum cholinesterase in P. leucopus exposed to 3 and 6 g of DDVP was 0.35 and 0.21 U/ml as compared to 3.13 U/ml in unexposed mice. The analogous values for M. musculus were 1.60 and 0.79 U/ml while the level in unexposed mice was 6.79 U/ml. In the second experiment, mean serum cholinesterase in P. leucopus exposed to 1 g of DDVP was 0.32 U/ml as compared to 2.33 U/ml in unexposed mice. Histopathology revealed no lesions in the brain, liver or kidneys. The increased susceptibility of P. leucopus to the toxic effects of DDVP was related to the lowered serum cholinesterase. This indicates that DDVP should not be used for control of ectoparasites in P. leucopus.

Animals↗

"Resource" exchange in the biparental California mouse (Peromyscus californicus): water transfer from pups to parents.

Mammalian mothers provide water to their young via milk. Rodent mothers reclaim much of this water by licking the anogenital areas of their pups, stimulating reflexive urination, and consuming the pups' urine. Male rodents do not provide milk (hence water) to the young, but in some species male parents may nevertheless lick their pups. We determined the amount of water transfer from pups to mothers and fathers in the biparental California mouse, Peromyscus californicus, by injecting 5-, 10-, 20-, and 30-day-old pups with tritiated water and measuring the radioactive label in maternal and paternal plasma after 24 hr of interaction with their litter. On Days 5 and 10 mothers obtained more pup urine than did fathers. Parents consumed equivalent amounts of pup urine on Days 20 and 30. Mothers engaged in more pup anogenital licking than did fathers, which accounted for the difference in pup urine consumption. Salt appetite controls in part, pup anogenital licking in lactating rats (Gubernick & Alberts, 1983). Salt appetite was not implicated in the modulation of anogenital licking in the California mouse because the mice failed to display a salt appetite. Licking of young and urine consumption are not dependent solely on the bidirectional exchange of water between the dam and her offspring.

Animals↗

Effects of some factors on the susceptibility of Peromyscus leucopus to infestation by larvae of cuterebra fontinella (Diptera: Cuterebridae).

Two levels of 3 factors, (1) host age, (2) host dietary state in regard to vitamin A, and (3) previous infestation history, were tested individually and in combinations for their effects on the susceptibility of Peromyscus leucopus to infestation by larvae of the rodent bot fly, Cuterebra fontinella. Previous infestation was the only significant single factor. Previously uninfested (Pu) mice usually were more susceptible to infestation than previously infested (Pi) mice. Interactions of age and state of vitamin A had the following effects: 1) Young Pu mice that had been denied vitamin A were much less susceptible to infestation than equivalent mice that had been fed diets containing the vitamin; and 2) when Pu mice were deficient in vitamin A, old mice were more susceptible than young mice but when Pu mice were not deficient in the vitamin, young mice were more susceptible. These findings may have significance for natural infestations of P. leucopus.

Aging↗

Estrous cycle regulation in the whitefooted mouse (Peromyscus leucopus) with special reference to vaginal cast formation.

The estrous cycle of the whitefooted mouse (Peromyscus leucopus) was consistent with those described for most small rodents and closely resembled that of the house mouse and the rat in timing. The presence of the male did not accelerate puberty nor induce cycle synchrony, but was critical in establishing cycle regularity. Females isolated from influences of males never attained a pattern of concistent cycle length. Development of the vaginal epithelium during estrus was excessive in both isolated and non-isolated females, resulting in a "cast" of cornified epithelium which could be removed intact during metestrus. Casts removed during the making of vaginal smears measured up to 20 mm in length and still left a sufficient residue of cells which could be detected in all stages of the estrous cycle.

Animals↗

Effects of experimental infection of the deer mouse (Peromyscus maniculatus) with mouse hepatitis virus.

Three deer mice (Peromyscus maniculatus) given 10(4) TCID50 of mouse hepatitis virus -S intranasally all had significant serum neutralization titers to mouse hepatitis virus -S 3 weeks later. Ten other deer mice were given 10(3) TCID50 of mouse hepatitis virus -3 intranasally and placed with sentinel laboratory mice (CF1, C3H/Rv, and nu/nu) and uninoculated deer mice. One inoculated deer mouse died, but mouse hepatitis virus was not isolated. No other inoculated or uninoculated animals exhibited signs of disease. No sentinel animals exhibited serum neutralization titers for mouse hepatitis virus -3. Three of the remaining nine inoculated deer mice had positive antibody titers. It was concluded that deer mice do not develop clinical manifestations of mouse hepatitis virus or transmit the virus to potentially susceptible laboratory mice.

Animals↗

Non-alcohol dehydrogenase-mediated metabolism of methylazoxymethanol in the deer mouse, Peromyscus maniculatus.

The concept that alcohol dehydrogenase (ADH) is involved in the metabolism of methylazoxymethanol (MAM) was examined in a model consisting of two strains of the deer mouse, Peromyscus maniculatus, one of which has a normal complement of the enzyme [ADH(+)], and the other, which completely lacks it [ADH(-)]. Both the ADH(+) and the ADH(-) strains rapidly metabolized [14C]MAM, administered in the form of the acetic acid ester, [14C] MAMOAc , to 14CO2, and the rates and extents of metabolism were virtually identical. Determination of O6-methylguanine and 7-methylguanine in liver DNA 6 and 24 hr after MAMOAc (25 mg/kg) administration showed that the levels of DNA methylation induced by the carcinogen were not significantly different in the two strains, indicating that both are capable of the metabolic activation of MAM to methylating species. Pyrazole, a potent inhibitor of ADH, inhibited MAM metabolism as well as liver DNA methylation in the ADH(+) strain; however similar inhibition of these processes also occurred in the ADH(-) strain. 3-Methylpyrazole, a weak or noninhibitor of ADH, also decreased the levels of MAM metabolism in both the ADH(+) and the ADH(-) strains. From these results, we conclude that ADH is not obligatory either in the metabolism or in the metabolic activation of MAM. As a possible alternative to ADH, liver microsomes were examined for their ability to metabolize MAM. In the presence of a NADPH-generating system, liver microsomes from both strains converted [14C]MAM to 14CH3OH and 14CH2O , although liver microsomes from the ADH(-) strain were more active in this respect. The microsomal metabolism was sensitive to inhibition by CO as well as to inhibition by pyrazole and 3-methylpyrazole.

Alcohol Dehydrogenase↗

Pathogenesis of Trypanosoma brucei infection in deer mice (Peromyscus maniculatus): hematologic, erythrocyte biochemical, and iron metabolic aspects.

Trypanosoma brucei EATRO 110 infection in deer mice (Peromyscus maniculatus) produced anemia in 15 of 42 mice between postinoculation days 14 and 70. The infected anemic (IA) mice had significantly higher reticulocyte counts (P less than 0.025), spleen (P less than 0.001) and liver (P less than 0.005) weights, and higher parasitemia than did infected nonanemic (INA) mice. gamma-Globulin concentrations of infected mice were markedly increased, and values for INA mice were 10% higher than values for IA mice. Erythrocyte hexokinase, glucose-6-phosphate dehydrogenase, glutathione peroxidase, glutathione reductase, and pyruvate kinase activities were increased in infected mice, whereas phosphofructokinase was only slightly decreased in infected mice. Seemingly, development of anemia was not related to defects in erythrocyte metabolism. Serum iron values of infected mice were similar to those of controls. Storage iron (hemosiderin and ferritin) concentrations were increased in the spleen and to a lesser extent in the liver. The activity of superoxide dismutase, an enzyme that favors conversion of easily mobilized soluble ferritin to poorly mobilized insoluble hemosiderin, was decreased per unit weight of the enlarged spleen, although total activity was increased. The superoxide dismutase activity per unit weight of liver was not altered in infected mice although total liver activities were increased. These findings, as well as the marked reticulocytosis, indicate that lack of iron supply does not have a part in precipitating the anemia of T brucei infection. Leukocytosis was present in infected animals and was associated with lymphocytosis, eosinopenia, basophilia, and monocytosis; these changes were more marked in IA than in INA mice.

Anemia↗

Recovery from sexual satiety in deer mice (Peromyscus maniculatus bairdi).

Two experiments were completed in order to delineate the time course of recovery from sexual satiety in deer mice, Peromyscus maniculatus bairdi. The total numbers of ejaculations and intromissions attained in satiety tests were significantly decreased on the day following satiation and recovered gradually as measured in tests run after 3 and 7 days of recovery. Whereas some measures characteristic of individual series were altered by incomplete recovery, others were unaffected. In Experiment 2, most males ejaculated every day when tested for 5 consecutive days; the number of ejaculations per test was lowered after Day 1, but then remained relatively constant. The pattern of measures changing with recovery has implications for the development of control models of sexual behavior. The limited capacity of males to produce ejaculates (M = 12.2/5 days) implies that males should be selected for prudence in allocating ejaculates.

Animals↗

Influence of photoperiod and social environment on sexual maturation in female deer mice (Peromyscus maniculatus bairdii).

Female deer mice (Peromyscus maniculatus) were reared on either a long photoperiod (15:9 hr light/dark) or on short days (8:16 hr light/dark) from birth. Beginning at weaning, females were housed with an adult male, with an adult female, or in social isolation. In the first experiment, vaginas opened more slowly in females on short days than in those on long days. Vaginal introitus was also retarded in females reared with an adult female in comparison with females reared in isolation. When examined at 37 days of age, females reared with an adult male had larger uteri than those reared alone; uteri were also larger in long-day than in short-day females. In Experiment 2, females were killed at 30 days of age; again, uterine growth was stimulated by exposure of young females to either long days or an adult male. As was previously demonstrated for male deer mice, sexual maturation in females is regulated by photoperiod and social cues. Heterospecific social stimuli accelerate maturation in individuals that otherwise would be inhibited by having been reared on a short photoperiod.

Animals↗

Intraperitoneal transmitters in suckling white-footed mice, Peromyscus leucopus.

Intraperitoneal transmitter implantation in suckling white-footed mice, Peromyscus leucopus, was studied. Postnatal morphological development varied. Age ranged from 9 to 16 days, and body weight ranged from 4.4 to 7.3 g. Interference by mothers prevented successful implantation on sucklings which retained their neonatal appearance. Growth was measured in 6 sucklings for 21 days. Observed growth rates based on daily weight gain per 24 h were 0.29 and 0.32 g for implanted and control mice, respectively. Transmitter implantation resulted in a significant short-term weight loss (mean = 0.56 g) which was recouped prior to weaning. There was no evidence of impaired coordination or locomotor disability. This study concluded that intraperitoneal implantation is possible in suckling P. leucopus if surgery is delayed until venter pelage has developed sufficiently and eyes have been open at least 2 days. A few implications of using this technique to radio track small mammals are suggested.

Animals↗

Migratory kinetics of Cuterebra fontinella (Diptera: cuterebridae) in the white-footed mouse, Peromyscus leucopus.

Larvae of the rodent botfly, Cuterebra fontinella, follow a consistent migration route thorough their natural host, the white-footed mouse, Peromyscus leucopus. Larvae that enter the eye or nares spend about 48 hr in the nasal cavity and then follow a caudally oriented path that leads through the nasal passage, trachea, thoracic and abdominal cavities, and ends in the subcutaneous tissues of the posteroventral abdominal region. Larvae that enter mice through the anus or by injection into the subcutaneous tissues of the back begin their migration from the trachea and from that point follow the usual path to the terminus.

Abdomen↗

Cataract-webbed trait in Peromyscus. II. Biomicroscopy and histology of eyes.

A longitudinal biomicroscopic study of lenses and fundi of over 2,000 Peromyscus maniculatus (deer mice) which have cataracts as an autosomal recessive trait has been correlated with histologic development of cataracts. By selective breeding, early-onset cataracts (Type I), which are frequently associated with abnormal closure of the fetal fissure and hyaloid vascular abnormalities, have been separated from later-onset (Type II) cataracts, which are more heterogeneous. Type I cataracts occur in syndactylous deer mice, develop rapidly, and histologically may show backward migration of disrupted lens bow cells before lens opacity is apparent biomicroscopically. Posterior subcapsular cataracts then develop and spread centrally and inferonasally to the equatorial area and then to the entire equator. The nucleus opacifies in either a "shell" pattern or as isolated dots. Anterior cortical opacification progresses to mature cataract. Histologically, abnormal migration and proliferation of lens epithelium and enlargement and vacuolar degeneration of the basal (posterior) process of cortical lens fibers are early changes in Type I cataracts. Disruption of the lens bow with failure of differentiation and inward turning of lens epithelium to become lens fibers occurs concurrently. Type II cataracts may follow the developmental pattern of Type I but are rarely associated with severe hyaloid vascular abnormalities and progress more slowly. About 6% of animals develop diabetes, which is not associated with the cataract-webbed trait.

Animals↗

Bot fly (Cuterebra fontinella fontinella) parasitism of cotton mice (Peromyscus gossypinus) on St. Catherines Island, Georgia.

From February 1993 through October 1994, 382 cotton mice (Peromyscus gossypinus) were live-trapped and examined for bot fly (Cuterebra fontinella fontinella) larvae. Thirty-nine (10%) of the mice were parasitized by a total of 44 bot fly larvae. All bots were situated in the inguinal or lower abdominal region of the mice. Monthly data strongly suggested that this bot is bivoltine at this latitude with distinct summer and winter population peaks. Prevalence of parasitism was highest in June 1994 when 56% of 16 mice examined were infested with a mean intensity of 1.3 bots. Adult flies were successfully reared from 10 bots that exited from mice; the time period (58-98 days, mean = 79.5) that these specimens spent in the soil as pupae further supports the contention that C. f. fontinella is bivoltine on St. Catherines Island.

Animals↗