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Further studies on migration and colonization of leukemic lymphoblasts in AKR and HSS inbred mice.

AKR and HSS lymphoid leukemias were transplanted into identical mouse strains and changes in pyruvate kinase activity were measured in thymus, mesenteric lymph node and spleen during the posttransplantation period. The heterogeneity of the cellular density and the size distribution were determined in the HSS spleen cells in order to get more information about the settlement and proliferation of the transplanted leukemic lymphoblasts. The data obtained suggest that this model system may be useful for a follow up the fate of leukemic blast cells in the host animal.

Animals↗

The murine Ah locus: in utero toxicity and teratogenesis associated with genetic differences in benzo[a]pyrene metabolism.

Benzo[a]pyrene, at dose between 50 and 300 mg per kg body weight given at Day 7 or 10 of gestation, causes in utero toxicity and teratogenicity more so in genetically "responsive" C57BL/6 than in "nonresponsive" AKR inbred mice. With the use of AKR X (C57BL/6) (AKR)F1 and (C57BL/6) (AKR)F1 X AKR backcrosses, it was shown that allelic differences at the Ah locus in the fetus can be correlated with dysmorphogenesis. If the mother is nonresponsive (Ahd/Ahd), the Ahb/Ahd genotype in the fetus is associated with more stillborns and resorptions, decreased fetal weight, increased congenital anomalies, and enhanced P1-450-mediated covalent binding of BP metabolites to fetal protein and DNA, when compared with the Ahd/Ahd genotype in the fetus from the same uterus. If the mother is responsive (Ahb/Ahd), however, none of these parameters can be distinguished between Ahb/Ahd and Ahd/Ahd individuals in the same uterus, presumably because enhanced BP metabolism in maternal tissues and placenta cancels out these differences between individual fetuses. Of particular interest in our study is the fact that the mother and the father both must be of a particular genotype before differences in teratogenesis among fetuses (due to their genotype) will be expressed. These data might provide an example in attempting to explain clinically why only one child is affected with an apparent "drug-induced syndrome" although the mother has taken the same dose of the particular drug during each of numerous pregnancies.

Abnormalities, Drug-Induced↗

Adrenocortical lipid depletion gene (ald) in AKR mice is associated with an acyl-CoA:cholesterol acyltransferase (ACAT) mutation.

ald, a recessive allele in AKR inbred mice, is responsible for complete adrenocortical lipid depletion in postpubertal males, which appears to be androgen dependent. Two recent observations (adrenocortical lipid depletion in acyl-CoA:cholesterol acyltransferase-deficient (Acact-/-) mice and the mapping of Acact to a region of chromosome 1 containing the ald locus) prompted us to ask whether adrenocortical lipid depletion in AKR mice results from an Acact mutation. Refined genetic mapping of Acact and ald was consistent with colocalization of these loci. Crossing Acact-/- with AKR (ald/ald) mice yielded postpubertal male offspring characterized by adrenocortical lipid depletion, indicating that these loci are not complementational and are therefore allelic. Immunoblotting of preputial gland homogenates demonstrated that AKR mice had an ACAT protein with a lower molecular mass than other mouse strains. Analysis of Acact cDNA from AKR mice revealed a deletion of the first coding exon and two missense mutations. Despite these coding sequence differences, the ACAT protein from the ald allele catalyzed cholesterol esterification activity at levels similar to that of wild-type protein. We speculate that the adrenocortical lipid depletion resulting from the ald mutation is caused by an altered susceptibility of the mutant protein to modifying factors, such as androgen production at puberty, in an as yet undetermined manner.

Adrenal Cortex↗

[Mechanism of the persistence of a less virulent strain of Toxoplasma gondii in the body of the host].

The diameters of toxoplasms' cysts in native preparations of brain of bredless and inbred mice (AKR and CC57BR) infected with the toxoplasms of Czech low-virulent strain were measured. It is shown that the growth of cysts ceases by the 7th week from the infection and the ratio between cysts of different sizes does not change for 38 weeks and more. The curve of the ratio between cysts of different sizes, which in the period of infectious process stabilization is close to the even distribution curve, is apparently a result of primary parasitemia. By the 1st year of the infection a reactivation of the infection in some animals occurs judging by the rise of the number of small cysts. Stabilization and then reactivation of the infection are correlated with the dynamics of humoral antibodies.

Animals↗

Biliary lipids, water and cholesterol gallstones.

Cholesterol supersaturation, hydrophobic bile salts, pronucleating proteins and impaired gall-bladder motility may contribute to gallstone pathogenesis. We here show that both gallstone-susceptible C57L and gallstone-resistant AKR male inbred mice exhibit supersaturated gall-bladder biles during early lithogenesis, whereas bile-salt composition becomes hydrophobic only in susceptible C57L mice. In vitro, cholesterol crystallization occurs depending on relative amounts of lipids; excess cholesterol may exceed solubilizing capacity of mixed bile salt-phospholipid micelles, whereas excess bile salts compared with phospholipids leads to deficient cholesterol-storage capacity in vesicles. In vivo, bile lipid contents are mainly determined at the level of the hepatocyte canalicular membrane, where specific transport proteins enable lipid secretion [ABCG5/G8 (ATP-binding cassette transporter G5/G8) for cholesterol, MDR3 (multi-drug resistant 3) for phospholipid, BSEP (bile salt export pump)]. These transport proteins are regulated by farnesoid X and liver X nuclear receptors. After nascent bile formation, modulation of bile water contents in biliary tract and gall-bladder exerts critical effects on cholesterol crystallization. During progressive bile concentration (particularly in the fasting gall-bladder), cholesterol and, preferentially, phospholipid transfer occurs from cholesterol-unsaturated vesicles to emerging mixed micelles. The remaining unstable cholesterol-enriched vesicles may nucleate crystals. Various aquaporins have recently been discovered throughout the biliary tract, with potential relevance for gallstone formation.

Animals↗

Serum pseudouridine as a biochemical marker in the development of AKR mouse lymphoma.

Pseudouridine is a modified nucleoside derived from the degradation of some species of RNA, primarily transfer RNA, the level of which is elevated in biological fluids of tumor-bearing subjects. In order to study the relationship between pseudouridine levels and the development and progression of neoplasia, we have measured pseudouridine levels in the serum of inbred mice with high (AKR) and low (BALB/c) incidence of spontaneous lymphoma and in mice carrying transplantable lymphoid tumors. Our results show that the serum level of pseudouridine: (a) in healthy mice, is higher in females than in males; (b) increases significantly in female AKR mice in the period preceding the development of lymphoma (preneoplastic period occurring at about 6 months of age); and (c) is highest in AKR mice with lymphoma, the most elevated levels being found in mice with widely disseminated disease. The latter observation was confirmed by experiments with a transplantable AKR lymphoma (T2), where a positive correlation between tumor burden and serum pseudouridine levels was found. On the contrary, in BALB/c mice carrying a transplantable myeloma tumor (MOPC-460), no increase was seen despite the presence of a considerable tumor burden. The increase of pseudouridine in the preneoplastic period, in the absence of overt disease is viewed as an early sign of the development of the disease.

Animals↗

Genetic basis of resistance to trauma in inbred strains of mice.

In this study the resistance to mechanical, thermal, and radiation trauma in four inbred strains of mice (AKR, BALB/c, CBA, and C57Bl/6) was compared with the degree of genetic resemblance, by analyzing the allozyme variabilities of these strains. It was shown that the highest degree of genetic resemblance was among CBA and AKR strains, which correlated with a similar degree of resistance to trauma. On the other hand, BALB/c and C57Bl/6 strains expressed significant differences, both genetically and with respect to the responses to trauma. The hypothesis is introduced that the genetic determination of the resistance to trauma is based on: a) a polygenic control of general physiological homeostasis, with the possibility that b) some specific genes or single loci may contribute more than others to such adaptations of the strains tested.

Alleles↗

Electrocardiographic changes in experimental chronic murine Chagas' disease.

An electrocardiographic study was performed on 26 AKR and 32 A/J inbred mice and on 100 Swiss outbred mice, chronically infected with different strains of T. cruzi, characterized as Types I, II and III. The incidence of electrocardiographic alterations in AKR mice was of 87.0%, 80.0% and 83.3% respectively for infection with the Type I, Type II and Type III strains of T. cruzi. In A/J mice the incidence of electrocardiographic alterations was 100% in the infection with the Type I and Type III strains and 26.1% with the Type II strain of T. cruzi. In Swiss mice the electrocardiographic alterations occurred in 53.5% of the mice infected with the Type II strain and in 71.4% of those infected with the Type III strain of T. cruzi. The most frequent electrocardiographic alterations in chronically infected mice, independently of mouse or T. cruzi strain, were first degree AV block, intraventricular conduction abnormalities, sinus tachycardia and bradycardia. The predominant alterations caused by each of the T. cruzi strains varied according to mouse strain. In A/J mice, the electrocardiographic alterations were more frequent in those animals infected with Type I and III strains of T. cruzi and in Swiss mice the alterations were more frequent in those infected with the Type III strain. The results presented in this study demonstrate that the murine model is suitable for electrocardiographic studies related to the heart lesions that occur in Chagas' disease.

Animals↗

HPLC validation of a circadian melatonin rhythm in the pineal gland of inbred mice.

Production of melatonin in the pineal gland of inbred mice such as C57B1/6J, BALB/c and AKR strains is still a matter of debate. In previous studies, we and other authors showed that these strains of inbred mice have a clear-cut circadian rhythm of serum melatonin and urinary 6-hydroxy-melatonin-sulphate. In contrast, other groups claimed these mice are unable to synthesize melatonin. These studies were based on RIA measurements and/or estimates of N-acetyltransferase (NAT) and hydroxyindole-O-methyltransferase (HIOMT) activities. In the present study we validate the presence of melatonin in the pineal gland of C57B1/6, BALB/c, and AKR mice by HPLC determinations. We found a short-term melatonin peak in the middle of the dark period with a pattern which mirrors that found previously in the serum. The possibility remains, although it seems unlikely, that the pineal melatonin rhythm measured here represents melatonin produced elsewhere which then was subsequently taken up by the pineal gland.

Animals↗

[Characteristics of the adaptation of the dwarf tapeworm to new hosts].

Studies of the inbred lines of mice A/He, AKR and CBA infected with different strains of H. nana have shown that the helminth, when changing the host for another one of the same species but with different hereditary characters, happens to be insufficiently adapted to the new host. However it does not prevent the start of the infectious process. With increasing number of passages the parasite's adaptation level to the organism of the new host rises gradually. Possibilities and the adaptation level of the agent to the new host are defined as well by the adaptational mechanisms common to each specific strain of H. nana and the host's characters.

Adaptation, Physiological↗

[Use of inhibition by metyrapone in a "mutual depletion system" for evaluation of active centres of various arylhydrocarbon hydroxylases].

It was shown that metyrapone, the inhibitor of arylhydrocarbonhydroxylase, taken at concentrations equimolar to that of cytochrome P-450 non-competitively inhibits the hydroxylation of 3,4-benzpyrene in the liver microsomes of inbred mice of the C57BL/6 and AKR strains. In a given "mutual depletion inhibition system" the concentration of the catalytically active centres of microsomal cytochrome (Ecac), their turnover number (TNcac) and "true" dissociation constant of the enzyme-inhibitor complex were determined in the control and 3-methylcholanthrenetreated mice of both strains. The increased rate of 3,4-benzpyrene hydroxylation in the liver of 3-methylcholanthrene-induced "sensitive" C57BL/6 mice is determined by the increase of Ecac (and, in a lesser degree, of TNcac) per molecule of cytochrome P-448. In the liver microsomes of "induction-resistant" AKR mice an injection of 3-methylcholanthrene results in a slight increase of Ecac and a simultaneous decrease of TNcac. It was assumed that contrary to the present-day concepts, an aberrant microsomal hemoprotein with a genetically determined low molecular activity is synthesized in mice of "resistant" AKR strain.

Animals↗

Genetic analysis of intestinal cholesterol absorption in inbred mice.

A genetic mapping strategy was employed to identify chromosomal regions harboring genes that influence the absorption of intestinal cholesterol in the mouse. Analysis of seven inbred strains of male mice (129P3, AKR, BALB/c, C3H/He, C57BL/6, DBA/2, and SJL, all from Jackson Laboratories) revealed substantial differences in their abilities to absorb a bolus of cholesterol delivered by gavage. Crosses between high (AKR, 129) and low (DBA/2, SJL) absorbing strains revealed evidence for the presence of dominant genes that increase and decrease cholesterol absorption. Backcrosses between F1 offspring and parental strains (DBA/2xAKD2F1 and 129xSJL129F1) followed by linkage analyses revealed four quantitative trait loci that influenced cholesterol absorption. Analyses of recombinant inbred strains identified an additional three loci affecting this phenotype. These seven quantitative trait loci, which map to different chromosomes and are termed Cholesterol absorption 1-7 (Chab1-7) loci, together influence the absorption of intestinal cholesterol in mice and are likely to be involved in different steps of this complex pathway.

Animals↗

Kinetics of expression of infectious ecotropic, xenotropic, and mink cell focus-forming murine leukemia virus after 5-iododeoxyuridine induction of cells from high- and low-leukemia mouse strains.

Endogenous murine leukemia virus (MuLV) was induced with 5-iododeoxyuridine (IdUrd) from the high-leukemia mouse strain AKR and from two low-leukemia strains, C3H/He and BALB/c. A virus-free cell line from strain AKR readily gave rise to infectious, XC-positive MuLV upon treatment with IdUrd, whereas cells from strains C3H/He and BALB/c produced replication-deficient, XC-negative MuLV. IdUrd-induced cells also produced xenotropic and mink cell focus-forming MuLV. Xenotropic virus emerged at a higher titer from both AKR and BALB/c cells during two discrete time intervals, first at day 3 after induction and a second time during spread of the induced ecotropic MuLV. Xenotropic and mink cell focus-forming MuLVs were also produced by IdUrd-induced C3H/He cells but required another round of infection in Sc-1 cells for detection. The in vitro infectivity of endogenous ecotropic MuLV isolated by IdUrd induction from C3H/He cells correlated with pathogenicity in the Fv-1-compatible, leukemia-negative mouse strain NFS/N. Thus, the virulence of endogenous ecotropic MuLV may be an important factor in determining the leukemia incidence in these inbred strains of mice.

AKR murine leukemia virus↗

Brugia malayi: establishment in inbred and outbred strains of mice.

Immunocompetent mouse model for human filarial parasite Brugia malayi is urgently required in view of the paucity of commercial reagents for other susceptible rodent viz. mastomys and gerbil. Genes within the major histocompatibility complex have been reported to influence the susceptibility of mouse to helminth parasites. Attempts have therefore been made in the present investigation to experimentally infect various inbred strains of mice viz. NZB/BINJ, BALB/c, AKR, C(3)H, and SJL/J with H-2 haplotype (H-2: d, d, k, k, s, respectively) and outbred strains of mice viz. Parks and Swiss. Findings indicate that susceptibility of mice to B. malayi is strain associated. This is the first report on the successful completion of full developmental cycle of subperiodic B. malayi in NZB/BINJ, an immunocompetent mouse strain. In some of the other strains, partial development or low degree of establishment of worms was observed.

Animals↗