PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “Mice, Inbred C3H”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

[Biological characterization of clones of the Y, CL and MR strains of Trypanosoma cruzi in inbred C3H mice].

Ten clones of Trypanosoma cruzi isolated from Y, CL and MR strains were studied. The infectivity of culture forms, parasitemia pattern, polymorphism and mortality were studied in C3H inbred mice. Significant intra-group differences among Y and CL clones were found. MR clones showed higher homogeneity. These data indicate that T. cruzi strains can show different degrees of heterogeneity. It is suggested that conditions used to maintain T. cruzi strains may result in a selective advantage for some subpopulations (clones) after many years of laboratory maintenance.

Animals↗

[Studies on the growth rate of spontaneous mammary carcinomas in C3H inbred mice (author's transl)].

The incidence of spontaneous mammary carcinomas was determined in the C3H mouse inbred colony reared in Berlin-Buch over the past three years. Only female animals reaching a lifespan of no less than 170 days, corresponding to the longevity of the shortest lived animal in which a mammary carcinoma developed, were included in the study. A 50% incidence of mammary carcinomas was found with female animals above one year of age. The median age for the incidence of tumours was 446 days. Related to tumour-free females which at least have reached the median tumours age, the proportion of females developing mammary carcinomas was 86.8%. With increasing litters the tumour latency decreased from 491 for monoparous females to 383 days for mothers with 7 to 8 litters. The growth rate of 60 tumours under observation was found to vary grossly. With the minimum volume doubling time being the same in all cases, the growth rate of the tumours varied according to longer or shorter phases of stagnation or delay. Tumours having approximately equal growth rates throughout the period of investigation were classified as a "growth type". Altogether, seven growth types for spontaneous mammary carcinomas were established.

Animals↗

[Tissue distribution of iso-metronidazole and metronidazole in tumor-bearing C3H inbred mice].

Among the group of nitroimidazole radiosensitizers, predominantly misonidazole and metronidazole have so far been submitted to an extensive clinical testing. However, neurotoxic side effects have limited the dose of the substance necessary to obtain a maximal effect of sensibilization. Therefore, extensive efforts are being undertaken in the search for new compounds of equally good radiosensitizing action but with less side effects. One approach is to use substances of lower lipophilicity which will reduce penetration into the cerebral tissue. Proceeding from these considerations, comparative investigations were carried out with metronidazole (1-(2'-hydroxyethyl)-2-methyl-5-nitroimidazole) and iso-metronidazole (1-(2'-hydroxyethyl)-2-methyl-4-nitroimidazole), since in vitro but also in animal experiments the both substances showed an equally good radiosensitizing action while the lipophilicity of iso-metronidazole is much lower. Whereas for the metronidazole about the same distribution of the substance was found in all the organs investigated and also in the tissue of the mammary adenocarcinoma of C3H mice, the maximal concentration of iso-metronidazole in the cerebral tissue reached only about 50% of that in tumor tissue. This property, combined with the improved solubility, make the iso-metronidazole appear more appropriate for clinical testing than metronidazole.

Adenocarcinoma↗

Immunological and nonimmunological control of severity of Trypanosoma musculi infections in C3H and C57BL/6 inbred mice.

Studies concerned with the mechanisms responsible for relative resistance or susceptibility of strains of inbred mice to Trypanosoma musculi infections are presented. Treatment with 400 rads of ionizing radiation, silica dust, or trypan blue (reticuloendothelial blocking agents) rendered C3H mice unable to control the initial maximum level of parasite growth, and the mice died of overwhelming infections. In contrast, similarly treated C57BL/6 (relatively resistant) mice controlled initial trypanosome growth as well as controls; however, the duration of infection, preceding eventual cure, was approximately doubled. Combined treatment with trypan blue and 400 rads of radiation resulted in much higher initial levels of infection in C57BL/6 mice, and about half of the mice died; the remaining mice eventually recovered after a prolonged course of infection. These results indicate that a nonimmunological mechanism, which controls initial infection, and an immunological mechanism cooperate to limit T. musculi infections in normal mice. We present results that suggest that both mechanisms are less effective in C3H than in C57BL/6 mice. The initial control of infection presumably reflects the activity of some type(s) of phagocytic effector cell; we show, however, that the initial control of infection is not an attribute of the liver Kupffer cells. Identification and characterization of the cells capable of controlling initial infection could lead to procedures for enhancing their function and, thus, to enhanced resistance to, and elimination of, trypanosome infections.

Animals↗

Genetic analysis of the interaction between cardiac and skeletal actin gene expression in striated muscle of the mouse.

The two sarcomeric actin genes, encoding alpha-cardiac and alpha-skeletal actins, are co-expressed in striated muscle, but in the adult the respective isoform predominates in cardiac or skeletal muscle of the normal mouse. We have investigated the interaction between this gene pair in different genetic contexts. Northern blot analysis of alpha-actin mRNA levels in different inbred mice (129/SJ, C3H, C57BL/6) demonstrates variation of as much as threefold in skeletal muscle and eightfold in cardiac muscle. High or low-level expression is seen for both skeletal and cardiac muscle in a given line, suggesting common regulatory phenomena affecting the abundant alpha-skeletal or alpha-cardiac transcript. In the BALB/c mouse, which has a mutant cardiac actin locus, skeletal as well as cardiac actin mRNA and protein accumulate in the adult heart. We have analysed the role of the two alpha-actin genes in this phenomenon in seven recombinant inbred mouse lines (BALB/c x C57BL/6) and in a cross (BALB/c x C3H). The results demonstrate that neither alpha-actin gene alone is sufficient, and implicate other regulatory loci. DNA sequencing of the C3H and BALB/c alpha-skeletal actin gene promoters shows that they are virtually identical over 830 nucleotides. The relative levels of alpha-skeletal and alpha-cardiac actin proteins have been measured by N-terminal peptide analysis in the different mouse lines. The results point to regulatory loci affecting mRNA utilization and protein stability.

Actins↗

Anaphylactic response to parasite antigens: IgE and IgG1 independently induce death in Trichinella-infected mice.

The response of animals infected with different Trichinella species (T. spiralis, T. britovi, T. pseudospiralis) to antigens of different Trichinella species was evaluated in outbred mice (CD1) and inbred mice (BALB/c, C3H, SJL, C57BL/6). In mice deficient for IgE or IgG1, T. spiralis only was used. In homologous conditions (i. e., same Trichinella species for antigens and infectious agent) mortality was very high (up to 100% in SJL and C57BL/6). The anaphylactic response in heterologous conditions was much lower and death was observed only in C57BL/6 and SJL mice. Experiments with deficient mice have shown that both specific IgE and IgG1 independently induce a fatal anaphylactic response.

Anaphylaxis↗

Quantitative trait loci for femoral and lumbar vertebral bone mineral density in C57BL/6J and C3H/HeJ inbred strains of mice.

Significant differences in vertebral (9%) and femoral (50%) adult bone mineral density (BMD) between the C57BL/6J (B6) and C3H/HeJ (C3H) inbred strains of mice have been subjected to genetic analyses for quantitative trait loci (QTL). Nine hundred eighty-six B6C3F2 females were analyzed to gain insight into the number of genes that regulate peak BMD and their locations. Femurs and lumbar vertebrae were isolated from 4-month-old B6C3F2 females at skeletal maturity and then BMD was determined by peripheral quantitative computed tomography (pQCT). Estimates of BMD heritability were 83% for femurs and 72% for vertebrae. Genomic DNA from F2 progeny was screened for 107 polymerase chain reaction (PCR)-based markers discriminating B6 and C3H alleles on all 19 autosomes. The regression analyses of markers on BMD revealed ten chromosomes (1, 2, 4, 6, 11, 12, 13, 14, 16, and 18) carrying QTLs for femurs and seven chromosomes (1, 4, 7, 9, 11, 14, and 18) carrying QTLs for vertebrae, each with log10 of the odds ratio (LOD) scores of 2.8 or better. The QTLs on chromosomes (Chrs) 2, 6, 12, 13, and 16 were unique to femurs, whereas the QTLs on Chrs 7 and 9 were unique to vertebrae. When the two bone sites had a QTL on the same chromosome, the same marker had the highest, although different, LOD score. A pairwise comparison by analysis of variance (ANOVA) did not reveal significant gene x gene interactions between QTLs for either bone site. BMD variance accounted for by individual QTLs ranged from 1% to 10%. Collectively, the BMD QTLs for femurs accounted for 35.1% and for vertebrae accounted for 23.7 % of the F2 population variances in these bones. When mice were homozygous c3/c3 in the QTL region, 8 of the 10 QTLs increased, while the remaining two QTLs on Chrs 6 and 12 decreased, femoral BMD. Similarly, when mice were homozygous c3/c3 in the QTL region for the vertebrae, five of the seven QTLs increased, while two QTLs on Chrs 7 and 9 decreased, BMD. These findings show the genetic complexity of BMD with multiple genes participating in its regulation. Although 5 of the 12 QTLs are considered to be skeleton-wide loci and commonly affect both femurs and vertebrae, each of the bone sites also exhibited unique QTLs. Thus, the BMD phenotype can be partitioned into its genetic components and the effects of these loci on normal bone biology can be determined. Importantly, the BMD QTLs that we have identified are in regions of the mouse genome that have known human homology, and the QTLs will become useful experimental tools for mechanistic and therapeutic analyses of bone regulatory genes.

Alleles↗

Identification of inbred strains of mice: II. Characterization of different substrains of the C3H strain.

Substrains of inbred C3H mice differ significantly in their genetic constitution with respect to biochemical markers, skin grafting, and skeletal variations. The presence of such discrepancies among substrains poses a problem when comparing conclusions based on experiments done in different substrains. Therefore, methods of controlling the genetic constitution are necessary and important to avoid these discrepancies.

Animals↗

C-type virus particles in spontaneous and virus-induced leukemia and malignant lymphomas in mice and rats.

The presence and numbers of C-type virus particles in an animal model consisting of mice and rats with either spontaneous or virus-induced leukemia and lymphomas were studied, in order to determine the relation of the appearance of virus particles to viral etiology of such neoplasms. The numbers and distribution of C-type virus particles in organs from 13 mice with spontaneous leukemia and lymphomas were compared with the presence of virus particles in organs of 13 mice with leukemia and lymphomas induced by passage A (Gross) virus inoculation. C-type virus particles were present in organs of all mice with either spontaneous leukemia or leukemia and lymphomas induced by virus inoculation. However, the number of particles observed was significantly higher in those mice in which leukemia was induced by virus inoculation. Virus particles were also observed, but in substantially smaller numbers, in organs of 13 of 25 untreated, healthy mice of the nonleukemic C3H(f) inbred line. In contrast to mice, C-type, or any other virus particles, were not found in organs of 10 Sprague-Dawley, Long-Evans or Sprague-Dawley X Long-Evans F1 hybrid rats with spontaneous leukemia. However, C-type virus particles were consistently present in organs of 11 Sprague-Dawley rats with leukemia induced by rat-adapted passage A (Gross) mouse leukemia inoculation. The virus particles appeared in the organs of the inoculated rats 5 days after i.p., and 11 days after s.c. inoculation. Virus particles were not found in organs of 10 healthy untreated Sprague-Dawley rats. The implications of these observations are discussed.

Animals↗

Susceptible mice present higher macrophage activation than resistant mice during infections with myotropic strains of Trypanosoma cruzi.

The kinetics of macrophage activation were compared among inbred strains of mice (C3H, BALB, B6 and B10.A) that are known to differ in their relative resistance to infections with the myotropic strains (Colombian and CL) of Trypanosoma cruzi. The parameters utilized to measure macrophage activation were rapid spreading on glass surfaces, hydrogen peroxide release and tumour necrosis factor/cachectin production. Macrophages obtained from C3H (susceptible), BALB (intermediate) and B6 or B10.A (resistant) mice infected with both strains of T. cruzi began to spread rapidly at the onset of parasitaemia. Surprisingly, the amount of hydrogen peroxide released by peritoneal cells obtained from the more susceptible mouse strain (C3H) was significantly higher than in the other mouse strains. Also, only in the serum of C3H mice was tumour necrosis factor/cachectin detected. These results suggest that resistance against infections with myotropic strains of T. cruzi does not correlate with enhanced macrophage activation. It is also shown that the acquired macrophage activation is largely dependent on T-lymphocytes bearing the phenotypic marker CD4 (helper/inducer), since all parameters of macrophage activation were significantly inhibited in athymic mice or in C3H mice treated in vivo with monoclonal antibody anti-CD4+ T-cells.

Animals↗

Thymus and lymph node cell CD4(+) and CD8(+) marker expression and their angiogenic activity of offspring of salbutamol-treated pregnant C3H mice.

Salbutamol, beta(2)-adrenoceptor agonist is a first choice drug in preterm delivery treatment. The aim of the present study was to determine whether salbutamol can cause any alterations in neonatal immune systems and therefore should be considered in newborn care. The experiments were performed on 4-5- and 6-7-week-old female and male offspring of salbutamol-treated C3H inbred mice. Thymus and lymph node weight, cellularity and lymphatic organs, lymphocytes phenotypes and their angiogenic activity were evaluated. We observed lower thymus weight in 6-7-week-old progeny of salbutamol-treated mothers and in the same time lower thymus cell number in both age groups. Lower lymph node weight was developed in older progeny while cellularity was diminished both in 4-5- and 6-7-week-old offspring of salbutamol-treated mothers. We have not detected any changes in percentage of CD4, CD8, CD3 and CD4CD8 positive lymphocytes in progeny of salbutamol-treated mothers. As far as lymph node lymphocytes phenotype is considered we showed in both age groups lowering of CD4 and CD3 positive cells in experimental groups. In the LIA test (lymphocyte-induced angiogenesis) we showed lower lymph node cell angiogenic activity of salbutamol-treated mothers' progeny in both age groups. In the case of thymus lymphocytes we have not observed any alterations in their angiogenic activity. The differences in histological examination of thymus and lymph nodes were not detected in experimental and control groups.

Adrenergic beta-Agonists↗

Granulocyte chemiluminescence activity, antibody production and percentage of CD4(+) and CD8(+) lymphocytes in peripheral blood of offspring of salbutamol-treated pregnant C3H mice.

Preterm delivery is one of the most important problems in obstetric care. One of commonly used treatment of such high risk cases is salbutamol-beta(2) adrenoceptor agonist. The aim of present study was to determine if such treatment causes any changes in neonatal immune system and therefore should be considered in newborn care. The experiments were performed in 4-5- and 6-7-week-old female and male offspring of salbutamol treated C3H inbred mice. In the present study chemiluminescent activity of peripheral blood granulocytes, percentage of CD4(+) and CD8(+) lymphocytes and antibody production were evaluated. A lower number of peripheral blood granulocytes in 6-7-week-old offspring of salbutamol treated mothers was observed, while in the case of younger mice's lymphocytes count in both groups, the differences were not significant as compared to control group. In 4-5-week-old mice a lower percentage of CD4(+), CD3(+) and CD8(+) was evaluated, while in older offspring the percentage of CD4(+) and CD3(+) was higher in the case of the progeny of salbutamol treated mothers. As far as chemiluminescent activity was concerned no differences were found in any of experimental groups. We showed higher IgM production both in male and female offspring of the experimental group and no changes in IgG levels in mice sera. Alterations observed in progeny of salbutamol treated mice might have influence on their further immune system development and function.

Adrenergic beta-Agonists↗

Genetic differences in the IGF-I gene among inbred strains of mice with different serum IGF-I levels.

There is significant heterogeneity in serum IGF-I concentrations among normal healthy individuals across all ages and among inbred strains of mice. C3H/HeJ (C3H) mice have 30% higher serum IGF-I concentrations over a lifetime than C57BL/6J (B6), even though body size and length are identical. The underlying mechanism for this disparity remains unknown although several possibilities exist including altered GH secretion, resistance to GH action, or impaired IGF-I secretion from the liver or peripheral tissues. To study this further, we evaluated mRNA levels of pituitary GH, and of IGF-I, GH receptor (GHR) and acid-labile subunit (ALS) in liver and skeletal muscle of male C3H and B6 strains. mRNA levels of hepatic IGF-I paralleled serum IGF-I levels, whereas pituitary GH mRNA expression was significantly lower in C3H than B6. In addition, reduced hepatic mRNA levels of ALS and GHR in B6 suggests hepatic GH resistance in B6. In contrast, mRNA levels of IGF-I and GHR in skeletal muscle were not different between B6 and C3H. There was a single sequence repeat polymorphism (SSR) in the promoter region of both GHR and IGF-I genes in mice; the SSR in the IGF-I gene was significantly different between the two strains. The SSR in the IGF-I gene corresponds to the E2F binding site, which is critical for regulating IGF-I gene expression. These results suggest that the SSR in the promoter region of the IGF-I gene may be partially responsible for differences in serum IGF-I levels between B6 and C3H strains.

Animals↗

Effects of dietary calcium depletion and repletion on dynamic determinants of tibial bone volume in two inbred strains of mice.

As an adjunct to our efforts to identify the genes that determine peak bone density, we examined phenotypic differences between two inbred strains of mice, C3H/HeJ (C3H) and C57BL/6J (B6), which are of similar size but differ with respect to peak bone density (e.g., C3H mice have 53% higher femoral bone density than B6 mice). The current studies were intended to compare the skeletal responses of C3H and B6 mice to 2 weeks of dietary calcium (Ca) depletion, followed by 2 weeks of Ca repletion. Initial studies showed that: (a) femur dry weight decreased during Ca depletion in both C3H and B6 mice (by 25% and 19%, respectively, p < 0.001) and most of this loss was recovered during Ca repletion; and (b) serum alkaline phosphatase (ALP) activity increased during Ca depletion, in both strains of mice (p < 0.001), and returned to normal after Ca repletion. Histological analyses of ground cross sections prepared at the tibiofibular junction showed that Ca-depletion increased medullary area in both C3H and B6 mice (indicating endosteal bone loss, p < 0.01), with reversal during Ca repletion. There were no effects of Ca depletion or repletion on periosteal bone growth. Endosteal bone forming surface and endosteal mineral apposition decreased during Ca depletion and increased during repletion in both C3H and B6 mice (p < 0.05). Net bone formation decreased during Ca depletion in C3H mice, but not B6 mice (p < 0.01), and was normal during Ca repletion in both strains. Endosteal bone resorbing surface and net bone resorption increased during Ca depletion and decreased during repletion in both strains (p < 0.01). A supplemental study (of Ca depletion without repletion) confirmed the effects of Ca depletion on femoral dry weight and serum ALP activity (p < 0.001 for each). This supplemental study also showed that Ca deficiency increased serum parathyroid hormone (PTH) (p < 0.05) and decreased (tibial) cortical bone area and cortical mineral content (p < 0.05 to p < 0.001) in both strains of mice. Together, these data demonstrate that the skeletal responses to Ca depletion and repletion are, qualitatively, similar in C3H and B6 mice.

Alkaline Phosphatase↗

[Effect of the age of the mouse on the action of Corynebacterium parvum in inhibiting the growth of 2 syngenetic tumors].

The antitumor properties of Corynebacterium parvum have been studied in Mice of different ages of two inbred strains: XVII Mice and C3H Mice grafted with syngeneic tumors. The antitumor protection was very weak in young Mice: no effect on mortality rate, only an increase in mean survival time was observed. The highest level of protection was obtained in 2-5 month old Mice (100% of survival) In aged Mice this antitumor protection decreases more rapidly in C3H Mice than in XVII Mice. It is interesting to note that 21 day old XVII Mice and 25 day old C3H Mice, non weaned, are partially protected by C. parvum (50% survival), while treated Mice of the same age, already weaned, are not.

Aging↗