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At least 19 recordsLinked to original sources

Prophylaxis and treatment of pneumococcal bacteremia by immune globulin intravenous in a mouse model.

A mouse model was developed to test the efficacy of human immune globulin intravenous (IGIV) in prevention and treatment of pneumococcal bacteremia. Mice pretreated with IGIV and then challenged with types 3 or 7F Streptococcus pneumoniae had significantly increased (P less than 0.025) survival compared to controls. Three commercially available IGIV preparations were all effective in significantly increasing (P less than 0.025) survival in mice already infected. Mice treated with IGIV plus penicillin had significantly greater (P less than 0.05) survival than those who received penicillin alone. IGIV may be useful in treatment of pneumococcal bacteremia.

Animals

Transmission and activation of cytomegalovirus with blood transfusion: a mouse model.

A mouse model that mimics many features of human cytomegalovirus (CMV) infections associated with transfusion and perfusion is described. The concept of antigenic activation of CMV was tested by infusion of blood from latently infected mice, which were found to be virus-negative by tissue culture asssay, into uninfected allogeneic and isogenic hosts. After a latent period, virus was detectable invariably in allogeneic and only rarely in isogenic recipients. Transfusions from uninfected donors into latently infected mice activated CMV in heterologous and homologous recipients. These observations should assist in definition of relevant pathogenetic principles and may explain the failure to recover CMV from healthy human blood donors in spite of predictions of a carrier state based on epidemiologic observations.

Animals

Experimentally induced infection by oral anaerobic microorganisms in a mouse model.

A mouse model was developed to study the abscessogenic potential of pure and mixed cultures of oral anaerobes associated with infections of endodontic origin. Maximum subcutaneous lesions were seen on their backs between 3 and 14 d after inoculation. Strains of Fusobacterium nucleatum, Peptostreptococcus anaerobius, and Veillonella parvula were pathogenic in pure culture. A mixed culture of F. nucleatum with either Porphyromonas gingivalis or Prevotella intermedia was significantly more pathogenic than F. nucleatum in pure culture. Histopathological examination of tissue sections from control mice injected with India ink in the medium demonstrated a pathway of particulate migration from the backs of the mice to their abdomen.

Abdomen

Virulence of human and bovine isolates of group B streptococci (types Ia and III) in experimental pregnant mouse models.

Two experimental mouse models were tested for their suitability in measuring virulence of two human and two bovine isolates (types Ia and III) of group B streptococci. In the first model, the kinetics of the number of bacteria in the spleen, liver, and placenta of mice inoculated intravenously on day 16 of pregnancy were monitored for 48 h after infection. In the second model, lethality and abortion were recorded for mice inoculated on day 13 of pregnancy. Levels of colonization in spleens or livers and lethality were significantly greater (P less than 0.001) for human isolates than for bovine isolates. In contrast, no statistically significant differences in the ability to colonize placentas and to induce abortions were noted between human and bovine isolates. The results showed that pregnant mice were more sensitive than nonpregnant mice to a challenge with group B streptococci. The results also suggest that placental colonization and abortion could be a suitable mouse model in evaluating the virulence of human and bovine isolates of group B streptococci.

Animals

Efficacy of a Proteus mirabilis outer membrane protein vaccine in preventing experimental Proteus pyelonephritis in a BALB/c mouse model.

A BALB/c mouse model of nonobstructive, ascending Proteus mirabilis pyelonephritis was characterized bacteriologically, histologically, and serologically from 3 to 28 days. Intravesicular administration of 2 X 10(8) P. mirabilis K7 resulted in the septic death of 9 (16%) of 57 mice by day 15. Among the survivors, K7 colonized the kidneys in great numbers until day 21. Histological examination of the kidneys revealed acute inflammation which was characterized by neutrophil infiltration by day 3, renal necrosis by day 7, and fibroblastic infiltration by day 14 which persisted at least until day 28. The immunoglobulin G response to the outer membrane proteins (OMP) was assessed by enzyme-linked immunosorbent assay and Western blotting (immunoblotting). Anti-OMP immunoglobulin G antibodies were detected as early as day 7, and the reciprocals of their titers rose progressively up to day 28 (i.e., greater than or equal to 500). This model was also used to assess the efficacy of OMP and lipopolysaccharide (LPS) immunization in preventing renal infection. K7 OMP or LPS (100 micrograms) preparations were administered intramuscularly in Freund's complete adjuvant. After 2 weeks, mice were intravesicularly challenged with 2 X 10(8) bacteria of the homologous K7 strain or one of four heterologous strains. Compared with the saline-immunized control group and K7 LPS-immunized mice, K7 OMP recipients were protected from death when challenged by homologous or heterologous strains. In addition, K7 OMP recipients were protected (P less than 0.003) from subsequent renal infection when challenged by the K7 strain and had more rapid bacterial renal clearance when challenged by three of four heterologous strains. OMP recipients produced antibodies which bound major OMP moieties (viz., 36- to 39-kDa cell wall constituents) as assessed by Western blotting. These results support the concept that immunization with selected bacterial protein surface coat constituents can prevent uromucosal infection by interfering with colonization or renal injury.

Animals

Pathogenesis of Campylobacter fetus infections. Role of surface array proteins in virulence in a mouse model.

We developed a mouse model to compare the virulence of Campylobacter fetus strains with (S-plus) and without (S-minus) surface array protein (S-protein) capsules. In adult HA/ICR mice pretreated with ferric chloride, the LD50 for S-plus strain 84-32 was 43.3 times lower than its spontaneous S-minus mutant 84-54. Seven strains of inbred mice were no more susceptible than the outbred strain. In contrast to the findings with Salmonella typhimurium by others, 3 X 10(7) CFU of strain 84-32 caused 90% mortality in C3H/HeN (LPSn) mice and 40% mortality in C3H/HeJ (LPSd) mice. High-grade bacteremia in HA/ICR mice occurred after oral challenge with S-plus C. fetus strains and continued for at least 2 d, but was not present in any mice challenged with S-minus strains. Bacteremia at 30 min after challenge was 51.6-fold lower in mice pretreated with 10 microliters of rabbit antiserum to purified S-protein than after pretreatment with normal rabbit serum. Challenge of mice with a mixture of S-minus strain 84-54 and free S-proteins at a concentration 31.1-fold higher than found in wild-type strain 84-32 caused 30% mortality, compared with 0% with strain 84-54 or S-protein alone. These findings in a mouse model point toward the central role of the S-protein in the pathogenesis of C. fetus infection. The S-protein is not toxic per se, but enhances virulence when present on the bacterial cell surface as a capsule.

Animals

Neonatal hepatitis induced by alpha 1-antitrypsin: a transgenic mouse model.

Transgenic mouse lineages were established that carry the normal (M) or mutant (Z) alleles of the human alpha 1-antitrypsin (alpha 1-Pi) gene. All of the alpha 1-Pi transgenic mice expressed the human protein in the liver, cartilage, gut, kidneys, lymphoid macrophages, and thymus. The human M-allele protein was secreted normally into the serum. However, the human Z-allele protein accumulated in several cell types, but particularly in hepatocytes, and was found in serum in tenfold lower concentrations than the M-allele protein. Mice in one lineage carrying the mutant Z allele expressed high levels of human alpha 1-Pi RNA and displayed significant runting (50% of normal weight) in the neonatal period. This lineage was found to have alpha 1-Pi-induced liver pathology in the neonatal period, concomitant with the accumulation of human Z protein in diastase-resistant cytoplasmic globules that could be revealed in the Periodic acid-Schiff reaction (PAS). The phenotype of mice in the strain expressing high levels of the Z allele is remarkably similar to human neonatal hepatitis, and this strain may prove to be a useful animal model for studying this disease.

Alleles

Profiles of interaction of R(+)/S(-)-zacopride and anxiolytic agents in a mouse model.

The mouse black and white test box was used to measure changes in behaviour in an aversive situation where the administration of R(+)-zacopride (but not S(-)-zacopride) alone decreased aversive responding to the white area. A similar anxiolytic profile of action was observed using parachlorophenylalanine (PCPA), whose effects were antagonised by a co-treatment with R(+)-zacopride and reversed by S(-)-zacopride to an exacerbation of the aversive response. An anxiolytic profile of action was also observed using ondansetron, granisetron, chlordiazepoxide, diazepam, ritanserin, 8-OH-DPAT (8-hydroxy-2-(di-n-propylamino)tetralin), E4424 (2-[4-[4-(4-chloro-l-pyrazoyl)butyl]-l-piperazinyl]-pyrimidine), umepsirone, DuP753 (2-n-butyl-4-chloro-5-hydroxy-methyl-1-[2(1H-tetrazol-5-yl) biphenyl-4-yl)methyl)]-imidazole), SQ29,852 ((S)-1-[6-amino-2[hydroxy)(4-phenyl-butyl)phosphinyl]-oxy)-1- nexy]-2-proline), devazepide and guanfacine, and this was retained following co-treatment with PCPA. The anxiolytic profile of action of PCPA was also retained following co-treatment with renzapride which when administered alone failed to modify behaviour. However, the ability of chlordiazepoxide, diazepam, ondansetron and E4424 (but not devazepide, DuP753 or SQ29,852) to reduce aversive responding was inhibited by co-treatment with R(+) and/or S(-)-zacopride. It is concluded that the reduction in aversive responding caused by pharmacological manipulation at the benzodiazepine, 5-HT receptor subtypes 5-HT1A, 5-HT1C/5-HT2 and 5-HT3 (but not at the cholecystokin CCKA or angiotensin receptors or inhibition of angiotensin converting enzyme) can be inhibited by R(+) and S(-)-zacopride. The data is discussed in terms of zacopride having an agonist or partial agonist effect at the 5-HT3 receptor.

Animals

Salmonella typhimurium virulence in a burned-mouse model.

Various features of salmonellosis were examined in a burned-mouse model. In this model, which uses an outbred mouse strain, a challenge dose of ca. 100 CFU with any of several strains of Salmonella typhimurium caused a fatal infection. A variety of mutated strains attenuated for virulence in Salmonella-susceptible parenterally infected mice were also attenuated in the burned-mouse model. When administered as live vaccines injected intraperitoneally the same attenuated strains provided between slight and complete protection against subsequent lethal challenge subcutaneously at the site of a burn. The correspondence of results obtained in the burned-mouse model with those seen in other mouse models coupled with the unique advantages of the burned-mouse model argue for the usefulness of the model in studies of salmonellosis and in testing of strains constructed for use as live vaccines.

Animals

Characterization of a mouse model of chronic uremia.

A mouse model of renal failure, which is induced by the sequential electrocoagulation of the right renal cortex and left nephrectomy, was examined for the capacity to reproduce the characteristics of chronic uremia. Assessment was conducted six weeks after the second surgical procedure in 13 week old female C57BL/6 inbred mice with renal failure and in normal and sham-operated controls. The surgery, which was well tolerated, was free of local and systemic signs of inflammation or infection. Growth was significantly delayed in all animals post surgery however renal failure mice presented the most severe growth retardation. Biochemical analysis of plasma revealed multiple abnormalities with commensurate elevations of urea and creatinine. In addition to the expected hyperphosphatemia, hyperkalemia and acidosis, a significant increase in cholesterol was present. Furthermore, in contrast to controls, renal failure mice produced large volumes of urine which contained significant levels of protein. Renal failure mice presented profound hematological changes in the red cell series in which anemia was evident. Changes in plasma biochemistry and in bone histology revealed the presence of severe secondary hyperparathyroidism. It was therefore concluded that the described mouse model of chronic renal failure presented characteristics consistent with those observed clinically in end-stage renal disease.

Animals

Mouse models of human single gene disorders. I: Nontransgenic mice.

Mouse models of human genetic disorders provide a valuable resource for investigating the pathogenesis of genetic disease and for testing potential therapies. The high degree of resolution of linkage mapping in the mouse allows mutant phenotypes to be mapped precisely which, combined with the accurate definition of areas of homology between the mouse and human genomes, greatly facilitates the identification of mouse models. We describe here mouse models of human single gene disorders dividing them into three categories depending on the information available; phenotypic similarities, comparative mapping and identification of the underlying genetic lesion.

Animals

A mouse model of influenza protection.

A mouse model has been developed in order to examine the parts played by humoral and cellular mechanisms in influenza immunity. Protection is assessed in terms of the amount of virus detectable in the lungs within 48 h of challenge. This system has two major advantages over the more common mouse lethality models. It is no longer necessary to use a mouse-lethal strain of virus; and protection is measured within days rather than weeks of challenge. Thus it is possible to determine the ability of the immune system to limit infection at an early stage, as distinct from curing a pre-existing infection and so preventing death. Transfer of spleen cells from an immune donor to a normal recipient will significantly reduce the amount of virus found in the lungs 24 h after challenge. The transferred cells are, however, capable of producing significant serum levels of anti-influenza antibody. Administration of serum from immune mice to normal recipients also results in a significant degree of protection within 24 h of challenge. These results give additional evidence that in the mouse significant protection is provided by serum antibody very soon after infection, but do not exclude the possibility that a part may be played by other mechanisms.

Animals

Experimental studies of the pathogenesis of infections due to Pseudomonas aeruginosa: description of a burned mouse model.

An experimental burned mouse model is described that is clinically relevant to burn wound sepsis caused by Pseudomonas aeruginosa. Mice subjected to a nonlethal burn by flame were challenged with P. aeruginosa. The LD50 after subcutaneous injection in the skin of the burn up to 24 hr after the burn was smaller than 10 organisms vs. 10-6 organisms in normal animals. By three days after the burn, the value returned to and exceeded that of normal animals. This dramatic change in the LD50 after the burn was not seen when mice were challenged with other organisms. Challenge with P. aeruginosa by different routes immediately after burning showed less dramatic decreases in the LD50. Enumeration of infecting organisms in the skin of the burn and in major organs suggests the possibility of a toxic event.

Animals

Significance of toxin-coregulated pili as protective antigens of Vibrio cholerae in the infant mouse model.

The infant mouse cholera model has been used to evaluate the relative importance of toxin-coregulated pili (TCP) as protective antigens of Vibrio cholerae 01. Electron microscopic and immunoblotting analyses revealed that, under the cultural conditions examined, TCP were only expressed by strains of classical biotype. Antibodies to TCP were sufficient to confer protection against two such strains, and were more efficient if the challenge vibrios were cultured for TCP expression. In contrast, such antibodies did not protect mice against challenge with any of four strains of El Tor biotype. Since two of the latter have previously been shown to possess non-lipopolysaccharide protective antigens, these results suggest that TCP are not the only such antigen in this model.

Animals

Optimal timing of adjuvant chemotherapy in mouse models.

In three mouse tumor models the effect of timing of adjuvant chemotherapy with a single dose of cyclophosphamide was studied. In one tumor, preoperative adjuvant therapy was better than postoperative therapy. In a second tumor, the reverse was the case, and in the third model there was no difference resulting from variation in the timing of cytostatic drug therapy. Obviously, the concept that a standard drug dose always gives a constant relative cell kill is not always a valid simplification of dose-effect relationships in chemotherapy.

Animals

An investigation of a mouse model to estimate the potency of the diphtheria component in vaccines.

A mouse model to estimate the potency of the diphtheria toxoid components in vaccines using Vero cells to detect the neutralizing antibodies in the sera from immunized mice is described. The results obtained with this mouse model correlated significantly with those obtained in the lethal challenge test in guinea-pigs. For this reason it is suggested that the potency test in guinea-pigs be replaced by this mouse model because a considerable reduction in the number of animals used and costs can be achieved by the introduction of this mouse test for the routine control of the potency of the diphtheria component of vaccines.

Animals

Micromanipulation of cleaved embryos cultured in protein-free medium: a mouse model for assisted hatching.

A mouse model for studying anomalies of human embryonic hatching following micromanipulation is proposed. Initiation and completion of mouse blastocyst hatching was severely impaired (34/292; 12% and 28/292; 10%, respectively) with protein deprivation, resembling the situation in human in vitro fertilization. Hatching ability was restored when an artificial gap was introduced in the zona pellucida by micromanipulation at the cleaved embryo stage. This enabled 77% (285/371) and 36% (134/371) of the embryos to initiate and complete hatching in protein-free medium. No differences were found in overall cell counts between the two groups of embryos. Transfer of micromanipulated blastocysts to pseudopregnant females resulted in development of healthy fetuses.

Animals

Inoculated mouse model of Pneumocystis carinii pneumonia.

A transtracheally inoculated mouse model of Pneumocystis carinii has been developed using BALB/c mice, a widely available strain free of latent P. carinii infection. The mean infectivity score of untreated inoculated mice was 4.1 compared to the mean infectivity score of 0.1 for trimethoprim/sulfamethoxazole (50/250 mg/kg) treated inoculated mice, approximately a four-log difference. An inoculated mouse model of P. carinii infection provides both a source of organisms from a different host and an animal model for study of drugs for therapy and prophylaxis which is less costly than rats and which requires less drug than required for rats.

Animals