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Biomedical subjects

B Meignier

Publications and source records attributed to B Meignier.

At least 37 records · Page 2Linked to original sources

Comparison of lung histopathology and bronchoalveolar lavage cytology in mice and cotton rats infected with respiratory syncytial virus.

Lung histology as well as cell number and size distribution in bronchoalveolar lavage (BAL) were compared in Balb/c mice and in cotton rats, of various immune status regarding the respiratory syncytial virus (RSV), when subjected to challenge with RSV. In mock-immunized animals, RSV infection typically caused microscopic inflammatory lesions of the lungs and the presence of inflammatory cells in the BAL. Immunization with a formalin inactivated vaccine prior to challenge increased the severity of the lung lesions and the number of cells recovered in the BAL. We observed that cotton rats are more convenient to study primary RSV infections, inasmuch naive subjects show more pronounced lesions than do naive mice. Conversely, the changes in lung histopathology and in BAL cytology associated with exposure to formalin inactivated vaccine prior to challenge were more apparent in mice, making them a more suitable model for potentiation studies. Moreover, mice showed less individual fluctuations than cotton rats. The reading of the lung sections could be made less tedious by use of computer image analysis, which results paralleled those of conventional examination. In mice, cytological analysis of the BAL could be used in place of lung histology for some potentiation studies since the number of cells recovered in BAL reflected the intensity of the lung lesions and size distribution profiles typical of potentiation were recognized.

Animals

Isolated gA/gB glycoprotein complex of human cytomegalovirus envelope induces humoral and cellular immune-responses in human volunteers.

Three human cytomegalovirus (HCMV) seronegative individuals were immunized with a single dose of HCMV envelope; two individuals developed neutralizing antibodies. Two naturally HCMV seropositive and three HCMV seronegative human volunteers were immunized with a major glycoprotein complex, gA/gB, of HCMV that had been purified by immunoadsorbent column chromatography. After a single injection of the gA/gB preparation, the naturally seropositive individuals developed higher titres of neutralizing antibodies and temporarily higher HCMV-specific lymphocyte proliferation (HCMV-LP) responses in vitro. The seronegative individuals developed neutralizing antibodies after the third injection of gA/gB, which were present only transiently, but showed a rapid reappearance and increase in titre after the fourth injection. At 1 year after the first injection, the neutralizing antibody titres were still comparable with those of the naturally seropositive individuals. HCMV-LP responses to HCMV in the initially seronegative individuals developed after the second or third injection with the gA/gB preparation and remained positive during the 1-year observation period. These results show that the gA/gB protein induces both humoral and cellular immune responses in humans, and might serve as the basis of a subunit vaccine.

Animals

In vivo behavior of genetically engineered herpes simplex viruses R7017 and R7020. II. Studies in immunocompetent and immunosuppressed owl monkeys (Aotus trivirgatus).

The genetically engineered herpes simplex virus strains R7017 and R7020 were tested in owl monkeys (Aotus trivirgatus) previously shown to model herpetic diseases of immunocompromised patients and neonates. In contrast to the lethal disease seen in monkeys receiving 100-1,000 plaque-forming units (pfu) of wild-type virus, inoculation of greater than or equal to 10(6) pfu of recombinant viruses produced local lesions and viral shedding but not disseminated disease. Latent recombinant viruses were recovered from some ganglia innervating the sites of inoculation. Monkeys protected from lethal infection with wild-type virus exhibit recurrent lesions that increase in frequency and severity after total lymphoid gamma irradiation (TLI). In contrast, monkeys immunosuppressed by TLI and inoculated with R7020 could not be differentiated from irradiated controls with respect to morbidity or mortality. Moreover, the virus was not transmitted from immunosuppressed infected females to normal male cage mates.

Animals

Virulence of and establishment of latency by genetically engineered deletion mutants of herpes simplex virus 1.

We report the results of studies on the biologic properties of seven deletion mutants of herpes simplex virus 1 (HSV-1). The genes deleted from six of these mutants map in the S component of HSV-1 DNA and include those specifying the alpha protein 47, the glycoproteins G and E, the viral protein kinase, and two proteins whose functions are not yet known (open reading frames US2 and US11). The seventh virus [HSV-1(F) delta 305] contained a 700-bp deletion in the thymidine kinase gene. The results of intracerebral inoculation of Balb/c mice indicated that all but one of the deletion mutants in the S component were significantly attenuated. The PFU/LD50 ratios for these mutants ranged from 10(4)- to 10(5)-fold higher than that of the wild-type, HSV-1(F). The PFU/LD50 for mutant R7032, from which the glycoprotein E gene had been deleted, was less than 100-fold higher than that of the parent virus. All of the mutants, with one exception, were able to establish latency in mice; the exception, HSV-1(F) delta 305, was able to establish latency in rabbits.

Animals

In vivo behavior of genetically engineered herpes simplex viruses R7017 and R7020: construction and evaluation in rodents.

The herpes simplex virus (HSV) recombinant R7017 was constructed from HSV-1 (strain F) by deleting a portion of the thymidine kinase (tk) gene and by replacing the sequences representing the internal inverted repeats and adjacent genes in the L component with a fragment of the HSV-2 genome encoding the glycoproteins G, D, I, and a portion of E. In addition, the R7020 recombinant contains an HSV-1 DNA fragment encoding the tk gene fused to the alpha 4 gene promoter. The results of studies in mice, guinea pigs, and rabbits were as follows: Both recombinants remained unchanged after nine serial, intracerebral passages in mice; the recombinants could not be differentiated with respect to attenuation in mice injected intracerebrally, in vaginally infected guinea pigs, and in rabbits inoculated on the scarified cornea. Given intradermally or intramuscularly, the recombinants prevented severe infections by virulent challenge viruses, and R7020 established latent infections (at a low frequency) in all species tested, whereas latent R7017 virus was detected in rabbits only.

Animals

Immunization of experimental animals with reconstituted glycoprotein mixtures of herpes simplex virus 1 and 2: protection against challenge with virulent virus.

Artificial mixtures of the glycoproteins B, C, D, and E of herpes simplex virus 1 and 2 (HSV-1 and HSV-2), purified individually from infected Vero cell lysates by immunoaffinity to monoclonal antibodies, were bound to an aluminum hydroxide gel and were used to immunize mice, guinea pigs, and owl monkeys (Aotus trivirgatus) once or twice (mice and guinea pigs) to as many as four times (owl monkeys). In all animals tested, low levels of neutralizing antibodies were detected only after two or more immunizations. Lymphocyte transformation tests in owl monkeys suggested low or borderline levels of cellular immunity. The survival of immunized mice after intracerebral challenge was inversely related to the challenge dose. Immunized guinea pigs challenged by intravaginal inoculation showed reduced morbidity at the site of inoculation and were protected from CNS disease. Both immunized and nonimmunized monkeys were highly susceptible and could not be differentiated with respect to morbidity or mortality when challenged with 1,000 pfu of HSV-2 by the intravaginal route.

Animals

Failure to induce cervical cancer in mice by long-term frequent vaginal exposure to live or inactivated herpes simplex viruses.

C57 mice aged 8-10 weeks in groups of 50 each received vaginal cotton pellets soaked in lysates of HEp-2 cells, either mock-infected or infected with herpes simplex virus I, herpes simplex virus 2, and highly attenuated recombinant viruses 5 times a week for 89 to 114 weeks. An untreated group was also included. The mock-infected and some of the infected cell lysates were exposed to ultraviolet light at a dose sufficient to inactivate virus. Smears of exfoliated vaginal cells collected once a month and histopathologic sections of genital organs removed at autopsy were coded and examined blind for the presence of abnormal cells indicative of malignant changes and cervical cancer, respectively. Sera collected before termination of the study were tested blind for the presence of antibody to infected cell lysates and to purified herpes simplex virus glycoprotein B. The results were as follows: Over 74% of 826 mice examined at autopsy contained tumors at non-genital sites. The tumors were randomly distributed among the various groups. Gross genital abnormalities were less common in untreated animals than in mice receiving vaginal implants. The fraction of mice which developed cervical cancer diagnosed by histopathologic examination was small (7.2%) and not significantly different among various groups. There was no correlation between the presence of abnormal exfoliated cells indicative of early invasive or invasive cancer lesions and the histopathologically proven diagnosis of micro-invasive or invasive cervical cancer. The incidence and levels of antibody were highest in animals exposed to live virus; some mice exposed to inactivated virus also developed weak or moderately high antibody levels. The presence of antibodies did not correlate with the presence of histopathologically proven cervical cancer. The results do not support the ability of herpes simplex viruses to cause genital neoplasia in mice.

Animals

Analyses of transplanted murine tumors for HSV DNA sequences.

Meignier et al. (1986) report the results of exposure of C57BL/6NCr mice to vaginal plugs containing live or inactivated herpes simplex virus 1 or 2 (HSV-1 or HSV-2) or recombinant viruses 5 times a week for up to 114 weeks. Genital organs showing abnormalities were transplanted into nude mice. Of 33 transplants, 13 produced subcutaneous tumors in nude mice and 12 were subsequently transplanted into C57BL/6NCr mice. We report that the DNA extracted from coded tumor tissues of nude mice and from normal viscera of the same rodents did not hybridize with HSV-1 and HSV-2 DNA probes representing the viral genomic regions shown previously to be capable of morphologically transforming cells in culture. The sensitivity of the assays was such that we could detect 0.5 copies of the HSV sequences of complexity equal to or greater than 1 Kbp per cell DNA equivalent. To control for the sensitivity of the assays in the actual hybridizations, the tumor-cell DNA was also hybridized with a beta-globin mouse DNA probe. A striking feature of these control hybridizations was the detection of beta-globin polymorphism in some nude mouse tumors. The beta-globin polymorphism allowed us to conclude that the analyzed tissues contained significant amounts of the tumor cells occurring in the C57BL/6NCr mice.

Animals

Herpes simplex virus 1 mutant deleted in the alpha 22 gene: growth and gene expression in permissive and restrictive cells and establishment of latency in mice.

R325-beta TK+, a herpes simplex virus 1 mutant carrying a 500-base-pair deletion in the alpha 22 gene and the wild-type (beta) thymidine kinase (TK) gene, was previously shown to grow efficiently in HEp-2 and Vero cell lines. We report that in rodent cell lines exemplified by the Rat-1 line, plating efficiency was reduced and growth was multiplicity dependent. A similar multiplicity dependence for growth and lack of virus spread at low multiplicity was seen in resting, confluent human embryonic lung (HEL) cells. The shutoff of synthesis of beta proteins was delayed and the duration of synthesis of gamma proteins was extended in R325-beta TK+-infected HEL cells relative to cells infected with the wild-type parent, but no significant differences were seen in the total accumulation of viral DNA. To quantify the effect on late (gamma 2) gene expression, a recombinant carrying the deletion in the alpha 22 gene and a gamma 2-TK gene (R325-gamma 2 TK) was constructed and compared with a wild-type virus (R3112) carrying a chimeric gamma 2-TK gene. In Vero cells, the gamma 2-TK gene of R325-gamma 2TK was expressed earlier than and at the same level as the gamma 2-TK gene of R3112. In the confluent resting HEL cells, the expression of the gamma 2-TK gene of the alpha 22- virus was grossly reduced relative to that of the alpha 22+ virus. Electron microscopic studies indicated that the number of intranuclear capsids of R325-beta TK+ virus was reduced relative to that of the parent virus in resting confluent HEL cells, but the number of DNA-containing capsids was higher. Notwithstanding the grossly reduced neurovirulence on intracerebral inoculation in mice, R325-beta TK+ virus was able to establish latency in mice. We conclude that (i) the alpha 22 gene affects late (gamma 2) gene expression, and (ii) a host cell factor complements that function of the alpha 22 gene to a greater extent in HEp-2 and Vero cells than in confluent, resting HEL cells.

Animals

Establishment of latency in mice by herpes simplex virus 1 recombinants that carry insertions affecting regulation of the thymidine kinase gene.

Herpes simplex virus 1 recombinants carrying alpha-, beta-, and late gamma (gamma 2)-regulated thymidine kinase (TK) genes were tested for the ability to establish latency in BALB/c mice inoculated by the eye route. The significant findings were as follows. Representatives of alpha- and gamma 2-regulated TK recombinants all established and maintained latent infections, but the efficiency was somewhat lower than that of wild-type virus. Of the three alpha TK recombinants tested, one (R316) spontaneously deleted portions of the inserted sequences which conferred alpha regulation to the TK gene. The viruses carrying these deletions expressed considerably lower TK activity than did wild-type virus, i.e., 2 to 40% of the levels expressed by the wild-type virus carrying the beta TK gene. However, the ability of these viruses to establish latency was not related to the efficiency of expression of the TK gene. These results indicate the following: (i) conversion of the TK gene into an alpha or gamma 2 gene did not preclude the establishment of latent infections; (ii) there was no correlation between the levels of TK activity expressed in cell culture and the ability to establish latency; and (iii) rearrangement of the genome by insertions or deletions which interrupt gene domains did not automatically result in an inability to establish latent infections.

Animals

Colonization of murine ganglia by a superinfecting strain of herpes simplex virus.

We report on the colonization of murine trigeminal ganglia after sequential infection of mice by herpes simplex viruses (HSVs). In preliminary studies, we have established that whereas the HSV-1(F) strain efficiently colonizes ganglia when inoculated by either the ear or eye routes, the HSV-1 X HSV-2 recombinant C7D colonizes ganglia when inoculated by the eye route only. The experimental design consisted of inoculating the right eye with C7D on day 1 and with HSV-1(F) in both left and right eyes on day 26. Both right and left trigeminal ganglia were removed and analyzed independently for latent virus on day 52. Our studies indicate that HSV-1(F) viruses were recovered from all left trigeminal ganglia but from only a small number of right trigeminal ganglia. Some right trigeminal ganglia yielded no viruses, whereas others yielded both C7D and HSV-1(F) viruses identified on the basis of plaque morphology and restriction enzyme cleavage patterns of viral DNA. The results indicate that more than one virus may colonize the same ganglion and that trigeminal ganglia may be protected from colonization by a superinfecting virus by determinants acting at a local level in the absence of demonstrable virus.

Animals

Application of molecular genetics to the design of live herpes simplex virus vaccines.

In principle, several avenues for attenuation of herpes simplex viruses (HSV) are now available. These include intermixing of HSV-1 and HSV-2 genes by recombination, altering the regulation of gene expression and the deletion of viral genes not required for replication of the virus in permissive cells in culture. Results of analyses of HSV-1 x HSV-2 recombinants and of mutants containing a deletion in a gene expressed early in infection showed a loss of virulence when infected by intracerebral route into adult Balb/c mice. In addition, immunization of the mice by intracerebral route with relatively low doses of virus protected the mice from challenge with high doses (3000 LD50) of virulent virus. The application of genetic engineering to the construction of live vaccines is discussed.

Chromosome Deletion

Foot and mouth disease virus production on microcarrier-grown cells.

The industrial usefulness of the production of foot and mouth disease virus with microcarrier grown cells has been tested at a large scale. The vaccines, intended for pigs, prepared with such virus give a good level of immunity against virulent challenges. They are stable and free from side effects.

Animals

Cell culture on beads used for the industrial production of foot-and-mouth disease virus.

The microcarrier culture technique has been applied to a pig kidney cell line. Microcarriers consisted of DEAE Sephadex A 50 beads washed and containing carboxymethyl cellulose. Sifted beads gave better results than unclassified material. Cells for inoculum were prepared in Roux flasks. The two types of fermentors which were used (operating capacity 100 l and 150 l) gave similar results. The growth of the cells can easily be followed by microscopic observation and cell count. The yields of cells per volume of spent medium were three times higher on microcarrier than in Roux bottles; the average doubling time was not modified. Foot-and-mouth disease virus can be produced with cells grown on beads. Vaccines prepared with these viruses induced good protection for pigs.

Animals

Genetically engineered attenuated herpes simplex viruses.

Two recombinant herpes simplex viruses, of type 1 background, were constructed with two large deletions and duplicate sets (type 1 and type 2) of the genes coding for glycoproteins D, G, and E. One recombinant (R7020) is thymidine kinase-positive, and the other (R7017) is thymidine kinase-negative. Evaluation in rodents indicated that these viruses are genetically stable, capable of establishing latency, protective against severe herpetic diseases, and protective against the establishment of latency. In Aotus monkeys, R7020 replicates at the site of inoculation but does not disseminate in the body. It can reactivate from the latent state but without causing recurrent lesions, even in immunosuppressed monkeys.

Animals