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Modification of dengue virus strains by passage in primary dog kidney cells: preparation of candidate vaccines and immunization of monkeys.

Dengue (DENV) virus strains for each of the four DENV serotypes were modified by passage in primary dog kidney (PDK) cell cultures with final manufacture of vaccine lots in fetal rhesus monkey diploid cell cultures. "Strain sets" consisting of serially-passaged DENV were inoculated in rhesus monkeys along with unmodified parent viruses for each strain. Vaccine candidates were compared with unmodified parent viruses by measuring viremia and immune responses. All except one DENV-1 strain demonstrated reduced infection in monkeys after PDK cell passage. A DENV-3 strain lost all monkey infectivity after PDK cell passage. Twelve vaccine candidates were selected for Phase 1 human trials through this selection process.

Animals↗

Overexpression of thrombospondin-1 reduces growth and vascular index but not perfusion in glioblastoma.

Little is known about the effects of antiangiogenic therapy on perfusion of human tumors and the mechanisms by which tumors can adapt to these treatments and recur. Here, we examined the effects of serial passaging of LN-229 human glioma xenografts overexpressing thrombospondin (TSP)-1 on tumor growth, vascularity, and perfusion. Persistence of TSP-1 overexpression was confirmed after three serial s.c. passages of small xenografted tumor blocks of cells stably transfected with TSP-1 cDNA (clones C9 and E7) or vector controls (pooled clones A7-A9) in immunodeficient nu/nu mice. The tumor vascularity was estimated by noninvasive near infrared spectroscopy measuring blood volume at 800 +/- 10 nm and by histological vessel scores in CD31-immunostained cryosections. The tumor perfusion was assessed by noninvasive laser Doppler flowmetry. Overexpression of TSP-1 significantly inhibited tumor growth. In size-matched tumors (approximately 300 mm(3)), the blood volume and the histological vessel scores were lower in the TSP-1-transfected tumors than in controls, and this effect was more pronounced in tumors derived from the clone with the highest TSP-1 expression (clone E9). Despite this clear reduction in tumor vascularity, the tumor perfusion was the same in TSP-1-transfected tumors and controls. This study shows that TSP-1 overexpression slows glioma growth in vivo but does not prevent it from reaching a large size (300 mm(3)). Whereas a clear reduction in blood volume during tumor growth and a reduced vascular index at sacrifice are observed in TSP-1-transfected tumors, this did not affect perfusion when size-matched comparisons were performed. Given the increased time needed to reach equal size, it indicates that a fixed rate of perfusion must be maintained in the tumor to allow for growth. Elucidation of the mechanisms that allow this to happen has important consequences for the understanding of tumor recurrence after antiangiogenic therapy.

Animals↗

Cold-passaged human parainfluenza type 3 viruses contain ts and non-ts mutations leading to attenuation in rhesus monkeys.

Cold-passaged (CP) mutants derived from the JS strain of wild type wt parainfluenza type 3 virus (PIV3) are being evaluated as candidate live virus vaccines. The wt virus was serially passaged 45 times at low temperature and mutant clones with the cold-adapted (CA), temperature-sensitive (ts), and attenuation (ATT) phenotypes were selected following passage levels 12, 18 and 45 (cp12, cp18, and cp45). The cp45 virus was more ts than the cp12 or cp18 mutants, although all 3 mutant viruses were clearly attenuated in rhesus monkeys compared to wild type virus. The mean peak titers of the cp12 and cp18 viruses administered by the intratracheal route were at least 6000-fold lower than JSwt in both the upper and lower respiratory tracts. The cp45 virus was not recovered from monkeys administered virus by the i.t. route alone; however, when the cp45 virus was administered by the intranasal route, it replicated in the upper respiratory tract to a level comparable to that of the cp12 and cp18 viruses, but continued to be markedly restricted in the lower respiratory tract. These data indicate that the cp12 and cp18 viruses contain predominantly non-ts attenuating mutations whereas the cp45 mutant has both non-ts and ts attenuating mutations. Each of the CP mutants induced a high level of resistance to wild type virus challenge. Also, the ATT phenotype of the cp12 and cp18 viruses as measured in rhesus monkeys was stable after replication in chimpanzees or humans, respectively, although the ts phenotype was not. Based on its greater level of temperature sensitivity in vitro and its greater degree of attenuation in rhesus monkeys, the cp45 virus appears to be the most promising vaccine candidate for humans.

Animals↗

Virulence of Naegleria fowleri affected by axenic cultivation and passage in mice.

The virulence of Naegleria fowleri decreases with prolonged axenic cultivation. The decline in virulence of highly virulent, mouse-passaged LEE strain amebae was monitored during 5 years of continuous axenic cultivation. The most rapid decrease in virulence occurred during the first 2 years. Virulence could be restored to original levels by 3 serial passages in mice. The composition of axenic media also affected the virulence of N. fowleri, with a more enriched medium appearing to restore some of the virulence of a weakly virulent strain.

Animals↗

Hypervariable region 1 sequence stability during hepatitis C virus replication in chimpanzees.

The putative envelope 2 (E2) gene of hepatitis C virus (HCV) contains a highly variable region referred to as hypervariable region 1 (HVR1). We hypothesized that this genetic variability is driven by immune selection pressure, rather than representing the accumulation of random mutations in a region with relatively little functional constraint. To test this hypothesis, we examined the E2 sequence of a human inoculum that was passaged through eight chimpanzees, which appear to have a replicative rate (opportunity for chance mutation) similar to that of humans. Acute-phase plasma samples from a human (the inoculum) and six of eight serially infected chimpanzees were studied. For each, 33 cloned cDNAs were examined by a combined heteroduplex-single-stranded conformational polymorphism assay to assess quasispecies complexity and optimize selection of clones with unique gel shift patterns (clonotypes) for sequencing. The sequence diversity of HCV was significantly lower in the chimpanzees than in the humans, and during eight serial passages there was no change in the sequence of the majority clonotype from each animal examined. Similarly, the rates of protein sequence altering (nonsynonymous) substitution were lower in the chimpanzees than in the humans. These findings demonstrate that nonsynonymous mutations indicate selection pressure rather than being an incidental result of HCV replication.

Amino Acid Sequence↗

Characterization of hitchhiker, a transposon insertion frequently associated with baculovirus FP mutants derived upon passage in the TN-368 cell line.

We characterize a new Lepidopteran transposon associated with FP mutations of baculoviruses. This transposon, designated hitchhiker, is 579 bp long with 39-bp imperfect inverted terminal repeats. hitchhiker inserts with extreme specificity for a single trinucleotide target site, TTA, within the 25K gene. This transposon is the most frequently identified insertion in serial passage baculovirus mutants isolated from TN-368 cells.

Amino Acid Sequence↗

Emergence of highly pathogenic virus during selective chicken passage of the prototype mildly pathogenic chicken/Pennsylvania/83 (H5N2) influenza virus.

The prototype mildly pathogenic A/chicken/Pennsylvania/21525/83 (H5N2) avian influenza virus, which was isolated more than 5 months before the emergence of highly pathogenic virus in the major 1983 Pennsylvania outbreak, was examined for the presence of minority subpopulations of highly pathogenic virus. Selective serial passage of the parental mildly pathogenic virus in leghorn hens did not lead to recovery of highly pathogenic virus. However, several highly pathogenic reisolates were recovered from hens inoculated with either of two mildly pathogenic virus clones selected for their ability to efficiently produce plaques in trypsin-free chicken embryo fibroblasts. Unlike the parental virus, these reisolates caused high mortality in chickens and produced postmortem lesions typical of highly pathogenic avian influenza. Electrophoretic mobilities of the hemagglutinin glycoproteins of the highly pathogenic derivatives resembled those of the prototype highly pathogenic A/chicken/Pennsylvania/1370/83 (H5N2) virus isolated in October 1983. These results suggest that unrecognized subpopulations of highly pathogenic virus may have infected Pennsylvania chickens for several months before emerging as the clinically manifest component of the virus population.

Animals↗

Selection of an infectious bursal disease virus mutant with increased immunogenicity following passage under humoral immune pressure.

It is generally known that the pathogenicity of infectious bursal disease virus (IBDV) strains decreases following passage in cell culture. However, there is no information about the effect of passage under immune pressure on the phenotypic and molecular properties of IBDV. In the present study, a small plaque mutant virus with poor neutralization capability, but showing similar growth characteristics as the parental virus strain, QC2, was isolated after serial passage in Vero cells in presence of IBDV serotype 1 chicken polyclonal antiserum. This mutant virus showed reduced pathogenicity but enhanced immunogenicity compared to the parental virus. Sequence analysis of the non-coding regions of the genome revealed 4 and 3 nucleotide changes in the 3' non-coding regions of segments A and B, respectively, and none in the 5' non-coding regions. Restriction enzyme analysis of selected coding regions of the IBDV genome in both viruses revealed a loss of the PstI site in the VP2 region of the mutant virus. Selection of such mutant viruses by passaging under immune pressure may offer an improved method for developing safer and more effective attenuated vaccine strains against infectious bursal disease of chickens.

Animals↗

Persistent infection of Epstein-Barr virus-positive B lymphocytes by human herpesvirus 8.

In patients with Kaposi's sarcoma (KS), human herpesvirus 8 (HHV-8) can invariably be detected in KS tumor tissue and, at a lower frequency, in prostate tissue and peripheral blood B lymphocytes. Whereas the majority of KS spindle cells are latently infected by HHV-8, linear HHV-8 genomes characteristic for lytic infection are found predominantly in the peripheral blood cells of KS patients. In this study, we show that HHV-8 can stably infect B lymphocytes in vitro in the presence of Epstein-Barr virus (EBV). We were able to generate immortalized HHV-8(+)/EBV+ lymphoblastoid cell lines (LCLs) derived from peripheral blood mononuclear cells (PBMC) of EBV- and EBV+ donors. In HHV-8(+)/EBV+ LCLs, which have the phenotype of activated B lymphocytes (CD19(+), surface immunoglobulin M, CD23(+), CD30(+), CD80(+)), HHV-8 was still present after more than 25 passages (more than 9 months of culture). Latent viral transcripts and proteins were present in nonstimulated HHV-8(+)/EBV+ LCLs. After induction by phorbol ester and n-butyrate, HHV-8(+)/EBV+ LCLs expressed lytic HHV-8 transcripts and proteins. Moreover, HHV-8 could be serially passaged from HHV-8(+)/EBV+ LCLs to fresh PBMC.

B-Lymphocytes↗

The effect of serial in vivo passage on the expression of virulence and DNA stability of an infectious laryngotracheitis virus strain of low virulence.

The effect of 35 serial passages in vivo on an infectious laryngotracheitis virus strain of low virulence was examined in terms of effect on virulence and DNA stability. Within 3 passages in live chickens there was evidence of increasing respiratory distress. Severe respiratory distress (with death in some cases) was observed after the 6th passage, except when there appeared to be a transient decline in pathogenicity following short term storage of the virus inoculum at -70 degrees C. Restriction endonuclease analysis of viral DNA derived from the original inoculum and the final passage did not reveal any genomic alteration. It is postulated that there is a potential for live ILTV vaccines to cause outbreaks of clinical disease in the event of inadequate or incomplete vaccination procedures.

Animals↗

Development of inactivated vaccine against virus causing haemorrhagic fever with renal syndrome.

B-1 virus belonging to the hantavirus group was serially passaged in the brains of newborn mice. Inactivated vaccine was prepared from the brains after inactivation with formalin and then purification by ultracentrifugation. The antigenic potency of this vaccine in vitro was determined by antibody-bound enzyme-linked immunosorbent assay (ELISA) and serial diluted vaccine bound to an aluminium hydroxide gel was inoculated into Balb/c mice to test immunogenicity. After two injections of this vaccine preparation, antibodies were detected in the mice by immunofluorescent, neutralizing and haemagglutination inhibition antibody tests. When mice immunized with this vaccine were challenged with B-1 virus and Hantaan virus (KHF-83-61BL strain), the virus titres in their lungs and spleens were significantly less than those in non-immunized mice. These results suggest that inactivated B-1 virus vaccine is effective against virus challenge by homotypic (B-1 virus) and heterotypic (Hantaan virus) viruses.

Animals↗

Enhancement of virulence of Naegleria fowleri by growth in Vero-cell cultures.

The virulence of Naegleria fowleri for mice decreases with prolonged maintenance in axenic culture. Would the virulence be affected if amebas were grown in African green-monkey kidney (Vero)-cell cultures rather than in axenic culture? The weakly virulent LEE strain of N. fowleri was cultivated with Vero cells for 6 mo and tested in mice for changes in virulence. We found that continuous growth in Vero-cell cultures enhanced the virulence of the LEE strain and we propose that, as an alternative to serial passage in mice, the virulence of weakly virulent strains of N. fowleri may be enhanced by maintenance in Vero-cell cultures.

Amebiasis↗

Passage of equine herpesvirus-1 in suckling mouse brain enhances extraneural virus growth and subsequent hematogenous neuroinvasion.

Intracerebral inoculation of field-isolates as well as established strains of equine herpesvirus-1 (EHV-1) in suckling mice results in viral replication in neurons and glial cells and induces encephalitis. By intraperitoneal (i.p.) inoculation, no histological lesion was observed in the central nervous system (CNS) in suckling mice with the EHV-1 HH1 strain (HH1), whereas a neuroadapted variant (NHH1) produced by serial passage of HH1 in the mouse brain caused severe encephalomyelitis after i.p. inoculation. The purpose of this study was to determine the route of neuroinvasion after i.p. inoculation of NHH1 and to clarify the effects of the brain passage on viral neuroinvasion. NHH1, but not HH1, targeted splenic and pulmonary macrophages and omental fat cells on days 1 and 2 post-inoculation (p.i.). From days 1 to 3 p.i., cell-associated viremia was occurred in NHH1-infected mice, but not in HH1-infected mice. On day 4 p.i., viral antigen was detected in a few endothelial cells, perivascular glial cells and neurons in the CNS in NHH1-infected mice. The number of viral antigen-positive cells increased markedly after day 5 p.i. In contrast, no viral antigen-positive cell was detected in the CNS in HH1-infected mice, except for a few nerve cells in the thoracic cord on day 4 p.i. These results suggest that NHH1 neuroinvasion is hematogenous and is correlated with enhanced extraneural virus growth.

Animals↗

[Immunobiologic properties of swine rotavirus].

Immunobiological properties of swine rotaviruses were studied. A field isolate of this virus was markedly virulent for newborn colostrum-less piglets. An attenuated strain of swine rotavirus was obtained by serial passages in continuous cell cultures (MA-104 and SPEV). The virus of the 60th passage was nonvirulent for colostrum-less piglets although produced marked seroconversion. Naso-oral immunization of piglets with the attenuated strain prevented the manifestation of clinical disease upon challenge with the virulent swine rotavirus. Besides, the swine rotavirus of the 60th passage showed cross-protective activity against virulent human rotavirus in modelling human rotavirus infection in colostrum-less piglets.

Animals↗

In vitro assessments of the genetic stability of a live recombinant human adenovirus vaccine against rabies.

The genetic stability of a live human adenovirus 5: rabies glycoprotein recombinant vaccine has been assessed upon 20 serial passages in a permissive cell line of human origin. Restriction endonuclease analysis and the polymerase chain reaction were used to examine the integrity of the expression cassette for the rabies glycoprotein and the viral vector at the site of insertion of the cassette. It was found that the restriction endonuclease profile was identical for each sample assayed. A more detailed analysis of the expression cassette following amplification by the polymerase chain reaction revealed no changes in the size and number of fragments originating from the coding sequence for the glycoprotein nor the signals controlling the expression of the protein product. The amplified product obtained from the 10th and 20th passages was subjected to nucleotide sequencing. Additionally, 20 plaques isolated from the 20th passage of the virus expressed the rabies glycoprotein as demonstrated by fluorescent antibody staining with glycoprotein specific monoclonal antibodies. These results suggest that the recombinant vaccine maintains the integrity of the heterologous sequences upon passage in tissue culture.

Adenoviruses, Human↗

Genetic alterations of the long terminal repeat of an ecotropic porcine endogenous retrovirus during passage in human cells.

Human-tropic porcine endogenous retroviruses (PERV) such as PERV-A and PERV-B can infect human cells and are therefore a potential risk to recipients of xenotransplants. A similar risk is posed by recombinant viruses containing the receptor-binding site of PERV-A and large parts of the genome of the ecotropic PERV-C including its long terminal repeat (LTR). We describe here the unique organization of the PERV-C LTR and its changes during serial passage of recombinant virus in human cells. An increase in virus titer correlated with an increase in LTR length, caused by multiplication of 37-bp repeats containing nuclear factor Y binding sites. Luciferase dual reporter assays revealed a correlation between the number of repeats and the extent of expression. No alterations have been observed in the receptor-binding site, indicating that the increased titer is due to the changes in the LTR. These data indicate that recombinant PERVs generated during infection of human cells can adapt and subsequently replicate with greater efficiency.

Amino Acid Sequence↗