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[Association of the infection of the thymus and bone marrow with the establishment of persistent infection with Junin virus in 2 genera of rodents].

Junin virus infection of immune system organs was correlated with persistence establishment in the mouse and rat. Rockland mice under 24 or at 72 and 120 h of age received 10(4) pfu of Junin virus XJ strain by ic route. Separately, two groups of mice under 24 h old were infected with the same dose of XJ or XJCl3 strain by the same route respectively. Results showed that higher thymus virus titer correlated with greater survival. In turn, the former also seemed to correlate with decreasing age at inoculation time, although there was considerable strain dependence. In order to correlate replication levels in thymus with clinical progress in mice, animals under 24 h of age were inoculated with XJ. At 14 days pi apparently healthy mice from this batch were separated from those presenting severe neurologic sings. In the asymptomatic mice, thymus titers ranged from 1.7 to 3.2 log, while no virus was found in thymus harvested from obviously ill animals. However brain virus titers in the two groups proved similar. To confirm these findings, 72 h old Wistar rats were inoculated in with 10(4) pfu of either Junin virus strain: with XJ strain (90% survival) virus could be readily isolated from thymus and bone marrow at day 7 pi, whereas with XJCl3 (5% survival) no virus could be rescued from any organ tested. Therefore, our results strongly suggest a close correlation between productive thymic infection and Junin virus persistence establishment in these rodents, depending on immune response regulation rather than on viral variation.

Animals↗

Threshold conditions for infection persistence in complex host-vectors interactions.

As classically defined by Macdonald in the early 1950s, for the case of diseases with one vector and one host, the Basic Reproduction Number, R0, is defined as the number of secondary infections caused by a single infective of the same type (vector or host) during its infectiousness period in an entirely susceptible population. In the case of a disease which has one vector and one host, it is easy to show that R0 coincides with the threshold for the establishment of an endemic state: if R0 > 1 (< 1), the disease can invade (cannot invade) the host population. In this paper we examine various epidemic situations in which there are more than one vector and/or host. We show that in those more complex systems it is not possible to deduce a single R0 but rather a threshold for infection persistence which is a composite of several quantities closely related to the classical expression of R0. Another definition of R0 given by Diekmann, Heesterbeek and Metz, and denoted in this paper R0NGO is discussed and applied as an alternative to calculate the thresholds for infection establishment.

Animals↗

Neuroblastoma cell-adapted yellow fever 17D virus: characterization of a viral variant associated with persistent infection and decreased virus spread.

Serial passage of yellow fever 17D virus (YF5.2iv, derived from an infectious molecular clone) on mouse neuroblastoma (NB41A3) cells established a persistent noncytopathic infection associated with a variant virus. This virus (NB15a) was dramatically reduced in plaque formation and exhibited impaired replication kinetics on all cell lines examined compared to the parental virus. Nucleotide sequence analysis of NB15a revealed a substitution in domain III of the envelope (E) protein at residue 360, where an aspartic acid residue was replaced by glycine. Single mutations were also found within the NS2A and NS3 proteins. Engineering of YF5.2iv virus to contain the E(360) substitution yielded a virus (G360 mutant) whose plaque size and growth efficiency in cell culture resembled those of NB15a. Compared with YF5.2iv, both NB15a and G360 were markedly restricted for spread through Vero cell monolayers and mildly restricted in C6/36 cells. On NB41A3 cells, spread of the viruses was similar, but all three were generally inefficient compared with spread in other cell lines. Compared to YF5.2iv virus, NB15a was uniformly impaired in its ability to penetrate different cell lines, but a difference in cell surface binding was detected only on NB41A3 cells, where NB15a appeared less efficient. Despite its small plaque size, impaired growth, and decreased penetration efficiency, NB15a did not differ from YF5.2iv in mouse neurovirulence testing, based on mortality rates and average survival times after intracerebral inoculation of young adult mice. The data indicate that persistence of yellow fever virus in NB41A3 cells is associated with a mutation in the receptor binding domain of the E protein that impairs the virus entry process in cell culture. However, the phenotypic changes which occur in the virus as a result of the persistent infection in vitro do not correlate with attenuation during pathogenesis in the mouse central nervous system.

Animals↗

Natural killer cells are persistently infected and resistant to direct killing by HIV-1.

We have reported the presence of a CD4+ subpopulation of Natural Killer cells (NK) in humans. These cells also express HIV coreceptors CCR5 or CXCR4 and are infectable by HIV-1. Infection is productive and persistent in vitro and in vivo. Infected people under therapy have evidence of viral DNA in their NK pool. In vitro experiments show that the NK compartment is important for virus propagation, since HIV-1 growth is significantly reduced in PBMC depleted of NK cells. This reduction was observed for both R5 and X4 molecular clones of HIV-1. In addition, evidence is presented demonstrating that infected NK cells are killed less efficiently by the virus as compared to T cells. This is reminiscent of macrophage infection, where the virus-infected cells survive for long periods of time. Therefore, few infected NK cells may contribute significantly to the infectious virus produced in vitro. These results further underscore the importance of NK infection for understanding pathogenic mechanisms leading to AIDS, as well as the various reservoirs and sanctuaries for HIV upon antiretroviral treatment.

CD4-Positive T-Lymphocytes↗

A murine coronavirus MHV-S isolate from persistently infected cells has a leader and two consensus sequences between the M and N genes.

A plaque-cloned mouse hepatitis virus mutant, MHV-S No. 8, was isolated from Ki-BALB cells persistently infected with MHV-S. The mRNAs 1 to 6 were larger in the mutant, whereas there was no difference between the two viruses in the size of the smallest mRNA, mRNA 7. Sequence analyses of the genomic RNA, mRNA 6, and mRNA 7 of the two viruses revealed that an additional 111 nt were inserted just upstream of the intergenic consensus sequence preceding the N gene in MHV-S No. 8. The inserted region consisted of two different parts; the 3'-most 30 nt corresponded to nucleotides 28 to 57 of the leader sequence and the 5'-most 81 nt corresponded to nucleotides 58 to 138 of mRNA 7. This structure of No. 8 was most likely generated by RNA-RNA recombination between genomic RNA and subgenomic RNA species. The nucleotide insertion in the intergenic sequence between genes M and N resulted in two consensus sequences separated by 111 nt. Primer extension analysis revealed that the amount of a slightly larger, subgenomic mRNA resulting from initiation of synthesis at the upstream consensus sequence was only 5% of the usual sized mRNA 7 initiated from the downstream consensus sequence.

Animals↗

Studies on persistent infections of tissue culture. VI. Reversible changes in Newcastle disease virus populations as a result of passage in L cells or chick embryos.

Populations of the Victoria strain of Newcastle disease virus (NDV), reisolated from persistently infected L-cell cultures and passed twice in the embryonated hen's egg (NDV(L-E-2)), were found to differ strikingly from the original, chick embryo-adapted virus (NDV(o)). After exposure of L cells to NDV(o) at high multiplicities of infection, all cells became abortively infected; they produced only small aggregates of viral antigen and few, if any, infectious virus particles, but they yielded large amounts of interferon. No cytopathic effects (CPE) were noted, and the cultures survived readily as viral carriers. In contrast, NDV(L-E-2) yielded under similar conditions large quantities of viral antigen and infectious virus particles, but no detectable interferon, and the cultures were rapidly destroyed. This change in "virulence" was at least partially reversible by further serial passages of NDV(L-E-2) in chick embryos, as was evident from a consecutive decrease in CPE with a concomitant increasingly rapid recovery of the L-cell cultures, gradually diminishing yields of infectious viral progeny, and the returning of a capacity to induce interferon synthesis. Thus, NDV(L-E-16) resembled NDV(o) in many aspects, except for a less striking reduction in its ability to replicate in L cells. Although a selection of viral variants under the given sets of conditions has not been entirely excluded, the establishment of "avirulence" appears to be largely explained by a gradual accumulation of noninfectious, interferon-inducing components in the course of serial passages in the embryonated hen's egg, and the acquisition of "virulence" by a loss of these components. The evidence is as follows. (i) By a step-wise decrease in the dose of virus and restriction of the analyses to the first infectious cycle, a multiplicity of infection was ultimately reached for all "avirulent" populations at which infected cells produced normal yields of infectious viral progeny; i.e., the interferon-inducing components were diluted to noneffective levels. The lowest multiplicity which resulted in a measurable reduction in infectious virus replication was also the last one to induce detectable interferon synthesis. (ii) All viral clones derived from "avirulent" populations behaved like NDV(L-E-2) rather than like the parent viral suspensions, except that some of them elicited small amounts of interferon in L cells. The interferon-inducing components were reduced or lost in the cloning procedures. The nature of the interferon-inducing components has not been established. These components, which were neutralized by rabbit sera against "virulent" NDV(L-E-2) populations, may represent largely inactive or incomplete virus particles; however, the infectious virus-hemagglutinin ratios of "avirulent" populations were mostly of an order similar to those of "virulent" populations. The interferon-inducing components aborted the infectious process in cells simultaneously invaded by infectious virus particles. The implications of these findings are discussed.

Animals↗

Border disease virus transmitted to sheep and cattle by a persistently infected ewe: epidemiology and control.

In a Swedish sheep flock comprising 202 ewes and 13 rams, a pair of twin lambs born in the spring of 1990 demonstrated signs of border disease (BD) and were persistently infected (PI) with border disease virus (BDV). Investigation showed that BDV had been introduced in the preceding tupping period 5-6 months earlier by a bought-in ewe which, on the basis of immunoperoxidase- and polymerase chain reaction techniques, was shown to be PI with BDV. Only 7 of the ewes, all of which had been in close contact with the PI ewe, seroconverted during the subsequent gestation. Apart from the PI twin lambs the losses caused by BDV were restricted to 2 barren ewes. The twin lambs, the PI ewe and lambs from the other 4 ewes that seroconverted were removed from the flock. The flock was thereafter free from an ongoing infection with BDV as shown by the absence of seroconversion. In addition, 5 heifers in late pregnancy most probably seroconverted to bovine virus diarrhoea virus (BVDV) when kept in close contact with the same PI ewe during the winter of 1989-90. When these heifers were reintroduced to the BVDV-free dairy herd from which they originated, their serum antibody titres ranged between 1:250 and 1:1250. Neither these heifers--not their calves--caused any spread of the infection in the herd, as indicated by the absence of seroconversion in 70 cows. The present investigation shows that in the control of both BDV in sheep and BVDV in cattle, it is important to ensure that the risk of transmission of pestivirus between the 2 species is minimized.

Animals↗

Biological and biochemical characteristics of prion strains conserved in persistently infected cell cultures.

Abnormal prion protein (PrP(Sc)) plays a central role in the transmission of prion diseases, but the molecular basis of prion strains with distinct biological characteristics remains to be elucidated. We analyzed the characteristics of prion disease by using mice inoculated with the Chandler and Fukuoka-1 strains propagated in a cultured mouse neuronal cell line, GT1-7, which is highly permissive to replication of the infectious agents. Strain-specific biological characteristics, including clinical manifestations, incubation period as related to the infectious unit, and pathological profiles, remained unchanged after passages in the cell cultures. We noted some differences in the biochemical aspects of PrP(Sc) between brain tissues and GT1-7 cells which were unlikely to affect the strain phenotypes. On the other hand, the proteinase K-resistant PrP core fragments derived from Fukuoka-1-infected tissues and cells were slightly larger than those from Chandler-infected versions. Moreover, Fukuoka-1 infection, but not Chandler infection, gave an extra fragment with a low molecular weight, approximately 13 kDa, in both brain tissues and GT1-7 cells. This cell culture model persistently infected with different strains will provide a new insight into the understanding of the molecular basis of prion diversity.

Animals↗

Transformed phenotypes in long-term cultures persistently infected with bovine leukemia virus.

Two cell lines, 3178 and FLK, were established respectively from calf form bovine lymphosarcoma and from fetal lamb kidney cells inoculated in vitro with bovine leukemia virus. These two cell lines persistently infected with bovine leukemia virus were maintained for more than 150 passages over three years. They exhibited the characteristics of transformed cell lines in vitro: 1) anchorage independence, 2) increased saturation density and decreased population doubling time, 3) increased uptake of 2-deoxy-D-glucose and 4) tumorigenicity in athymic nude mice.

Animals↗

Immunogenicity and tolerogenicity of hepatitis B virus structural and nonstructural proteins: implications for immunotherapy of persistent viral infections.

Persistent hepatitis B virus (HBV) infection is characterized by a weak and narrowly focused CD8+ T-cell response to HBV that is thought to reflect the induction of central and/or peripheral tolerance to HBV proteins in neonatal and adult onset infections, respectively. Immunotherapeutic strategies that overcome tolerance and boost these suboptimal responses may lead to viral clearance in chronically infected individuals. The present study was performed to compare the relative immunogenicities and tolerogenicities of HBV structural (envelope [ENV]) and nonstructural (polymerase [POL]) proteins at the CD8+ cytotoxic T lymphocyte (CTL) level in transgenic mice that replicate HBV in the liver and secrete infectious virus into the blood, thus representing an excellent model of persistent HBV infection. Interestingly, the mice were tolerant to the ENV but not to the POL proteins at the CTL level. Furthermore, the POL-specific CTLs had no impact on HBV replication or liver function in vivo, even though they were readily induced and reached the liver after DNA immunization, reflecting their relatively low avidity and the low level at which the POL protein is expressed by the hepatocyte. Collectively, these results suggest that the factors that make POL less tolerogenic also make POL-specific CTLs relatively inefficient effector cells when they reach the target organ. Immunotherapeutic strategies to control HBV infection by inducing virus-specific CTL responses in chronically infected subjects should be evaluated in light of this observation.

Animals↗

Simian virus 40 persistent infection in long-term immortalized human fibroblast cell lines.

Episomal simian virus 40 (SV40) DNA was detected in various SV40-immortalized human fibroblast cell lines, without rearrangements or mutations. In these cells, SV40 established a persistent infection with the release of a viral progeny. However, electron microscopy analysis showed that virions are morphologically altered, whereas infectivity assay indicated that viral production was hampered. The data suggest that in SV40-infected human fibroblasts, some cells support a complete SV40 productive cycle, whereas other cells resist to the SV40 infection. This sort of "balance" observed within the same human fibroblast population may be responsible for the semipermissiveness of these cells to SV40 infection.

Cell Culture Techniques↗

Comparison of flow cytometry and virus isolation in cell culture for identification of cattle persistently infected with bovine viral diarrhea virus.

Detection of bovine viral diarrhea virus in 143 blood samples by virus isolation in cell culture and flow cytometry was performed. The material included 37 samples later shown to originate from persistently infected cattle. Thirty-three samples were positive by virus isolation, and all 37 samples were positive by the flow cytometric assay.

Animals↗

Measurement of virus antigens on the surface of HeLa cells persistently infected with wild type and vaccine strains of measles virus by radioimmune assay.

Persistent states of measles virus infection have been established in HeLa cells by using Edmonston strain virus and two types of measles virus vaccine (M-VAC and Schwarz). The absolute amount of surface viral antigens expressed on these cells infected separately with the three viruses has been assessed by a newly developed method which employs [125I]-labelled Fab fragments of immunoglobulin G (IgG) from immune human sera. This method was used to determine the level of viral antigenic expression on acutely infected HeLa cells harvested at a time when 95 to 100% of cells could be lysed by antiviral antibody and complement. From our data, more than 1 X 10(6) antibody molecules must bind to each cell infected with measles virus before complement dependent lysis can occur in a homologous test system. Persistently infected cells bind 2 to 3 times less antibody than acutely infected cells and correspondingly exhibit less susceptibility to humorally-mediated immune lysis.

Antigens, Viral↗

Interleukin-2-dependent but not independent T-cell lines infected with human T-cell leukemia virus type 1 selectively express CD45RO, a marker for persistent infection in vivo.

Human T-cell leukemia virus type 1 (HTLV-1) is an etiologic agent of adult T-cell leukemia. HTLV-1 is exclusively detected in CD45RO+ T-cells in infected individuals, but CD45RO is weakly expressed in HTLV-1-transformed T-cell lines in vitro. The aim of this study was to investigate the role of CD45RO in the persistent HTLV-1 infection in vivo. Flow cytometry showed that only two out of eight interleukin(IL)-2-independent HTLV-1-transformed T-cell lines expressed CD45RO, whereas all five IL-2-dependent ones expressed CD45RO, and the level of expression was higher in IL-2-dependent than in IL-2-independent cells. The high CD45RO expression in IL-2-dependent cell lines was not due to IL-2, since IL-2 had little effect on the expression of CD45RO in T-cell lines. Using western blotting, we showed that IL-2-dependent HTLV-1-transformed T-cell lines expressed a lower level of expression of the viral transcriptional regulatory protein Tax than IL-2-independent ones, and that the level of expression correlated inversely with that of CD45RO. However, the expression of Tax in one HTLV-1-negative T-cell line little affected the expression of CD45RO, suggesting that Tax at least alone does not suppress the expression of CD45RO in HTLV-1-infected T-cell lines, and that other viral or cellular factor(s) are probably involved in such suppression. Our results suggest that CD45RO+ Tax-low IL-2-dependent T-cell lines in vitro correspond to the persistent HTLV-1-infected cells in vivo, and HTLV-1-infected cells in vivo are immortalized in IL-2-dependent manner.

Cell Line↗

A bovine virus diarrhea calfhood vaccination trial in a persistently infected herd: effects on titres, health and growth.

A controlled calfhood vaccination trial to prevent bovine virus diarrhea was conducted in a 100 head cow-calf operation with a three year history of annual calf losses due to enteric bovine virus diarrhea (persistently infected herd). Approximately 50% of the calves were vaccinated at six, 12 and 24 weeks of age. Paired serum samples and growth data were collected on three occasions for comparison between vaccinates and controls. Three vaccinated calves died of enteric bovine virus diarrhea in the first year of the trial and one nonvaccinated calf died in the second year. Two of the three vaccinated calves had developed bovine virus diarrhea virus neutralization antibody titres of 2048 or greater before developing clinical signs. The control and third vaccinated calf failed to seroconvert before dying of enteric bovine virus diarrhea. Approximately 90% of the vaccinated calves seroconverted compared to approximately 40% of the controls. Paired serum samples collected from 75% of the cows in the spring, summer and fall of each year of the trial, showed persistent high bovine virus diarrhea virus neutralization titres in all samples. Calf vaccination before 12 weeks of age had little effect on seroconversion due to high levels of passive antibody to bovine virus diarrhea. Growth data showed that there was no improvement in weight gain or rate of growth in the vaccinated calves.

Age Factors↗

In ovo infection with the avian retrovirus RAV-1 leads to persistent infection of the central nervous system.

The ability of an avian retrovirus to cause central nervous system (CNS) disease was investigated in chickens infected in ovo with Rous associated virus-1. Viral envelope and core proteins and mature virions were found throughout CNS parenchyma, with the highest amounts localized in the granular layer of the cerebellum, in blood vessel endothelium, and the choroid plexus. This distribution was established by the time of hatching and persisted throughout the 14 weeks of observation. The highest levels of integrated proviral DNA and viral mRNA, were present in the cerebellum, consistent with the distribution of viral antigens. Mononuclear cell infiltrates were evident throughout the CNS, consistent with an inflammatory process. However, demyelination or vacuolar changes, as observed in other retroviral-induced CNS diseases, were not detected. Clinical symptoms of progressive neurologic dysfunction, i.e., weakness or paralysis of the hindlimbs, imbalance, and ataxia, were present in 7 of 38 infected chickens before termination of the experiment at 14 weeks posthatch. Viral antigens or lymphocyte infiltration were not detected in peripheral nerves. These findings suggest that the avian system may provide a valuable model to analyze the mechanisms governing retroviral induced CNS disease.

Animals↗

Subtype C1 persistent infection of HHV-8 in a PEL patient.

PEL, a rare type of lymphoma constituting less than 5% of NHLs, has been recently identified as a distinct clinical and pathological entity among the B-cell lymphomas, with characteristic morphologic, immunophenotypic, molecular and viral features. ICC, PCR, RT-PCR and sequencing were carried out in biologicals samples from a 44-year-old, non-smoker Caucasian male patient of Greek nationality, HIV-1 negative and HCV positive. The ICC results showed CD30 + , Vimentin + , EMA + , Ki67 + , Pankeratin- and negative to B and T antibodies. In addition, HHV-8 was detected in pleural fluid. Examination of blood samples of the patient over a period of nearly two years showed a persistent infection of HHV-8. Phylogenetic analysis revealed a close relation to the C1 variant of HHV-8. The samples was also found EBV negative by PCR. Using a combination of clinical, morphological, immunohistochemical features and molecular biology techniques in this study we document a PEL case with persistent HHV-8 of genotype C1 infection.

Adult↗