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Neuropathological effects of persistent infection of mice by mouse hepatitis virus.

Mouse hepatitis virus (MHV3) can persist for months in strains of mice with genetically controlled "semisusceptibility" to this virus. The pathology of the chronic neurological disease induced in these animals has been investigated by conventional histology and immunofluorescence. A2G mice develop a chronic choroidoependymitis and meningitis leading to severe hydrocephalus and hydromyelia. In C3H mice a widespread vasculitis was observed, with both viral antigens and bound immunoglobulins in vessal walls. No significant glomerulonephritis was found. Systemic amyloidosis was present in the spleen, liver, and kidneys. The virus was not detected in neural tissues, but brain and spinal cord lesions were found near inflammatory areas surrounding damaged vessels. It is suggested that viral persistance in ependymal cells is directly responsible for the lesions in A2G mice, whereas an immunopathological lesion of blood vessels of the central nervous system underlines the damage to mice of the C3H strain.

Animals↗

Experimental chemotherapy of Trypanosoma cruzi infection: persistence of parasite antigens and positive serology in parasitologically cured mice.

Mice infected with Trypanosoma cruzi, but parasitologically cured after specific chemotherapy, continued to exhibit positive indirect immunofluorescence serological tests 3-6 months after the therapy. Treatment of trypanosome antigens with monospecific antisera produced in rabbits, and examination by immunoelectron-microscopy following peroxidase labelling disclosed the presence of membrane deposits in cell processes in the spleens of the mice. Similar deposits were observed in the external membranes of T. cruzi amastigotes in the spleens of acutely infected mice, but not in normal control mice. No reaction occurred in tissues not previously treated with the monospecific anti-T. cruzi serum. Positive cells in treated and cured mice, as well as in the not cured or untreated control mice, were located in germinal centres of the splenic white pulp and presented long and branching cytoplasmic processes, which are indicative of dendritic cells of the lymphoid follicles of the spleen.

Animals↗

Persistent infection with an influenza C virus variant is dominantly established in the presence of the parental wild-type virus.

Two influenza C viruses were used for double-infection experiments to investigate the dominance of their phenotypes. The wild-type virus (C/AA-wt) had been characterized by its short-lived productive cycle, whereas a distinct variant derived from it (C/AA-pi) was demonstrated to persist in long-term passages of infected MDCK cultures. Here we show that the persistent virus C/AA-pi is capable of replicating in the presence of abundant amounts of wild-type virus: the persistent virus could be diluted to 10(-9) within wild-type inoculum, still developing a stable form of persistence. This behaviour was reflected by permanent virus release and by continuous enzymatic activity of the viral HEF glycoprotein in infected cells. All long-term cultures tested remained positive for viral NS protein and vRNA. On the vRNA level, it was shown that viral segments originated from the persistent-type genome, while wild-type vRNAs were not maintained after double-infection. Thus, the genotype of the persistent variant was dominantly selected in serial passages. These results indicate a specific intracellular advantage of persistent influenza C virus over the parental wild-type.

Animals↗

Cell-mediated transmission of human T cell lymphotropic virus type I to human malignant trophoblastic cells results in long-term persistent infection.

We investigated permissiveness of the malignantly transformed trophoblast (choriocarcinoma) cell lines JAR, BeWo and JEG-3 to the human T cell lymphotropic virus type I (HTLV-I). After co-culture with the productively infected cell line MT-2 the choriocarcinoma cell lines were analysed for infection over a period of three months. The presence of HTLV-I viral DNA was examined by PCR using primers targeting the gag, pol, env and pX specific sequences. All amplified segments were found consistently in the cell cultures throughout the period of study. Further analysis that aimed to characterize the size variation of the integrated proviral DNA by Southern blotting revealed the presence of integrated proviral sequences which consisted, for the most part, of incomplete genomes. The presence of the full-length HTLV-I genome, however, was unequivocally confirmed in clonally expanded cell cultures derived from the originally infected parental cells. In order to analyse virus expression at the transcriptional level, we used reverse transcriptase (RT)-mediated PCR that was targeted at intra-exon regions (gag, pol, env and pX), and the splicing sites of the env and pX-tax/rex mRNAs. When compared with MT-2 cells, substantially lower levels of all transcripts were found in all the cell lines analysed. We were unsuccessful in attempts to detect viral protein expression using polyvalent or Tax- and Gag-specific monoclonal antibodies by Western blot analysis or immunoprecipitation, and we could not detect any RT activity released into the supernatant of the infected cells either. Collectively, these data suggest that the trophoblastic cells may become persistently but essentially non-productively infected with HTLV-I.

Base Sequence↗

Inhibition of CMV replication in human fibroblasts by human monocyte-derived macrophages: implication for CMV persistent infection.

The effect of monocytes (M) and monocyte-derived macrophages (MdM) on cytomegalovirus (CMV) replication in human fibroblasts (HF) was studied by one step growth experiments, plaque formation and dot hybridization with a labeled CMV DNA probe. HF were infected with CMV at multiplicities of infection (mol) of 0.001 to 1. After virus adsorption, M or MdM were added at an effector target ratio of 2:1. MdM reduced both infectious viral yield and the quantity of viral DNA and inhibited viral plaque formation. M, however, affected these parameters to a lesser extent. Electron microscopic studies showed that MdM treated CMF-infected HF, 4 days pi, contained only a few capsids in their nuclei and many vacuoles in their cytoplasm as compared to CMV infected HF (control). A reduction of CMV DNA inhibition was observed upon incubation of the infected HF cells with MdM separated from the infected cells by a membrane. Addition of tumor necrosis factor (TNF) antibody to CMV-infected HF incubated with MdM either in direct contact or separated by a membrane from the infected cells reduced the inhibition of CMV-DNA production. The results of this study suggest that MdM may modulate CMV replication in vivo and may also have a role in CMV persistence or chronic infection.

Cytomegalovirus↗

Evaluation of virus excretion by cells persistently infected with the bovine leukaemia virus (BLV) using monoclonal antibodies.

BACKGROUND: bovine leukaemia virus (BLV) is the causative agent of enzootic bovine leukaemia. Studies in vitro usually require the use of infected cell lines, mostly to produce antigen. Two of the most widely used cell lines are FLK-BLV and BLV-bat2. OBJECTIVE: the dynamics of the excretion of BLV proteins and whole virus by the persistently BLV-infected cell lines mentioned above was studied using an indirect ELISA in combination with eight monoclonal antibodies (mAbs) and cow and rabbit serum. STUDY DESIGN: tissue culture flasks were seeded with different concentrations of cells (13000-67000 cells per cm2, corresponding to 1-5 million cells per 75 cm2 flask) and were studied for 20 days. Samples (1.5 ml) were removed every 24 h and the presence of BLV proteins was determined using an indirect ELISA assay in which the antigen reaction with the monoclonal antibodies was evidenced by peroxidase labeled anti-mouse immunoglobulins. RESULTS: cell line FLK-BLV produced a complete monolayer as early as 4 days after passage, 3 days earlier than BLV-bat2. Using mAbs, the amount of viral proteins in the supernatant showed a cyclic pattern, with two evident peaks at days ca. 8 and 16. These peaks occurred even in the absence of passage or medium change, which causes depletion of essential nutrients and acidity. In comparison to polyclonal serum, mAbs gave more clear and defined values and are useful for determining the dynamics of viral production. CONCLUSION: when aiming for high viral yield, BLV should be harvested between days 6 and 8 after passage, when viral shedding is at its maximum. These results are very useful for preparing antigen for monoclonal antibody production, or for techniques such as ELISA or Western blot.

Animals↗

New model cell systems (PK and XTC-2) for studying acute and persistent infections with herpes simplex and pseudorabies viruses.

Herpes simplex virus type 1 (HSV-1) showed limited replication in PK (pig kidney) and XTC-2 (Xenopus laevis frog) cell lines. Virus replication depended on the multiplicity of infection (MOI). At a high MOI, HSV-1 caused a typical cytopathic effect (CPE) in XTC-2 cells but a little marked CPE in PK cells. Pseudorabies virus (PRV) replicated intensively in PK cells (permissive system) but not in XTC-2 cells (nonpermissive system). Both viruses were adsorbed on to PK and XTC-2 cells. In infected PK cells, fluorescent HSV-1 antigen was demonstrated only in the vicinity of the nuclear membrane and in the paranuclear area of the cytoplasm but not in the nuclei. In XTC-2 cells, HSV-1 antigen was demonstrated also in the nuclei. Persistent HSV-1 infection was induced in PK but not in XTC-2 cells; it was of limited duration. PK cells which had lost HSV-1 multiplied further and proved susceptible to infection with HSV-1 or PRV.

Animals↗

Feline viral rhinotracheitis virus: explant and cocultivation studies on tissues collected from persistently infected cats.

Tissues from 16 feline viral rhinotracheitis (FVR) carrier cats and 15 controls were examined by the techniques of homogenisation, cocultivation and explant cultivation. The tissues examined included trigeminal ganglion and maxillary nerve, olfactory lobe and nerve endings, tonsils, submandibular lymph node, spleen and parotid salivary gland. Most of the cats were shedding FVR virus in the oropharynx at the time the tissues were collected. No evidence of a persistent FVR virus infection was found in any of the tissues. Trigeminal ganglion explant cultures from six FVR virus carrier cats were shown to be latently infected with feline syncytia forming virus by treatment with 5-iododeoxyuridine. Five control cats had trigeminal ganglion explant cultures similarly treated but produced no evidence of infection. The possible significance of this is discussed.

Animals↗

Recombinant vaccinia virus expressing Pre-S/S protein of duck hepatitis B virus and its preliminary use for treatment of persistent infection.

The envelope (Pre-S/S) gene of duck hepatitis B virus (DHBV) was amplified by polymerase chain reaction (PCR) and cloned into plasmid pGJP5, under the control of vaccinia virus promoter P(7.5). By recombination in cell culture, and screened in human TK- 143 cells in the presence of 5-bromouracil deoxyriboside (5-BUdR), a recombinant vaccinia virus, bearing the envelope gene of DHBV (pGDHBV-5) which could replicate in cell cultures was constructed. DHBV surface antigen (DHBsAg) was detected in pGDHBV-5-infected cell lysate by dot enzyme immunoassay (EIA). After multiple-site intradermal injections of pGDHBV-5, DHBsAg could be detected in the serum of immunized adult ducks. This indicated that the recombinant virus replicated and expresed DHBsAg in ducks. The recombinant virus was used as a therapeutic vaccine to immunize persistently DHBV-infected ducks. After immunization, a transient significant decrease of serum DHBsAg was observed.

Animals↗

Reduced cell turnover in bovine leukemia virus-infected, persistently lymphocytotic cattle.

Although nucleotide analogs like bromodeoxyuridine have been extensively used to estimate cell proliferation in vivo, precise dynamic parameters are scarce essentially because of the lack of adequate mathematical models. Besides recent developments on T cell dynamics, the turnover rates of B lymphocytes are largely unknown particularly in the context of a virally induced pathological disorder. Here, we aim to resolve this issue by determining the rates of cell proliferation and death during the chronic stage of the bovine leukemia virus (BLV) infection, called bovine persistent lymphocytosis (PL). Our methodology is based on direct intravenous injection of bromodeoxyuridine in association with subsequent flow cytometry. By this in vivo approach, we show that the death rate of PL B lymphocytes is significantly reduced (average death rate, 0.057 day(-1) versus 0.156 day(-1) in the asymptomatic controls). Concomitantly, proliferation of the PL cells is also significantly restricted compared to the controls (average proliferation rate, 0.0046 day(-1) versus 0.0085 day(-1)). We conclude that bovine PL is characterized by a decreased cell turnover resulting both from a reduction of cell death and an overall impairment of proliferation. The cell dynamic parameters differ from those measured in sheep, an experimental model for BLV infection. Finally, cells expressing p24 major capsid protein ex vivo were not BrdU positive, suggesting an immune selection against proliferating virus-positive lymphocytes. Based on a comparative leukemia approach, these observations might help to understand cell dynamics during other lymphoproliferative disease such as chronic lymphocytic leukemia or human T-cell lymphotropic virus-induced adult T-cell leukemia in humans.

Animals↗

Interleukin-8 mRNA synthesis and protein secretion are continuously up-regulated by respiratory syncytial virus persistently infected cells.

The aim of this study was to investigate whether respiratory syncytial virus persistence regulates interleukin 8 (IL-8) mRNA synthesis and protein secretion in a human lung epithelial cell line (A549). Therefore, we established RSV persistence in these cells (A549per) and determined the levels of interleukin-8 mRNA by RT-PCR and of protein through ELISA. Interleukin-8 mRNA synthesis and protein secretion were continuously up-regulated in A549per cells during passages and in A549 cells that had been incubated with supernatants (cA549per) obtained from A549per passages. These results suggested that the enhancement of interleukin-8 was stimulated either by the presence of the RSV genome in the cell or by soluble mediator(s) induced by RSV, which, in turn, increased interleukin-8 mRNA synthesis and protein secretion. Soluble RSV F and G proteins were identified as mediators. Moreover, interleukin-8 enhancement was observed after 1-min incubation with the soluble mediators, thus suggesting that interleukin-8 up-regulation was triggered by receptor-ligand interaction.

Antigens, Surface↗

Evolution of a human cell line persistently infected with measles virus.

A measles-virus-carrier cell line, designated AV3/MV, was derived from established human amnion (AV3) cells surviving primary infection with the Edmonston strain of measles virus. During maintenance of infected cultures in the laboratory, the cells passed from a highly productive chronic phase (where infectious virus was continuously shed) to a less productive degenerative phase (where fewer infectious particles were produced). Carrier cultures in the less-productive phase gradually deteriorated and failed to survive at 37 degrees. However, when temporarily maintained and passaged at 39.5 degrees, the cultures stabilized and carried the virus in a latent or nonproductive state. Carrier cultures in the chronic phase of infection expressed variable degrees of virus-specific CPE, replicated erratically, and generated large amounts of virus-specific antigens. In the stabilized latent phase, the cultures demonstrated no virus-specific CPE, replicated steadily, and generated reduced amounts of virus-specific antigens. The results of our studies indicate that the establishment and maintenance of persistent measles virus infections in AV3 cells are dynamic processes involving numerous variables, and that there are similarities between these latent-carrier cell lines and certain virus-carrier cell lines derived from subacute sclerosing panencephalitis brain tissues.

Amnion↗

Bacterial biofilms: a common cause of persistent infections.

Bacteria that attach to surfaces aggregate in a hydrated polymeric matrix of their own synthesis to form biofilms. Formation of these sessile communities and their inherent resistance to antimicrobial agents are at the root of many persistent and chronic bacterial infections. Studies of biofilms have revealed differentiated, structured groups of cells with community properties. Recent advances in our understanding of the genetic and molecular basis of bacterial community behavior point to therapeutic targets that may provide a means for the control of biofilm infections.

Anti-Bacterial Agents↗

Staphylococcus aureus small colony variants, electron transport and persistent infections.

Staphylococcus aureus can mutate to form a sub-population of bacteria known as small colony variants (SCVs). These bacteria have a characteristic phenotype defined by slow growth, the lack of pigment, an altered pattern of carbohydrate utilization, and a reduction in toxin production. This complex phenotype can be explained by deficiencies in electron transport. In clinical isolates, the most common mutations that affect electron transport are in the operons encoding menaquinone or heme biosynthesis. These isolates are responsible for persistent antibiotic resistant infections. The clinical presentation of these infections is readily explained by a reduction electron transport. SCVs survive within host cells, increasing the instances of recurrent infections and have a novel mechanism of resistance based upon their altered trans-membrane potential. Additionally, SCVs provide a connection between energy metabolism and toxin production. This link may operate through the bacteria responding to altered levels of NADH and ATP. A more complete understanding of these signaling pathways may provide new targets for the development of drugs to ameliorate staphylococcal virulence and disease.

Adenosine Triphosphate↗

Characterization of a glial cell line persistently infected with borna disease virus (BDV): influence of neurotrophic factors on BDV protein and RNA expression.

Borna disease virus (BDV) infects cells of the nervous system in a wide range of species. Previous work suggests that there are differences in BDV replication in neuronal cells and glial cells. Many neurons are lysed by the immunopathologic response to BDV; lysis of dentate gyrus neurons in the absence of encephalitis is seen in rats inoculated with BDV as neonates. In contrast, persistently BDV-infected astrocytes increase over the course of BDV infection. Therefore, we compared BDV replication in neuronal (SK-N-SH and SK-N-SHEP) and astrocytic (C6) cell lines. While SK-N-SH cells produced more infectious virions per cell, the C6 cells contained more BDV proteins and RNA. BDV sequences in the supernatants of both cell types were identified, despite low titers of infectious virus, suggesting the release of incomplete virions into the medium. C6 cells secreted a factor or factors into the medium that enhanced the production of BDV proteins and RNA in other cell lines. In addition, nerve growth factor treatment produced the same enhancement. Thus, BDV replication in certain neural cells in vitro may be linked to the production of cell-specific factors which affect viral replication.

Animals↗

Transcriptional response patterns of Chlamydophila psittaci in different in vitro models of persistent infection.

The obligatory intracellular bacterium Chlamydophila psittaci is the causative agent of psittacosis in birds and humans. The capability of this zoonotic pathogen to develop a persistent phase is likely to play a role in chronicity of infections, as well as in failure of antibiotic therapy and immunoprophylaxis. To elucidate three different in vitro models for transition of C. psittaci to persistence (iron depletion, penicillin G treatment, and gamma interferon [IFN-gamma] exposure), a set of 27 genes was examined by mRNA expression analysis using quantitative real-time PCR. While the phenotypical characteristics were the same as in other chlamydiae, i.e., aberrant morphology of reticulate bodies, loss of cultivability, and rescue of infectivity upon removal of inducers, the transcriptional response of C. psittaci to persistence-inducing factors included several new and distinctive features. Consistent downregulation of membrane proteins, chlamydial sigma factors, cell division protein, and reticulate body-elementary body differentiation proteins from 24 h postinfection onward proved to be a general feature of C. psittaci persistence. However, other genes displayed considerable variations in response patterns from one model to another, which suggests that there is no persistence model per se. In contrast to results for Chlamydia trachomatis, late shutdown of essential genes in C. psittaci was more comprehensive with IFN-gamma-induced persistence, which is probably due to the absence of a functional tryptophan synthesis operon.

Animals↗