PubMed Health⌕ Search

Biomedical subjects

D Falke

Publications and source records attributed to D Falke.

At least 55 records · Page 3Linked to original sources

Colonization of adrenal glands and ovaries of mice by HSV-2 variants. I. Virological studies.

HSV-2 strain ER was shown to consist of variants with different pathogenic phenotype: Variant ER+ replicates to high titers in the adrenal glands and the ovaries but much less in the spleen; the testes were not colonized. ER+ migrates to the spinal ganglia and is highly neuroinvasive after i.p. inoculation. Variant ER- replicates 100-1,000 fold less in the adrenal glands and the ovaries, but proceeds to the spinal ganglia without invading the CNS. However, both variants are highly neuropathogenic after direct i.c. injection. We conclude that neuropathogenicity, neuroinvasiveness and the ability to replicate in the adrenal glands as well as ovaries are each determined by different sets of genes. Replication in mouse embryo fibroblasts--but not in Vero and adreno cortical carcinoma Y1 cells--is different for both strains. Also the adsorption capacity to cultured cells differs as shown by addition of D.S. 500. ER- is eliminated from the blood stream more quickly than ER+. Finally, C. parvum reduces the rate of replication of both variants in the adrenal and the ovaries. It is concluded that different adsorption and replications rates of variants ER+ and ER- in cell types critical for spread of HSV are responsible for the different pathobiological properties.

Adrenal Glands↗

[Hepatitis A, B, CMV, EBV and HIV infections in premature and term newborn infants following polytransfusion].

306 children who received polytransfusion or exchange transfusion between 1979 and 1983 and 104 age-matched controls were re-examined at a median age of 2.9 years for hepatitis A and B, CMV, EBV, and HIV infections. This retrospective study revealed no differences between transfused children and controls. HBsAg and anti-HIV were not detected. Two children were suspected of having hepatitis C. In both groups the incidence of positive CMV and EBV serologies was significantly increased in children from Mediterranean countries. Red cell concentrates were less frequently associated with CMV infection. These results confirm the exclusive recruitment of volunteer donors from a "healthy", mainly rural population and support the preferred use of red cell concentrates in paediatric patients.

Antibodies, Viral↗

HSV hepatitis in the mouse: a light and electron microscopic study with immunohistology and in situ hybridization.

In order to characterize better the morphology and immune response in acute necrotizing HSV infection, murine HSV hepatitis was examined. BALB/c mice were inoculated intraperitoneally with 10(6) plaque-forming units (PFU) of HSV-1 (Lenette) and HSV-2 (D316). In both groups half the animals were pretreated with silica particles to block macrophage function. Up to 6 days after infection four mice from each group were sacrificed at daily intervals and the livers were examined by light and electron microscopy, immunohistology, in situ hybridization, combined immunohistology/in situ hybridization and titration of viral PFU. HSV-2 infected mice developed severe necrotizing hepatitis with persistence of HSV in the liver tissue until the end of the study. HSV-1 infected mice rapidly eliminated the virus and revealed only small necrotic foci. Early phase alterations and necrotic phase lesions were distinguished and characterized and morphologic evidence of a direct cytopathic effect of HSV was detected. A specific immune reaction in late stages appeared to be mediated by T4-positive T-lymphocytes. In situ hybridization and immunohistochemistry showed a close correlation with virus titration and were valuable in characterizing early phases and in the assessment of prognosis and differential diagnosis.

Animals↗

Change of processing and nucleocytoplasmic transport of mRNA in HSV-1-infected cells.

A monoclonal antibody (MAb) raised against the pore-complex lamina fraction from CV-1 cells was used to study alterations of gene expression in herpes simplex virus type 1 (HSV-1)-infected cells. This MAb, which recognized only one cellular polypeptide of 60,000 Da, selectively stained the nucleus in immunofluorescence microscopy, showing a punctuated pattern either at the nuclear surface or at the nuclear rim. By immunoelectron microscopy, the p60 antigen could be localized in the nuclear pore complex structure. Infection of CV-1 cells with HSV-1 resulted in a drastic change of the nuclear staining pattern. Four hours p.i., a clustering of the p60 antigen and, 12 h p.i., a formation of finger-like holes, penetrating the nucleus, occurred. Later in infection (22 h p.i.) the antigen was found to be almost absent. By RNA blot hybridization it was demonstrated that, after HSV-1 infection, the level of cellular mRNA (beta-tubulin) gradually decreased, while the level of HSV major DNA binding protein (DBP) mRNA increased, reaching maximal level 3-6 h p.i. Interestingly, the level of beta-tubulin gene transcripts changed differentially in the polysomal and in the nuclear fraction during the initial phase of infection, in contrast to the viral DBP transcripts, indicating that, after HSV infection, host cell transcripts accumulate in the nucleus. Evidence is presented indicating that this change is not due to altered nucleocytoplasmic mRNA transport but is due to an impaired splicing of host cell transcripts in HSV-infected cells. The MAb, directed against the nuclear pore p60 antigen, strongly inhibited the ATP-dependent efflux of both cellular and viral mRNA from isolated nuclei. The ATP-dependence of the efflux did not change during viral infection. However, the inhibitory potency of the MAb was found to be lost at the final stage of HSV infection, paralleling the loss of p60 antigen.

Adenosine Triphosphate↗

Intracellular distribution of the La antigen in CV-1 cells after herpes simplex virus type 1 infection compared with the localization of U small nuclear ribonucleoprotein particles.

The La antigen is known to associate, at least transiently, with a series of small nuclear and cytoplasmic ribonucleoprotein particles (snRNPs and scRNPs), e.g. U1 and U6 snRNPs. In CV-1 cells a monoclonal antibody (MAb), directed against the La protein (La1B5), immunostained intranuclear speckles. These speckles were found to co-localize with speckles that were stained by MAbs directed against either all U snRNPs or only against U1 snRNPs. Two h after infection of CV-1 cells with herpes simplex virus type 1 (HSV-1) (strain HFEM) the staining of nuclear speckles with the anti-La MAb disappeared and the La protein was found quantitatively in the cytoplasm. In contrast nuclear speckles remained stained with the MAbs against the U snRNPs. Similar results were obtained using HSV-1 strains Lenette or 17 syn+ or temperature-sensitive (ts) mutants defective either in DNA synthesis (tsS) or in the immediate early protein (Mr 175 K) (tsK). Later in infection the La protein returned to the nucleus. Six h after infection most of the nuclear La protein was found to localize within patchy regions. These areas seem to be related to heterogeneous nuclear RNA transcription and/or processing sites, but not to DNA replication sites.

Antibodies, Monoclonal↗

[Is type I diabetes a virus-induced disease?].

The conditions are critically reviewed under which diseases might be aetiologically related to infection by a certain virus. Such a causal correlation has to obey Koch's postulates, but may be very difficult to prove in the case of a "hit and run" process. This will be exemplified in the case of insulin-dependent diabetes mellitus (IDDM). Observations in humans and the results of experiments on laboratory animals are reported, whereby the Coxsackie B and mumps viruses are of particular interest. Furthermore, the mechanisms by which viruses may produce autoimmune diseases are discussed, including virological and immunological aspects. The hypothesis of "molecular mimicry" by Oldstone is quoted as a unifying one, allowing the combination of both aspects. His main assumption is oligopeptide homology between certain virus proteins and some cell proteins and some examples are given. In the presence of such homologies the immune system is first stimulated by the parasitic virus protein, but somewhat later this reaction switches against the host structures, causing continuing cellular damage with the development of autoimmune disease. It is concluded that Koch's postulates in such cases have to be supplemented by assaying for amino acid homologies in viruses and certain cell types.

Animals↗

Suppression of humoral immune response against herpes simplex virus induced by defective strains, ts- and TK- mutants.

Suppression of humoral antibody formation against HSV is not only induced by replicating Herpes simplex virus type 2 (HSV-2) but also by the defective strain ANG and the deletion mutant 1301 of Herpes simplex virus type 1 (HSV-1). Moreover, ts-mutants A, H, K, S, 1201 and 1208 of HSV-1 as well as some ts-mutants of HSV-2 and "defective-interfering" particles of HSV-1 after high multiplicity of infection-passages induced suppression. Treatment of infected mice with ACG reduced antibody-formation but did not result in suppression. UV-irradiation of the antibody producing strain Len of HSV-1 strongly reduces antibody formation and induces suppression. Experiments using a series of intertypic recombinants showed the suppressing activity to be spread over the whole genome of HSV-2. It is concluded that suppression is induced by more than one region of the genome of HSV-2 and by incomplete replication of HSV-1 and 2.

Animals↗

Herpes simplex virus binds to human serum lipoprotein.

Binding of herpes simplex virus (HSV) type 1 to the various subclasses of human serum lipoproteins was investigated. Studies were performed with human serum lipoproteins purified by differential ultracentrifugation and artificial proteoliposomes containing only one type of apolipoprotein (A1, E) by using an enzyme-linked immunosorbent assay technique, column chromatography, and electron microscopy. All tested lipoprotein subclasses (very low, low-, high-density lipoproteins; VLDL, LDL, HDL, HDL1) showed significant binding of purified HSV type 1. Furthermore, HSV bound to all different synthetic proteoliposomes. Adsorption of envelope proteins isolated from purified HSV to Sepharose-bound lipoproteins revealed binding of HSV glycoprotein B. Based on these results we reached the conclusion that in HSV-lipoprotein complex formation the lipid component in the lipoproteins and the glycoprotein B in HSV are the preferential reaction partners.

Adsorption↗

Suppression of humoral antibody formation against sheep red blood cells by infections with HSV-2 and the influence of mouse cytomegalovirus. Brief report.

HSV-2 infections suppress the antibody response to HSV-1 but do not impair the mouse cytomegalo virus (MCMV) antibody generating system. In contrast, the sheep red blood cell (SRBC) IgM response is impaired by preinfections with HSV-2 but not with HSV-1. From the time kinetics of this suppression it can be concluded that only a certain submechanism "spills over" to the SRBC system. MCMV suppresses the antibody formation induced by HSV-1.

Animals↗

Microtubules and intermediate filaments of herpes simplex virus infected cells.

The fate of microtubules and of vimentin or keratin containing intermediate filaments during infection with fusion or rounding producing strains of herpes simplex virus (HSV) was investigated. Microtubules polymerize early after fusion of cells. However, they do not reconstitute 6-7 hours post infection (p.i.) after release of a colcemid block. Keratin and vimentin are maintained around the original nucleus still inside of recruited cells in the polykaryocyte. Cells of fibroblastic and epithelial origin fuse. Inside of polykaryocytes keratin or vimentin containing fibers seem to polymerize. Keratin is to be found in invaginations in the nuclei surrounded by the inner layer of the nuclear membrane. Anti-keratin antibodies specifically label HSV envelopes located in the cytoplasm or outside of the cell. Controls of the procedure allowed to exclude labelling of HSV envelopes via gpE, which represents HSV induced Fc receptors. Late stages of infected cells contain thickened and condensed keratin fibers. Conversely, vimentin fibers late after infection appear to be evenly distributed and to be thin. Microtubules decay late after infection with rounding producing strains of HSV, whereas keratin and vimentin fibers are still present late after infection.

Animals↗

Virus-specific IgM and IgG antibody production by B cells during herpes simplex virus type 2-induced immunosuppression as analysed by an immunospot assay.

The mechanism of herpes simplex virus (HSV)-2-induced immunosuppression was analysed by determination of the number of IgM and IgG antibody-secreting B cells in female BALB/c mice using an immunospot assay. Primary HSV-1 or -2 as well as homologous or heterologous booster infections at different times were performed. In accordance with earlier results on humoral antibody generation, in contrast to HSV-1, HSV-2 induced only very low numbers of antibody-producing B cells in dose-response experiments. They appeared late after infection compared to HSV-1. Despite a homologous humoral booster reaction against HSV-1 at day 8 no IgM- or IgG-secreting cells in the spleen could be detected. This non-reactivity of the spleen had vanished 10 days later, when secondary reactions of B cells could be observed. Secondary infections with a high homologous dose of HSV-2 after a low primary dose produced only a low booster response of IgG-secreting B cells. Suppression of humoral antibody production induced by HSV-2 (high dose) waned after more than 50 days, indicating that the HSV-2-induced suppression did not impair antigen presentation or memory cell generation.

Animals↗

Involvement of actin-containing microfilaments in HSV-induced cytopathology and the influence of inhibitors of glycosylation.

Two and a half hours after infection with a high dose of different strains of HSV-1 which induce rounding of cells, breakdown of actin containing microfilaments can be observed. At the periphery of the cell, actin containing knob-like protuberances were visible. Later on, actin seems to be located exclusively on the surface of cells. Observations were done by immunofluorescence microscopy, scanning electron-microscopy and immunoperoxidase staining of ultrathin sections. The envelope of HSV appears to be stained by anti-actin. Strain IES produces rounding of cells at a high dose of infection before fusion proceeds at 37 degrees C. Similar alterations were not observed with the fusing strains MP and HFEM. Incubation of infected cells at 39 degrees C revealed strain dependent differences of the fusion activity. At 41 degrees C no "fusion from within" of cells but only rounding was detectable. Application of tunicamycin resulted in complete inhibition of fusion by all strains. The fusion activity of some strains of HSV-1 (ANG, HFEM, and MP) was not inhibited by addition of 2-deoxy-D-glucose and 2-fluoro-deoxy-D-glucose. A variant from strain MP could be isolated, which is sensitive to the effects of 2-deoxy-D-glucose. Inhibitors of processing of glycoproteins did not affect fusion of cells.

Actin Cytoskeleton↗

Herpes simplex virus type 1 and 2 in the adrenal glands: replication and histopathology.

The adrenal glands were shown to be the most severely infected organs in the early phase of HSV-1 infections (up to 10 days p.i.) after i.p. infections in mice. Virus could be isolated from the adrenal glands as early as one hour after infection with pathogenic and apathogenic strains. Infection of the adrenal glands is a result of viremia. The content of HSV-1 (5 strains) was much higher in the adrenals than in spleen and liver. It peaked at 3-4 days p.i. compared to 1-2 days in spleen and liver. Only strain 17 syn+ produced low tissue titres in the adrenal glands. Morphologic alterations by HSV-1 infections commenced with distinct foci 2 days after infection in the zona fasciculata, detected immunohistochemically by HSV-specific peroxidase-staining. Necrotic cells could be observed. The foci became confluent until day 4 and remained in this status up to day 7 p.i. During infection immunocompetent cells (macrophages, granulocytes, many T-helper--but only few T-cytotoxic/suppressor lymphocytes) could be observed. On day 10 p.i. the viral antigen had been completely eliminated. In contrast, intraperitoneal infections with 5 strains of HSV-2 resulted in infection of the adrenal glands only to a low degree. The titer of virus was low (exception: strain HG 52). This correlates well with the type of disease produced by either HSV-1 or 2. By comparing the replication of different strains of HSV-1 and 2, three types of "tropism" after i.p. infection of mice can be distinguished.

Adrenal Glands↗

Occurrence of novel small RNAs with concomitant inhibition of host cellular U small nuclear RNA synthesis in Vero cells infected with herpes simplex virus type 1.

In eukaryotic cells, small nuclear and small cytoplasmic RNAs (sn- or scRNAs) are associated with distinct proteins, forming ribonucleoproteins (snRNPs or scRNPs). In the present study we analysed the protein composition as well as the small RNA pattern in non-infected and herpes simplex virus type 1 (HSV)-infected Vero cells. We found that concomitantly with the shut-off of host cell mRNA synthesis, synthesis of U-snRNAs was stopped. Due to their stability, however, U-snRNAs were still present in cells 36 h after HSV infection. Besides these RNAs, two novel small RNAs which we termed HVR1 and HVR2 were detected in infected cells. On the basis of their relative mobilities in urea gels, the apparent chain lengths of these newly synthesized RNAs were determined to be 255 and 154 nucleotides respectively. The small RNA-binding proteins Sm, RNP, Ro and La were found to increase up to 15-fold after HSV infection. The data presented suggest that new, virus-coded small RNPs are synthesized which might play a role in the maturation and regulation of HSV-coded RNA transcripts.

Animals↗

Suppression and enhancement of humoral antibody formation by herpes simplex virus types 1 and 2.

Intraperitoneal infection of mice and rats by herpes simplex virus type 2 (HSV-2) but not type 1 (HSV-1) resulted in suppression of antibody formation on subsequent challenge with HSV-1 or HSV-2. Application of silica considerably enhanced antibody formation after primary HSV-1 infection, but only slightly after primary HSV-2 infection. Suppression induced by HSV-2 was, however, reduced significantly by injection of silica 21 days later, on the day of the second injection of HSV-2. Suppression could be detected soon after infection by HSV-2. The degree of this suppression depended on the dose of the injected virus and was abolished by u.v. irradiation of the virus prior to inoculation. Likewise the weak antibody response induced by HSV-2 was abolished for both neutralizing and ELISA antibodies. Infections with HSV-1 evoked considerable numbers of HSV-specific antibody-producing B cells, when assessed by an enzyme-linked immunospot assay. The B cell response to HSV-2, however, was very weak. Silica considerably enhanced the number of specific antibody-producing B cells only during primary HSV-1 infections. The present results in combination with earlier data demonstrate the central role of macrophages, which seem to be the primary target affected by silica, for enhancement and suppression of HSV-induced antibody generation.

Animals↗

Rare association of herpes simplex virus IgM-specific antibodies and Guillain-Barré syndrome successfully treated with plasma exchange and immunosuppression.

Herpes simplex virus (HSV) has been associated with various neurological disorders. In contrast, HSV infection is very rarely found in acute polyneuroradiculitis. In this report, a patient is described with a severe course of Guillain-Barr¿ syndrome (GBS). HSV IgM-specific antibodies and a rise of complement-fixation antibodies were detected. During the acute phase of neurologic syndrome, a nerve biopsy showed myelin damage and IgM deposits on the inner layer of the perineurium. Plasma exchange, in combination with immunosuppression, was successfully applied as a treatment in the relapsing course of GBS. Finally, after recovery, HSV-specific IgM antibodies disappeared.

Aged↗

Loss of surface fibronectin after infection of cultured cells by HSV-1 and 2.

Fibronectin is lost from the surface of HSV infected cells during cell rounding. In order to investigate also the fate of fibronectin during the process of HSV-induced cell-fusion, BHK, Vero as well as primary or secondary rabbit kidney cells were infected with HSV-1 strains producing cell-fusion. By immunofluorescence and immunoelectron microscopy a considerable loss of fibronectin after HSV infection could be demonstrated leaving only irregular clumps of fibronectin containing virus particles on the cell surface. Decrease and disarrangement of fibronectin was similar during cell rounding and cell fusion. Loss of Fibronectin was closely connected with the two types of the cytopathic effect (CPE) and could not be prevented by protease inhibitors. The immediate-early protein 175K is essential for induction of CPE and loss of fibronectin. The damage to the cell membrane during HSV infection shows certain analogous mechanisms with events induced by Cytochalasin B and might be explained by the loss of hypothetical fibronectin receptors.

Actin Cytoskeleton↗