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Biomedical subjects

A Stelzner

Publications and source records attributed to A Stelzner.

At least 37 records · Page 2Linked to original sources

Protection of mice against lethal coxsackievirus B3 infection by using DNA immunization.

Vaccination with DNA and recombinant vaccinia viruses (rec.VV) has been studied with the coxsackievirus B3 (CVB3) model system. Plasmids encoding all structural proteins of CVB3, when injected intramuscularly, induced only low levels of virus-specific antibodies. However, DNA vaccination with the major structural protein VP1 protected 72.2% of mice from lethal challenge, whereas VP1 expressed by rec.VV was much less efficient.

Animals↗

Application of genome sequence information to the classification of bovine enteroviruses: the importance of 5'- and 3'-nontranslated regions.

Comparative genomics of viruses in evolutionary and phylogenetic studies is well established. Previous nucleic acid sequence analyses have demonstrated that enteroviruses and rhinoviruses of the family Picornaviridae exhibit a similar structure of the 5'-nontranslated region (NTR) differing significantly from the 5'-NTR of cardiovirus, aphthovirus, hepatovirus, and echovirus 22 (provisionally parechovirus 1). Available nucleotide sequence information of the 5'- and 3'-nontranslated regions of more than 70 serotypes of enteroviruses, bovine enteroviruses and rhinoviruses has been compared and correlated with previous findings obtained after analysis of the coding and noncoding genome regions. As a result, the 5'- and 3'-NTRs of all three virus groups are characterized by group-specific nucleotide sequences. Focusing on bovine enterovirus (BEV) serotypes, unique characteristics in all secondary structures of the NTRs were observed. These features clearly separate the BEVs from the human enteroviruses and rhinoviruses. Concerning the 5'-NTR, the most remarkable property is an insertion of about 110 nucleotides between the putative cloverleaf structure at the very 5'-end of the viral genome and the IRES element. This insertion was demonstrated for BEV 1 and 2 and has a predicted folding pattern which is very similar to the 5'-cloverleaf structure. One stem-loop of this second cloverleaf is almost identical to the 3CDpro-binding domain of rhinoviral 5'-cloverleafs. It was also demonstrated that the IRES elements and the 3'-NTRs of both, enteroviruses and rhinoviruses, have group-specific features which differ significantly from the corresponding genome regions of BEV. These results suggest that bovine enteroviruses hold an exceptional taxonomic position besides the established genera Enterovirus and Rhinovirus. Within the Enterovirus and Rhinovirus genera, the existence of virus clusters representing subgenera was previously proposed. Whereas the 5'-NTRs of the four human enterovirus clusters fall into two groups, all four clusters have characteristic secondary structures at the 3'-NTR supporting the concept of enterovirus clusters. For rhinoviruses, the existence of two virus clusters was confirmed.

Animals↗

Pseudomonas aeruginosa infection in embryonated hen's eggs. An alternative in vivo model for the screening of antibacterial substances.

Embryonated hens' eggs can be reliably infected by Pseudomonas aeruginosa in laboratory experiments. Therapy tests with the antibiotics azlocillin (CAS 37091-66-0) and gentamicin (CAS 13291-74-2) on this type of infected hens' eggs demonstrate that this test system offers a realistic alternative to septic experiments with small laboratory rodents. Chick embryos survive a lethal Pseudomonas infection when azlocillin or gentamicin in a relevant therapeutic dose are administered immediately after the infective agent. The use of Pseudomonas infected chick embryos in the screening for new antiinfectives allows, therefore, a considerable reduction of the number of laboratory rodents required.

Animal Testing Alternatives↗

Permissiveness of human embryonal fibroblasts for coxsackieviruses B3. Investigations on virus genetic markers in vitro and localization of virus receptor distribution by immunogold replica technique.

In our previous paper (29) we could show, that the replication of four Coxsackie B3 virus strains in human fibroblast lines from different origin was dependent on both the virus strain and the cell line used. Although generally no cytopathic effect could be observed out of one virus strain more pathogenic virus variants could be selected able to destroy virus-sensitive as well as insensitive fibroblasts. The present study was designed to characterize these virus strains by using several in vitro genetic markers. Differences were found concerning plaque size and the temperature marker, whereas the other markers (d, DD, DEAE-D) remained constant. Furthermore, these models of persistent as well as lytic CVB3 infection were analysed by immunoelectron microscopy to study the interaction of viral ligands with cellular receptors. The qualitative and quantitative differences in adsorption of the CVB3 strains to two human fibroblast lines as well as to HeLa cells corresponded well with the virological results. They underline that even in vitro in human cell lines of different origin changes in distribution, quantity and quality of receptors were demonstrable forming the base for the various virus sensitivity.

Animals↗

Matrix remodelling in dilated cardiomyopathy entails the occurrence of oncofetal fibronectin molecular variants.

OBJECTIVES: To investigate whether disturbance of the cellular homoeostasis and integrity of cardiomyocytes in dilated cardiomyopathy (DCM) is accompanied by alterations in cell-matrix relations as indicated by changes in the deposition of fibronectin (FN) isoforms. DESIGN: Tissue from a case series of patients with DCM was investigated by immunohistochemistry with antibodies against FN (all variants, clone IST4), ED-A+ FN (clone IST9), ED-B+ FN (clone BC1), and oncofetal glycosylated FN (clone 5C10). The sites of de novo synthesis of FN were demonstrated by means of non-radioactive RNA in situ hybridisation (ISH) with biotinylated FN cDNA fragments as the probe. SETTING: University hospital. PATIENTS: Samples from 10 patients with clinical criteria and histological diagnosis of DCM and from 3 individuals with normal hearts. INTERVENTIONS: Samples were obtained by right ventricular endomyocardial biopsy. MAIN OUTCOME MEASURE: Distribution of oncofetal FN variants in DCM hearts. RESULTS: Immunostaining of FN (IST4, all variants) showed a coarse interstitial network in normal and diseased myocardium. ED-A+ FN was deposited as fine interstitial spots in normal myocardium and in DCM samples. Immunostaining for oncofetal glycosylated FN and ED-B+ FN was not seen in normal adult myocardium, whereas myocardium from DCM patients showed focal and delicate staining in the interstitium. RNA ISH showed that these deposits resulted from local FN synthesis. CONCLUSION: The results accord with de novo expression of oncofetal FN variants in hearts from patients with DCM. The oncofetal FN variants may serve as disease markers in myocardium affected by DCM.

Adult↗

Replication and persistence of coxsackieviruses B3 in human fibroblasts.

Although in some cases a carrier state of Coxsackieviruses in human fibroblasts was described, the persistence mechanism has remained unknown. Our results demonstrate a replication of Coxsackievirus B3 (CVB3) in diploid human fibroblasts that is dependent on the virus strain as well as on the cell line involved. Two CVB3 Nancy strains could be multiplied over more than 10 passages in cell line H, whereas CVB3 strains SH"C" and SH"W" did not longer form infectious virus following several passages in these fibroblasts. None of the CVB3 strains replicated in cell lines J and K after a few passages. These results were not influenced by variations of culture conditions such as duration of incubation (3 or 7 days), temperature (33 or 37 degrees C) or application of trypsin. In line H, only 3-5 per cent of human fibroblasts were virus-infected. This was demonstrated by 1. antigen evidence by immunofluorescence, 2. determination of infectious centres, and 3. virus reproduction in dependence on MOI of the virus. We observed a carrier state of CVB3 Nancy strains over 16 cell passages in line H fibroblasts infected once. As shown in virus passage experiments, only few cells were productively infected. An addition of specific anti-CVB3 antiserum terminated this persistent infection. Generally, no cytopathic effect was observed. However, in one case a cell destruction by CVB3 Nancy "P" at the end of the life-time of the carrier cells could be found. This virus caused a complete cytopathic effect during more than 10 passages in line H and could still be neutralized by CVB3-specific antiserum.

Animals↗

The role of CD8+ T lymphocytes in coxsackievirus B3-induced myocarditis.

Coxsackievirus infections have previously been shown to cause acute or chronic myocarditis in humans, and several mouse models have been established to study the pathology of this disease. Myocardial injury may result from direct viral effects and/or may be immune mediated. To determine the relative roles of these processes in pathogenesis, we have compared coxsackievirus B3 (CVB3) infections of normal and immuno-compromised transgenic knockout (ko) mice. CVB3 was able to infect all strains used (C57BL/6, CD4ko, and beta-microglobulin ko [beta 2Mko]), and following intraperitoneal injection, two disease processes could be distinguished. First, the virus caused early (3 to 7 days postinfection) death in a viral dose-dependent manner. Immunocompetent C57BL/6 mice were highly susceptible (50% lethal dose = 70 PFU), while immunodeficient transgenic ko mice were less susceptible, showing 10- and 180-fold increases in the 50% lethal dose (for CD4ko and beta 2Mko mice, respectively). Second, a histologic examination of surviving CD4ko mice at 7 days postinfection revealed severe myocarditis; the inflammatory infiltrate comprised 40 to 50% macrophages, 30 to 40% NK cells, and 10 to 20% CD8+ T lymphocytes. The infiltration resolved over the following 2 to 3 weeks, with resultant myocardial fibrosis. In vivo depletion of CD8+ T lymphocytes from these CD4ko mice led to a marked reduction in myocarditis and an increase in myocardial virus titers. beta 2Mko mice, which lack antiviral CD8+ T cells, are much less susceptible to early death and to the development of myocarditis. We conclude that our data support a strong immunopathologic component in CVB3-induced disease and implicate both CD4+ and CD8+ T cells. Compared with immunocompetent animals, (i) mice lacking CD4+ T cells (CD4ko) were more resistant to virus challenge, and (ii) mice lacking CD8+ T cells (beta 2Mko and in vivo-depleted CD4ko) showed enhanced survival and a reduced incidence of the later myocarditis. Nevertheless, the picture is complex, since (iii) removal of the CD4+ component, while protecting against early death, greatly magnified the severity of myocarditis, and (iv) removal of the CD8+ cells from CD4ko mice, although protecting against early death and later myocarditis, led to markedly increased virus titers in the heart. These data underscore the complex balance between the costs and benefits of effective antiviral immune responses.

Animals↗

Coxsackievirus B3-induced production of tumor necrosis factor-alpha, IL-1 beta, and IL-6 in human monocytes.

Infections by coxsackievirus B3 (CVB3) have previously been shown to cause acute and chronic myocarditis characterized by a heavy mononuclear leukocyte infiltration and myocyte necrosis. Because clinical and experimental evidence suggested that cardiac damage may result from immunologic rather than viral mechanisms, we examined in this study the in vitro interaction of CVB3 with human monocytes. CVB3 was capable of infecting freshly harvested monocytes as revealed by immunofluorescence and release of infectious virus particles. Virus infection did not reduce monocyte viability but, on the contrary, enhanced spreading and adherence. In a dose-dependent manner, CVB3 stimulated the release of cytokines from monocytes. Whereas a potent production of TNF-alpha, IL-1 beta, and IL-6 was dependent on exposure to infectious CVB3, IFN release was also induced by UV-inactivated virus. On a molecular level, CVB3 stimulated cytokine gene expression as shown by a marked TNF-alpha, IL-1 beta, and IL-6 mRNA accumulation. Supernatants of CVB3-infected monocytes displayed cytotoxic activity against Girardi heart cells which could be abrogated by an anti-TNF-alpha antiserum. These data suggest that CVB3-induced cytokine release from monocytes may participate in virus-induced organ damage such as myocarditis, which may either occur by a direct cytotoxicity of cytokines or by activation of cytotoxic lymphocytes.

Cell Adhesion↗

Lipopolysaccharide suppresses cytokine release from coxsackie virus-infected human monocytes.

Infections by coxsackie virus B3 (CVB3) have been reported to be associated with an enhanced influx of mononuclear leukocytes into afflicted tissue. Current evidence indicates that monocytes/macrophages are specifically involved in CVB3-induced myocarditis by maintaining a chronic inflammatory response. To examine susceptibility and reactivity to CVB3, freshly isolated human monocytes were exposed to various virus doses (0.1-10 MOI) in the presence or absence of macrophage-activating lipopolysaccharide (LPS). CVB3 infection alone induced an activation of monocytes as evidenced by enhanced adherence, release of cytokines and secretion of prostaglandin E2 (PGE2). Simultaneous addition of LPS almost entirely suppressed LPS-specific production of tumour necrosis factor alpha (TNF alpha) and PGE2, partially inhibited release of interleukin 1 beta (IL 1 beta) and did not affect interleukin 6 (IL6) synthesis of CVB3-infected monocytes. These data show that CVB3 activates monocytes to cytokine production but renders them unreactive to further activating stimuli. Further studies should determine the extent to which continuous cytokine release from persistently CVB3-infected monocytes, and their apparent unresponsiveness to other stimuli, contribute to chronic myocarditis.

Coxsackievirus Infections↗

A phagocytosis capacity assay: parallel measurement of the phagocytosis and the intracellular killing in granulocytes and the influence of some substances on these processes.

A radiometric technique is described for the assessment of phagocytosis and killing of viable yeast cells by granulocytes. This technique does not require separation of extra- and intracellular microorganisms. In this method the phagocytes which contain viable yeast cells (Saccharomyces cerevisiae and Candida albicans) were disrupted by Triton X-100, and only the remaining yeast cells were isotope-labelled. The uptake of [75 Se]L-selenomethionine was used to measure the killing ability of phagocytes. This method is recommended to measure the influence of biological and pharmacological agents to ingest and kill leucocytes in vitro. The following substances affected phagocytosis and killing: Granatomycin C (decreased phagocytosis), cis-DDP (no influence), bestatin (stimulation of phagocytosis) and Z 190/69-HCl (oxazole) (stimulation of phagocytosis and killing).

Candida albicans↗

Induction of cytokine release from human monocytes by coxsackievirus infection.

Coxsackievirus B3 (CVB3) infections produce an inflammatory and immune response that suggests the involvement of cytokines. In this in vitro study, we exposed purified human monocytes to CVB3 and determined the release of interferon (IFN), interleukin 1 beta (IL-1 beta) and tumour necrosis factor-alpha (TNF-alpha). Exposure to CVB3 did not alter the viability of monocytes, however, it induced an increased adherence. After 12 and 24 h of CVB3 exposure, monocytes released large amounts of IFN, IL-1 beta and TNF-alpha. These data show that CVB3 strongly affects human monocytes and activates them to production of biologically active cytokines, particularly IL-1 beta and TNF-alpha. It is suggested that both cytokines, when released in large amounts and for a prolonged period, may contribute to a strong inflammatory response and eventual tissue damage in afflicted organs such as the myocardium.

Coxsackievirus Infections↗

[The effect of potential antineoplastic antibiotics and the metal complex compound cisplatin on in vitro phagocytosis].

Under standardized conditions the influence of the drugs lambdamycin, violamycin, granatomycin C, daunorubicin and cisplatin on the phagocytosis has been tested. Therapeutical doses of lambdamycin, daunorubicin and cisplatin did not have any obvious impairment on the phagocytosis. Contrarily to this granatomycin C (an isochromanchinon antibiotic) and violamycin (an anthracyclin in high concentrations) significantly depressed the phagocytosis of PMN.

Aminoglycosides↗

[Interferon induction under in vitro conditions].

The procedures generally used for the in vitro induction of interferon exploit fibroblast or leucocyte culture suspensions. Several factors and conditions influencing the capacity for IFN induction were studied, with the following results. In contrast to previous findings, optimum IFN induction was obtained at 37 degrees C, rather than 30 degrees C, when human fibroblasts were induced with 100 micrograms/ml of Poly (IC). There was a direct correlation between the dose of the inducing agent applied and the amount of IFN produced. Also, the cells were excellently super-inducible with metabolic inhibitors like actinomycin D and cycloheximine. In addition, priming procedures enhanced IFN induction in human fibroblasts. Comparing different cell types with respect to their ability to be induced for IFN production, we found that different cell types show great differences in their inducer sensitivity. Finally, the response of different cell culture systems was highly variable when induced with different compounds.

Cells, Cultured↗

Abnormal macrophages and NK cell cytotoxicity in human systemic lupus erythematosus and the role of interferon and serum factors.

Macrophage (MO) and natural killer (NK) cell mediated cytotoxicity to K562 target cells were strikingly decreased in patients with systemic lupus erythematosus (SLE). SLE NK cells failed to release soluble factor(s) for lysing the targets. IFN-induced enhancement of both types of cytotoxicity was impaired. NK cells from healthy subjects kept their activity in culture with or without IFN for more than six days whereas SLE NK cell activity declined to zero at day 3. So, the increased IFN level of many SLE patients and a possible prior IFN priming effect seemed unrelated to the insensitivity to exogenous IFN in vitro. Inhibition factor(s) of SLE serum suppressed NK cytotoxicity in the presence of IFN whereas IFN sensitivity of MO remained unaffected indicating the complex regulation by serum components of immune reactions.

Chromium Radioisotopes↗

[Investigations on the standardization of the lysoplate technique for assay of lysozyme].

In this paper studies for the standardization of the estimation of lysozyme in low concentrations concerning the lysoplate technique are reported. The influence of the conditions of diffusion, the concentration and the age of the bacteria as well as the judgement of different pictures of lysis and contrast resp. have been measured and compared. Sufficient results have been obtained with "Purified agar" (Difco) in a concentration of 0.9% and with living, 48 h old strains from Micrococcus luteus. After this a mixture of the bacteria in a concentration of 2.75 x 10(8)/ml with 5 ml "Purified agar" at 60 degrees C can be recommended. Using conditions of incubation with 50 degrees C and a final time of 4 h lysozyme can be estimated certainly with a sensitivity of 1 microgram/ml.

Agar↗