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Biomedical subjects

A Kirn

Publications and source records attributed to A Kirn.

At least 19 recordsLinked to original sources

Implication of the C-terminal domain of nef protein in the reversion to pathogenicity of attenuated SIVmacBK28-41 in macaques.

We have analyzed the nef gene sequences amplified from 12 macaques presenting various patterns of infection with SIVmacBK28-41, a clone derived from attenuated SIVmacBK28. We have observed seven mutation hot spots at positions 56, 75, 432, 588, 680, 699, and 779. The major alteration was a thymidine insertion at position 699, leading to a frameshift in the SIVmacBK28-41 nef gene and changing the last 15 amino acids of Nef into a 31-amino-acid-long C-terminal domain nearly identical to that encoded by pathogenic SIVmac239 and SIVmac251. The insertion was found at early time points in proviruses obtained from rapid progressor macaques, after 2 years postinfection in progressors, and rarely or only after 4 years postinfection in nonprogressors. Fixation of the other mutations occurred only after insertion of thymidine 699. Phylogenetic analysis demonstrated that the nef genes isolated from progressors evolved from the allele present in SIVmacBK28-41 to alleles present in SIVmac239 or SIVmac251, whereas nef sequences from nonprogressors stayed clustered with that of the inoculated molecular clone. These data stress the importance of the C-terminal extremity of the Nef protein of SIVmac239 or SIVmac251 in viral pathogenesis.

Amino Acid Sequence

Follow-up of hepatitis C virus RNA in peripheral blood mononuclear cells during interferon therapy.

Mononuclear cells can be infected in vitro by hepatitis C virus and the viral RNA can be detected in mononuclear cells of chronically infected patients. It was suggested that the virus could persist in the mononuclear cells of some patients treated by interferon. The aim of this study was to follow the presence of viral RNA in the plasma and peripheral blood mononuclear cells of 16 chronically infected patients treated by alpha 2b interferon for 1 year. The RNA was detected by reverse transcription followed by nested PCR and quantified using the branched DNA method at regular intervals for at least one year. Before PCR, the mononuclear cells were treated by RNase and trypsin in order to eliminate the viral particles that could be stuck at the cell surface. Six patients were non responders and had persistent plasmatic viral RNA during the treatment. Two patients were good responders and had persistently negative PCR in both plasma and mononuclear cells. Eight patients had initial negativation of plasmatic hepatitis C virus RNA but showed a relapse characterized by positive plasmatic PCR. Positive PCR in mononuclear cells despite negativity of plasmatic PCR was noted 18 times in 8 patients. Persistently positive PCR in mononuclear cells in absence of detectable viraemia was followed by a virological relapse in 5 of these patients. This study confirms that hepatitis C virus RNA can be detected in mononuclear cells despite negative plasmatic PCR in patients treated by interferon. Moreover, the persistence of viral RNA in peripheral mononuclear cells could be a predictive factor of treatment failure. Our data also suggest that detection of viral RNA in mononuclear cells is probably not only due to passive virus adsorption from plasma.

Adult

Effects of corticosteroids on HCV infection.

The risk factors for clinical recurrent hepatitis C in liver transplant recipients are not clearly defined. It has been suggested that the corticosteroids included in the treatments of patients undergoing allograft rejection might induce acute hepatitis by increasing HCV replication. In this study we investigated the effects of corticosteroid boluses on HCV viremia in liver allograft recipients treated for acute rejection. Since we had previously developed a model of HCV replication in peripheral blood mononuclear cells (PBMC) in vitro, we also studied the effects of corticosteroids on HCV replication in vitro. A transient peak of HCV viremia was observed in patients treated with corticosteroid boluses for an acute allograft rejection. In the cell cultures, corticosteroids induced an increase of the total amount of viral RNA detectable. Our results demonstrate that corticosteroids induce an increase of hepatitis C virus replication in vivo and in vitro.

Adrenal Cortex Hormones

Expression of Zkrml2, a homologue of the Krml1/val segmentation gene, during embryonic patterning of the zebrafish (Danio rerio).

We have identified Zkrml2, a novel homologue of the segmentation gene Krml/val in zebrafish (Danio rerio). Zkrml2 shows 72% and 92% identity in its basic leucine zipper domain with mouse Krml1 and zebrafish val, respectively. Zkrml2 is expressed coincident with MyoD throughout the somites starting at the three somite stage, becomes restricted to the dermomyotome, and subsequently disappears. Transient expression is also detected in the reticulospinal and oculomotor neurons. Zkrml2 maps to the Oregon linkage group 11 (Boston Linkage group 14) with no mapped zebrafish mutations nearby.

Amino Acid Sequence

A radiation hybrid map of the zebrafish genome.

Recent large-scale mutagenesis screens have made the zebrafish the first vertebrate organism to allow a forward genetic approach to the discovery of developmental control genes. Mutations can be cloned positionally, or placed on a simple sequence length polymorphism (SSLP) map to match them with mapped candidate genes and expressed sequence tags (ESTs). To facilitate the mapping of candidate genes and to increase the density of markers available for positional cloning, we have created a radiation hybrid (RH) map of the zebrafish genome. This technique is based on somatic cell hybrid lines produced by fusion of lethally irradiated cells of the species of interest with a rodent cell line. Random fragments of the donor chromosomes are integrated into recipient chromosomes or retained as separate minichromosomes. The radiation-induced breakpoints can be used for mapping in a manner analogous to genetic mapping, but at higher resolution and without a need for polymorphism. Genome-wide maps exist for the human, based on three RH panels of different resolutions, as well as for the dog, rat and mouse. For our map of the zebrafish genome, we used an existing RH panel and 1,451 sequence tagged site (STS) markers, including SSLPs, cloned candidate genes and ESTs. Of these, 1,275 (87.9%) have significant linkage to at least one other marker. The fraction of ESTs with significant linkage, which can be used as an estimate of map coverage, is 81.9%. We found the average marker retention frequency to be 18.4%. One cR3000 is equivalent to 61 kb, resulting in a potential resolution of approximately 350 kb.

Animals

Infection of primary cultures of human Kupffer cells by Dengue virus: no viral progeny synthesis, but cytokine production is evident.

We investigated the ability of dengue virus to invade human primary Kupffer cells and to complete its life cycle. The virus effectively penetrated Kupffer cells, but the infection did not result in any viral progeny. Dengue virus-replicating Kupffer cells underwent apoptosis and were cleared by phagocytosis. Infected Kupffer cells produced soluble mediators that could intervene in dengue virus pathogenesis.

Apoptosis

Production of cytokines in patients infected by hepatitis C virus.

T helper type 1 (Th1) cytokines play an important role in antiviral defence. The purpose of this study was to quantify by ELISA IL2, soluble receptor of IL2 (IL2Rs), IFNgamma TNFbeta, IL4, IL6 and IL10 levels in the sera of 134 HCV-positive patients, 69 of whom were coinfected with HIV, and in 54 HIV-HCV-negative patients. The mean IL2Rs and IFN serum levels were much higher in patients with anti-HCV than in the control group, whereas the mean IL4 and IL6 levels were lower in patients infected with HCV. There were no significant differences in cytokine levels between patients with and without HIV. There were significantly less patients with HCV than controls with IFNgamma levels under cut-off, and significantly more patients with HCV with IL4 levels under cut-off. Although serum level of cytokines must be interpreted with caution, the results suggest that Th1 response is enhanced in HCV infection.

AIDS-Related Opportunistic Infections

Inhibition of hepatitis C virus adsorption to peripheral blood mononuclear cells by dextran sulfate.

Human peripheral blood mononuclear cells (PBMC) can be infected in vitro with sera of hepatitis C virus (HCV)-infected patients. We have treated pools of PBMC with dextran sulfate MW 8,000, before infection with various HCV(+) sera. When the cells were treated with dextran sulfate 10-3 M, HCV RNA was no longer detectable after infection with all HCV genotypes tested. When the cells incubated with dextran sulfate 10-3 M and 10-4 M were maintained in culture for 4 weeks, no significant HCV replication could be observed. Our data suggest that dextran sulfate inhibits the attachment of HCV to the cell surface, since the HCV RNA detection was similar to control cells when dextran sulfate was added after infection.

Adsorption

A thermoresistant strain of feline immunodeficiency virus (FIV) with an altered cytopathic effect and a restricted cell tropism.

A thermoresistant strain, designated m41, of feline immunodeficiency virus (FIV) was selected after 31 successive passages of chronically infected IRC4 cells at 41 degrees C. The wild-type virus (wt) which served as a control was cultivated the same number of times at 37 degrees C. In Crandell feline kidney cells (CrFK), the replication of m41 was similar at 37 degrees C and 41 degrees C, whereas wt multiplied only at 37 degrees C. Furthermore, m41 was more resistant than the wt strain at temperatures ranging from 37 to 56 degrees C. Syncytia formation was observed with m41 when the CrFK were incubated at 41 degrees C whereas neither m41 nor wt produced syncytia at 37 degrees C. The level of replication of wt and m41 on feline lymphoid primary cells at 37 degrees C was similar. In contrast to wt, m41 was unable to infect bone marrow macrophages. Since one or several mutations in the envelope (env) gene could be involved in changes of cell fusion properties and of cellular tropism, the nucleotide sequence of the env gene derived from wt and m41 respectively was determined. Ten mutations were found in the env gene of m41, thus leading to 9 amino acid modifications in the envelope glycoproteins. These results suggest that structural modifications of the viral envelope proteins are prerequisites for the replication of a thermoresistant FIV strain at elevated temperature and are correlated with the newly acquired viral phenotype.

Animals

Differing infection patterns of dengue and yellow fever viruses in a human hepatoma cell line.

Dengue (DEN) and yellow fever (YF) viruses are responsible for human diseases with symptoms ranging from mild fever to hepatitis and/or hemorrhages. Whereas DEN virus typically induces only limited foci of necrosis in the liver, YF virus infection is characterized by devastating lesions. In a human hepatoma cell line (HepG2), the kinetics of DEN and YF virus replication and release from the cells and the nature of host cell response to viral infection were compared. DEN virus infection was characterized by the early appearance of intracellular viral antigens, major ultrastructural cytopathic changes as early as 32 h after infection, extensive apoptotic cell death, and a low production of infectious particles. In contrast, YF virus grew exponentially to high titers and induced cytopathic changes only 72 h after infection. Differences between the infection processes of the two viruses observed in the hepatoma cell line may explain the different liver pathologies.

Apoptosis

Study of the V3 loop as a target epitope for antibodies involved in the neutralization of primary isolates versus T-cell-line-adapted strains of human immunodeficiency virus type 1.

Previous studies characterized the third variable (V3) loop of the envelope gp120 as the principal neutralizing determinant for laboratory T-cell-line-adapted (TCLA) strains of human immunodeficiency virus type 1 (HIV-1). However, primary viruses isolated from infected individuals are more refractory to neutralization than TCLA strains, suggesting that qualitatively different neutralizing antibodies may be involved. In this study, we investigated whether the V3 loop constitutes a linear target epitope for antibodies neutralizing primary isolates. By using peptides representative of the V3 regions of various primary isolates, an early, relatively specific and persistent antibody response was detected in sera from HIV-infected patients. To assess the relationship between these antibodies and neutralization, the same peptides were used in competition and depletion experiments. Addition of homologous V3 peptides led to a competitive inhibition in the neutralization of the TCLA strain HIVMN/MT-4 but had no effect on the neutralization of the autologous primary isolate. Similarly, the removal of antibodies that bind to linear V3 epitopes resulted in a loss of HIVMN/MT-4 neutralization, whereas no decrease in the autologous neutralization was measured. The different roles of V3-specific antibodies according to the virus considered were thereby brought to light. This confirmed the involvement of V3 antibodies in the neutralization of a TCLA strain but emphasized a more pronounced contribution of either conformational epitopes or epitopes outside the V3 loop as targets for antibodies neutralizing primary HIV-1 isolates. This result underlines the need to focus on new vaccinal immunogens with epitopes able to induce broadly reactive and efficient antibodies that neutralize a wide range of primary HIV-1 isolates.

Adaptation, Physiological

Imidazo[1,5-b]pyridazine-d4T conjugates: synthesis and anti-human immunodeficiency virus evaluation.

In an attempt to combine the human immunodeficiency virus type 1 (HIV-1)-inhibitory capacity of 2',3'-dideoxy-2',3'-didehydronucleoside analogues [nucleoside reverse transcriptase (RT) inhibitors; NRTI] and non-nucleoside RT inhibitors (NNRTI), we have designed, synthesized and evaluated for their anti-HIV activity several heterodimers of the general formula [d4T]-NH-(CH2)n-NH-[imidazo[1,5-b]pyridazine]. The synthesis of these heterodimers was conducted in three parts. The first part focused on the synthesis of the NRTI. The second part was devoted to the NNRTI and the NNRTI linked to appropriate spacers: [NNRTI]-NH-(CH2)n-NH2. In the third part, the condensation between the NRTI and the [NNRTI]-NH-(CH2)n-NH2 was performed. The in vitro inhibitory activities against HIV-1 of the [d4T]-NH-(CH2)n-NH-[imidazo[1,5-b]pyridazine] heterodimers were found to be comparable to that of d4T (stavudine) in HIV-infected cells. Moreover, the heterodimers were endowed with anti-HIV-2 activity and with anti-nevirapine-resistant HIV-1 activity. None of the heterodimers proved markedly cytotoxic to CEM-SS or MT-4 cells. There was not a clear trend toward antiviral potency on lengthening the methylene spacer in the [d4T]-NH-(CH2)n-NH-[imidazo[1,5-b]pyridazine] heterodimers.

Antiviral Agents

Oxysterols, but not cholesterol, inhibit human immunodeficiency virus replication in vitro.

Oxysterols, oxygenated derivatives of cholesterol selected for their cytostatic activity and their inhibitory effect on cholesterol synthesis, have been investigated for their anti-human immunodeficiency virus (HIV) activity in vitro. The three oxysterols tested, 7 beta-hydroxycholesterol (7 beta-OHC), 25-hydroxycholesterol (25-OHC) and 7 beta, 25-dihydroxycholesterol (7,25-OHC), inhibit viral replication at micromolar concentrations. The selectivity indexes for 7 beta-OHC and 25-OHC are quite modest (2 to 8) but reproducible; the dihydroxycholesterol 7,25-OHC exhibited antiviral properties at concentrations 13- to 25-fold lower than the highest concentration tested at which no toxicity was measurable. Oxysterols are naturally occurring compounds, and we speculate on their physiological relevance in HIV-infected individuals.

Anti-HIV Agents

Aspirin and heparin prevent hepatic blood stasis and thrombosis induced by the toxic glycoprotein Bolesatine in mice.

Bolesatine is a toxic glycoprotein isolated from Boletus satanas Lenz, which inhibits protein synthesis in vivo and in vitro. The LD50 (24 h) is 1 mg /kg bw (i.p.), in mice and rats. When given i.p. to mice (0.1 - 1.0 mg/kg bw) bolesatine induced thrombi and blood stasis in the liver, 5 - 21 h after injection, and modifications of the number of blood corpuscles in peripheral blood. These effects were efficiently reversed by aspirin, ticlopidin and heparin (as attested by histology and electron microscopy) which however failed to prevent death in animals given lethal doses. Together, these results showed that the death of bolesatine poisoned animals given high doses, was rather due to a combination of thrombosis and other toxic effects. In addition, they suggest that these antithrombotic drugs may overcome cases of human poisoning, with low exposures of this boletus, showing a hypertension probably due to mechanical obstruction which resists normal therapy.

Agglutination

Protection of SIVmac-infected macaque monkeys against superinfection by a simian immunodeficiency virus expressing envelope glycoproteins of HIV type 1.

The infection of macaque monkeys by attenuated simian immunodeficiency virus can vaccinate against pathogenic molecular clones and isolates of the same virus. The correlates of this potent protective immunity are not fully understood but may be the key to an effective AIDS vaccine for humans. Aiming to determine whether host immune responses to envelope glycoprotein are an essential component of the immunity to primate lentiviruses, we have tried to superinfect SIVmac-infected macaque monkeys with SHIVsbg, a chimeric primate lentivirus constructed from the SIVmac239 genome with the env, rev, tat, and vpu genes from HIV-1 Lai. After inoculation of a large dose of SHIVsbg, the chimeric virus was isolated by coculture of mononuclear blood cells from four of five SIV-infected monkeys, but three animals were protected from extracellular SHIV viremia and did not seroconvert to HIV-1 glycoproteins. In the two SIV-infected monkeys that did develop SHIV viremia, cell-associated viral load was reduced at least 100-fold. These data indicate that an antiviral response capable of effectively controlling primate lentivirus replication might not necessarily involve the envelope glycoprotein.

AIDS Vaccines

Neutralization of primary human immunodeficiency virus type 1 isolates: a study of parameters implicated in neutralization in vitro.

Various studies have reported that primary human immunodeficiency viruses seem to be more refractory to neutralization by HIV-positive sera than T cell line-adapted strains. In this study we also show that adaptation of the HIV-1SF-2 strain, produced in PBMCs, to the cell line CEM-SS renders this isolate sensitive to neutralization by almost all the sera tested. Further neutralization studies should thus focus on the development of an assay involving primary isolates in order to detect antibodies having a neutralizing activity in vivo. Neutralization protocols currently use either an antibody end-point dilution assay, which combines a fixed inoculum of virus with serial dilutions of antibody, or an infectivity reduction assay, which uses serial dilutions of virus with a single dilution of antibody. We have developed an assay designed for studying the neutralization of primary isolates that combines these two approaches. Performing the assay on PBMCs allows all primary isolates to be analyzed, not just those multiplying in T cell lines. The neutralizing titer measured on PBMCs for human HIV-positive sera is low, but reproducible and independent of the virus titer in a given experiment. It can be increased about five-fold by changing the temperature and duration of virus-serum interaction (overnight at 4 degrees C instead of 1 hr at 37 degrees C). These results emphasize the need for a relevant neutralization assay involving primary isolates and primary cells for a better understanding of the role of humoral response in HIV infection.

Amino Acid Sequence

Effects of morphine on purified human blood monocytes. Modifications of properties involved in antiviral defences.

It has been demonstrated that morphine stimulates the replication of human immunodeficiency virus in peripheral blood mononuclear cells as well as in Kupffer cells. Since the mechanism of action of this drug is still unknown, we have studied its effects on different properties of isolated human blood monocytes. In the presence of morphine, cultured monocytes showed an increase in the fluidity of their membranes as well as an inhibition in their capacity to differentiate into macrophages. Furthermore, the response of the cells to interferon-gamma was significantly decreased and the release of superoxide anions was altered. Finally the production of interferon-alpha and of prostaglandin E2 induced by stimulation of the cells with endotoxin (LPS) was diminished. We conclude that morphine decreases the functions of monocytes that are essential for their antiviral defence and inhibits their response to activating stimuli, which may explain the increased multiplication of HIV in morphine treated monocytes.

Biopterins

Autologous and heterologous neutralizing antibody responses following initial seroconversion in human immunodeficiency virus type 1-infected individuals.

In the course of human immunodeficiency virus type 1 (HIV-1) infection, patients develop a strong and persistent immune response characterized by the production of HIV-specific antibodies. The aim of our study was to analyze the appearance of autologous and heterologous neutralizing antibodies in the sera of HIV-infected individuals. For this purpose, primary strains have been isolated from 18 HIV-1-infected subjects prior to seroconversion (in one case) or within 1 to 8 months after seroconversion. Sera, collected at the same time as the virus was isolated and at various times after isolation, have been analyzed for their ability to neutralize the autologous primary strains isolated early after infection, heterologous primary isolates, and cell-line adapted strains. Our neutralization assay, which combines serial dilutions of virus and serial dilutions of sera, is based on the determination of the serum dilution at which a fixed reduction in virus titer (90%) occurs. We have shown that (i) we could not detect autologous neutralizing antibodies in sera collected at the same time as we isolated viruses; (ii) we detected neutralizing antibodies against the autologous strains about 1 year after seroconversion, occasionally after 8 months, but sera were not always available to exclude the presence of neutralizing antibodies at earlier times; (iii) after 1 year, the neutralization response was highly specific to virus present during the early phase of HIV infection; and (iv) heterologous neutralization of primary isolates was detected later (after about 2 years). These results reveal the enormous diversity of neutralization determinants on primary isolates as well as a temporal evolution of the humoral response generating cross-reactive neutralizing antibodies.

Acquired Immunodeficiency Syndrome