Search PubMed⌕ Search

Biomedical subjects

J Albert

Publications and source records attributed to J Albert.

At least 91 records · Page 5Linked to original sources

CD8+ T cells from HIV type 1-seronegative individuals suppress virus replication in acutely infected cells.

CD8+ lymphocytes (CD8 cells) have been shown to inhibit replication of the human immunodeficiency virus (HIV) in vitro when cocultured with HIV-infected CD4+ lymphocytes (CD4 cells). This suppressive effect on HIV replication in experimentally infected CD4 cells has so far been demonstrated only for CD8 cells from HIV-seropositive individuals. In the present study we have investigated if CD8 cells from HIV-negative individuals can also suppress HIV replication in experimentally infected CD4 cells. Positively selected CD4 cells were infected with phenotypically different primary isolates of HIV type 1 and 2 (HIV-1 and HIV-2). Graded numbers of CD8 cells were added to the infected cultures. The T cells were activated by antibodies directed against the CD3 molecule or the T cell receptor. Culture supernatants were harvested for HIV p24 quantitation and the CD8 suppression of HIV replication was calculated by comparing p24 levels from parallel cultures in the presence or absence of CD8 cells from different donors. We show that CD8 cells from unexposed HIV-seronegative blood donors are able to control HIV-1 and HIV-2 replication in experimentally infected autologous CD4 cells. The antiviral activity of CD8 cells from and HIV-naive individual was reproducible over time and the suppressive effect was comparable to that seen with CD8 cells from HIV-positive individuals. The infected cells were not eliminated from the cultures. The suppressive effect of CD8 cells varied depending on the dose and biological phenotype of the virus used for infection. Thus, exposure to HIV in vivo is not a prerequisite for CD8 cells to exert a suppressive effect on HIV replication in acutely infected cells.

CD4-Positive T-Lymphocytes↗

Effects of age and ischemic times on biochemical evidence of myocardial injury after pediatric cardiac operations.

INTRODUCTION: The vulnerability of pediatric myocardium to ischemia is poorly documented in the clinical setting. METHODS: Serial measurements of serum concentrations of myoglobin, the MB isoenzyme of creatine kinase, and cardiac troponins T and I and their respective areas under the curve were obtained, with particular reference to age and ischemic time, in 80 children undergoing cardiac operations. Sixteen (the control group) did not require cardiopulmonary bypass and 64 did. RESULTS: In the control group there were increases (p < 0.01) in myoglobin and creatine kinase MB isoenzyme but no increase in cardiac troponin T or I; by contrast, the group treated with cardiopulmonary bypass had significant increases in all four markers but with differing temporal patterns. Younger age (especially < 12 months) was a highly significant explanatory variable only for the release of cardiac troponins T and I, and ischemic time was a significant explanatory variable for the release of creatine kinase MB isoenzyme, cardiac troponins T and I, but not myoglobin. In comparison with previous studies in adults, creatine kinase MB and cardiac troponin T concentrations were three times greater in children than in adults. CONCLUSIONS: This study supports the specificity of cardiac troponins T and I as markers of myocardial injury after pediatric cardiac operations and defines the importance of age and ischemic time in determining their release. In comparison with previous data in adults, our results raise the possibility that the pediatric heart may be more vulnerable to the effects of ischemia and reperfusion. Cardiac troponins will permit comparison of new myocardial protective strategies or other potentially therapeutic myocardial interventions.

Adult↗

Most HIV-1 genetic subtypes have entered Sweden.

OBJECTIVE: The aim of this study was to document which genetic subtypes of HIV-1 have entered Sweden and to study transmission patterns of these virus variants. PATIENTS: All HIV-1 infected individuals at Danderyds Hospital, Stockholm, Sweden, who were suspected of carrying a virus of African origin were prospectively included in the study. The study subjects originated from 15 different African countries. METHODS: The V3 domain of the HIV-1 envelope was directly sequenced from uncultured peripheral blood mononuclear cells from 75 individuals included in the study. Phylogenetic analyses were used to determine genetic subtype and to study transmission patterns. RESULTS: The virus strains carried by the study subjects belonged to six established subtypes of HIV-1 (27A, 4B, 18C, 18D, 2G, 2H). Two individuals from Zaire carried a subtype, which had not been classified previously, provisionally named subtype 1. Eleven transmissions of non-subtype B strains in Sweden were documented. CONCLUSIONS: This study shows that most genetic HIV-1 subtypes have entered Sweden despite the relatively low prevalence of HIV infection in the country. Thus, the complete dominance of subtype-B infections which was seen during the early phase of the HIV-1 epidemic in Europe and the US has been broken in Sweden.

HIV Infections↗

Subtype-specific problems with quantification of plasma HIV-1 RNA.

OBJECTIVE: To determine whether two commercial assays for quantification of plasma HIV-1 RNA levels detect different genetic subtypes of HIV-1 with equal efficiency. DESIGN: Blind testing of stored plasma samples from 95 individuals infected with different genetic subtypes of HIV-1 (27 subtype A, 24 B, 18 C, 18 D, two E, two G, two H, and two J). The HIV-1 subtype had previously been determined by direct sequencing of the V3 domain of the env gene. METHODS: One plasma sample from each individual was tested once by the Roche HIV monitor assay and once by the Organon nucleic acid sequence-based amplification (NASBA) HIV-1 RNA quantitative assay, according to the manufacturers' recommendations. Information about CD4+ lymphocyte counts and antiretroviral treatment was available. RESULTS: The results from the two assays were strongly correlated with each other for subtypes B, C and D, but not for subtype A because many samples had RNA levels close to or below the lower detection limit of the assays. Thus, 15 out of 27 (56%) subtype A samples were negative by the HIV monitor assay and 12 (44%) were negative by the NASBA assay. These frequently occurring negative results among subtype-A-infected individuals were not due to better immunological status, more aggressive antiretroviral treatment, or differences in sample storage conditions. CONCLUSIONS: The HIV monitor assay and, possibly to slightly lesser degree, the NASBA assay appear unable to accurately quantify HIV-1 RNA levels in plasma samples from many subtype-A-infected individuals. These problems are likely to be due to primer mismatches and they limit the possibility of using these assays for routine monitoring of HIV-1-infected individuals in many parts of the world.

CD4 Lymphocyte Count↗

The influence of MT-2 tropism on the prognostic implications of the delta32 deletion in the CCR-5 gene.

BACKGROUND: Long-term non-progression in HIV-1-infected patients has been reported to be associated with a 32 base-pair deletion (delta32) in one CCR-5 allele. The normal gene product acts as a coreceptor for HIV cell entry and is essential for infection of cells by non-syncytium-inducing and MT-2-negative HIV-1 strains. METHODS: Forty individuals were studied, all of whom had been HIV-1-seropositive for a mean of 8 years. RESULTS: Eight (20%) were heterozygous for the CCR-5 allele delta32 deletion. Six of these eight patients harboured MT-2-negative HIV-1 strains. Of these six, three were long-term non-progressors with a positive CD4 cell slope, not receiving antiretroviral treatment, whereas the other three were progressors (mean CD4 cell decline, 3.8 x 10(6)/l per month) receiving antiretroviral combination therapy. Two of the eight patients with the delta32 deletion had MT-2-positive HIV-1 strains. Both had very rapid CD4 cell decline (6.7 and 7.6 x 10(6)/l per month, respectively), despite triple antiretroviral therapy including a protease inhibitor. One of the patients with an MT-2-positive virus strain has suffered from Pneumocystis carinii bronchitis and the other from cytomegalovirus colitis. CONCLUSIONS: Disease progression may also occur in individuals with the coreceptor deficiency, especially in association with MT-2-positive HIV-1 strains. It is suggested that MT-2-positive HIV-1 enters cells through the CXC chemokine receptor-4 fusin coreceptor, thus circumventing the defective CC chemokine receptor-5 coreceptor. Various levels of expression of the wild-type CCR-5 gene and the gene with the delta32 deletion might explain variations in the disease progression in heterozygous patients with MT-2-negative HIV-1 strains.

Adult↗

Blockade of endogenous nitric oxide production results in moderate hypertension, reducing sympathetic activity and shortening bleeding time in healthy volunteers.

BACKGROUND: Short-term infusion of NG-monomethyl-L-arginine (L-NMMA) reversibly inhibits endogenous nitric oxide (NO) production in humans. We studied responses to more long-lasting (60 min) infusions, at doses high enough to cause effective inhibition of endogenous NO. METHODS: Eight healthy volunteers had catheters (pulmonary, arterial and venous) placed. Measurements included hemodynamics, endogenous NO levels in nasal air, bleeding time, and cyclic guanosine monophosphate (cGMP) and catecholamines in plasma. L-NMMA was infused at 0.3 mg.kg-1.min-1 during 30 min, followed by 0.15 (n = 6) or 0.3 (n = 2) mg.kg-1.min-1 during 30 min. RESULTS: L-NMMA significantly elevated mean arterial pressure by 12 +/- 3%, due to an increase in systemic vascular resistance. Cardiac output decreased by 23 +/- 3%, due to a decrease in stroke volume. Pulmonary vascular resistance (P < 0.05) increased, but mean pulmonary arterial pressure was stable. Forearm vascular resistance (P < 0.05) decreased. Bleeding time was shortened by 31 +/- 4% (P < 0.01). L-NMMA infusion reduced NO concentrations in nasal air by 64 +/- 2% (P < 0.01). Arterial pressure remained elevated and nasal NO remained depressed 90 min after the infusion, whereas most other responses were reversed at that time. Plasma cGMP showed only minor changes. Plasma norepinephrine decreased, suggesting reflexogenic inhibition of sympathetic activity, whereas epinephrine levels were low and stable throughout the experiment. CONCLUSION: Dosage of (13.5 mg.kg-1 in 60 min) L-NMMA infusion in humans was well tolerated. Pronounced and long-lasting inhibition of endogenous NO production, as evidenced by measurements in nasal air, resulted in unevenly distributed vasoconstriction, a transient decrease in cardiac output, and reflexogenic sympathetic withdrawal. Furthermore, bleeding time was shortened, suggesting platelet activation.

Adolescent↗

Comparison of in-house and commercial sample preparation and PCR amplification systems for detection of human immunodeficiency virus type 1 DNA in blood samples from Tanzanian adults.

This study compared the performance of several in-house nested PCR systems and the Amplicor human immunodeficiency virus type 1 (HIV-1) PCR kit in the detection of HIV-1 DNA in Tanzanian samples prepared by two different methods. All six of the in-house primer sets evaluated had a higher sensitivity for HIV DNA detection in samples prepared by the Amplicor PCR sample preparation method than in those prepared by the Ficoll-Isopaque (FIP) density gradient centrifugation method. A sensitivity of 100% was achieved by combining two in-house primer sets. The sensitivity of the standard Amplicor HIV-1 PCR kit was only 59%, whereas a modified Amplicor HIV-1 PCR test had a sensitivity of 98%. Our data show that Tanzanian samples prepared by the Amplicor preparation method are more suitable for HIV-1 PCR testing than samples prepared by the FIP method. The modified, but not the standard, Amplicor HIV-1 PCR kit provides an alternative to the nested in-house PCR technique for the diagnosis of HIV infection.

Adult↗

Coreceptor usage of primary human immunodeficiency virus type 1 isolates varies according to biological phenotype.

The biological phenotype of primary human immunodeficiency virus type 1 (HIV-1) isolates varies according to the severity of the HIV infection. Here we show that the two previously described groups of rapid/high, syncytium-inducing (SI) and slow/low, non-syncytium-inducing (NSI) isolates are distinguished by their ability to utilize different chemokine receptors for entry into target cells. Recent studies have identified the C-X-C chemokine receptor CXCR4 (also named fusin or Lestr) and the C-C chemokine receptor CCR5 as the principal entry cofactors for T-cell-line-tropic and non-T-cell-line-tropic HIV-1, respectively. Using U87.CD4 glioma cell lines, stably expressing the chemokine receptor CCR1, CCR2b, CCR3, CCR5, or CXCR4, we have tested chemokine receptor specificity for a panel of genetically diverse envelope glycoprotein genes cloned from primary HIV-1 isolates and have found that receptor usage was closely associated with the biological phenotype of the virus isolate but not the genetic subtype. We have also analyzed a panel of 36 well-characterized primary HIV-1 isolates for syncytium induction and replication in the same series of cell lines. Infection by slow/low viruses was restricted to cells expressing CCR5, whereas rapid/high viruses could use a variety of chemokine receptors. In addition to the regular use of CXCR4, many rapid/high viruses used CCR5 and some also used CCR3 and CCR2b. Progressive HIV-1 infection is characterized by the emergence of viruses resistant to inhibition by beta-chemokines, which corresponded to changes in coreceptor usage. The broadening of the host range may even enable the use of uncharacterized coreceptors, in that two isolates from immunodeficient patients infected the parental U87.CD4 cell line lacking any engineered coreceptor. Two primary isolates with multiple coreceptor usage were shown to consist of mixed populations, one with a narrow host range using CCR5 only and the other with a broad host range using CCR3, CCR5, or CXCR4, similar to the original population. The results show that all 36 primary HIV-1 isolates induce syncytia, provided that target cells carry the particular coreceptor required by the virus.

Acquired Immunodeficiency Syndrome↗

Tempo and mode of nucleotide substitutions in gag and env gene fragments in human immunodeficiency virus type 1 populations with a known transmission history.

The complex evolutionary process of human immunodeficiency virus type 1 (HIV-1) is marked by a high level of genetic variation. It has been shown that the HIV-1 genome is characterized by variable and more constant regions, unequal nucleotide frequencies, and preference for G-to-A substitutions. However, this knowledge has largely been neglected in phylogenetic analyses of HIV-1 nucleotide sequences, even though these analyses are applied to a number of important biological questions. The purpose of this study was to identify a realistic model of HIV-1 evolution and to statistically test if the application of such a model significantly improves the accuracy of phylogenetic analyses. A unique and recently reported HIV-1 transmission cluster consisting of nine infected individuals, for whom the direction and time for each transmission were exactly known, formed the basis for the analyses which were performed under a general model of nucleotide substitution using population sequences from the env V3 and p17gag regions of the HIV-1 genome. Examination of seven different substitution models by maximum-likelihood methods revealed that the fit of the general reversible (REV) model was significantly better than that of simpler models, indicating that it is important to account for the asymmetric substitution pattern of HIV-1 and that the nucleotide substitution rate varied significantly across sites. The shape parameter alpha, which describes the variation across sites by a gamma distribution, was estimated to be 0.38 and 0.25 for env V3 and p17gag, respectively. In env V3, the estimated average transition/transversion rate ratio was 1.42. Thus, the REV model with variable rates across sites (described by a gamma distribution) provides the best description of HIV-1 evolution, whereas simple models are unrealistic and inaccurate. It is likely that the accuracy of phylogenetic studies of HIV-1 and many other viruses would improve substantially by the use of more realistic nucleotide substitution models. This is especially true when attempts are made to estimate the age of distant viral ancestors from contemporary viral sequences.

Base Sequence↗

Inhibition of early and late events of the HIV-1 replication cycle by cytoplasmic Fab intrabodies against the matrix protein, p17.

BACKGROUND: The HIV-1 matrix (MA) protein, p17, contains two subcellular localization signals that facilitate both nuclear import of the viral preintegration complex early during infection and virus particle assembly late in infection. The dual role of MA in both the afferent and efferent arms of the HIV-1 life cycle makes it an important target for intracellular immunization-based gene therapy strategies. MATERIALS AND METHODS: Here we report, using a new bicistronic vector, that an intracellular Fab antibody, or Fab intrabody, directed against a carboxy-terminal epitope of MA from the Clade B HIV-1 genotype, can inhibit HIV-1 infection when expressed in the cytoplasm of actively dividing CD4+ T cells. RESULTS: Marked inhibition of proviral gene expression occurred when single-round HIV-1 CAT virus was used for infections. In challenge experiments using both laboratory strains and syncytium-inducing primary isolates of HIV-1, a substantial reduction in the infectivity of virions released from the cells was also observed. CONCLUSIONS: This novel strategy of simultaneously blocking early and late events of the HIV-1 life cycle may prove useful in clinical gene therapy approaches for the treatment of HIV-1 infection and AIDS, particularly when combined with genetic or pharmacologic-based strategies that inhibit other HIV-1 target molecules simultaneously.

Animals↗

Sensitivity to inhibition by beta-chemokines correlates with biological phenotypes of primary HIV-1 isolates.

Primary HIV-1 isolates were evaluated for their sensitivity to inhibition by beta-chemokines RANTES (regulated upon activation, normal T-cell expressed and secreted), macrophage inflammatory protein 1 alpha (MIP-1 alpha), and MIP-1 beta. Virus isolates of both nonsyncytium-inducing (NSI) and syncytium-inducing (SI) biological phenotypes recovered from patients at various stages of HIV-1 infection were assessed, and the results indicated that only the isolates with the NSI phenotype were substantially inhibited by the beta-chemokines. More important to note, these data demonstrate that resistance to inhibition by beta-chemokines RANTES, MIP-1 alpha, and MIP-1 beta is not restricted to T cell line-adapted SI isolates but is also a consistent property among primary SI isolates. Analysis of isolates obtained sequentially from infected individuals in whom viruses shifted from NSI to SI phenotype during clinical progression exhibited a parallel loss of sensitivity to beta-chemokines. Loss of virus sensitivity to inhibition by beta-chemokines RANTES, MIP-1 alpha, and MIP-1 beta was furthermore associated with changes in the third variable (V3) region amino acid residues previously described to correlate with a shift of virus phenotype from NSI to SI. Of interest, an intermediate V3 genotype correlated with a partial inhibition by the beta-chemokines. In addition, we also identified viruses sensitive to RANTES, MIP-1 alpha, and MIP-1 beta of NSI phenotype that were isolated from individuals with AIDS manifestations, indicating that loss of sensitivity to beta-chemokine inhibition and shift in viral phenotype are not necessarily prerequisites for the pathogenesis of HIV-1 infection.

Acquired Immunodeficiency Syndrome↗

Molecular epidemiology and MT-2 cell tropism of Russian HIV type 1 variant.

Twenty-two HIV-1-infected Russian individuals were studied to gain better insight on the genetic and biological characteristics of HIV-1 variants present in Russia. The V3 domain of the HIV-1 envelope was directly sequenced from cultured peripheral blood mononuclear cells (PBMCs). Phylogenetic analyses were used to determine the HIV-1 genetic subtype and to study transmission patterns. Virus isolates were obtained from PBMCs and the biological phenotype was determined by coculture with MT-2, CEM, and Jurkat-tat cells. Twelve homo- and bisexual men carried subtype B variants, whereas 6 heterosexually infected individuals carried subtype F virus. A heterosexual man infected in the Ivory Coast and a nosocomially infected young female carried subtype A and G virus, respectively. Interestingly, phylogenetic analyses suggested that subtype B may have entered Russia on at least four occasions and, even more surprisingly, that the relatively rare subtype F has entered Russia on at least three occasions. Two suspected transmission clusters of subtype F were supported by the phylogenetic analyses, whereas one suspected subtype B transmission cluster was not. Positively charged amino acids in positions 311 and 325 of V3 loop have been shown to be important determinants for the MT-2-positive biological phenotype of virus isolates. Interestingly, we found that the direct PBMC sequences from individuals with MT-2-positive isolates displayed specific neutral, instead of positively charged, amino acids, in these positions. This indicates that it may be more difficult to predict the biological phenotype of HIV-1 using sequences from uncultured PBMCs than from virus isolates.

Amino Acid Sequence↗

Accurate reconstruction of a known HIV-1 transmission history by phylogenetic tree analysis.

Phylogenetic analyses are increasingly used in attempts to clarify transmission patterns of human immunodeficiency virus type 1 (HIV-1), but there is a continuing discussion about their validity because convergent evolution and transmission of minor HIV variants may obscure epidemiological patterns. Here we have studied a unique HIV-1 transmission cluster consisting of nine infected individuals, for whom the time and direction of each virus transmission was exactly known. Most of the transmissions occurred between 1981 and 1983, and a total of 13 blood samples were obtained approximately 2-12 years later. The p17 gag and env V3 regions of the HIV-1 genome were directly sequenced from uncultured lymphocytes. A true phylogenetic tree was constructed based on the knowledge about when the transmissions had occurred and when the samples were obtained. This complex, known HIV-1 transmission history was compared with reconstructed molecular trees, which were calculated from the DNA sequences by several commonly used phylogenetic inference methods [Fitch-Margoliash, neighbor-joining, minimum-evolution, maximum-likelihood, maximum-parsimony, unweighted pair group method using arithmetic averages (UPGMA), and a Fitch-Margoliash method assuming a molecular clock (KITSCH)]. A majority of the reconstructed trees were good estimates of the true phylogeny; 12 of 13 taxa were correctly positioned in the most accurate trees. The choice of gene fragment was found to be more important than the choice of phylogenetic method and substitution model. However, methods that are sensitive to unequal rates of change performed more poorly (such as UPGMA and KITSCH, which assume a constant molecular clock). The rapidly evolving V3 fragment gave better reconstructions than p17, but a combined data set of both p17 and V3 performed best. The accuracy of the phylogenetic methods justifies their use in HIV-1 research and argues against convergent evolution and selective transmission of certain virus variants.

Amino Acid Sequence↗

Biological phenotype of HIV type 2 isolates correlates with V3 genotype.

The biological phenotype of HIV-2 isolates can be divided into two groups, rapid/high and slow/low, based on the ability to infect CD4+ tumor cell lines. Similar differences in the biological phenotype of HIV-1 isolates are largely determined by the charge of two specific amino acids in the V3 loop of the envelope protein gp120. In this study we have sequenced the V3 loop and flanking regions of 14 HIV-2 isolates from Guinea-Bissau and the Ivory Coast and correlated the results to the biological phenotype of the isolates. The sequences were obtained by PCR amplification of DNA from peripheral blood mononuclear cells infected with the different isolates, followed by direct sequencing of the amplified products. Eleven other HIV-2 isolates with known V3 sequence and biological phenotype were also included. Thirteen of the 14 new isolates were classified as subtype A of HIV-2 and one as subtype B. The V3 loop of rapid/high HIV-2 isolates differed significantly from slow/low isolates in that it was more heterogeneous in sequence and had higher net charge. Mutations at two specific amino acid positions (313 and 314), often to positively charged amino acids, were also significantly associated with the rapid/high phenotype. There were no sequence differences between rapid/high and slow/low isolates in the regions that flank the V3 loop. Our findings indicate that there may be a high degree of similarity in the molecular features that underlie the biological phenotypes of HIV-1 and HIV-2 isolates.

Amino Acid Sequence↗

SIV infection of monkey spleen cells including follicular dendritic cells in different stages of disease.

Immunoaffinity enriched spleen follicular dendritic cells (FDCs), lymphocytes, and macrophages from SIVsm-inoculated cynomolgus monkeys (Macaca fascicularis) at different stages of disease were compared for latent and productive SIV infection. Analysis of FDCs by in situ hybridization, electron microscopy, and coculture assays indicated that comparatively high levels of virus were associated with the FDC fraction. Polymerase chain reaction (PCR) and RT-PCR results revealed that the levels for SIVpol DNA did not correlate with the level of env mRNA in the various cell subsets, suggesting differences in latency. Limiting dilution assays for spliced env mRNA showed a 10-100-fold higher amount of env mRNA in FDCs than in other spleen cell subsets early during SIV infection. At late stages of disease, the number of productively infected FDCs significantly decreased in parallel with a marked reduction of the FDC network and follicular involution. Our findings indicate that destruction of FDCs probably reflects a cytopathic effect of SIV and/or the activity of specific antiviral cytotoxic T lymphocytes.

Animals↗