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C Balotta

Publications and source records attributed to C Balotta.

At least 37 records · Page 2Linked to original sources

Comparable biological and molecular determinants in HIV type 1-infected long-term nonprogressors and recently infected individuals.

Human immunodeficiency virus type 1 (HIV-1) isolability, rate of replication, phenotype, plasma viremia, and specific intracellular transcripts were cross-sectionally analyzed in 61 HIV-1-seropositive individuals to evaluate the correlations between the virological and molecular correlates of protection and progression in different clinical subsets: recently infected subjects (RIs), long-term nonprogressors (LTNPs), late progressors (LPs), and typical progressors (TPs). Comparison of the major virological and molecular features of HIV-1 infection has defined distinct profiles for different subsets of patients. LTNPs or RIs, as well as LPs or TPs, exhibited similar titers of coculture p24 antigen; the differences between the former and the latter were statistically significant at all the time points tested (p = 0.0001; 0.0003 and 0.0001). Whereas LTNPs and RIs revealed comparable low levels of indexes of viral replication, LPs and TPs showed higher genome and mRNA copy numbers (p = 0.0004 and p = 0.0008, respectively). We demonstrated close biological and molecular similarities between RIs and LTNPs on the one hand, and LPs and TPs on the other. In LTNPs both viral biological properties and viral load are important determinants of the course of the disease.

CD4 Lymphocyte Count↗

Patterns of in vitro anti-human immunodeficiency virus type 1 antibody production in long-term nonprogressors.

With the aim of evaluating the specific pattern of in vitro antibody production (IVAP) in human immunodeficiency virus type 1 (HIV-1)-infected long-term non-progressors (LTNPs), we tested 20 subjects who had remained asymptomatic for more than 8 years with a CD4+ cell count higher than 500/microliter and 59 patients at different stages of HIV-1 infection as controls. In cell cultures, IVAP was detected in 14 out of 20 LTNPs (70%), in 5 out of 6 recent seroconverters (83%), and in all the other control patients. Anti-p24 antibody production was significantly lower in LTNPs than in asymptomatic patients with a more recent infection. Recent seroconverters and patients with AIDS did not produce anti-p24 antibodies (P = 0.02). Anti-gp160 antibodies were produced by peripheral blood mononuclear cells from LTNPs in 12/20 cases. CD4+ cell count was significantly higher in IVAP-negative than in IVAP-positive LTNPs (P = 0.013), while the viral load was not significantly different. Specific anti-HIV-1 antibody production did not seem to be a correlate of long-term nonprogression.

Acquired Immunodeficiency Syndrome↗

Pentoxifylline improves cell-mediated immunity and reduces human immunodeficiency virus (HIV) plasma viremia in asymptomatic HIV-seropositive persons.

The effects of pentoxifylline on immunologic and virologic parameters were evaluated in 10 human immunodeficiency virus-infected patients not receiving antiretroviral treatment. Patients were asymptomatic, had 300-500 CD4 cells/microL, and received pentoxifylline (1200 mg/day orally) for 4 months. Peripheral blood mononuclear cells were tested before and at five time points during therapy. A transient increase in CD4 cells was observed in 8 of 9 patients, and CD8 cells increased in 7 of 9 patients. These increases were negatively correlated with susceptibility to in vitro mitogen-stimulated apoptotic cell death. Pentoxifylline had a temporary effect on mitogen-stimulated cytokine production; thus, interferon-gamma, interleukin (IL)-2, tumor necrosis factor-alpha, and lymphotoxin increased more than IL-10. Pentoxifylline also potentiated antigen-stimulated IL-2 production and proliferation in 8 of 9 patients and induced significant but transient decreases in plasma viremia in 7 of 9 patients. These preliminary findings suggest that pentoxifylline in vivo has an interesting but temporary influence on both immunologic and virologic parameters.

Adjuvants, Immunologic↗

Homozygous delta 32 deletion of the CCR-5 chemokine receptor gene in an HIV-1-infected patient.

BACKGROUND: Recent research has found that entry of non-syncytium-inducing (NSI), monocyte-macrophage-tropic HIV-1 isolates requires binding to both CD4 and CCR5 receptors, and that delta 32/delta 32 homozygous individuals are protected against infection. OBJECTIVE: To analyse the polymorphism of CCR-5 gene in HIV-1-infected and uninfected subjects. DESIGN AND METHODS: CCR-5 sequences were amplified by polymerase chain reaction (PCR) from DNA of peripheral blood mononuclear cells. Samples from 152 HIV-1-infected subjects and 122 uninfected controls were tested for the detection of the 32 base-pair deletion. HIV-1 phenotype was determined by viral isolation and MT-2 evaluation. RESULTS: The wild-type/delta 32 heterozygous and delta 32/delta 32 homozygous conditions were represented in 10.7 and 0.8% of healthy controls and in 9.8 and 0.7% of HIV-1-infected subjects, respectively. Of note, the delta 32/delta 32 deletion of the CCR-5 gene was detected by PCR and sequencing confirmed in a patient with progressive infection harbouring a clade B virus with SI phenotype. CONCLUSIONS: delta 32/delta 32 homozygosity for the CCR-5 gene does not confer absolute protection against HIV-1 infection, suggesting that either macrophage-tropic viral strains could use coreceptors other than CCR-5 or infect independently of the presence of a functional CCR-5 coreceptor. Alternatively, primary infection sustained by T-cell-tropic isolates, although exceptional, may occur.

Adult↗

Plasma viremia and virus phenotype are correlates of disease progression in vertically human immunodeficiency virus type 1-infected children.

OBJECTIVE: To analyze the relationships among HIV-1 plasma viremia, phenotype and CD4 T cell counts in vertically infected children. METHODS: Plasma viremia was quantified in 37 vertically infected children at different stages of the disease by a standardized molecular assay. Virus isolation and non-syncytia-inducing or syncytia-inducing (SI) HIV-1 phenotype evaluation were performed in parallel. RESULTS: HIV-1 RNA genomes were found to be significantly different in CDC clinical classes N, A, B and C (P = 0.0135) and in immunologic classes 1, 2 and 3 (P = 0.0110). None of the children in Class N or A harbored HIV-1 isolates with SI phenotype, whereas SI primary isolates were detected in 2 of 7 (29%) and 7 of 10 (70%) Class B and C children, respectively. Similarly SI variants were present in only 9 of 13 children in immunologic Class 3 (70%). When stratified according to the increasing severity of virologic status, the children showed a significant difference (P = 0.0458) in viral burden. CONCLUSIONS: Clinical symptoms, the most dramatic being reduction in the number of CD4 lymphocytes, and the highest plasma viremia levels were observed in the children in whom fast replicating, highly cytopathic SI variants were isolated. These data extend the virologic characterization of vertically HIV-1 infected children and suggest that both the plasma viremia levels and phenotype of primary isolates are viral correlates of disease progression in vertically infected children.

Anti-HIV Agents↗

Long-term resistance to HIV infection in vertical HIV infection: cytokine production, HIV isolation, and HIV phenotype define long-term resistant hosts.

We analyzed immunologic (CD4 and CD8 slopes; interferon-gamma, interleukin-2, interleukin-10, and chemokines production; concentration of IgE; beta 2-microglobulin) and virologic (p24; HIV isolability and phenotype; plasma viremia) parameters in HIV vertically infected children > or = 8 years of age without disease progression or mild symptoms and an absolute CD4+ count > or = 500/microliter with CD4+ percentage > or = 25%. The results were compared to those of two control groups: (1) slow progressors, children > or = 8 years of age with moderate symptomatology and/or moderate CD4 depletion, and (2) progressors, children > or = 8 years of age with severe clinical disease and/or severe CD4 depletion. Pediatric long-term resistant hosts were characterized by higher production of interleukin-2 and interferon-gamma and lower production of interleukin-10, normal concentration of IgE, HIV isolates with a non-syncytium-inducing phenotype, and lower plasma viremia. This condition was not associated with the concentration of beta 2-microglobulin, p24, and chemokines, or with HIV isolability. The IL-10/IL-2 ratio best correlated with both CD4 counts and disease progression. Thus, vertically infected children showing resistance to disease progression are immunologically and virologically distinct from those in whom progressive HIV infection is observed.

Adolescent↗

HIV type 1 phenotype correlates with the stage of infection in vertically infected children.

A cohort of 39 vertically infected children (class N, A, B, and C of the CDC HIV classification for pediatric infection) was studied by virus isolation and non-syncytium inducing (NSI)/syncytium inducing (SI) HIV-1 phenotype evaluation. The HIV-1 isolates were recovered from PBMCs and the MT-2 cell line was used to perform the syncytium assay. HIV-1 could be isolated in 34 of 39 (87%) infected children, regardless of the clinical and immunological stage of the disease. Class N and A subjects harbored exclusively NSI strains, whereas the SI phenotype was detected in two of eight class B and five of nine class C patients. All of the SI variants were observed in severely CD4-depleted children (class 3 patients). The capability of pediatric HIV-1 isolates to induce a cytopathic effect is associated with the clinical status and the degree of CD4 depletion. These data suggest that the biological properties of HIV-1 isolates in children do not differ from those observed in adults, and that viral phenotype strictly correlates with disease progression in vertically infected children.

Cell Line↗

Virologic and immunologic markers of disease progression in pediatric HIV infection.

Correlates of progression of human immunodeficiency virus (HIV) infection to AIDS include the reduction in CD4+ T cells and the emergence of syncytium-inducing (SI) HIV variants. It has been suggested that progressive defects in interleukin 2 (IL-2), IL-12, and IFN- gamma production (type 1 cytokines), and increased production of IL-4 (and of IL-4-driven hyper-IgE), IL-6, and IL-10 (type 2 cytokines), could provide another correlate of disease progression. To determine the possible association among these markers, viral phenotype, cytokine production, IgE serum concentration, and rate of CD4 depletion were analyzed in a cohort of vertically HIV-infected children. We report that significantly higher production of type 2 cytokines and augmented IgE concentration are observed in children in whom HIV SI is isolated. In addition, we observed that the isolation of HIV SI and the production of high quantities of type 2 cytokines are correlated with increased loss of CD4 T cells in the 12 months preceding the determinations. These data suggest that the virologic and immunologic parameters characteristic of advanced HIV infection may be associated in pediatric HIV infection, and indicate a virologic-immunologic pathogenesis leading to the appearance of AIDS.

Biomarkers↗

Type 1 cytokine production and low prevalence of viral isolation correlate with long-term nonprogression in HIV infection.

Cytokine production, prevalence of viral isolation, and surface marker expression of peripheral blood mononuclear cells (PBMCs) were analyzed in HIV+ individuals with different patterns of disease progression to establish correlations between these parameters. Thus, mitogen-stimulated in vitro production of interferon gamma (IFN-gamma) and interleukin 2 (IL-2) (type 1 cytokines), and of IL-4 and IL-10 (type 2 cytokines) as well as prevalence of viral isolation were evaluated in 26 HIV+ long-term nonprogressors (LTNPs), in 28 HIV+ patients with progressive HIV infection (PI), and in 24 HIV-seronegative controls (HCs). Surface expression of activation and nonactivation markers was also analyzed in a group of these donors. We report that (1) IL-2 and IFN-gamma production is reduced and IL-4 and IL-10 production is increased in PI patients compared to HCs and LTNPs; (2) prevalence of HIV isolation is lower in LTNPs compared to PI, and the primary viral isolates in LTNPs show a slow/low (S/L) phenotype; and (3) the elevated production of type 2 cytokines is paralleled by an increase in CD57+CD4+CD7- lymphocytes. Thus, whereas a high IL-2, high IFN-gamma/low IL-4, low IL-10 cytokine production pattern is present in HC and in LTNP HIV+, progression of HIV infection is associated with a low IL-2 low IFN-gamma/high IL-4, high IL-10 cytokine profile; increased prevalence of HIV isolation; and an augmented percentage of CD57+CD4+CD7- lymphocytes. These findings further confirm that a dominant type 1 cytokine profile together with reduced prevalence of virus isolation is associated with lack of progression in HIV infection.

Acquired Immunodeficiency Syndrome↗

Human immunodeficiency virus (HIV) phenotype and interleukin-2/ interleukin-10 ratio are associated markers of protection and progression in HIV infection.

Human immunodeficiency virus (HIV) isolability, rate of viral replication, HIV phenotype, type 1 and type 2 cytokine production, and CD4 counts were cross sectionally analyzed in 63 HIV seropositive (HIV+) individuals to establish possible correlations between virologic and immunologic markers of protection and progression. We observed that these markers are tightly correlated. Thus, lack or low prevalence of HIV isolability and the presence of nonsyncitium inducing strains are associated with the strongest type 1 cytokine production, the weakest type 2 cytokine production, and highest CD4 counts. Conversely, the isolation of highly replicating, syncitium-inducing HIV strains is associated with the weakest type 1 cytokine production, the strongest type 2 cytokine production, and lowest CD4 counts. Additionally, it was determined that the interleukin (IL)-10/IL-2 ratio best discriminates among different virologic scenarios. These data suggest that the virologic and immunologic correlates of disease protection and progression might be associated variables that define two different subsets of HIV+ individuals and lend support to a viro-immunologic hypothesis of HIV infection.

Biomarkers↗

Evidence for type 2 cytokine production and lymphocyte activation in the early phases of HIV-1 infection.

OBJECTIVE: To analyse changes in cytokine production in vitro and T-lymphocyte immunophenotype in the early phases of HIV-1 infection. DESIGN AND METHODS: Mitogen-stimulated in vitro production of interferon (IFN)-gamma, interleukin (IL)-2 (type 1 cytokines), IL-4, and IL-10 (type 2 cytokines) and surface expression of activation and non-activation markers were evaluated in 11 individuals HIV-infected for > 3 but < 12 months (seroconverters). The data were compared to those obtained in 33 asymptomatic HIV-positive individuals infected > 3 years previously and who were stratified according to CD4+ lymphocyte count (group 1: > 500 x 10(6)/l, group 2: < 500 x 10(6)/l CD4 cells) and in 12 HIV-seronegative healthy controls. RESULTS: We observed that the early phase of HIV infection is characterized by (1) reduced mitogen-stimulated IL-2 and IFN-gamma production, (2) increased mitogen-stimulated IL-4 and IL-10 production, (3) a relative decrease in CD4+ and CD4+CD7- as well as an increase in CD4+CD7-CD57+ lymphocytes, and (4) a relative increase in CD8+, CD8+CD38+ and CD8+CD57+ T lymphocytes. In addition, during a 6-month follow-up of six seroconverters we observed a dynamic pattern of changes of these parameters in most individuals, with a resulting profile similar to that observed in group 1 HIV-positive patients. CONCLUSION: The early phase of HIV infection is immunologically characterized by type 2 cytokine secretion and alterations in the expression of phenotypic markers, and closely resembles the more advanced phases of HIV infection. These immunologic alterations are temporally limited by the successive return to a more normal profile. Thus, HIV infection is an immunological complex dynamic process even in its earliest phases.

Acute Disease↗

Dynamics and modulation of human immunodeficiency virus type 1 transcripts in vitro and in vivo.

The dynamics of human immunodeficiency virus type 1 (HIV-1) transcription was analyzed in vitro and in vivo by using a specific molecular approach which allows accurate quantitation of the different classes of viral mRNAs. Unspliced (US) and multiply spliced (MS) HIV-1 transcripts were assayed by competitive reverse transcription (cRT)-PCR, using a single competitor RNA bearing in tandem internally deleted sequences of both template species. Acute HIV-1 infection of primary peripheral blood mononuclear cells (PBMCs), monocytes/macrophages cells, and the A3.01 T-lymphocyte-derived cell line was studied; both classes of HIV-1 mRNAs increased exponentially (r2 > 0.98) at days 1 to 3 and 1 to 4 postinfection in HIV(IIIB)-infected A3.01 cells and PBMCs, respectively, whereas monocytes/macrophages infected with monocytotropic HIV(BaL) exhibited a linear (r2 = 0.81 to 0.94) accumulation of US and MS transcripts. Following induction of chronically infected ACH-2 cells, MS transcripts increased 2 h postinduction and peaked at 5 h (doubling time, 58 min), while at 24 h, US mRNAs increased 3,053-fold compared with basal time (doubling time, 137 min). To address the biopathological significance of HIV-1 expression pattern during infection progression, pilot cross-sectional and longitudinal analyses were carried out with samples from untreated and treated HIV-1-infected patients. In almost all untreated (recently infected, long-term nonprogressor, and progressor) patients, MS transcript levels followed the general trend of systemic HIV-1 activity. In patients under treatment with powerful antiretroviral compounds, viral MS transcripts rapidly fell to undetectable levels, indicating that in vivo, levels of MS mRNAs in PBMCs are closely associated with the number of newly infected cells and suggesting a new role for the quantitative analysis of HIV-1 transcription in infected patients.

Cell Line↗

Viral load, viral phenotype modification, zidovudine susceptibility and reverse transcriptase mutations during the first 6 months of zidovudine monotherapy in HIV-1-infected people.

We studied 14 zidovudine-naive, HIV-1-infected patients attending an infectious diseases clinic in Milan during zidovudine therapy for 6 months. We monitored CD4 cell counts, immune complex-dissociated p24 antigen, viral phenotype and viral load in plasma. The virus infecting a subset of patients was examined for zidovudine susceptibility and zidovudine resistance-associated mutations. A significant correlation was established between the increase in the CD4 cell count and the decrease in viral load (Spearman's coefficients < -0.5). Patients who were p24 antigen positive had a higher viral load (P < 0.005 at baseline and after 6 months of therapy). Patients with non-syncytium-inducing (NSI) virus had higher CD4 cell counts over time than those with syncytium-inducing (SI) virus. We also examined the viral load in relation to viral phenotype. The median viral load in patients with NSI virus was higher than in SI controls at baseline, but not after 3 and 6 months of therapy. Sequential isolates of HIV-1 were obtained from nine patients and tested for resistance to zidovudine by monitoring the drug susceptibility and the reverse transcriptase-encoding sequence. Amino acid changes at codons 70 and 215 were present in some but not all isolates with zidovudine-resistant phenotype in vitro. It was possible to perform a correlation between zidovudine susceptibility and zidovudine-associated pol gene mutations only at the 6-month time point (Spearman's coefficient = 0.076). SI phenotype was associated with the development of a decreased zidovudine susceptibility. A correlation between zidovudine-associated pol gene mutations and SI phenotype was detected at the 6-month time point.

Acquired Immunodeficiency Syndrome↗

Growth of macrophage-tropic and primary human immunodeficiency virus type 1 (HIV-1) isolates in a unique CD4+ T-cell clone (PM1): failure to downregulate CD4 and to interfere with cell-line-tropic HIV-1.

Human immunodeficiency virus type 1 (HIV-1) isolates derived directly from clinical samples are usually unable to grow in cytokine-independent continuous cell lines, thus hindering the study of their biological features and their sensitivity to humoral and cellular protective immunity. To overcome these limitations, we have derived from the Hut78 T-cell line a CD4+ clone (PM1) characterized by a unique susceptibility to a wide range of HIV-1 isolates, including primary and biologically pure macrophage (M phi)-tropic isolates (e.g., HIV-1BaL), which are unable to infect other human T- or promonocytic cell lines. Both primary and M phi-tropic HIV-1 establish persistent infection in PM1, with sustained levels of virus replication for prolonged periods. Experiments with chimeric viruses containing envelope fragments of HIV-1BAL inserted into the genetic framework of HXB2, a molecular clone derived from the cell-line-tropic isolate HIV-1IIIB, showed the third hypervariable domain (V3) of gp120 to be a critical determinant of the cell line tropism of HIV-1. Nevertheless, the V3 loop of HIV-1BaL was not sufficient to confer on the chimeras a bona fide M phi tropism. The biological characteristics of HIV-1BaL and of a primary isolate (HIV-1(573)) were investigated by using the PM1 clone. Infection of PM1 by HIV-1BaL was critically dependent on the CD4 receptor, as shown by competition experiments with an anti-CD4 monoclonal antibody (OKT4a) or with soluble CD4. However, the amount of soluble CD4 required for inhibition of HIV-1BaL was approximately 100-fold higher than for HIV-1IIIB, suggesting that the affinity of HIV-1BaL for CD4 is significantly lower. Infection of PM1 with either HIV-1BaL or HIV-1(573) failed to induce downregulation of surface CD4 expression and syncytium formation. Analogous results were obtained with a chimeric virus (HXB2[BaL PvuII-BamHI]) encompassing a large portion of gp120 and gp41 of HIV-1BaL, indicating that the env genes contain critical determinants for CD4 downregulation and syncytium formation. Consistent with the lack of CD4 downregulation, persistent infection of PM1 by HIV-1BaL or HIV-1(573) failed to interfere with HIV-1IIIB superinfection, as revealed by the expression of a type-specific V3 loop epitope (M77) and by the induction of extensive syncytium formation. This lack of interference suggests that a direct viral interaction may occur in vivo between biologically diverse HIV-1 strains.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence↗