Nucleotide sequence of a cDNA encoding another Trypanosoma cruzi acidic ribosomal P2 type protein (TcP2b).
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Biomedical subjects
Publications and source records attributed to M J Levin.
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Five sera from Bolivian individuals chronically infected by Trypanosoma cruzi, and suffering an active Leishmania braziliensis braziliensis metastatic mucocutaneous lesion were characterized. They reacted with the T. cruzi recombinant antigens that are currently used as Chagas diagnostic reagents, and with several L. b. braziliensis proteins as assessed by Western blot. These sera showed an intense reaction with a T. cruzi and an L. b. braziliensis polypeptide of about 70 kDa. Expression cloning techniques demonstrated that the target of this immunologic reaction was a cross-reactive antigen, the 70-kDa heat-shock protein (HSP 70). High levels of anti-HSP 70 reactivity and positive reactions with all or some of the T. cruzi recombinant antigens JL7, JL8, and JL5, defined a serologic pattern that was characteristic of the T. cruzi/L. b. braziliensis mixed infection.
A Trypanosoma cruzi cDNA lambda gt11 recombinant, C-P0, encoding the carboxyterminus of a highly antigenic ribosomal P protein, was isolated. Sequence comparisons and immunological evidence allowed its identification as the C-terminal region of the T. cruzi 38-kDa ribosomal P0 protein. This recombinant failed to react with systemic lupus erythematosus (SLE) anti-P antibodies. The T. cruzi ribosomal P0 protein is the first reported eukaryotic ribosomal P protein presenting this immunological property, probably due to its peculiar C-terminal-amino-acid sequence, FGMGALF, which differs from the conserved eukaryotic ribosomal P protein C-terminal consensus, MGFGLFD.
Humoral and cellular immune responses to two doses of influenza antigens were measured in children 6-48 months of age. These vaccinees comprised a previously unimmunized cohort of 18 healthy full-term children and 15 sick preterm children with bronchopulmonary dysplasia and an additional 30 ex-preterm children who were reimmunized. Half of the reimmunized cohort were recovered from bronchopulmonary dysplasia and half had active bronchopulmonary dysplasia. Antibody response was measured by haemagglutination inhibition (HI) and ELISA, and cellular immunity was measured by enumerating memory T cells. Six weeks after immunization, ELISA antibody levels were significantly higher in previously unimmunized full-term vaccinees than in previously unimmunized sick preterm infants (p less than 0.002). No difference was found between sick and recovered reimmunized children. By HI testing greater than 90% of children in both cohorts developed titres greater than or equal to 1:32, and these were generally maintained for at least 20 weeks. T-cell proliferative responses to influenza antigen were greater in the full-term children than in the preterm children (p less than 0.02), irrespective of state of health or prior immunization status. Split-product vaccine was immunogenic in all the cohorts studied; however, factors such as prematurity, health status and previous influenza immunization played important roles in the magnitude of some responses.
The Oka strain live attenuated varicella-zoster virus (VZV) vaccine was administered subcutaneously to 202 VZV-immune individuals who were 55 to greater than 87 years old. The dose administered varied from 1100 to 12,000 pfu. One cohort received 3000 pfu with a 3000 pfu booster 3 months later. The vaccine was well tolerated. VZV-specific immunologic responses were evaluated over a 24-month period. The mean anti-VZV antibody level was significantly increased for 12 months after vaccination. Interferon-gamma production in vitro by peripheral blood mononuclear cells (PBMC) of vaccinees was also increased for 6 months after vaccination. Most significantly, VZV-specific proliferating T cells in PBMC of vaccinees were increased in frequency from 1 in 68,000 to 1 in 40,000. This vaccine-enhanced frequency of VZV-responding T cells is similar to the frequency observed in 35- to 40-year-old adults. Dose and age of the vaccinees did not significantly influence the magnitude of the mean cell-mediated immune response. The data indicate that VZV immunity in the elderly can be boosted by active immunization. If the increased incidence of herpes zoster that accompanies aging results from the natural waning of immunity, active immunization may prevent or attenuate zoster in the elderly.
Penciclovir (PCV) and acyclovir are acyclic guanine analogs which inhibit herpes simplex virus (HSV) DNA polymerase. Their 50% infective doses were 0.5 to 0.8 microgram/ml for clinical isolates of HSV-1 and 1.3 to 2.2 micrograms/ml for HSV-2. Furthermore, HSV-infected cultures receiving 2-h pulses of PCV had 2- to 50-fold less HSV than acyclovir-treated cultures, consistent with the prolonged intracellular half-life of PCV triphosphate.
A potential in vitro model of varicella-zoster virus (VZV) latency was developed. Dissociated human dorsal root ganglion cultures were infected with VZV and maintained for 1 wk in the presence of bromovinyl arabinosyl uracil, a potent inhibitor of VZV. Seven to 21 d after removing the inhibitor (> or = 14 d after infection), the cells were trypsinized, passed to monolayers of human embryonic lung fibroblasts, and observed for VZV reactivation as indicated by typical cytopathic effects and the appearance of VZV antigens. VZV reactivated from 56% of the cultures containing both neurons and satellite cells but not from cultures specifically enriched for either neurons, satellite cells, or ganglion-derived fibroblasts. The failure to isolate VZV from cell suspensions that were sonicated before cocultivation with fibroblasts indicated that infectious VZV was not present before reactivation. Moreover, immunohistochemical and immunoprecipitation studies revealed no VZV-specific antigens in any cultures before the reactivation stimulus. VZV antigens were detected after trypsinization and cocultivation. These findings suggest that cultures containing both neurons and satellite cells provide a model system for VZV persistence that possesses many properties of a latent infection.
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Trypanosoma cruzi lambda gt 11 library from epimastogote derived mRNA was screened with human chagasic sera or sera from chronically infected mice. Strong reactive recombinants were detected with both sera. Two recombinant clones were studied in more detail and shown to be composed of the same 114-bp repetitive sequence coding for a 38 amino acid repetition. This repetition is the same size and shares greater than 60% homology with the reported T. brucei microtubule associated protein (MAP) p320. The insert of one of these clones, K1-7 (228 bp), was subcloned into pMSgt11 and the soluble recombinant polypeptide expressed. Antibodies against the K1-7 fusion polypeptide recognized a major 110-kDa band from cytoskeleton. Anti K1-7 monospecific antibodies detected several cytoskeletal proteins from 3T3 fibroblasts and bovine brain microtubule preparations. Reciprocally, anti-MAP1b monoclonal antibodies raised against bovine brain microtubule reacted with the K1-7 polypeptide on Western blots. The protein identified by K1-7 antibodies may be one of the parasite molecules associated to molecular mimicry.
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A murine model that demonstrated a placental barrier to fetal enterovirus infection in late pregnancy was extended to middle and early gestation. Inoculation with Theiler's murine encephalomyelitis virus (TMEV) in middle and early gestation infected 73% and 90% of placentas and 7% and 78% of fetuses, respectively. In situ hybridization (ISH) of tissues obtained after middle-gestation inoculation revealed TMEV in the placental decidua and spongiotrophoblast layers but generally not in the labyrinth (the layer adjacent to the fetus) or fetus (similar to late gestation). In contrast, ISH of placentas harvested after early-gestation inoculation identified TMEV predominantly in the labyrinth, in which vasculature was often replaced by hyalinized hemorrhagic tissue and small cell infiltrates; fetuses contained virus in heart, pericardium, great vessels, lung, pleura, brain, and liver. The placental barrier to enterovirus transmission appears to develop between early and middle gestation. Enterovirus infection before this time may induce placental damage, fetal infection, or both.
The C terminal region of a Trypanosoma cruzi ribosomal P protein, encoded by the lambda gt11 JL5 recombinant, defined a major antigenic determinant in chronic Chagas heart disease. Immunopurified anti-JL5 antibodies were tested for anti-human ribosome reactivity by immunoblotting. They recognized the parasite ribosomal P proteins and clearly reacted with the corresponding human P proteins. The peptide R-13, that comprises the 13 C terminal residues of the JL5 recombinant and defines the specificity shared between chronic Chagas heart disease anti-JL5 antibodies and the systemic lupus erythematosus (SLE) anti-P antibodies, was used to study the specificity and the IgG subclass distribution of the anti-R-13 response by ELISA. The R-13 autoepitope is recognized mainly by sera from chagasic patients, but not by sera from malaria patients. Moreover, there was a significant correlation between anti-R-13 antibody levels and anti-T. cruzi antibody titres. The anti-R-13 response was mainly restricted to the IgG1 heavy chain isotype and correlated with the anti-T. cruzi isotype distribution.
A workshop organized by the Ibero-American Project of Biotechnology evaluated the diagnostic potential of several cloned Trypanosoma cruzi recombinant antigens for Chagas' disease serodiagnosis. A set of recombinants, Antigen 2, Antigen 13, SAPA, H49, A13, JL5, JL7, JL8, JL9, and RA1 provided by three different South American laboratories were probed with a panel of 236 South American serum samples. Antigens JL7, H49, Antigen 2, and A13 scored as the best diagnostic recombinant reagents. The results suggested that the main advantage of using cloned peptides for chronic Chagas' disease diagnosis resided in their highly specific immunoreactive properties.
Infants with cardiopulmonary disease develop severe illness from respiratory syncytial virus (RSV) infection. Safety, feasibility, and pharmacokinetics of intravenous gamma globulin (IVIG) to prevent RSV illness were studied in 23 high-risk infants in a phase I trial. IVIG with an RSV neutralizing antibody titer of 1:1,100 in 5% solution was given monthly over a 2- to 4-h period in a clinical setting during the RSV season. The first group (n = 7) received 500 mg/kg of body weight, the second group (n = 9) received 600 mg/kg, and the third group (n =7) received 750 mg/kg. Serum was drawn prior to infusion and 2, 14, and 30 days after infusion. Total immunoglobulin G and RSV A2 and RSV B neutralizing antibody levels were obtained after the first IVIG infusion. Two children developed mild reversible pulmonary edema (group receiving 600 mg/kg per dose), and one developed hives and wheezing during one infusion (group receiving 500 mg/kg per dose). Twelve children developed subsequent RSV infection during two RSV seasons (November to April) over a 2-year follow-up period; 9 of 12 developed infection during the infusion year. Eleven illnesses were mild; one child died of progressive RSV illness (group receiving 500 mg/kg per dose). A cumulative infusion effect was not observed. IVIG appears safe and feasible in an outpatient setting, and at 750 mg/kg per dose, a target RSV antibody level of greater than or equal to 1:100 was achieved.
Amniotic fluids from 41 abnormal and 47 control pregnancies were examined for viruses, Chlamydia trachomatis, Ureaplasma urealyticum and Mycoplasma hominis. Abnormal pregnancies included those with fetal abnormalities, maternal complications, suspected chorioamnionitis and premature labor. Two percent of cultures were positive, including cytomegalovirus from one case of fetal growth retardation and U urealyticum from two patients with chorioamnionitis and from two controls. The abnormal pregnancies studied generally were not associated with nonbacterial intraamniotic infections.
Influenza is an important cause of serious illness in very young children with cardiopulmonary disease. A 4-year study was conducted at two centers to assess immunogenicity and safety of influenza split-product vaccine in children aged 3 to 18 months with bronchopulmonary dysplasia and congenital heart disease. A total of 113 children were studied: 62 children 3 to 5 months of age and 51 children 6 to 18 months of age. Sera were drawn prior to first and second immunization and 3 weeks after second immunization and were tested by hemagglutination inhibition; protection was defined as greater than 1:32. Ninety-five children were surveyed for adverse reactions. Seroresponses were age and antigen specific. Best responses for all ages were to A/Mississippi (H3N2) (97%). Children older than 6 months of age had better seroresponses to A/Leningrad (H3N2) (73%, P less than .03) and B/Victoria (62%, P less than .02) than did children younger than 6 months of age. Seroconversion rates to the remaining antigens were low. Only 9% of children experienced adverse reactions; all but one were mild. The immunologic mechanisms responsible for preventing serious influenzal disease and more effective immunization strategies need to be defined for very young high-risk children.