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C V Hanson

Publications and source records attributed to C V Hanson.

At least 37 records · Page 2Linked to original sources

Neutralization sensitivity of human immunodeficiency virus type 1 is determined in part by the cell in which the virus is propagated.

Neutralizing antibody responses to human immunodeficiency virus type 1 (HIV-1) vary widely and have not been reproducibly associated with prognosis or disease progression. We have found that both low-passage clinical isolates and laboratory-adapted strains of HIV-1 have different sensitivities to neutralization by the same antiserum, depending on the host cell in which the viral stock is prepared. One such isolate (VL069) grown in H9 cells was neutralized by 20 human sera at a geometric mean titer of 1:2,047; this same isolate prepared in peripheral blood mononuclear cell (PBMC) culture was neutralized at a mean titer of < 1:10 by the same sera. Adsorption and mixing experiments indicated that neither antibody to H9 cell components nor blocking by excess viral antigen was responsible for the differences observed. This host cell effect is rapidly reversible upon passage of the virus from PBMCs to H9 cells and back into PBMCs. In contrast, the neutralization characteristics remained remarkably stable over extended culture in PBMCs. Two laboratory strains and five clinical isolates were evaluated in expanded studies of this phenomenon. While the neutralization characteristics of most of the strains studied were affected by the host cell in which the strain was propagated, two of the strains (one clinical isolate and one laboratory strain) appeared antigenically unaffected by their cell of origin. Host cell effect was also evident in neutralization by monoclonal antibodies directed against the CD4-binding region and the V2, V3, and gp41 regions. Possible mechanisms for this host cell effect include (i) mutation during passaging; (ii) selection in different host cells of different subpopulations of the (uncloned) viral stock; and (iii) cell-specific posttranslational modifications. To explore these possibilities, the V3 through V5 region of gp120 was sequenced in preparations made by passing VL069 into H9 cells and into PBMCs; HIVMN grown in CEM-SS cells and in PBMCs was also sequenced. In both cases, a few amino acid changes outside the V3 region were found. Studies are currently under way to assess the significance of these changes.

Adaptation, Biological↗

Evaluation of monoclonal antibodies to HIV-1 envelope by neutralization and binding assays: an international collaboration.

OBJECTIVE: To characterize a purified panel of monoclonal antibodies (MAb) to epitopes in HIV-1 envelope V3, CD4-binding region, C4 and gp41. DESIGN: Neutralization and/or binding activity data were obtained from 21 laboratories on a coded panel consisting of seven human MAb, seven mouse MAb, recombinant human CD4 immunoadhesin [CD4-immunoglobulin G (IgG)], normal human and normal murine Ig. METHODS: Laboratories performed a variety of neutralization assays and antigen binding assays with HIVIIIB, HIVMN and other laboratory strains of HIV-1. RESULTS: For a single MAb, there was up to a 10(3) range of neutralizing antibody titers between laboratories. The range in titers appeared to depend on the sensitivity of the neutralization assay. Two methods were used to consolidate the data from all laboratories, the geometric mean titer (GMT) and the median neutralizing titer (MNT). The panel of MAb were also analyzed by a variety of assays that measure binding activity to native or denatured epitopes. The relative binding activity of the MAb did not appear to correlate with neutralizing activity. CONCLUSION: Neutralization results from any single laboratory did not correlate with the collective data. The relative potency (rank order) of the MAb in the panel were equivalent when determined by GMT or MNT. These values may be useful to individual laboratories for estimating the sensitivity of their neutralization assays. The study also identified potential reference reagents with which neutralizing activity could be compared.

Amino Acid Sequence↗

Neutralizing antibody responses to autologous and heterologous isolates of human immunodeficiency virus.

Although laboratory-adapted strains of human immunodeficiency virus (HIV) are generally highly sensitive to neutralization by HIV-positive patient sera, we have found a more complex pattern of cross-neutralization and neutralization resistance among low-passage clinical isolates. These HIV isolates, like many other lentiviruses, resisted neutralization by the patient's own (autologous) antibodies. We assessed the degree of antigenic relatedness between different patient isolates of HIV through cross-neutralization with heterologous sera and virus isolates. Complicated patterns emerged, with variation in breadth of neutralization among individual plasmas and variation in frequency of neutralization among isolates. In longitudinal studies of individuals, we found that some but not all such patients develop a neutralizing response that "catches up" with their earlier isolates after a lag period. Taken together, these data suggest that an individual's immune response broadens with time because of cumulative exposure to multiple antigenic variants that arise throughout HIV disease.

Cells, Cultured↗

Photochemical inactivation of cell-associated human immunodeficiency virus in platelet concentrates.

Photochemical decontamination (PCD) of platelet concentrates, with adequate preservation of platelet function, has been shown using 8-methoxypsoralen (8-MOP) and long wavelength UV light (UVA). To further evaluate this technique, models for the inactivation of pathogenic human cell-associated viruses and integrated proviral sequences are required. We have assessed the ability of the PCD technique to inactivate cell-associated human immunodeficiency virus 1 (HIV-1) in platelet concentrates. We correlated PCD inhibition of HIV-1 infectivity with 8-MOP-DNA adduct formation in contaminating nucleated cells, and measured the inhibition of polymerase chain reaction (PCR)-mediated amplification of cellular DNA sequences as a surrogate for inactivation of integrated proviral nucleic acid sequences. After PCD treatment (8-MOP 300 micrograms/mL, UVA 17 mW/cm2) for 60 minutes, 0.5 x 10(6) plaque-forming units (PFU)/mL of cell-associated HIV-1 were inactivated and no virus was detectable by infectivity assay. After 60 minutes of PCD, 15 8-MOP-DNA adducts per 1,000 bp were formed, while in the absence of UVA, no adducts were formed. PCR-mediated amplification of a 242-bp cellular DNA sequence (HLA-DQ-alpha) was inhibited when greater than eight psoralen-DNA adducts per 1,000 bp were present. These studies indicate that high titers of cell-associated HIV-1 in platelet concentrates were inactivated by PCD, and the numbers of 8-MOP-DNA adducts in nucleated cells were sufficient to inhibit amplification of DNA segments that encode for as few as 80 amino acids. Based on the frequency of 8-MOP-DNA adducts, for the 10-kb HIV-1 genome, the probability of an integrated genome without at least one 8-MOP adduct after 60 minutes of PCD was 10(-33).

Blood Component Transfusion↗

No evidence of perinatal transmission of HTLV-II.

Two hundred twenty-eight plasma specimens collected over a 4-year period from 185 children aged 4 days to 10 years at risk for human immunodeficiency virus (HIV) infection were tested for antibody to human T-cell lymphotropic virus type II (HTLV-II) to determine perinatal transmission of this agent. One hundred three of the specimens were from 68 children whose mothers were intravenous drug users (IVDU). None of the children in the study were breast fed. No HTLV antibody was detected in any of the samples from children of non-IVDU mothers. However, HTLV-II antibody was found in samples from 15 of 38 infants < 6 months old born to IVDU mothers. Later specimens taken at 8-16 months from six of these children were negative, suggesting passive maternal antibody, not infant infection. The 62 samples from 30 children 6 months to 7 years old from IVDU mothers were negative for HTLV antibody. The lack of HTLV antibody in the older children indicates that no vertical transmission had occurred. Based on the prevalence rate of maternal HTLV-II antibody found in the children < 6 months old, an HTLV-II infection rate of approximately 36% was projected for the IVDU mothers in the study.

Child↗

Detection of antibodies to human immunodeficiency virus type 2 (HIV-2) in blood donor sera using United States assay methods for anti-HIV type 1.

Twelve serum samples from French blood donors that were uniformly reactive in tests for antibody to human immunodeficiency virus type 2 (anti-HIV-2) also were reactive in 92 to 100 percent of tests with three anti-HIV type 1 (anti-HIV-1) enzyme-linked immunoassays currently in widespread use for donor screening in the United States. Supplemental tests for anti-HIV-1 on these anti-HIV-2-reactive samples differed in their responses. All samples reacted in a licensed anti-HIV-1 Western blot, but there was an atypical band near the p41 position, which could be a clue to the fact that this result was a cross-reaction with anti-HIV-2. A recombinant immunoblot gave an indeterminate result for anti-HIV-1 in all 12 samples. A local immunofluorescence assay for anti-HIV-1 reacted with 92 percent of the samples, but a commercial one detected only 58 percent.

Antibodies, Viral↗

Segregation of human T cell lymphotropic virus type I and II infections by antibody reactivity to unique viral epitopes.

A recombinant protein of the human T cell lymphotropic virus type I (HTLV-I) gp46 outer membrane envelope, MTA-4 (residues 129-203), reacted by Western blot with sera from HTLV-I-infected individuals from the United States and Jamaica but not with 24 (10%) of 242 Japanese sera. A related gp46 recombinant protein, MTA-1 (residues 162-209), reacted with all 58 sera from HTLV-I-infected US and Jamaican individuals and 238 of 242 sera from infected Japanese (combined sensitivity of 99%). Neither recombinant showed reactivity to sera from HTLV-II-infected individuals or uninfected controls. The reactivity of recombinant proteins containing the region of HTLV-II gp46 analogous to MTA-1 was also evaluated by Western blot: GH2-K15 (residues 157-205) and GH2-K55 (residues 162-205) reacted with 88 (98%) and 89 (99%), respectively, of 90 sera from HTLV-II-infected individuals but not with sera from HTLV-I-infected individuals or uninfected controls. These recombinant proteins should permit the development of assays to unambiguously confirm and differentiate HTLV-I and HTLV-II infections.

Amino Acid Sequence↗

Comparison of indirect immunofluorescence and membrane fluorescence assays for the differentiation of antibodies to human immunodeficiency virus types 1 and 2.

Serum samples from 20 human immunodeficiency virus type 1 (HIV-1)- and 30 HIV-2-infected and 7 dually infected individuals were reacted by using the indirect immunofluorescence assay (IFA) and membrane fluorescence assay in order to determine whether these methods were useful for typing HIV-1 and HIV-2 antibodies. Although 41 of 50 (82%) of the HIV-1- and HIV-2-positive specimens cross-reacted to some extent with the heterologous antigen in the IFA, the antigen with the higher titer correlated completely with the infecting type. The IFA could not distinguish single from dual infections, however. In contrast, only 4 of the 50 (8%) serum samples cross-reacted in the membrane fluorescence test. All seven of the specimens from patients with mixed infections reacted with both antigens. The membrane fluorescence test appears to be reliable for serodifferentiation of HIV-1 and HIV-2 infections and may be useful for laboratories with low-volume typing requirements.

Antibody Specificity↗

Photochemical inactivation of viruses with psoralens: an overview.

In the presence of longwave ultraviolet light, psoralen derivatives photoreact with the nucleic acids within intact viruses and cells. This photoreaction can leave protein antigens and other surface components relatively unmodified, while eliminating the infectivity of a wide range of infectious agents. The kinetics of inactivation differ among RNA and DNA viruses photoreacted with different derivatives of psoralen. The inactivation kinetics are nonlinear as a result of photodegradation of psoralens and the unexplained biphasic inactivation of some viruses. In spite of these complexities, the photoreaction is capable of generating broad safety margins in the disinfection of microbial products under gentle, physiologic conditions. The psoralen photoreaction provides a potential method for inactivating both known and unknown viruses in active blood products. Psoralen-inactivated viruses have already proven useful as noninfectious antigens for use in immunoassays and as successful experimental vaccines.

Antigens, Viral↗

Production of site-selected neutralizing human monoclonal antibodies against the third variable domain of the human immunodeficiency virus type 1 envelope glycoprotein.

Cell lines secreting IgG1 human monoclonal antibodies (mAb) to the envelope glycoprotein, gp120, of human immunodeficiency virus (HIV) have been produced by transformation of peripheral blood cells from HIV-infected individuals and by fusion of transformed cells to a human-mouse heteromyeloma cell line (SHM-D33). Two human mAbs were site-selected by means of a 23-mer synthetic peptide spanning a portion of the third variable domain of gp120 from the MN strain of HIV. The two heterohybridomas produce three times more IgG than do their parent lymphoblastoid cell lines. The specificities of these mAbs have been mapped to sequences near the tip of the disulfide loop of the gp120 third variable domain, Lys-Arg-Ile-His-Ile and His-Ile-Gly-Pro-Gly-Arg, respectively. The mAbs have dissociation constants of 3.7 x 10(-6) M and 8.3 x 10(-7) M, neutralize HIVMN in vitro at nanogram levels, and bear the characteristics of antibodies associated with protective immunity in vivo.

Antibodies, Monoclonal↗

Modified Western blot assay for confirmation and differentiation of human T cell lymphotropic virus types I and II.

Disease association studies of human T cell lymphotropic virus (HTLV) types I and II are hindered by the need for multiple assays to confirm and differentiate between the viruses. A modified Western blot assay has been developed using HTLV-I viral lysate and unique (MTA-4) and shared (p21E) HTLV recombinant proteins. By defining confirmation of infection as the presence of antibodies to p24 gag protein and to p21E, all 56 HTLV-I and 49 HTLV-II antisera were confirmed by this modified Western blot alone. Differentiation was determined by reactivity to MTA-4. All HTLV-I antisera reacted with MTA-4 and all HTLV-II antisera did not react with MTA-4. These findings indicate the utility of selected HTLV-I recombinant proteins in a single assay format to confirm and differentiate infections with HTLV-I and HTLV-II.

Blotting, Western↗

Evaluation of monoclonal antibodies to HIV-1 by neutralization and serological assays: an international collaboration. Collaborating Investigators.

In a National Institutes of Health (NIH)/World Health Organization (WHO)-sponsored collaboration, 26 laboratories characterized a coded panel of monoclonal antibodies (MAb) to HIV-1 envelope protein. The MAb were evaluated by serological [radioimmunoprecipitation, immunoblot, enzyme-linked immunosorbent assay (ELISA) and peptide mapping] and neutralization assays. Although laboratories used diverse neutralization assays that vary considerably in sensitivity, qualitatively similar data were obtained. The MAb were classified into three neutralization specificities: type-specific for MN and SF2, type-specific for IIIB, and group-specific for MN, SF2, and IIIB. The group-specific MAb displayed much lower neutralizing titers than the type-specific MAb. The specificity of MAb for neutralization was greater than for serological recognition of gp120 protein or peptide epitopes. Some MAb that bound to the same or closely overlapping linear epitopes had very different neutralization properties. The distinction between serological recognition and neutralization may result from differences in affinity of the MAb or may indicate that MAb can neutralize by interactions at a site distinct from the antibody binding site.

Amino Acid Sequence↗

Detection and differentiation of antibodies to human T-cell lymphotropic virus types I and II by the immunofluorescence method.

We compared the sensitivities of the prototype human T-cell lymphotropic virus type I (HTLV-I)- and HTLV-II-transformed cell lines, MT2 and Mo-T, with that of an HTLV-II-infected cell line, clone 19, established in our laboratory, in the immunofluorescence (IF) test for detection of antibody to HTLV-I and HTLV-II. In addition, IF antibody titers with the three antigens were determined, and the results were compared with HTLV-I and HTLV-II typing by polymerase chain reaction (PCR). The MT2 cell line was more sensitive than the two HTLV-II cell lines for detecting HTLV-I antibody by IF, and clone 19 was more sensitive than Mo-T or MT2 for measuring HTLV-II antibody. In the titration study, the antigen that gave the highest titer correlated completely with the HTLV type determined by PCR, indicating that the relatively simple IF titration method can be used for differentiating HTLV-I and HTLV-II antibody in sera and plasmas.

Cell Line, Transformed↗

Psoralen/UV inactivation of HIV-1-infected cells for use in cytologic and immunologic procedures.

A rapid procedure for the inactivation of HIV-1-infected cells using psoralen and ultraviolet (UV) light is described. Exposure of HIV-1-infected cells to 5 micrograms/ml psoralen followed by UV irradiation (320-380 nm) for 5 minutes yields cells that are noninfectious as assessed by extended infectivity assays. The psoralen/UV inactivation procedure described is effective with cells chronically or acutely infected with HIV-1 and is unaffected by cell densities up to 12 x 10(6)/ml. At 5 micrograms/ml psoralen does little damage to cellular permeability as shown by the ability of treated cells to exclude trypan blue and propidium iodide. Psoralen/UV treatment of HIV-1-infected cells does not cause a significant decrease in the reactivity of HIV-1 core and envelope antigens or cellular antigens to monoclonal antibodies. Experiments are presented demonstrating the use of these cells for flow cytometry studies and for cell surface labeling using the lactoperoxidase 125I iodination procedure.

Cell Count↗

Determination of a unique and immunodominant epitope of human T cell lymphotropic virus type I.

The identification and isolation of unique and immunogenic recombinant epitopes for human T cell lymphotrophic virus (HTLV) type I might allow the development of an antibody-based assay to differentiate between HTLV-I and HTLV-II infections. To test the feasibility of this approach, an HTLV-I envelope epitope was isolated by immunoscreening of a lambda gt11 recombinant HTLV-I DNA library with a human monoclonal antibody to HTLV-I. This recombinant epitope. MTA-4, when tested with sera from HTLV-I- or HTLV-II-infected individuals, was reactive with all HTLV-I and nonreactive with all HTLV-II antisera. These results indicate that MTA-4 is a unique and immunodominant epitope on HTLV-I and confirm the usefulness of human-derived monoclonal antibodies in an experimental approach to dissect the human humoral response to a viral pathogen.

Antibodies, Monoclonal↗