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D D Ho

Publications and source records attributed to D D Ho.

At least 181 records · Page 10Linked to original sources

CD4-independent, productive human immunodeficiency virus type 1 infection of hepatoma cell lines in vitro.

Five hepatoma cell lines, including CZHC/8571, PLC/PRF/5, Hep3B, HepG2, and HUH7, were inoculated with three diverse isolates of human immunodeficiency virus type 1 (HIV-1). Productive infection was noted in all hepatoma cell lines, and expression of viral p24 antigen lasted for over 3 months, but its level decreased in proportion to the number of viable cells. HIV-1 antigens were also found in the cells by immunohistochemical staining and radioimmunoprecipitation assay, as were viral RNA by in situ hybridization and HIV-1-like particles by electron microscopy. Virus yield assays were also positive on supernatant fluids collected from hepatoma cultures inoculated with HIV-1. Despite their susceptibility to infection, all five hepatoma cell lines were negative for CD4 by immunofluorescence and for CD4 mRNA by slot-blot hybridization. In addition, HIV-1 infection of hepatoma cell lines was not blocked by anti-CD4 monoclonal antibody or soluble CD4. Together, these findings clearly demonstrate that all five hepatoma cell lines were susceptible to productive infection by HIV-1 in vitro via a CD4-independent mechanism.

CD4 Antigens↗

HIV-1 neutralizing antibodies in urine from seropositive individuals.

HIV-1 neutralizing activity was demonstrated in serum and 200-fold concentrated urine from individuals who were HIV-1 antibody positive in both their serum and urine, including AIDS-KS, AIDS-OI, ARC, and asymptomatic patients. Virus neutralization activity was detected in 23 of 56 (41.1%) of the serum samples and in 19 of 56 (33.9%) of the urine samples tested, with titers ranging from 1:8 to 1:256 and 1:1 to 1:4, respectively. The highest frequency of HIV-1 neutralizing activity (87.5%) and the highest mean neutralization titers (1:65) were found in the ARC patients. A high prevalence of p24 antigen in serum and low numbers of T4-lymphocytes correlated with a low frequency of neutralizing activity in either serum or urine in the infected individuals. HIV-1 neutralizing activity in the urine was shown to be due to immunoglobulins using a Sephadex G-100 filtration gel. All 19 urine samples with neutralizing activity contained antibodies reactive with envelope glycoproteins gp160, gp120, and gp41 by Western blot, similar to that seen with serum. The frequency of HIV-1 neutralizing activity in the urine concentrates was generally associated with high titers of neutralizing antibody in the corresponding serum. These findings suggest that HIV-1 neutralizing antibodies are lost in the urine by an as yet unknown mechanism.

AIDS-Related Complex↗

Quantitation of human immunodeficiency virus type 1 in the blood of infected persons.

We used end-point-dilution cultures to measure the level of infectious human immunodeficiency virus type 1 (HIV-1) in peripheral-blood mononuclear cells (PBMC) and plasma of 54 infected patients who were not receiving antiviral chemotherapy. HIV-1 was recovered from the plasma and PBMC of every seropositive patient, but from none of 22 seronegative control subjects. The mean titers in plasma were 30, 3500, and 3200 tissue-culture-infective doses (TCID) per milliliter for patients with asymptomatic infection, the acquired immunodeficiency syndrome (AIDS), and the AIDS-related complex, respectively. In PBMC, the mean titers were significantly higher for symptomatic patients (AIDS, 2200, and AIDS-related complex, 2700 TCID per 10(6) PBMC) than asymptomatic patients (20 TCID per 10(6) PBMC). The values for the symptomatic patients were considered to indicate that at least 1 in 400 circulating mononuclear cells harbored HIV-1. The HIV-1 titers of seven patients with AIDS or AIDS-related complex treated with zidovudine for four weeks decreased significantly in plasma but not in PBMC. In addition, the mean titer in the plasma of 20 patients receiving long-term zidovudine treatment (130 TCID per milliliter) was 25-fold lower than the mean for comparable untreated patients with AIDS or AIDS-related complex. We conclude that the levels of HIV-1 in plasma and PBMC are much higher than previous estimates. This high degree of HIV-1 viremia raises the possibility that the direct cytopathic effect of this retrovirus alone may be sufficient to explain much of the pathogenesis of AIDS.

AIDS-Related Complex↗

The acquired immunodeficiency syndrome (AIDS) dementia complex.

The acquired immunodeficiency syndrome (AIDS) dementia complex is a frequent and devastating complication of infection with human immunodeficiency virus-type 1 (HIV-1). Features of the AIDS dementia complex include decreased memory, the inability to concentrate, apathy, and psychomotor retardation. Typical neuropathologic findings include gliosis, focal necrosis of neurons, perivascular inflammation, formation of microglial nodules, multinucleated giant cells, and demyelination. That HIV-1 is the direct cause of this neurologic syndrome is strongly supported by the available evidence. In addition, several studies have identified the monocyte-macrophage as the predominant cell type in the brain infected with HIV-1. However, the mechanisms by which the infected monocytes-macrophages mediate neurologic dysfunction and destruction have not been elucidated.

Acquired Immunodeficiency Syndrome↗

Markers of HIV infection prior to IgG antibody seropositivity.

During a 1-year period of study at two plasma collection centers, 7 of 35,000 plasma donors seroconverted to the human immunodeficiency virus (HIV) and had stored plasma samples that predated or antedated the seroconversion period. From each donor, three to eight plasma samples that had been collected at 2- to 7-day intervals were tested for IgG and IgM antibodies to HIV with enzyme immunoassays, Western blot testing, and radioimmunoprecipitation assays. The presence of an HIV viremic phase was demonstrated by the infectivity of plasma on normal, phytohemagglutinin-stimulated peripheral blood mononuclear cells and by the detection of HIV antigen. In 5 of these donors, HIV antigen was detected prior to or simultaneously with IgG to HIV; these HIV-antigen-positive samples overlapped an IgM immune response. The disappearance of detectable HIV antigen, and to a lesser extent plasma infectivity, was concurrent with the development of an IgG immune response. Although the improved sensitivity of a recombinant DNA-derived anti-HIV screening assay shortened the "window period" between initial HIV infection and antibody detection, HIV antigen and plasma HIV viremia were the only markers of HIV infection for several days in 2 donors. These results demonstrate that HIV plasma viremia and antigenemia occur prior to seroconversion in healthy plasma donors.

Adult↗

Absence of significant RNA-dependent DNA polymerase activity in lymphocytes from patients with Kawasaki syndrome.

Kawasaki syndrome, an acute febrile multisystem illness of young children, is a panvasculitis with prominent rheumatic features. Arthritis and pancarditis are frequent during the acute stage; coronary artery aneurysms occur in 20% of cases and the disease is now the leading cause of acquired heart disease in childhood. A microbial aetiology is suggested by the acute febrile self-limited character of the disease, the regular occurrence of epidemic outbreaks at intervals of 2-3 years, and the virtual restriction to young children, consistent with the early acquisition of immunity. Reports of elevated DNA polymerase activity (assumed to be RNA-dependent reverse transcriptase) in cultured lymphocytes from patients with acute Kawasaki syndrome suggest that a retrovirus might be the causative agent. We have measured supernatant DNA polymerase activity in lymphocyte cultures from 49 Hawaiian patients in acute and convalescent stages of Kawasaki syndrome and have been unable to demonstrate significant reverse transcriptase activity or other evidence of involvement of a retrovirus in the aetiology of the disease.

Acute Disease↗

Generation and characterization of monoclonal antibodies to the putative CD4-binding domain of human immunodeficiency virus type 1 gp120.

A panel of seven monoclonal antibodies against the relatively conserved CD4-binding domain on human immunodeficiency virus type 1 (HIV-1) gp120 was generated by immunizing mice with purified gp120. These monoclonal antibodies reacted specifically with gp120 in an enzyme-linked immunosorbent assay and Western blots (immunoblots). By using synthetic peptides as antigens in the immunosorbent assay, the epitopes of these seven monoclonal antibodies were mapped to amino acid residues 423 to 437 of gp120. Further studies with radioimmunoprecipitation assays showed that they cross-reacted with both gp120 and gp160 of diverse HIV-1 isolates (HTLV-IIIB, HTLV-IIIRF, HTLV-IIIAL, and HTLV-IIIWMJ). They also bound specifically to H9 cells infected with HTLV-IIIB, HTLV-IIIRF, HTLV-IIIAL, HTLV-IIIZ84, and HTLV-IIIZ34 in indirect immunofluorescence studies. In addition, they blocked effectively the binding of HIV-1 to CD4+ C8166 cells. Despite the similarity of these properties, the monoclonal antibodies differed in neutralizing activity against HTLV-IIIB, HTLV-IIIRF, and HTLV-IIIAL, as demonstrated in both syncytium-forming assays and infectivity assays. Our findings suggest that these group-specific monoclonal antibodies to the putative CD4-binding domain on gp120 are potential candidates for development of therapeutic agents against acquired immunodeficiency disease syndrome.

Animals↗

Granulocyte- and granulocyte-macrophage colony-stimulating factors enhance neutrophil cytotoxicity toward HIV-infected cells.

Although the control of retroviral disease in animal systems often involves antibody-dependent cell-mediated cytotoxicity (ADCC), the role of cytotoxic function in human retroviral disorders is uncertain. The ability of the neutrophil to kill HIV-infected targets directed by antiviral antibody was examined. Neutrophils from patients with AIDS killed HIV-infected MOLT-3A cells in a manner equivalent to neutrophils obtained from normal volunteers. Both granulocyte- and granulocyte-macrophage colony-stimulating factors (G-CSF and GM-CSF) markedly augmented the cytotoxic function. Studies done with fractionated human antisera revealed that ADCC to HIV-infected cells was mediated only by antibody to the env glycoprotein. ADCC in this system was not dependent on oxidative metabolism because neutrophils from patients with chronic granulomatous disease (CGD) were capable of CSF-augmented cytotoxicity. Although ADCC can be mediated by various classes of lymphocytes and mononuclear phagocytes, such cells may be infected by HIV. Because the neutrophil apparently is not productively infected by the virus, it is an ideal cell to focus on with regard to cytotoxic function in AIDS patients. The findings regarding neutrophil ADCC in AIDS are clinically relevant because the availability of CSFs now permits therapeutic regulation of neutrophils in AIDS patients, and presumably natural antibody may be useful in targeting HIV-infected cells for neutrophil cytotoxicity in vivo.

Antibody-Dependent Cell Cytotoxicity↗

Second conserved domain of gp120 is important for HIV infectivity and antibody neutralization.

Rabbit antisera were raised against three overlapping synthetic peptides with sequence homology to the second conserved domain of the external envelope glycoprotein (gp120) of the human immunodeficiency virus (HIV). All of the antisera immunoprecipitated the envelope glycoprotein. In particular, an antiserum directed against amino acids 254 to 274 of env was efficient in neutralizing three different isolates of HIV in vitro, without affecting the binding of the virus to CD4-positive cells. Therefore, this conserved region of gp120 appears to be critical in a postbinding event during virus penetration and may represent a target for antibody neutralization of HIV. These findings may be applicable in the design of a vaccine for the acquired immunodeficiency syndrome.

Acquired Immunodeficiency Syndrome↗

Peripheral neuropathy in the acquired immunodeficiency syndrome.

The histopathological and immunopathological features of peripheral neuropathy were investigated in 21 patients with the acquired immunopathological syndrome (AIDS) or AIDS-related complex (ARC). Clinical syndromes observed in the 11 (52%) symptomatic patients included distal symmetrical polyneuropathy (DSPN) and chronic inflammatory demyelinative polyneuropathy (CIDP). Specimens from 19 of 20 patients (95%), both symptomatic and asymptomatic, had histopathological evidence of moderate or severe demyelination (79%), axonal degeneration (36%), and mononuclear cell inflammation (37%). Nerves from patients with CIDP and DSPN showed similar degrees of demyelination and axonal degeneration, but inflammation was more intense in CIDP. Immunohistochemical staining identified the majority of inflammatory cells as T lymphocytes or macrophages, with a predominance of CD8+ cytotoxic/suppressor cells. Diffuse immunostaining for human leukocyte antigen (HLA)-DR was present on endothelial cells, mononuclear inflammatory cells, and Schwann cells, and variable patchy immunostaining for HLA-DR was present on nerve fibers. Control nerve specimens showed staining for HLA-DR limited to endothelial, and a few mononuclear cells. The patterns of immunostaining were similar for AIDS and ARC patients. Human immunodeficiency virus (HIV) was cultured from peripheral nerve in 3 patients, but HIV antigen was not detected by immunohistochemical staining of 8 specimens. The findings implicate HIV infection in nerve, with T cell- and macrophage-mediated tissue destruction as the pathogenetic mechanism of the AIDS/ARC neuropathy.

AIDS-Related Complex↗

Acute fulminating fatal leukoencephalopathy as the only manifestation of human immunodeficiency virus infection.

A case of acute human immunodeficiency virus (HIV) infection manifested by a rapidly fulminating, necrotizing, demyelinating encephalopathy that led to brain death in 5 days is reported. Autopsy demonstrated predominant white matter lesions, acute neuronal damage, and scanty cellular response. Cultures of cerebrospinal fluid were positive for HIV, suggesting an acute infection.

Acquired Immunodeficiency Syndrome↗

Functional interaction and partial homology between human immunodeficiency virus and neuroleukin.

Dementia is common in patients with AIDS, but the mechanism by which the human immunodeficiency virus type 1 (HIV-1) causes the neurological impairment is unknown. In this study the possibility that an antigen of HIV-1 suppresses neuronal responses to neurotrophic factors was examined. Both HIV-1 and a related retrovirus, simian immunodeficiency virus (SIV), inhibited the growth of sensory neurons from chick dorsal root ganglia in medium containing neuroleukin (NLK) but not in medium containing nerve growth factor. An unrelated type D retrovirus, simian acquired immunodeficiency syndrome virus, did not affect the growth of neurons in the presence of either neurotrophic factor. The inhibition by HIV-1 of neuron growth in the presence of NLK was found to be due to the gp120 envelope glycoprotein. Regions of sequence homology between gp120 and NLK may account for this inhibitory property of gp120 and functional interactions between gp120 and NLK may be important in the pathogenesis of the AIDS dementia complex.

Acquired Immunodeficiency Syndrome↗

Use of a resin-bound synthetic peptide for identifying a neutralizing antigenic determinant associated with the human immunodeficiency virus envelope.

A polyamide-based solid-phase support containing an acid-stable p-(oxymethyl)benzoic acid handle to anchor the COOH-terminal amino acid was utilized in the production of synthetic peptides analogous to amino acid sequences 503-532 from the human immunodeficiency virus (HIV) envelope glycoprotein. The resin-bound peptide was used to induce an antibody response to the native form of glycoprotein 120 in both rabbits and mice. This epitope was detected on the surface of HIV-infected cells and was capable of inducing an in vitro neutralizing HIV antibody response. In addition, sera from some individuals exposed to HIV react with this peptide bound to the resin in a solid-phase immunoassay. These data indicate that we have identified a neutralizing antigenic determinant present on the amino-terminal glycoprotein 120 subunits of HIV by utilizing resin-bound synthetic peptides.

Acquired Immunodeficiency Syndrome↗

Sequential changes in antibody levels to the env and gag antigens in human immunodeficiency virus infected subjects.

Sera from 51 HTLV-III (human immunodeficiency virus, HIV)-antibody positive subjects consisting of 21 asymptomatic individuals and 15 ARC and 15 AIDS patients were analyzed for their serological profiles toward the viral antigens. One of the asymptomatic subjects only showed a p24 reactivity in the immunoblot, but antibodies to the env antigens were clearly identified by immunoprecipitation of viral antigens (RIP) followed by SDS-polyacrylamide gel electrophoresis. RIP patterns of different subjects and even different bleeds from the same subjects showed a varying reactivity to the gag antigens whereas the reactivity towards the env antigens appeared to be generally stable. RIP analysis of sequential sera of virus-infected individuals indicated a pattern consistent with an initial steady rise of antibody reactivities to the gag antigens relative to the reactivities to the envelope antigens. These reactivities reached a plateau and then slowly declined. While all sera tested had antibodies to the envelope antigens gp160, gp120 and gp41, 86% of the asymptomatic subjects, 67% of the ARC patients and only 33% of the AIDS patients had antibodies to the gag proteins p24 and pr53gag.

AIDS-Related Complex↗