PubMed HealthSearch

Biomedical subjects

Y Itoyama

Publications and source records attributed to Y Itoyama.

At least 19 recordsLinked to original sources

Identification of new epitopes recognized by human monoclonal antibodies with neutralizing and antibody-dependent cellular cytotoxicity activities specific for human T cell leukemia virus type 1.

We have generated a number of EBV-transformed B cell lines producing human mAb against human T cell leukemia virus type 1 (HTLV-1) from the peripheral blood B lymphocytes obtained from patients with HTLV-1-associated myelopathy/tropical spastic paraparesis. Various synthetic peptides corresponding to antigenic regions of HTLV-1 gag and env proteins were used for the screening of antibodies in ELISA. In our study, four IgG mAb to the gag p19 amino acids 100 to 130, and 5 IgG mAb to the env p46 amino acids 175 to 199 were characterized. An immunofluorescence assay showed that all of these mAb specifically bound to the surface of HTLV-1-bearing cell lines. Among these mAb, one anti-gp46 mAb, designated KE36-11, neutralized the infectivity of HTLV-1 as determined by both the inhibition of HTLV-1-induced syncytium formation and transformation assays in vitro. An antibody-binding assay using overlapping oligopeptides revealed that KE36-11 recognized a new epitope locating between the gp46 amino acid sequence 187-193 (Ala-Pro-Pro-Leu-Leu-Pro-His). Another anti-gp46 mAb, designated KE36-7, showed antibody-dependent cellular cytotoxicity against HTLV-1-bearing cell line. KE36-7 bound strongly to the 10-mer peptide-gp46 187-196, and weakly to peptides containing the gp46 amino acid sequence 191-196 (Leu-Pro-His-Ser-Asn-Leu). These two epitopes, which are associated with HTLV-1 neutralization and antibody-dependent cellular cytotoxicity, are thus the first epitopes identified in human HTLV-1 infection. It is possible that passive immunization of humans with these two human mAb are effective on the protection of HTLV-1 infection in vivo.

Amino Acid Sequence

Presence of HTLV-I proviral DNA in central nervous system of patients with HTLV-I-associated myelopathy.

The polymerase chain reaction (PCR) method was used to determine the presence and amount of human T lymphotropic virus type I (HTLV-I) proviral DNA in central nervous system (CNS) tissue obtained at autopsy from 6 patients with HTLV-I-associated myelopathy (HAM)/tropical spastic paraparesis (TSP), 1 patient with adult T-cell leukemia (ATL) and CNS infiltration of leukemic cells, and 9 control subjects with other neurological disorders. HTLV-I pX and env but not pol DNA were detected in CNS tissue from 5 of 6 patients with HAM/TSP. The ATL samples were positive for pX, env, and pol DNA by PCR. None of the control samples was consistently positive for HTLV-I by PCR, but all showed positive bands on beta-globin PCR. Quantitative PCR combined with histological studies showed no correlation between HTLV-I proviral DNA amounts and extent of perivascular mononuclear cell infiltration in the HAM/TSP CNS. Also, the amounts of pX and probably env DNA were greater in the HAM/TSP samples than in the ATL sample, although the extent of mononuclear cell infiltration was far less in the HAM/TSP samples than in the ATL sample. Therefore, in addition to infiltrating mononuclear cells, constituent cells of the CNS may harbor the HTLV-I genome, at least in the pX and env regions, in patients with HAM/TSP.

Base Sequence

Enhanced proliferative response of myasthenic thymus cells in mixed lymphocyte reaction.

To determine the functional diversity of thymic lymphoid cells in patients with myasthenia gravis (MG), we evaluated mixed lymphocyte reactions (MLR) using thymus cells in 7 MG patients and 8 controls. In the MLR, we used thymus cells as responder cells and mitomycin C-treated peripheral non-T cells as stimulator cells. In an autologous MLR test, a low proliferative response was observed in both the MG patients and controls. In an allogeneic MLR test, in which thymus cells were co-cultured with allogeneic non-T cells, the thymus cells from MG patients showed an increased proliferative response to stimulator cells, whether they were from MG patients or the controls. However, thymus cells from the controls showed a low proliferative response to any allogeneic stimulator cells. The enhanced allo-reactivity of thymus cells from MG patients thus suggests that there is an increase in the number of functionally mature T lineage cells in the MG thymus.

Adolescent

Antibody titers to HTLV-I-p40tax protein and gag-env hybrid protein in HTLV-I-associated myelopathy/tropical spastic paraparesis: correlation with increased HTLV-I proviral DNA load.

We studied the relationship between antibody titers to recombinant HTLV-I p40tax protein and gag-env hybrid protein in serum (by an enzyme-linked immunosorbent assay) and HTLV-I proviral DNA load in peripheral blood mononuclear cells (by a quantitative polymerase chain reaction method) in 18 patients with HTLV-I-associated myelopathy (HAM)/tropical spastic paraparesis (TSP), 17 HTLV-I carriers without HAM/TSP and 16 HTLV-I uninfected controls. The IgG and IgA antibody titers to either of the proteins correlated significantly with the HTLV-I pX (coding p40tax protein) and pol DNA amounts in HTLV-I infected subjects. HAM/TSP patients had significantly higher titers of IgG and IgA antibodies to the HTLV-I proteins than did the HTLV-I carriers without HAM/TSP. While the IgM antibodies to the HTLV-I proteins were found in only 6% of HTLV-I carriers without HAM/TSP, they were found in 40% of HAM/TSP patients, especially those having both a high HTLV-I proviral DNA load and high titers of the IgG and IgA antibodies. HAM/TSP patients with the IgM antibodies had a tendency to deteriorate more frequently on the Kurtzke's disability status scale and magnetic resonance imaging of the brain (leukoencephalopathy) than did those without in the two-year follow-up. Thus, the presence of IgM antibody and high titers of IgG and IgA antibodies to the HTLV-I proteins, together with the increased HTLV-I proviral DNA load, appears to distinguish HAM/TSP patients from HTLV-I carriers without HAM/TSP.

Adult

Increase of peripheral B lymphocytes committed to the production of monoreactive and high affinity antibodies to HTLV-1 in patients with HAM/TSP.

We quantitated the frequency of B lymphocytes capable of producing antibodies to HTLV-1 in the peripheral blood from patients with HAM/TSP, non-HAM/TSP HTLV-1 carriers and seronegative healthy subjects. Epstein-Barr virus (EBV) was used as a polyclonal activator of B lymphocytes in a limiting dilution condition. We found that B lymphocytes committed to the production of monoreactive-IgG and -IgA antibodies to recombinant HTLV-1 (gag + env) hybrid protein were significantly increased in a number in patients with HAM/TSP as compared to non-HAM/TSP HTLV-1 carriers and seronegative healthy subjects. By transforming these B lymphocytes with EBV and fusing them with human-mouse heteromyeloma (F3B6), a stable hybridoma producing IgG monoclonal antibody (mAb) to HTLV-1 (gag + env) protein was generated from a patient with HAM/TSP. This mAb (IgG1, kappa), designated F31.1, specifically bound to the amino acid residues from 235 to 254 of HTLV-1 envelope glycoproteins (gp46) with high affinity (Kd = 4.0 x 10(-9) mol/l). These data indicate that the antigen-driven process of B lymphocytes maturation by HTLV-1 antigens is markedly increased in patients with HAM/TSP.

Antibody Affinity

Linear antigenic regions of the structural proteins of human T-cell lymphotropic virus type I detected by enzyme-linked immunosorbent assays using synthetic peptides as antigens.

We synthesized 46 sequential peptides 21 to 39 amino acids long over the structural protein of human T-cell leukemia virus type I (HTLV-I; the p19 and p24 gag protein and the gp46 and p20E env proteins) and tested their reactivities against antibodies in sera from HTLV-I healthy carriers and patients diagnosed as having human T-cell leukemia-lymphoma (ATLL) and myelopathy (HAM) by using an enzyme-linked immunosorbent assay. Of the 46 synthetic peptides, 18 peptides (2 corresponding to the p19 gag protein, 2 corresponding to the p24 gag protein, 8 corresponding to the gp46 env protein, and 6 corresponding to the p20E env protein) reacted with antibodies in the sera from HTLV-I healthy carriers. In particular, the peptides comprising amino acids 100 to 119 and 119 to 130 of the gag and 175 to 199, 213 to 236, 253 to 282, and 288 to 317 of the env proteins reacted with antibodies in sera from more than 30% of HTLV-I healthy carriers. These peptides also showed high reactivities to the antibodies in the sera from patients with ATLL and HAM. The results indicate that the predominant antigenic regions of the structural protein of HTLV-I were located at the C-terminal end of the p19 gag protein and the C-terminal half of the gp46 env protein, and the corresponding peptides proved to be useful antigens in detecting antibodies in the sera from individuals infected with HTLV-I.

Amino Acid Sequence

Neutralizing antibodies against HTLV-I in HTLV-I-associated myelopathy/tropical spastic paraparesis (HAM/TSP) patients and asymptomatic carriers.

We tested serum specimens from patients with HAM/TSP and asymptomatic HTLV-I carriers from endemic areas of Japan, Jamaica, Colombia, and Chile for neutralizing antibodies against HTLV-I. The data suggest a trend for neutralizing activity to be found more frequently in the sera from HAM/TSP patients than in sera from asymptomatic carriers. The result of this study emphasizes the importance of determining biologic properties of the envelope glycoprotein of HTLV-I.

Carrier State

Increased HTLV-I proviral DNA in HTLV-I-associated myelopathy: a quantitative polymerase chain reaction study.

Using the polymerase chain reaction, we quantitated the amount of human T-lymphotropic virus type I (HTLV-I) proviral DNA in peripheral blood mononuclear cells from 18 patients with HTLV-I--associated myelopathy/tropical spastic paraparesis; 17 HTLV-I carriers without HTLV-I--associated myelopathy/tropical spastic paraparesis, with or without other autoimmune or inflammatory diseases; and 19 seronegative control subjects. The HTLV-I proviral DNA was 10- to 100-fold higher in the patients and in the HTLV-I carriers without HAM/TSP who had autoimmune or inflammatory diseases than in the carriers without autoimmune or inflammatory diseases. The patients who had had onset of myelopathy at a younger age (15 to 39 years) had an extremely high level of HTLV-I proviral DNA in the early phase, as compared with findings in those with a late onset of myelopathy (at 44 to 61 years). The large increase in HTLV-I proviral DNA in peripheral blood mononuclear cells is presumably closely related to the development of autoimmune or inflammatory processes in HTLV-I carriers, including HTLV-I--associated myelopathy/tropical spastic paraparesis.

Adult

Early loss of astrocytes in herpes simplex virus-induced central nervous system demyelination.

Immunohistochemistry was used to study herpes simplex virus type 1-induced central nervous system demyelination in the trigeminal root entry zone of mice inoculated with herpes simplex virus type 1 by the corneal route. There was no change in peripheral nervous system myelin as shown by immunostaining for P0 glycoprotein. Double immunoperoxidase staining for herpes simplex virus type 1 antigens and glial fibrillary acidic protein showed that most of the infected cells were astrocytes. Glial fibrillary acidic protein immunostaining was completely lost in the inferior medial portion of the trigeminal root entry zone at 6 days after herpes simplex virus type 1 inoculation, a time when central nervous system myelin was preserved as indicated by immunostaining for myelin basic protein. The pattern of glial fibrillary acidic protein staining did not change and herpes simplex virus type 1 antigens were no longer detected after day 8. There was a progressive loss of myelin basic protein staining within the area unstained by glial fibrillary acidic protein antisera on days 8 to 14. This pattern of astrocyte loss before central nervous system demyelination is strikingly different from the reactive astrocytosis seen in other demyelinating lesions, such as acute experimental allergic encephalomyelitis, progressive multifocal leukoencephalopathy, or acute multiple sclerosis. Herpes simplex virus type 1 infection in mice provides an unusual model of acute central nervous system demyelination preceded by a loss of astrocytes.

Animals

Cellular immune surveillance against HTLV-I infected T lymphocytes in HTLV-I associated myelopathy/tropical spastic paraparesis (HAM/TSP).

To investigate the cellular immune surveillance against HTLV-I infected T lymphocytes in HTLV-I associated myelopathy/tropical spastic paraparesis (HAM/TSP), we studied the cytotoxic T lymphocytes (CTL) activity against an HTLV-I infected human T cell line (MT-2) and the natural killer (NK) cell activity in 15 HAM patients, 6 HTLV-I carriers, and 15 controls. The activity of CTL against MT-2 cells was found to be significantly elevated in HAM compared with that in the controls. This cytotoxicity in HAM was higher than in HTLV-I carriers, although the difference was not statistically significant. There was an HLA class I restriction in this CTL activity against MT-2 cells in HAM. On the other hand, NK cell activity was significantly lower in HAM than in controls. Cold target inhibition studies suggested that NK cells could not lyse MT-2 cells effectively. There was a positive correlation between the CTL activity against MT-2 cells and the serum antibody titers to HTLV-I in HAM.

Adult

Analysis of prognostic factors in thymectomized patients with myasthenia gravis: correlation between thymic lymphoid cell subsets and postoperative clinical course.

We retrospectively examined the postoperative clinical course of 50 consecutive patients with myasthenia gravis who underwent a transsternal extended thymectomy. Twenty-six patients (52%) showed a steady improving postoperative course without any additional immunotherapy (group A). The remaining 24 patients (48%) had an intractable postoperative course, and most of them needed additional immunotherapy (group B). A significant increases in CD3+ cells, HLA-DR+ cells and B-cells and significant decreases in CD1+ cells and CD8+ cells were observed in the thymuses from patients in group B, compared with the findings in group A. In the peripheral blood, the ratio of CD4+ cells to CD8+ cells was significantly increased in group B. Patients who were either under 40 years of age, females, or without thymoma had good clinical courses after the thymectomy alone.

Adult

Leukoencephalopathy in HTLV-I-associated myelopathy/tropical spastic paraparesis: MRI analysis and a two year follow-up study after corticosteroid therapy.

Magnetic resonance imaging (MRI) of the brain was studied in 35 patients with HTLV-I-associated myelopathy (HAM)/tropical spastic paraparesis (TSP), 19 HTLV-I seropositive carriers without HAM/TSP (non-HAM/TSP carriers), 18 patients with HTLV-I seronegative spastic spinal paraparesis (SSP), and 82 HTLV-I seronegative controls with other neurological disorders. The incidence of white matter lesions was significantly higher in HAM/TSP (66%) than in the controls (23%) and SSP (11%). HAM/TSP exceeded non-HAM/TSP carriers significantly in the incidence of multiple white matter lesions (37% vs 10%). HAM/TSP affected the deep and subcortical cerebral white matter multifocally, sparing the periventricular regions. None of the lesions were enhanced by gadolinium-DTPA. HAM/TSP patients with the white matter lesions had both a longer duration of disease and a greater disability than did those without lesions. The white matter lesions gradually increased in number, as the disability status became worse, in spite of the high dose corticosteroid treatment. All these observations suggest that the MRI abnormalities of the HAM/TSP brain may reflect the chronic perivascular inflammation with progressive gliosis (chronic disseminated encephalomyelitis). We propose that brain MRI can be successfully utilized as a reliable and non-invasive measure for following the disease progression in HAM/TSP.

Age Factors

Metastatic angiosarcoma of the brain.

Two patients with metastatic angiosarcoma of the brain are described. In one, a 17-year-old man, the tumor was located at the pineal region and exhibited significant vascularity. It was sensitive to radiation therapy and disappeared after radiation of 50 Gy; however, it recurred after 1 year and a new lesion was found in the liver. The other patient is a 31-year-old woman who experienced sudden onset of headache. Computed tomography scan revealed three separate masses in the brain. One tumor was surgically removed. The other two were sensitive to radiation therapy and disappeared after radiation of 40 Gy. A new lesion was found in the femur 16 months after the operation. Brain metastasis from angiosarcoma is exceedingly rare. Both patients developed symptoms with intracranial hemorrhage. The diagnosis of the metastatic lesions preceded diagnosis of the primary lesion by 12 and 16 months, respectively. Ulex europaeus 1 lectin and factor VIII were very useful in establishing the diagnosis of angiosarcoma.

Adolescent

Natural killer (NK) cells in HTLV-I-associated myelopathy/tropical spastic paraparesis-decrease in NK cell subset populations and activity in HTLV-I seropositive individuals.

We examined natural killer (NK) cell activity and NK cell subset populations in 18 patients with HTLV-I associated myelopathy (HAM)/tropical spastic paraparesis (TSP), ten HTLV-I seropositive asymptomatic carriers and 20 seronegative healthy controls. The NK cell activity was significantly decreased in HAM/TSP, compared with that in controls. The percentages of NK cell subsets, such as CD16+, CD11b+, CD56+, CD16+ CD56-, CD16-CD56+, CD16+CD8-, or CD16+CD3+ cells were significantly decreased in HAM/TSP patients. Of particular interest is that the percentage of CD16+CD3+ cells, which have a wide spectrum of cytotoxic properties commonly seen in NK, lymphokine activated killer (LAK) and antibody-dependent cellular-cytotoxic (ADCC) effector cells, was significantly decreased in HAM/TSP as compared to asymptomatic carriers as well as controls. The percentage of CD16+CD3+ cells correlated inversely with the value of spontaneous proliferation of peripheral blood lymphocytes (SPP), which is a characteristic change observed in HAM/TSP.

Adult

Elevated antibodies to synthetic peptides of HTLV-1 envelope transmembrane glycoproteins in patients with HAM/TSP.

We studied the antibody response to various kinds of well-characterized synthetic peptides of human T lymphotropic virus type 1 (HTLV-1) envelope glycoproteins in patients with HTLV-1 associated myelopathy (HAM)/tropical spastic paraparesis (TSP) and non-HAM/TSP HTLV-1 carriers. The serum antibody titers to most of the synthetic peptides were significantly higher in patients with HAM/TSP than those in non-HAM/TSP HTLV-1 carriers. However, the degree of the increase of antibody titers to the synthetic peptides corresponding to the transmembrane portions of HTLV-1 envelope glycoproteins (env-p20E), such as p20E 332-352, 374-392, 426-448 and 458-488, was greater than those to synthetic peptides of exterior portions of HTLV-1 envelope glycoproteins (env-gp46) in sera from patients with HAM/TSP. Antibodies to env-p20E 332-352 and 374-392 were elevated in the cerebrospinal fluid (CSF) only from patients with HAM/TSP but not from non-HAM/TSP HTLV-1 carriers. These data indicate that the increase of antibody titers to transmembrane portions of HTLV-1 envelope glycoproteins in sera and CSF is a characteristic feature of antibody response in patients with HAM/TSP and may be closely associated with the development of HAM/TSP from non-HAM/TSP HTLV-1 carriers.

Adult