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S Nii

Publications and source records attributed to S Nii.

At least 37 records · Page 2Linked to original sources

Electron microscopic observations of aberrant capsids of pseudorabies virus.

Interactions between four strains of pseudorabies virus (PrV) and seven kinds of cell lines were examined. Three kinds of cells (SKL, CPK and PK-15) were especially infected with PrV at an MOI of about 10 PFC/cell. At sequential intervals after infection, cells of these types were collected for electron microscopic observations and the infectious doses of culture fluids were assayed. Developmental features of PrV were found to be very similar to those of herpes simplex virus (HSV), with the slight difference that PrV developed a little earlier and more vigorously than did HSV. At the late stage of infection, aberrant capsids of PrV were observed frequently in the nucleus of SKL but rarely in the nuclei of CPK and PK-15. The titer of infectious virus produced by SKL was much larger than that produced by CPK and PK-15. Immuno-electron microscopic examination using a monoclonal antibody against the major capsid protein of PrV clearly demonstrated that the complete and aberrant capsids have a common epitope. The mechanism of the formation of aberrant capsids is discussed.

Animals↗

Reverse transcription-polymerase chain reaction amplification of respiratory syncytial virus genome from neonatal nasal swab samples.

In order to make a rapid and accurate diagnosis of respiratory syncytial virus (RSV) infection, nasal swabs obtained from 14 neonates suspected of having this disease were examined for the presence of RSV genome by reverse transcription (RT) and nested polymerase chain reaction (PCR) amplification, along with enzyme immunoassay (EIA), serum neutralization testing and virus isolation. The RT-PCR method was sensitive enough to detect a 0.1 50% tissue culture infectious dose (TCID50) per milliliter by nested PCR. The RSV antigen was detected from the samples at more than 100 TCID50 per milliliter by EIA. Nine patients were positive for the presence of RSV genome by first PCR on the day of admission, and eight were also positive by nested PCR even on the fifth hospital day. Among nine PCR positives, four patients were positive for EIA and five for virus isolation. No cases were serologically diagnosed. The cases that were negative for RT-PCR were also negative according to the other methods. In the clinical setting, the RT-PCR assay is more useful for diagnosis of RSV infection than other methods when the suspected cases are negative by EIA assay.

Female↗

Molecular analysis of outer capsid glycoprotein (VP7) genes from two isolates of human group C rotavirus with different genome electropherotypes.

Nucleotide sequences for the VP7 gene of human group C rotavirus were determined for two strains isolated in Okayama, Japan, during a 1988-1990 epidemic. These isolates, OK118 and OK450, were selected as prototypes of two different electropherotypes, patterns I and II, respectively. The genes were identical in size (1,063 bp), and both contained singled open reading frames encoding 332 amino acids. The alignment of two sequences revealed 46 nucleotide substitutions, 11 of which were predicted to give amino acid changes. The deduced amino acid sequence of VP7 from OK118 was similar to published sequences of a Japanese isolate and three foreign isolates (more than 98.4% identity), whereas the VP7 sequence of OK450 revealed around 96% identity with these isolates and had nine unique amino acid substitutions. The VP7 genes of nine Okayama isolated were than analyzed by dot blot hybridization with the VP7 probes of OK118 and OK450. Under highly stringent conditions, the OK118 probe produced strong hybridization signals with the genes of five pattern I strains and one pattern II strain, while the OK450 probe strongly reacted only with those of three pattern II strains. Our results concluded that relative sequence diversity in the VP7 gene was observed between two different electropherotypes prevalent in a limited area.

Amino Acid Sequence↗

[The presence of IgE on limbal Langerhans cells in patients with atopicdermatitis].

Limbal conjunctival biopsies from 8 patients with atopic dermatitis and from 5 age-matched healthy individuals undergoing cataract or retinal detachment surgery were analyzed by light microscopy and immunological techniques. They were immuno-double labelled with anti-CD1a and anti-IgE or anti-CD23 (IgE receptor). In the specimens from atopic dermatitis 24 approximately 75% of positive anti-CD1a staining cells were double-stained by anti-IgE. Weak positive immuno-double stained cells with anti-CD23 were also observed, but less than with anti-IgE. The ratio of positive anti-IgE double-stained cells to positive anti-CD1a stained cells seemed to be parallel to serum IgE level, but not significant. The presence of IgE and CD23 (IgE receptor) on conjunctival Langerhans cells seems to have a positive effect on IgE-dependent antigen presentation.

Adult↗

Malignant lymphoma induction in rabbits by intravenous inoculation of Epstein-Barr-virus-related herpesvirus from HTLV-II-transformed cynomolgus leukocyte cell line (Si-IIA).

Malignant lymphomas, which were usually of T-cell type, were induced in 10 of 13 (77%) male rabbits (Japanese white, 8/10; New Zealand white, 2/3) inoculated i.v. with HTLV-II-transformed simian (Cynomolgus) leukocyte cell line (Si-IIA) cells. Of 7 rabbits injected with cell-free pellets from Si-IIA cultures, 5 also developed malignant lymphoma (15-28 days). Lymphoma development was completely inhibited by inactivation of cell-free pellets from Si-IIA culture with ethyl ether and was almost suppressed by neutralization of the cell-free pellets with anti-Si-IIA sera. Herpesvirus particles were discovered very rarely in Si-IIA cells, in addition to C-type virus particles, by electron microscopy. Si-IIA cells were positive for Epstein-Barr-virus (EBV)-associated nuclear antigen (EBNA) by immunofluorescence (IF) test. Antibody response to viral capsid antigen of EBV was also detected in sera from rabbits inoculated with Si-IIA. EBV-encoded RNA-1 (EBER-1) was demonstrated in Si-IIA, the tumor tissues and all rabbit tumor cell lines by in situ hybridization. EBV DNA was also detected in Si-IIA and rabbit lymphoma cell lines by polymerase chain reaction (PCR) and Southern blotting. However, EBV DNA was amplified only by some primers complementary to human EBV sequence (B95-8), but not by other primers. Integration of HTLV-II provirus genome could not be detected in Si-IIA-induced rabbit tumor cells. Moreover, no lymphoma was induced by inoculation of HTLV-IIC and MOT (other HTLV-II-producing human cell lines), B95-8(EBV-producing cell line) or TALL-1 and peripheral leukocytes from normal Cynomolgus (controls). Neither Herpesvirus saimiri nor H. ateles (simian oncogenic viruses) were detected in Si-IIA cells by IF test. These data suggest that the high rate of lymphoma induction in rabbits may not be caused by HTLV-II, human EBV (B95-8) or well-known simian oncogenic viruses, but by EBV-related herpesvirus derived from Si-IIA cells or HTLV-IIA cells, with which Si-IIA was established. The availability of this animal model promises to clarify the role of EBV in human lymphoma and provides a means of studying prophylactic and therapeutic regimens.

Animals↗

Analysis of molluscum contagiosum virus genomes isolated in Japan.

The genomes of 477 Japanese strains of molluscum contagiosum virus (MCV) were analyzed using an in-gel digestion method with the restriction enzyme BamHI, and classified into four types, including a newly detected type (MCV type 4). All type 1 (MCV-1) genomes examined so far in Japan showed a common difference from the genome of the MCV-1 prototype (MCV-1p), the type reported to be most prevalent in Europe. The common markers of the variants of MCV-1 were 24-kbp fusion fragments generated by the loss of a BamHI site between the D2 and F fragments of MCV-1p. These variants of MCV-1 were classified into three groups (MCV-1va, MCV-1vb, MCV-1vc), with the variability among them being due to additions and losses of BamHI sites located in the right terminus and around the E and I fragments of MCV-1va. The restriction map of MCV-4 was generated and lined up with those of the other types. Cross-hybridization analysis revealed that the organization of all types of MCV genomes were essentially colinear. Considerable numbers of BamHI restriction sites were conserved between MCV-2 and 4, indicating a close analogy between them. The overall prevalence of MCV, as shown by the ratios of MCV-1 (MCV-1p):MCV-2:MCV-3:MCV-4, was 436(0):13:24:4. Thus, the molecular epidemiology of MCV in Japan is characterized by the absence of the European prototype of MCV-1, the exclusive occurrence and abundance of variants of MCV-1, a greater prevalence of MCV-3 over MCV-2, and the presence of MCV-4.

Genetic Variation↗

Ultrahigh-resolution scanning electron microscopy of MDCK cells infected with influenza viruses.

Ultrahigh-resolution scanning electron microscopy of MDCK cells infected with influenza viruses was carried out by the uncoated uranyl acetate staining preparation method. Ridge-like protrusions were detected on virus particles and were considered to be an indication of aggregated glycoprotein spikes. Bundles of filamentous virus particles along with bacillary virus particles were encountered on MDCK cells infected with freshly isolated strains of type A virus. Filamentous virus particles that were twisted like ropes were observed on MDCK cells infected with strains of type B virus.

Cell Membrane↗

Interleukin-4 and -5 as modulators of nerve growth factor synthesis/secretion in astrocytes.

To examine the regulation of nerve growth factor (NGF) gene expression with respect to neural trauma, we examined the effects of T cell-derived lymphokines on NGF synthesis/secretion in cultured mouse astrocytes. Interleukin (IL)-4 and IL-5 significantly increased the amount of NGF secreted by astrocytes, whereas IL-2, IL-3, and IL-6 had no significant effect. IL-4 and IL-5 produced marked increases in NGF mRNA levels in astrocytes as demonstrated by the reverse transcription-polymerase chain reaction (RT-PCR) method. The effect of IL-4 and IL-5 was greater in quiescent astrocytes than in growing cells. Neither increase in thymidine incorporation nor any morphological change was observed during the treatment with IL-4 and IL-5. The stimulatory effect of IL-4 and IL-5 on NGF synthesis was completely inhibited by the addition of anti-IL-4 monoclonal antibody and anti-IL-5 monoclonal antibody, respectively. The results indicate that IL-4 and IL-5 specifically trigger a cascade of events to regulate NGF synthesis in astrocytes, independent of cell growth.

Animals↗

Rapid detection of human group C rotaviruses by reverse passive hemagglutination and latex agglutination tests using monoclonal antibodies.

Reverse passive hemagglutination (RPHA) tests and a latex agglutination test with monoclonal antibodies (MAbs) were developed for the rapid detection of noncultivatable human group C rotaviruses. For RPHA tests, two MAbs, MAb 5A12 recognizing the outer capsid and MAb 13A3 recognizing the inner capsid, were separately used for the coating of sheep erythrocytes (SRBCs). Forty-six fecal samples were examined to confirm the practicality of the tests. As a result, there was concordance between the RPHA test with SRBCs coated with MAb 5A12 and polyacrylamide gel electrophoresis of viral RNA (RNA-PAGE) in 44 (95.6%) of 46 samples, while the diagnoses by the RPHA test with SRBCs coated with MAb 13A3 were in complete agreement with those by RNA-PAGE. Furthermore, a latex agglutination test with MAb 13A3 was also developed, and this test was fast enough and sensitive enough to successfully detect the viruses from most fecal samples within 2 min. The present procedures would be useful for the diagnosis of human group C rotavirus infections in clinical laboratories which are not well equipped.

Antibodies, Monoclonal↗

Characterization of 17 human immunodeficiency virus-1 carrier cell lines with T cell, myelomonocyte, or megakaryocyte lineages.

Of 29 hematopoietic cell lines tested for susceptibility to human immunodeficiency virus (HIV)-1HTLV-IIIB infection, all CD4+ cell lines became infected. Continuous culturing of infected cell lines resulted in nine HIV-1 carrier cell lines, including, for the first time, an HIV-1 carrier megakaryoblastic cell line, MEG-01/HIV. The immunophenotypic profiles of a total of 17 HIV-1 carrier cell lines (nine newly and eight previously established cell lines) were compared with their respective parental noninfected cell lines. Except for total absence of CD4 expression, the expression of other antigens was variable among the 17 HIV-1 carrier cell lines. Persistent and consistent replication of infectious HIV-1 was detected in all of them in varying quantities. The great variability observed in both the altered marker expression, with respect to that of the noninfected parental cell lines, and in the quantities of persistently produced infectious HIV-1 was, nevertheless, specific to the individual cell lines. Furthermore, the present study demonstrates that there is no apparent correlation in the quantity of HIV-1 produced to either T cell, myelomonocytic cell, or megakaryocytic cell types. Instead, the results suggest that a particular interaction between HIV-1 and individual clonal cell lines may provide insight into the extremely complex immune dysregulation associated with the pathogenesis of acquired immune deficiency syndrome. Thus, the 17 HIV-1 carrier cell lines of diverse origin presented here provide valuable and unique models for further understanding acquired immune deficiency syndrome pathogenesis at the cellular and molecular levels.

Adolescent↗

Detection of herpes simplex and varicella-zoster virus DNA by field-inversion gel electrophoresis from clinical materials.

A simple method using field-inversion gel electrophoresis (FIGE) was applied to detect herpes simplex virus (HSV) and varicella-zoster virus (VZV) genomes in clinical specimens. The whole genomes of these viruses could be detected in small vesicle tissues by the FIGE method regardless of their clinical stages of skin lesions. And the sensitivity of the FIGE method was equivalent to that of an immunofluorescent (IF) method. These data indicated usefulness of the FIGE method to detect the whole genomes of HSV and VZV in clinical specimens.

DNA, Viral↗

Detection of cytomegalovirus in urine samples by an enzyme-linked immunosorbent assay using a monoclonal antibody against the viral 150-kilodalton protein.

McKeating et al. (J.A. McKeating, P.D. Griffiths, and J.E. Grundy, J. Gen. Virol. 68:785-792, 1987; J. A. McKeating, J. E. Grundy, Z. Varghese, and P. D. Griffiths, J. Med. Virol. 18:341-348, 1986; J. A. McKeating, S. Stagno, P. R. Stirk, and P. D. Griffiths, J. Med. Virol. 16:367-373, 1985) reported previously that beta 2 microglobulin inhibits the detection of human cytomegalovirus (CMV) in urine specimens by an enzyme-linked immunosorbent assay (ELISA) with a monoclonal antibody against the glycoprotein of CMV. They postulated that beta 2 microglobulin binds to the viral glycoproteins and masks the antigenic determinants. We developed here an ELISA method for the detection of CMV in urine by using a monoclonal antibody against the viral 150-kDa protein to capture the viral antigen. This assay detected CMV both in culture medium and in urine specifically at concentrations higher than 10(3) PFU/ml and quantitatively at concentrations higher than 10(4) PFU/ml. The sensitivity of the ELISA increased about 10-fold when peroxidase-labeled F(ab')2 from goat anti-human immunoglobulin G was used as a secondary detecting antibody in combination with concentration of the virus in urine samples by ultracentrifugation. The inhibition of ELISA by beta 2 microglobulin was not observed in this ELISA system. When 56 urine specimens from renal transplant recipients were examined for CMV antigens, the ELISA system had a sensitivity of 78% and a specificity of 97%. The positive and negative predictive values of the assay were 95 and 86%, respectively. Furthermore, CMV antigens in urine were quantitated by the assay during the course of typical CMV disease of renal transplant recipient. These results suggest strongly that the measurement of CMV antigens in urine by our rapid and quantitative ELISA system provides very useful data for the monitoring of CMV infections in renal transplant recipients and making decisions about therapy.

Antibodies, Monoclonal↗

Analysis of swinepox virus antigens using monoclonal antibodies.

Seventeen monoclonal antibodies (MAbs) against swinepox virus (SPV) were produced and characterized. These MAbs were classified into eight groups (A through H) on the basis of the molecular weight of the polypeptides which they recognized and the staining patterns of antigens in SPV-infected cells by the indirect immunofluorescent (IF) technique. The MAbs belonging to groups A, B, C and G recognized late antigens in cytoplasmic inclusion bodies with molecular weights of 97 kD, 65 kD, 48 kD and 15 kD, respectively. The MAbs belonging to groups D and H respectively recognized 35 kD and 12 kD late antigens, which first appeared in cytoplasmic inclusion bodies and spread to the cytoplasms and surface membranes of the infected cells. The MAb of group F recognized an 18 kD late antigen with granular distribution in the cytoplasm. The MAbs of group E recognized a 32 kD early antigen. Although all the MAbs belonging to the six groups (A, D through H) were specific for SPV, some of those belonging to groups B and C showed cross-reactivity with members of the other genera of poxviridae. An MAb in group B, SP14, cross-reacted with orf and rabbit fibroma viruses. Two MAbs in group C, SP24 and SP32, cross-reacted with vaccinia, cowpox, ectromelia, and rabbit fibroma viruses. These findings indicate that at least two SPV antigens contain cross-reactive epitopes with different genera of poxviridae.

Animals↗

Electron microscopic study on the development of herpesviruses.

This review is concerned with comparative electron microscopic observations of in vitro cultured cells infected with twelve kinds of herpesviruses including six human herpesviruses. Morphological differences in intranuclear particles with cores of low density among these viruses mainly due to inherent differences in the ultrastructure of particular viruses, the morphological variety of intranuclear particles of herpes simplex virus due to their different developmental stages, and unusual structures observed in cells infected with some herpesviruses are described. Viral envelopment relevant to the final step of maturation of herpesviruses and their egress from infected cells are discussed.

Animals↗

Ultra-high-resolution scanning electron microscopy of vaccinia virus and its recombinant carrying the gag gene of human immunodeficiency virus type 1.

FL cells infected with vaccinia virus or its recombinant carrying the gag gene of human immunodeficiency virus type 1 (HIV-1) were examined by ultra-high-resolution scanning electron microscopy. Virions, whether located extracellularly or intracellularly, had a brick-shaped or watermelon appearance as a whole. Extracellular virions observed on the surface of infected cells had variable surface ultrastructures depending on the manner in which particular virions were wrapped in cell membranes. Most of the intracellular naked virions adherent to the inner face of cell surface membranes clearly exhibited ridgy, rod-shaped or globular surface structures on their surface. HIV-like particles with a diameter of about 100 nm and virions of vaccinia virus were both observed distinctly on the surface of FL cells infected with the recombinant virus.

Amnion↗

Neurovirulent strains of herpes simplex virus type 1 are not necessarily competent for reactivatable latency.

Ability of two neurovirulent strains (F and +GC (LPV) Miyama) of herpes simplex virus type 1 (HSV-1) to establish and maintain reactivatable latency in trigeminal ganglia (TG) was compared after intranasal inoculation of mice. The +GC (LPV) Miyama strain showed a very low rate of virus reactivation in explant cultures of TG, while the F strain showed a high rate of reactivation. These data indicate that neurovirulent strains of HSV-1 are not always competent for reactivatable latency, although most virulent strains of HSV-1 thus far reported were competent for reactivatable latency.

Administration, Intranasal↗

Reactivatable latency of three avirulent strains of herpes simplex virus type 1 after intranasal inoculation in mice.

In order to elucidate the mechanism of latent infection of herpes simplex virus (HSV), reactivatable latency of three avirulent strains (SKO-1B, -GCr Miyama, SKa) of HSV type 1 was comparatively examined in a mouse latency model. The SKO-1B strain showed high rate of virus reactivation from explanted trigeminal ganglia without n-butyrate enhancement, while the other two strains showed a very low rate of virus reactivation in the absence of n-butyrate. In the presence of n-butyrate, however, the rate of the -GCr Miyama strain jumped to a comparable level with that of SKO-1B, although the rate of SKa remained at a low level. A more precise follow-up experiment changing the virus dose highlighted the difference of the ability to reactivate from the latent state between SKO-1B and -GCr Miyama. Virus titer in trigeminal ganglia during acute phase, infectivity to cell lines of neural origin, and susceptibility to acyclovir and phosphonoacetate were assayed to know the reasons for the variation in the ability of reactivatable latency among these strains. It was concluded that the reduced infectivity to neural cells, and limited ability of reactivatable latency shown by the SKa strain could mainly be attributed to the deficiency of thymidine kinase activity.

Acyclovir↗