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Biomedical subjects

T Kohno

Publications and source records attributed to T Kohno.

At least 19 recordsLinked to original sources

Tumor necrosis factor soluble receptors circulate during experimental and clinical inflammation and can protect against excessive tumor necrosis factor alpha in vitro and in vivo.

Tumor necrosis factor alpha (TNF alpha), a primary mediator of systemic responses to sepsis and infection, can be injurious to the organism when present in excessive quantities. Here we report that two types of naturally occurring soluble TNF receptors (sTNFR-I and sTNFR-II) circulate in human experimental endotoxemia and in critically ill patients and demonstrate that they neutralize TNF alpha-induced cytotoxicity and immunoreactivity in vitro. Utilizing immunoassays that discriminate between total sTNFR-I and sTNFR-I not bound to TNF alpha, we show that sTNFR-I-TNF alpha complexes may circulate even in the absence of detectable free TNF alpha. To investigate the therapeutic possibilities of sTNFR-I, recombinant protein was administered to nonhuman primates with lethal bacteremia and found to attenuate hemodynamic collapse and cytokine induction. We conclude that soluble receptors for TNF alpha are inducible in inflammation and circulate at levels sufficient to block the in vitro cytotoxicity associated with TNF alpha levels observed in nonlethal infection. Administration of sTNFR-I can prevent the adverse pathologic sequelae caused by the exaggerated TNF alpha production observed in lethal sepsis.

Animals

Glutamyl-tRNA synthetase from Thermus thermophilus HB8. Molecular cloning of the gltX gene and crystallization of the overproduced protein.

The gene for the Glu-tRNA synthetase from an extreme thermophile, Thermus thermophilus HB8, was isolated using a synthetic oligonucleotide probe coding for the N-terminal amino acid sequence of Glu-tRNA synthetase. Nucleotide-sequence analysis revealed an open reading frame coding for a protein composed of 468 amino acid residues (Mr 53,901). Codon usage in the T. thermophilus Glu-tRNA synthetase gene was in fact similar to the characteristic usages in the genes for proteins from bacteria of genus Thermus: the G + C content in the third position of the codons was as high as 94%. In contrast, the amino acid sequence of T. thermophilus Glu-tRNA synthetase showed high similarity with bacterial Glu-tRNA synthetases (35-45% identity); the sequences of the binding sites for ATP and for the 3' terminus of tRNA(Glu) are highly conserved. The Glu-tRNA synthetase gene was efficiently expressed in Escherichia coli under the control of the tac promoter. The recombinant T. thermophilus Glu-tRNA synthetase was extremely thermostable and was purified to homogeneity by heat treatment and three-step column chromatography. Single crystals of T. thermophilus Glu-tRNA synthetase were obtained from poly(ethylene glycol) 6000 solution by a vapor-diffusion technique. The crystals diffract X-rays beyond 0.35 nm. The crystal belongs to the orthorhombic space group P2(1)2(1)2(1), with unit-cell parameters of a = 8.64 nm, b = 8.86 nm and c = 8.49 nm.

Adenosine Triphosphate

Sensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) for (anti-human T-cell leukemia virus type I) IgG in serum using a synthetic peptide, Cys-env gp46(188-224), as antigen.

A sensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) for (anti-human T-cell leukemia virus type I) IgG (anti-HTLV-I IgG) in serum using a synthetic peptide, Cys-env gp46(188-224) of HTLV-I, is described. Anti-HTLV-I IgG in test serum, which had been incubated with excess of inactive beta-D-galactosidase to eliminate interference by anti-beta-D-galactosidase antibodies, was reacted simultaneously with 2,4-dinitrophenyl-bovine serum albumin-Cys-env gp46 (188-224) conjugate and Cys-env gp46 (188-224)-beta-D-galactosidase conjugate. The complex formed consisting of the three components was trapped onto polystyrene balls coated with affinity-purified (anti-2,4-dinitrophenyl group) IgG. After washing to eliminate nonspecific IgG in the test serum and excess of the beta-D-galactosidase conjugate, the complex was eluted from the polystyrene balls with epsilon N-2,4-dinitrophenyl-L-lysine and transferred to polystyrene balls coated with affinity-purified (anti-human IgG gamma-chain) IgG. beta-D-Galactosidase activity bound to the (anti-human IgG gamma-chain) IgG-coated polystyrene balls was assayed by fluorometry. This assay was more sensitive and useful than the immune complex transfer enzyme immunoassay using Cys-Arg-env gp46(188-209) and other methods using HTLV-I as antigen.

Amino Acid Sequence

Sensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) for (antihuman T-cell leukemia virus type I) immunoglobulin G in serum using a synthetic peptide, Ala-Cys-Env gp46(237-262), as antigen.

A sensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) for (antihuman T-cell leukemia virus type I) IgG (anti-HTLV-I IgG) in serum using a synthetic peptide, Ala-Cys-env gp46(237-262), of HTLV-I is described. Anti-HTLV-I IgG in test serum, which had been incubated with excess of inactive beta-D-galactosidase to eliminate interference by anti-beta-D-galactosidase antibodies, was reacted simultaneously with 2,4-dinitrophenyl-bovine serum albumin-Ala-Cys-env gp46(237-262) conjugate and Ala-Cys-env gp46(237-262)-beta-D-galactosidase conjugate. The complex formed consisting of the three components was trapped onto polystyrene balls coated with affinity-purified (anti-2,4-dinitrophenyl group) IgG. After washing to eliminate nonspecific IgG in the test serum and excess of the beta-D-galactosidase conjugate, the complex was eluted from the polystyrene balls with epsilon N-2,4-dinitrophenyl-L-lysine and transferred to polystyrene balls coated with affinity-purified (anti-human IgG gamma-chain) IgG. beta-D-galactosidase activity bound to the (anti-human IgG gamma-chain) IgG-coated polystyrene balls was assayed by fluorometry. This assay was more sensitive than other methods using HTLV-I as antigen, and most negative and positive sera were discriminated. However, some results appeared to be false positive or false negative, and the peptide, Ala-Cys-env gp46(237-262), was suggested to be useful, in combination with other peptides, for improving the reliability of serodiagnosis by separately demonstrating antibodies against as many different epitopes of HTLV-I as possible.

Amino Acid Sequence

Sensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) for (anti-human T-cell leukemia virus type I) IgG in serum using recombinant gag p24(14-214) as antigen.

A sensitive enzyme immunoassay (immune complex transfer enzyme immunoassay) for (anti-human T-cell leukemia virus type I) IgG (anti-HTLV-I IgG) in serum using recombinant gag p24(14-214) of HTLV-I is described. The recombinant gag p24(14-214) is soluble in the absence of detergents and allows the use of enzymes other than horseradish peroxidase as a label in the assays. The usefulness of recombinant gag p24(14-214) was examined with 305 sera characterized by other methods including gelatin particle agglutination, enzyme-linked immunosorbent assay (ELISA) using HTLV-I, and Western blotting. This assay was more sensitive than other methods using HTLV-I as antigen. The specificity could be tested by preincubation of test serum with excess of the recombinant protein. Most of negative and positive sera were discriminated. However, some results appeared to be false-positive or false-negative, and recombinant gag p24(14-214) was suggested to be useful, when used with other recombinant proteins and/or peptides, for improving the reliability of serodiagnosis by separately demonstrating antibodies against as many different epitopes of HTLV-I as possible. Anti-HTLV-I IgG in test serum, which had been incubated with excess of inactive beta-D-galactosidase to eliminate interference by anti-beta-D-galactosidase antibodies, was reacted simultaneously with 2,4-dinitrophenyl-bovine serum albumin-recombinant gag p24(14-214) conjugate and recombinant gag p24(14-214)-beta-D-galactosidase conjugate. The complex formed consisting of the three components was trapped onto polystyrene balls coated with affinity-purified (anti-2,4-dinitrophenyl group) IgG.(ABSTRACT TRUNCATED AT 250 WORDS)

Evaluation Studies as Topic

A sensitive sandwich enzyme immunoassay for gamma-seminoprotein and its application to sex discrimination of blood and bloodstains.

A sensitive sandwich enzyme immunoassay for gamma-seminoprotein (p30, prostate-specific antigen) is described for sex discrimination of blood and bloodstains. A polystyrene ball coated with rabbit anti-gamma-seminoprotein IgG was incubated with gamma-seminoprotein and, after washing, with affinity-purified rabbit anti-gamma-seminoprotein Fab'-horseradish peroxidase conjugate. Peroxidase activity bound to the polystyrene ball was assayed by fluorometry using 3-(4-hydroxyphenyl)propionic acid as hydrogen donor. The detection limit of gamma-seminoprotein was 0.15 pg per assay. Blood levels of gamma-seminoprotein, measured using 1-10 microliters of blood, were at least 3.3-fold higher in male adults than in female adults. The ratio of gamma-seminoprotein in terms of pg to hemoglobin in terms of mg was significantly higher in male adults than in female adults. Thus, the measurement of gamma-seminoprotein or both gamma-seminoprotein and hemoglobin was useful for the discrimination of blood and bloodstains of male and female adults, although with some limitations.

Adolescent

Ordering of human chromosome 3p markers by radiation hybrid mapping.

To construct a panel of radiation hybrids (RHs) for human chromosome 3p mapping, mouse microcell hybrid cells, A9(neo3/t)-5, containing a single copy of human chromosome 3p with pSV2neo plasmid DNA integrated at 3p21-p22 were irradiated and fused to mouse A9 cells. A panel of 96 RHs that retain several sizes and portions of human chromosome 3p segments was used to map 25 DNA markers for chromosome 3p. Eight of them, H28, H29, H32, H33, H35, H38, H48, and H64, were cloned from Alu-primed PCR products using A9(neo3/t)-5 cell DNA as a template. The most likely order of the 24 markers, except for H28, based on the statistical ordering method proposed by Falk, was cen-D3S4-D3S3-D3S30-H29-D3S13-D3S2-+ ++H48-D3F15S2-D3S32-D3S23-CCK-H35-H33- D3S11-D3S12-RARB-THRB(ERBA2-pBH302)- H64-H38-RAF1-D3S18-H32-D3S22-pter. The order and location of these markers were in good agreement with those previously determined by other mapping methods, suggesting that a panel of these 96 RHs is a valuable source for a rapid mapping of human chromosome 3p markers.

Chromosome Mapping

[Dye leakage in indocyanine green fundus angiography of a laser photocoagulated lesion].

Argon green laser photocoagulation was performed on adult pigmented rabbit eyes at various intensities (parameters:500 microns spot size, 0.2 sec. exposure, and 70-, 100-, 150- and 200-mW power levels), and fluorescein and indocyanine green (ICG) angiography was performed within one hour after coagulation. Each coagulum of ICG angiography was hypofluorescent in the early phase and brightly fluorescent in the late phase. The fluorescein and ICG dyes spread from the periphery to the center in the moderate and large coagula. The characteristic finding of ICG angiography was expansion of ICG dye around the coagulum, regardless of the degree of the coagulation. This ICG leakage was intra-choroidal because there was no fluorescein dye leakage around the coagulum. We concluded that the ICG dye leakage shows damage to the choroidal vessels due to laser photocoagulation, and is not related to the barrier function of the retinal pigment epithelium.

Animals

[Histopathological study of retinopathy of prematurity].

Using light and electron microscopy, we studied the histopathological findings of retinopathy of prematurity (zone II, stage 3). The infant was born at 32-week gestational period and the birth weight was 1,255 g. He suffered from intracranial hemorrhage and hydrocephalus, and died at 78 days old. The ophthalmoscopic findings of both eyes at 72 days after birth showed that the intermedia was clear. The optic disc and posterior pole showed normal findings. Ridge formation with non-vascularized retina was seen at the equator of all quadrants of the fundus except the nasal quadrant of retina. Light and electron microscopic studies showed the following; in the most periphery of the vascularized retina, endothelial cell proliferation with the capillary lumen of glomeruloid tufts (rearguard) were seen. There were the aggregation of immature mesenchymal cells (vanguard) near to the rearguard. The cytoplasmic organelles of spindle cells in the non-vascularized retina were different from those of surrounding glial cell. Therefore, they were thought to be mesenchymal cells in the non-vascularized retina. Between the vanguard and the rearguard, the proliferative tissues composed of immature endothelial cells and mesenchymal cells extended into the vitreous body through the inner limiting membranes, and they formed the fibrovascular membranes on the retina. It was concluded that fibrovascular proliferation on the retinal surface in the active case of retinopathy of prematurity was composed of immature endothelial cells with vascular lumen and mesenchymal cells.

Humans

[Alloprotein].

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Amino Acid Sequence

[Indocyanine green videoangiography of the choroidal circulation in the experimental retinal opacity induced by blunt trauma].

Retinal opacity was experimentally induced by blunt trauma to the rabbit eye and the damage to the choroidal circulation was investigated immediately thereafter by using indocyanine green (ICG) videoangiography. Ten pigmented rabbit eyes were used. In the early phase, the defect of choroidal inflow (10 eyes), the twitch of the choroidal artery (2 eyes) and the reflux of the vortex vein (5 eyes) could be observed dynamically. The defect of choroidal inflow showed its peak around the point where the choroidal arteries branched off from ciliary arteries and disappeared within a few second to over ten seconds. The reflux from the vortex vein seemed to be important as collateral pathway. In the middle phase, several points of ICG leakage were observed around the apex of the delayed area of choroidal circulation (9 eyes). This ICG leakage was intra-choroidal and seemed to be caused by the breakdown of the great vessels at the outer layer of the choroid. This study indicates that ICG videoangiography could observe various choroidal circulatory disturbances following blunt trauma and may be useful in delineating the pathogenesis of retinal opacity.

Animals

[Lymphangiomyomatosis with a large retroperitoneal tumor].

A case of lymphangiomyomatosis (LAM) in a 35-year-old woman is reported. Because she was already severely dyspneic when she was admitted to our hospital, neither TBLB nor open lung biopsy was performed, and no accurate diagnosis was made. She died of respiratory failure three years after the development of exertional dyspnea, and autopsy revealed LAM. Pneumothorax, a well-known and frequent complication of LAM, did not occur until one month prior to her death. Although pneumothorax frequently complicates LAM, there are a few reports of cases in which pneumothorax did not occur during the course of the disease. We emphasize that LAM should be considered in the differential diagnosis of diffuse interstitial lung disease, even when the patient has no pneumothorax. The retroperitoneal tumor (15 x 10 x 10 cm), which was evident clinically, was later shown to be intra-abdominal involvement of LAM. Although only a few cases of LAM with a large retroperitoneal tumor have been reported, minor intra-abdominal involvement is relatively common. This case also suggested that the finding of a retroperitoneal tumor may be a diagnostic clue in LAM.

Adult

Immune complex transfer enzyme immunoassay for (anti-human T-cell leukemia virus type I) IgG in serum using a synthetic peptide, Env gp46(188-209), as antigen.

An immune complex transfer enzyme immunoassay for (anti-human T-cell leukemia virus type I) IgG (anti-HTLV-I IgG) in serum using a chemically and safely synthesized peptide, env gp46(188-209), is described. Anti-HTLV-I IgG in test serum, which had been incubated with excess of inactive beta-D-galactosidase to eliminate interference by anti-beta-D-galactosidase antibodies, was reacted simultaneously with dinitrophenyl bovine serum albumin-env gp46(188-209) conjugate and env gp46(188-209)-beta-D-galactosidase conjugate. The complex formed of the three components was trapped onto polystyrene balls coated with affinity-purified (anti-dinitrophenyl group) IgG. After washing to eliminate nonspecific IgG in the test serum and excess of the beta-D-galactosidase conjugate, the complex was eluted from the polystyrene balls with dinitrophenyl-L-lysine and transferred to polystyrene balls coated with affinity-purified (anti-human IgG gamma-chain) IgG. beta-D-Galactosidase activity bound to the (anti-human IgG gamma-chain) IgG-coated polystyrene balls was assayed by fluorometry. This assay was sensitive and detected anti-HTLV-I IgG in serum samples which were negative by the conventional enzyme immunoassay and Western blotting. And the specificity of this assay was confirmed by preincubation of test serum with excess of env gp46(188-209). However, some disadvantages were also noted.

Antibodies, Viral

Use of inactive beta-D-galactosidase for elimination of interference by anti-beta-D-galactosidase antibodies in immune complex transfer enzyme immunoassay for anti-thyroglobulin IgG in serum using beta-D-galactosidase from Escherichia coli as label.

A novel enzyme immunoassay (immune complex transfer enzyme immunoassay) for anti-thyroglobulin IgG using beta-D-galactosidase from Escherichia coli as label was reported previously. This immunoassay was highly sensitive in demonstrating anti-thyroglobulin IgG not only in all patients with Graves' disease and chronic thyroiditis but also in a large proportion of healthy subjects. However, the detection of anti-thyroglobulin IgG at low levels in some serum samples was difficult, probably due to the presence of anti-beta-D-galactosidase antibodies. In the present study, the use of inactive beta-D-galactosidase was tested for elimination of interference by anti-beta-D-galactosidase antibodies. Preincubation of serum samples with excess of inactive beta-D-galactosidase resulted in sufficiently low backgrounds to detect low levels of anti-thyroglobulin IgG with little effect on the dose-response of anti-thyroglobulin IgG. As a result, it was revealed that anti-thyroglobulin IgG was present in almost all healthy subjects as well as all patients with Graves' disease and chronic thyroiditis.

Adult

Immune complex transfer enzyme immunoassay for (anti-human T-cell leukemia virus type I) IgG in serum using a synthetic peptide, Cys-Gag p19(100-130), as antigen.

An immune complex transfer enzyme immunoassay for (anti-human T-cell leukemia virus type I) IgG (anti-HTLV-I IgG) in serum using a synthetic peptide, cys-gag p19(100-130), is described. Anti-HTLV-I IgG in test serum, which had been incubated with excess of inactive beta-D-galactosidase to eliminate interference by anti-beta-D-galactosidase antibodies, was reacted simultaneously with 2,4-dinitrophenyl bovine serum albumin-cys-gag p19(100-130) conjugate and cys-gag p19(100-130)-beta-D-galactosidase conjugate. The complex formed of the three components was trapped onto polystyrene balls coated with affinity-purified (anti-2,4-dinitrophenyl group) IgG. After washing to eliminate nonspecific IgG in the test serum and excess of the beta-D-galactosidase conjugate, the complex was eluted from the polystyrene balls with epsilon N-2,4-dinitrophenyl-L-lysine and transferred to polystyrene balls coated with affinity-purified (anti-human IgG gamma-chain) IgG. Beta-D-Galactosidase activity bound to the (anti-human IgG gamma-chain) IgG-coated polystyrene balls was assayed by fluorometry. This assay was 100-fold more sensitive than the conventional enzyme immunoassay, in which a cys-gag p19(100-130)-bovine serum albumin-coated polystyrene ball was incubated with test serum and, after washing, with (anti-human IgG gamma-chain) Fab'-peroxidase conjugate. The degree of inhibition by preincubation of test sera with excess of cys-gag p19(100-130) in combination with an appropriate cut-off value for the fluorescence intensity of bound beta-D-galactosidase activity discriminated almost all seropositive samples from seronegative ones.

Adolescent

Sensitive detection of anti-human T-cell leukemia virus type I IgG in human serum by a novel enzyme immunoassay (immune complex transfer enzyme immunoassay) using recombinant gag-env hybrid protein as antigen.

Anti-human T-cell leukemia virus type I IgG (anti-HTLV-I IgG) in human serum was detected with high sensitivity by a novel enzyme immunoassay (immune complex transfer enzyme immunoassay) using recombinant gag(14-139)-env(197-295) hybrid protein. Anti-HTLV-I IgG in test serum was reacted simultaneously with dinitrophenyl bovine serum albumin-recombinant gag-env hybrid protein conjugate and recombinant gag-env hybrid protein-horseradish peroxidase conjugate. The complex formed of the three components was trapped onto polystyrene balls coated with affinity-purified anti-dinitrophenyl group IgG. After washing the polystyrene balls to eliminate nonspecific IgG in the test serum and excess of the peroxidase conjugate, the complex was eluted from the polystyrene balls with dinitrophenyl-L-lysine and transferred to polystyrene balls coated with affinity-purified anti-human IgG gamma-chain IgG. Peroxidase activity bound to the polystyrene balls was remarkably reduced by transfer of the complex and the detection limit of anti-HTLV-I IgG in serum was lowered 300 to 3000-fold compared with that by Western blotting and the conventional enzyme immunoassay, in which a recombinant gag-env hybrid protein-coated polystyrene ball was incubated with the test serum and, after washing, with anti-human IgG gamma-chain Fab'-peroxidase conjugate. The immune complex transfer enzyme immunoassay may overcome some difficulties with currently used methods.

Gene Products, env

Development of ultrasensitive enzyme immunoassay reviewed with emphasis on factors which limit the sensitivity.

Development of ultrasensitive enzyme immunoassays for antigens, haptens and antibodies is reviewed with emphasis on factors which limit the sensitivity. One of the most important conditions for ultrasensitive immunoassays is the use of non-competitive solid phase assay systems rather than competitive ones. Although non-competitive immunoassays are available for antigens and antibodies, there are only competitive immunoassays for hapten molecules which can not be bound simultaneously by two different antibodies. In order to overcome this difficulty, methods have been developed to derivatize haptens with amino groups so that the derivatized haptens may be measured by two-site assays. The other condition for ultrasensitive immunoassays is to minimize the non-specific binding of labelled reactants. This has been achieved by developing methods to transfer the complex of analytes and labelled reactants from solid phase to solid phase without dissociation. Thus, the sensitivity for antigens, haptens and antibodies has been markedly improved. However, the sensitivity for the detection of label enzymes remains to be improved.

Antibodies