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Biomedical subjects

T Sugano

Publications and source records attributed to T Sugano.

At least 109 records · Page 6Linked to original sources

Different preparations of zymosan induce glycogenolysis independently in the perfused rat liver. Involvement of mannose receptors, peptide-leukotrienes and prostaglandins.

Zymosan (non-boiled) induced glycogenolysis biphasically, with no lag time, in the perfused rat liver. After the zymosan was boiled, it could be separated into two fractions, both of which stimulated glycogenolysis independently. The soluble fraction of boiled zymosan (zymosan sup) showed homologous desensitization, indicating that zymosan sup-induced glycogenolysis is a receptor-mediated event. Mannan (polymannose), which is known to be a biologically active component of zymosan, induced a glycogenolytic response similar to that produced by zymosan sup, and desensitized the response to the latter. Preinfusion of platelet-activating factor (PAF, 20 nM) or isoprenaline (10 microM) did not extinguish the glycogenolytic response to zymosan sup, while the response to a secondary infusion of PAF was blocked. The glycogenolytic response to zymosan sup was completely inhibited by nordihydroguaiaretic acid (NDGA, 10 microM), a lipoxygenase inhibitor, and by ONO-1078 (100 ng/ml), a leukotriene (LT) D4 receptor antagonist. On the other hand, the glycogenolytic effect of zymosan pellet (the particulate fraction of boiled zymosan) was not affected by preinfusion of zymosan sup, and was inhibited by ibuprofen (20 microM), a cyclo-oxygenase inhibitor. Prostaglandins (PGs) detected in the perfusate were augmented with infusion of zymosan pellet. Opsonization of the zymosan pellet by serum (complement) enhanced the glycogenolytic response without a lag period, and with a concomitant enhancement of PG output. Correlations between glucose production and PGs were r = 0.832 (PGD2), r = 0.872 (PGF2 alpha), r = 0.752 (PGE2) and r = 0.349 (6-oxo-PGF1 alpha). The glycogenolytic response to non-boiled zymosan was delayed and the biphasic glycogenolytic response was not observed when mannan was infused first. NDGA mimicked the effects of the preinfusion of mannan, while ibuprofen had no effect on the non-boiled-zymosan-induced glycogenolysis. These results suggest: (1) that non-boiled zymosan stimulates glycogenolysis through a mannose receptor-dependent, but unidentified, pathway, (2) that zymosan sup induces glycogenolysis via mannose receptor activation through the production of peptide-LTs but not PAF, and (3) that zymosan pellet causes glycogenolysis through the production of prostanoids, which is enhanced in the presence of complement.

Animals↗

Modified preservation of all annular-papillary continuity in replacement of the calcified mitral valve.

The technique described here is a modification of the mitral valve replacement with preservation of chordae tendineae for calcified mitral stenosis. After commissurotomy, the middle portion of the anterior leaflet is excised to get two parts with accessible chordal insertion. Each thickened and calcified segment is debrided by means of an ultrasonic tool and then attached to the mural leaflet. Finally mitral valve replacement is carried out. This procedure will extend surgical indication of chordae-sparing methods in mitral valve replacement for mitral stenosis.

Calcinosis↗

Effects of nerve stimulation and zymosan on glycogenolysis in perfused livers from cold-exposed rats.

The effects of sympathetic nerve stimulation and zymosan (cell wall particles from yeast) on glycogenolysis were studied in perfused livers from rats kept for 5 and 20 days at 4 degrees C. The rate of glycogenolysis induced by nerve stimulation decreased significantly without any decrease in norepinephrine outflow during cold exposure, and the rate induced by norepinephrine did not change. By contrast, the rate of zymosan-induced glycogenolysis increased markedly during cold exposure. The rats with denervated hepatic nerves did not show the increased response to zymosan. In cold-exposed rats, both mepacrine and ibuprofen inhibited the effects of zymosan and of nerve stimulation without any inhibition of the outflow of norepinephrine. Neither inhibitor had any effect on the effects of norepinephrine. The metabolic effects of nerve stimulation and zymosan were not additive in cold-exposed rats. These results suggest that cold exposure may modulate the metabolism of arachidonic acid in Kupffer cells via hepatic nerve and decrease the eicosanoid-dependent glycogenolysis by nerve stimulation.

Animals↗

[Purification and reactivity of human lung mast cells].

To clarify the pathogenesis of allergic pulmonary diseases by analysis of the reactivity of human lung mast cells, we established a method of dispersion and purification of mast cells from human lung tissue. This method consisted of 4 steps; 1) mincing by scissors, 2) enzymatic treatment by a pronase-chymopapain and collagenase-elastase mixture, 3) percoll centrifugation and 4) exclusion of adherent cells. Using this method, dispersed human lung mast cells were obtained with 38.8% purity and more than 95% viability. These mast cells contained 4.1 pg of histamine per cell, which showed these cells had mild spontaneous histamine release after treatment. The mast cells released histamine in a dose-dependent manner after treatment with calcium ionophore A 23187 and anti-IgE, and these phenomena were dependent on extracellular calcium ions. However, the cells did not release histamine with less than 100 micrograms/ml of compound 48/80. These results indicate that the human lung mast cells obtained by this method are useful to make immunological and pharmacological analyses in allergic lung diseases.

Humans↗

[Effect of cervical mucus on zona induced acrosome reaction of human spermatozoa].

Zona induced acrosome reaction of human spermatozoa was examined by FITC labelled PSA staining. When human spermatozoa were incubated with salt stored human eggs for 6 hours, the percentage of acrosome reacted spermatozoa was 35.7 +/- 17.7%. The zona induced acrosome reaction rate was significantly higher than that of the spontaneous acrosome reaction (2.8 +/- 1.9%). These date indicate that the zona pellucida of the human egg have the ability to induce the acrosome reaction as in other mammalian zona. Additionally the effect of cervical mucus on the acrosome reaction was examined. Spermatozoa which passed through the cervical mucus were collected and examined for the rate of spontaneous and zona induced acrosome reaction. The rate of spontaneous acrosome reaction was almost the same as the control, but the rate of zona induced acrosome reaction (51.6 +/- 6.8%) was significantly higher than that of the control (25.6 +/- 9.4%). These data suggest that spermatozoa appear to complete capacitation by passing through cervical mucus.

Acrosome↗

Identification of a specific protein factor defective in group A xeroderma pigmentosum cells.

A protein factor which corrects the defect in xeroderma pigmentosum cells belonging to complementation group A (XP-A cells) was detected in a cell extract prepared from calf thymus. The activity of this factor was measured as the amount of unscheduled DNA synthesis (UDS) reappearing in UV-irradiated XP-A cells after microinjection of the extract. The native molecular mass of this factor was estimated to be 80 kDa by gel-filtration and 25 kDa by glycerol gradient centrifugation. The activity was, however, recovered at a position corresponding to 43 kDa after renaturation on an SDS-PAGE gel. The isoelectric point was determined to be approximately 7.5 by measuring the activity after renaturation on an IEF gel. These values were obtained with a partially purified sample. A spot corresponding to these values was detected on two-dimensional gel electrophoresis with a highly purified sample recovered from an SDS-PAGE gel. The purified protein stimulated UDS specifically in the XP-A cells and endowed the cells with a normal level of UV-resistance. The XP-A cells injected with the factor also showed a normal level of UDS after treatment with either 4HAQO or psoralen plus UV-A. This factor (XP-A complementing factor; XP-ACF) may be involved in the repair of DNA damage induced by various agents.

Animals↗

A human monoclonal antibody against varicella-zoster virus glycoprotein III.

Hybridomas producing human monoclonal antibodies (HMAbs) against varicella-zoster virus (VZV) were generated by fusing murine myeloma cells with human lymphocytes immunized in vitro. An assay system was developed to select anti-glycoprotein (gp)III HMAbs from the pool of anti-VZV HMAbs. A murine anti-gpIII MAb, 4B7, did not react with a VZV-infected cell homogenate, but did react with a VZV-infected cell monolayer, whereas anti-gpI and anti-gpII MAbs reacted with both antigens. Hybridomas were screened to obtain HMAbs having a reaction profile similar to that of 4B7 and one such clone, V3, stably produces human IgG1 (kappa). HMAb V3 immunoprecipitated a VZV antigen of 115K to 120K, which was not immunoabsorbed by an anti-gpII HMAb, implying that V3 recognizes gpIII. V3 neutralized VZV independently of complement, unlike anti-gpI and anti-gpII HMAbs. All five strains of VZV tested were completely neutralized by V3, and the dose of V3 required to reduce the number of virus plaques by 50% ranged from 0.027 to 0.15 micrograms/ml. V3 was also able to inhibit the spread of virus infection from infected to uninfected cells, whereas anti-gpI and anti-gpII HMAbs could not. In addition, V3 mediated antibody-dependent cellular cytotoxicity but not complement-dependent cytotoxicity of VZV-infected cells. The results suggest that an anti-gpIII HMAb may provide a new means of passive immunoprophylaxis and also help to identify an antigenic epitope appropriate for a subunit vaccine.

Animals↗

Effects of calmodulin antagonists on hydrogen-translocating shuttles in perfused rat liver.

The effects of calmodulin antagonists on the capacity of hydrogen-translocating shuttles were studied in the perfused rat liver. The capacity was estimated by measuring the changes in the rate of production of glucose from sorbitol during the oxidation of ethanol [T. Sugano, T. Ohta, A. Tarui, and Y. Miyamae. Am. J. Physiol. 251 (Endocrinol. Metab. 14): E385-E392, 1986]. Thyroxine given to intact rats increased the activity of alpha-glycerophosphate dehydrogenase (alpha-GPD). Glucocorticoid replacement in adrenalectomized rats decreased the activity of the alpha-GPD to values obtained after treatment with PTU. In either thyroxine-treated or steroid-replaced rats, the capacity of hydrogen-translocating shuttles increased markedly. However, N-(6-aminohexyl)-5-chloro-1-naphthalenesulfonamide (W-7), trifluoperazine, and chlorpromazine inhibited the increased capacity in steroid-replaced rats and had no effect on the increased capacity in thyroxine-treated rats. W-7 inhibited the stimulatory effects of norepinephrine on the capacity of the malate-aspartate shuttle without inhibition of efflux of intracellular Ca2+. The stimulatory effects of vasopressin on the malate-aspartate shuttle were also inhibited by W-7, trifluoperazine, and chlorpromazine. The results suggest that the malate-aspartate shuttle may be regulated by Ca(2+)-calmodulin.

Adrenalectomy↗

Acute and chronic ethanol treatment in vivo increases malate-aspartate shuttle capacity in perfused rat liver.

The effects of acute and chronic treatment with ethanol on transport of reducing equivalents into mitochondria via the malate-aspartate shuttle were studied in perfused rat liver. The shuttle capacity was estimated from the decrease in rates of glucose production from the reduced substrate sorbitol caused by an increase in the NADH/NAD+ ratio in the cytosol due to metabolism of ethanol. The greater the capacity of the malate-aspartate shuttle, the smaller the inhibition of glucose synthesis by ethanol. Glucose synthesis was decreased about 2-fold less in livers from fasted rats treated acutely 2.5 h earlier with ethanol than in untreated controls. Chronic treatment with ethanol for 3-5 weeks prevented completely the decrease in glucose synthesis from sorbitol due to ethanol oxidation. Rates of ethanol uptake were elevated significantly from 69 +/- 7 mumols/g/h in livers from control rats up to 92 +/- 7 mumols/g/h in livers from SIAM rats. Similarly, rates of ethanol uptake were stimulated by chronic ethanol treatment from 71 +/- 6 to 222 +/- 15 mumols/g/h; this increase was largely sensitive to aminooxyacetate. Taken together, these data indicate that flux of reducing equivalents over the malate-aspartate shuttle is increased by both acute and chronic treatment with ethanol and that movement of reducing equivalents from the cytosol into the mitochondria via the malate-aspartate shuttle is an important rate determinant in hepatic ethanol oxidation.

Alanine↗

Preparation of human monoclonal antibodies against a cytomegalovirus glycoprotein complex of 130 and 55 kDa.

Nine human monoclonal antibodies (MAbs) with neutralization activity against cytomegalovirus (CMV) were obtained by screening human MAbs using a CMV glycoprotein complex of 130 and 55 kDa (gp130/55). The gp130/55 antigen was purified by immunoaffinity chromatography and the purified antigen used to detect anti-gp130/55 MAbs in an enzyme-linked immunosorbent assay. Relatively few of the human anti-CMV MAbs were directed against gp130/55 but all showed high neutralization activities to a variety of clinical isolates with titers (ED50 values) ranging from 0.15 to 7.9 micrograms/ml. Six of the nine anti-gp130/55 MAbs required complement for virus neutralization. Such human MAbs may prove to be useful for passive immunotherapy against CMV infection.

Antibodies, Monoclonal↗

Human monoclonal antibodies to the human immunodeficiency virus type 1 (HIV-1) transmembrane glycoprotein gp41 enhance HIV-1 infection in vitro.

Three of 16 human monoclonal antibodies (hu-mAbs) enhanced human immunodeficiency virus type 1 (HIV-1) infection of MT-2 target cells by means of a mechanism that is dependent on complement. Enhanced infections are characterized by an increase in cytopathic effects and antigen synthesis as well as an increase in the production of progeny virus as detected by release of reverse transcriptase activity and infectious virus into the culture medium. Analyses by radioimmunoprecipitation, Western blot, and ELISA using the pENV9 envelope fragment localize the antigenic specificities of these three hu-mAbs to the N-terminal two-thirds of the transmembrane protein gp41. Competitive binding experiments indicate that the hu-mAbs are reactive with immunodominant epitopes of gp41 recognized by sera from essentially all HIV-1-infected subjects. Combination dose-effect experiments demonstrate that these hu-mAbs can act synergistically in vitro to enhance HIV-1 infection. These data demonstrate that hu-mAbs directed against the HIV-1 transmembrane glycoprotein gp41 can enhance HIV-1 infection in vitro. The availability of these reagents allows for the mapping of enhancing epitopes on HIV-1 and provides a means for studying whether deletion of such enhancing epitopes from candidate HIV-1 vaccines might improve the protective immune response to HIV-1 in immunized humans and chimpanzees.

Antibodies, Monoclonal↗

Characterization of human anti-cytomegalovirus monoclonal antibody as biologics.

Human anti-cytomegalovirus (CMV) monoclonal antibody designated C23 was purified from the culture fluid of hybridoma cells which were generated by cell fusion of human lymphocytes and mouse myeloma cells. The purified C23 was found to be identical to human gammaglobulin (HGG) in sodium dodecyl sulfate-polyacrylamide gel electrophoresis under both reducing and non-reducing conditions and in gel filtration chromatography. C23 was not contaminated with either aggregated IgG molecules or mouse immunoglobulin chains. In addition, the formulated C23 preparation showed an anti-complement activity low enough to permit its use as a biologic. A virus neutralization titer of C23 was about 1,000 times higher than the titers of HGG preparations. All the tested CMV strains were susceptible to neutralization by C23 and this neutralization was not affected by addition of either beta 2 microglobulin or fresh human serum. These results suggest that human monoclonal antibody C23 is as safe as conventional HGG preparations which have been used in humans, and much more effective in providing host protection against CMV infection.

Animals↗

A hybridoma producing human monoclonal antibody specific for glycoprotein 120 kDa of human immunodeficiency virus (HIV-1.

A stable hybridoma producing anti-HIV human monoclonal antibody (HMCA) was generated by fusing CD3-depleted human splenic lymphocytes from an HIV sero-positive donor with the mouse myeloma cell line P3x63AgU1. The resultant hybridoma has been secreting IgG1, lambda chain for over nine months at a rate of 2.5 micrograms/10(6)cells/day. The HMCA shows specific reactivity in ELISA using HIV-infected cell lysates. Immunofluorescence tests have indicated that this HMCA binds specifically to the surface of H9 and C3 HIV/HTLVIIIb infected cells, HIV/N1T infected CEM cells and to MoT cells infected with an HIV clinical isolate. Western blotting revealed recognition of glycoproteins 120 and 160 kDa of HIV by the HMCA. Although this HMCA demonstrated no neutralizing activity, the production of an anti-HIV HMCA specific for glycoprotein 120 kDa indicates the possibility that a neutralizing HMCA can be developed as further fusions with lymph nodes and spleens from HIV positive donors are performed.

Antibodies, Monoclonal↗

Gluconeogenesis in perfused livers from dexamethasone-treated chickens.

Gluconeogenesis was studied in hemoglobin-free perfused livers from chickens that had received daily injections of dexamethasone sulfate for 5 days. Dexamethasone increased to approximately 160% the level of plasma glucose and doubled the content of hepatic glycogen in fed chickens. In the isolated perfused livers from chickens starved for 48 h after the last dexamethasone injection, the rates of production of glucose from lactate decreased by approximately 30% and biphasic changes in glucose production from fructose proceeded in parallel with biphasic changes in the production of lactate and pyruvate. Quinolinate had no effect on gluconeogenesis in both groups. NH4Cl markedly inhibited the production of glucose from pyruvate-lactate mixtures in dexamethasone-treated chickens but stimulated in controls. Aminooxyacetate reversed the effects of NH4Cl in dexamethasone-treated chickens. The data presented provide evidence indicating that the reaction of mitochondrial alanine aminotransferase plays an important role in the regulation of the hepatic gluconeogenesis in dexamethasone-treated chickens.

Alanine Transaminase↗

[Adrenomedullary epinephrine excretion and myocardial norepinephrine release during cardiopulmonary bypass].

It has long been known that shock or surgical stress promotes an epinephrine (E) excretion from the adrenomedullary glands. In fourteen adult cardiac patients, plasma E values in both superior vena cava (SVC) cannula and inferior vena cava (IVC) cannula during total cardiopulmonary bypass (CPB) are studied at three stages, before aortic cross clamp (pre AXC), after release of aortic cross clamp (post AXC) and at 34 degrees C rectal temperature in rewarming (34 degrees C RT). Although E values in both SVC and IVC are slightly higher values than normal in pre AXC, they increase sharply to peaked values at post AXC and decline uniformly close to normal at 34 degrees C RT. IVC-E is constantly significantly higher (statistically) than SVC-E at each of all three stages. It is strongly suggested that E response to CPB is mainly originated from the adrenomedullary glands, and cardiac reflex which has sympathetic efferent limbs triggered by myocardial ischemia can indicate the increase in E during AXC. Myocardial norepinephrine (NE) release in heart ischemia such as acute myocardial infarction has been generally accepted. To examine whether myocardial NE release occurs during AXC, if there is the association of NE release with any clinical parameters, the second investigation is done in twenty-six adult cardiac patients. Plasma NE values in both the radial artery (A) and the coronary sinus (CS) are measured at six stages, pre AXC (stage 1), post AXC (stage 2), post CPB (stage 3), three hours after off CPB (stage 4), six hours off CPB (stage 5) and twelve hours off CPB (stage 6).(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Medulla↗

Human monoclonal antibody against glycoproteins of human immunodeficiency virus.

We have established a program to make human monoclonal antibodies to the human immunodeficiency virus (HIV). Lymphocytes of lymph nodes from patients with the acquired immunodeficiency syndrome (AIDS) related complex (ARC) spontaneously produced antibodies to HIV in vitro and their antibody production was suppressed by culturing them in the presence of HIV antigens. Therefore, in vitro stimulation with HIV antigens was not done but rather, donor lymph node or spleen lymphocytes were directly fused with mouse myeloma cells. One of the hybridomas thus generated has been stably producing human monoclonal antibody (MAb) of the IgG1 isotype with a kappa chain. This antibody, MAb86, bound to the surface membrane of HIV-infected cells but not to that of uninfected cells at all. MAb86 reacted in Western blot with both viral glycoproteins of 120,000 daltons (gp120) and 41,000 daltons (gp41). While not neutralizing alone, a combination of MAb86 with another human IgG1 MAb against gp120 showed viral neutralization. Based on these data it seems likely that this approach will result in human MAbs capable of viral neutralization and antibody-dependent cytotoxicity. These may have value for the prevention and/or treatment of AIDS.

Animals↗