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T So

Publications and source records attributed to T So.

At least 37 records · Page 2Linked to original sources

The molecular weight ratio of monomethoxypolyethylene glycol (mPEG) to protein determines the immunotolerogenicity of mPEG proteins.

Immunotolerogenic activity of monomethoxypolyethylene glycol- (mPEG) conjugated proteins is a beneficial property in protein pharmaceutics. However, procedures for the preparation of tolerogenic mPEG proteins have not yet been defined. We prepared mPEG proteins with different mPEG contents using three proteins, hen egg lysozyme, ovalbumin and bovine gamma globulin, and their tolerogenicities to antigen-specific T and B cell responses were examined. We found the most appropriate ratio of tolerance induction to be 1.5-2.0, which is the molecular weight ratio of conjugated total mPEGs to protein. This value may assist in the preparation of tolerogenic mPEG proteins.

Animals↗

Dynamic changes of QT dispersion as a predictor of myocardial ischemia on exercise testing in patients with angina pectoris.

The difference between the maximum and minimum QT intervals on the standard 12-lead ECG (QT dispersion) may be a significant predictor of serious arrhythmias. Dynamic changes in QTd were determined during exercise-induced ischemia in 15 patients with effort angina (> or = 75% coronary stenosis) and 10 normal individuals. Treadmill exercise testing was performed according to Bruce's protocol and the rate-corrected QT dispersion (QTcd) was calculated using Bazett's formula. The resting QTcd before exercise was similar in the angina patients and the controls. After the first stage of exercise, QTcd was significantly increased in the angina patients (p = 0.035), while it remained near baseline in the controls. Five minutes after completing exercise, QTcd was significantly greater in the angina patients than in the controls (p = 0.011). Furthermore, QTcd values after the first stage of exercise were significantly correlated with the maximum ST depression observed on completing exercise in the angina patients (r = 0.714, p = 0.0028). Because QTd may represent the heterogeneity of ventricular repolarization, its significant exercise-induced increase in the angina patients suggests that myocardial ischemia caused repolarization disorders. The significant correlation between QTcd values after the first stage of exercise (before significant ST depression) and the maximum ST depression on completing exercise suggests that an increase in QTcd preceding ischemic ST depression may predict myocardial ischemia. In addition, even daily activities not causing significant ST changes may increase QTcd and the risk of serious arrhythmia in angina patients.

Aged↗

Successful tracheocarinal transplantation.

BACKGROUND: When extensive portions of the trachea and carina are resected, grafting is required. METHODS: Two experiments were performed in dogs to assess the feasibility of extensive tracheocarinal replacement using short-segment tracheocarinal autografts, only to avoid the immunologic complexity of allografts. To determine the effect of tension on graft survival, extensive tracheal defects (12 to 18 rings) were created in four animals. These were subsequently reconstructed using 6-ring autografts. In the second experiment, three animals underwent excision of a maximal length of trachea determined in experiment 1 including the carina. Long-term viability of each graft was assessed using bronchoscopy and histologic examination. RESULTS: The limit of tracheal resection successfully reconstructed using a 6-ring autograft was 14 rings (experiment 1). The tracheal grafts in which the tension was greater than 1.2 kg did not maintain their structural integrity. All of the autografts in experiment 2 were subjected to a tension of less than 1.0 kg at the anastomoses, and showed long-term viability. CONCLUSIONS: We conclude that extensive tracheal and carinal defects may be successfully reconstructed using short-segment tracheocarinal grafts if the anastomoses are subjected to less than 1.0 kg of tension.

Airway Resistance↗

Induction of Tumor-Specific Cytotoxic T Lymphocytes from Regional Lymph Node Lymphocytes of Human Breast Cancer.

BACKGROUND: In this study we activated breast cancer-specific cytotoxic T lymphocytes (CTL) from regional lymph node lymphocytes (RLNL) of HLA-A2-positive patients with breast cancer. METHODS: Freshly isolated RLNL were stimulated with solid phase anti-CD3 monoclonal antibody followed by expansion with recombinant interleukin-2. Subsequently, the RLNL were stimulated with an irradiated HLA 0201 breast cancer cell line,MCF-7, at a responder/stimulator ratio of 10/1 once a week for 2 weeks. RESULTS: The cultured RLNL exhibited specific lysis against MCF-7 in all 5 HLA-A2-positive patients tested, but not in 2 HLA-A2-negative patients. Cytotoxicityagainst MCF-7 was substantially inhibited by addition of anti-HLA-A2 mAb. In 3 of 5 HLA-A2-positive patients, anti-MCF-7 CTL also exhibited a substantial levelof reactivity against PC-9, an HLA-A0206-positive lung adenocarcinoma cell line. Conversely, anti -PC-9-specific CTL were inducible by multiple stimulations ofRLNL with PC-9 cells in 2 of 3 patients. CONCLUSION: These results suggest that several common tumor antigens might exist among HLA-A2-positive breast cancers, some of which may be shared with lung adenocarcinomas.

Journal Article↗

Tolerogenic activity of polyethylene glycol-conjugated lysozyme distinct from that of the native counterpart.

Conjugation of proteins with polyethylene glycol (PEG) has been reported to make the proteins tolerogenic. Native proteins are also potentially tolerogenic when given without adjuvants. We compared immunotolerogenic activities between PEG-conjugated and native hen egg-white lysozyme (HEL). BALB/c mice were given consecutive weekly intraperitoneal administrations of PEG-conjugated HEL, unmodified HEL or phosphate-buffered saline (PBS), for 3 weeks, then challenged with HEL in Freund's complete adjuvant. The pretreatment with PEG-HEL tolerized both T-cell and humoral responses, while native HEL tolerized only the T-cell response. Immunoglobulin G1 (IgG1) antibody was already elevated in HEL-pretreated mice prior to challenge immunization, followed by suppressed IgG2a and IgG2b, but spared IgG1 production after the antigen challenge, whereas PEG-HEL-pretreated mice produced no antibody in all IgG subclasses prior and subsequent to the antigen-challenge. Production of interleukin-2 (IL-2) and interferon-gamma (IFN-gamma) by lymphoid cells in response to HEL in vitro was markedly suppressed in both the antigen-pretreated groups, while suppression of IL-4 production was evident only in PEG-HEL-, not in HEL-pretreated animals. Involvement of suppressor cells in these tolerance states was found to be unlikely, and the immunological property of PEG-HEL differed from deaggregated HEL that was similar to the original HEL. These results suggest a unique immunotolerogenic activity of PEG-conjugated proteins to suppress both T-helper type-1 (Th1)- and Th2-type responses, the result being extensive inhibition of all IgG subclass responses, while tolerance induction by unconjugated soluble proteins tends to be targeted on Th1-, but spares Th2-type responses.

Adjuvants, Immunologic↗

Effects of interleukin-12 on the induction of cytotoxic T lymphocytes from the regional lymph node lymphocytes of patients with lung adenocarcinoma.

Lung cancer-specific cytotoxic T lymphocytes (CTL) were induced by repeated stimulations of regional lymph node lymphocytes (RLNL) in lung cancer patients with either autologous or HLA-A-locus-matched tumor cells. To investigate the effect of interleukin-12 (IL-12), IL-12 was added during the stimulation of RLNL from HLA A24/adenocarcinoma patients with either autologous tumor cells or HLA A24-positive adenocarcinoma cells (PC-9) in combination with, or instead of interleukin-2 (IL-2), and then the cytotoxic activity, cytokine production and populations of the lymphocyte subsets were examined. The addition of IL-12, or the substitution of IL-2 by IL-12 was found to enhance the cytotoxic activity and the cytokine production (IFN-gamma, GM-CSF) of the CTL as compared with IL-2 alone. The cytotoxic activity and cytokine production were both partially inhibited by anti-MHC-class I monoclonal antibody. The CTL thus induced by IL-12 had a higher proportion of CD3+/CD56+ cells than the CTL induced with IL-2 alone. The positively selected CD8+/CD56- lymphocytes showed PC-9-specific cytotoxic activity, because the population did not show any cytotoxicity to K562 or A549 (HLA-A26/A30). However, the CD3+/CD56+ lymphocytes were cytotoxic to both PC-9 and K562. In conclusion, IL-12 is considered to be a useful cytokine for both the induction of lung-cancer specific CTL and the augmentation of non-MHC-restricted cytotoxicity against tumor cells, and may be applicable for adoptive immunotherapy using CTL.

Adenocarcinoma↗

Depression of T-cell epitope generation by stabilizing hen lysozyme.

Conformational stability of proteins is an important factor that determines their resistance/susceptibility to proteolytic digestion. Intracellular proteolysis is the key step in antigen presentation events for protein antigens; hence, it is likely that increasing protein stability reduces the antigenicity of proteins. We prepared three hen egg white lysozyme derivatives possessing different stabilities by chemical modification to clarify the relationship between conformational stability and the antigenicity of the protein. One of the derivatives was conformationally unstabilized by removing one intramolecular disulfide bond, whereas the two others were stabilized by the addition of an intramolecular cross-link. The antigenicity of these derivatives was evaluated using hen egg white lysozyme-specific T-cell hybridoma cells and a B-lymphoma cell line, A20, as antigen-presenting cells. With an increase in conformational stability, the T-cell response decreased. However, the reduction was not derived from the inefficiency of internalization to A20 cells nor the alteration of antigenicity by chemical modifications. Moreover, from analyses of their susceptibility to proteolysis and the kinetics of presentation of the T-cell epitope, it was confirmed that increasing protein stability led to the depression of T-cell epitope generation by increasing resistance to proteolysis. These results have an important implication in devising a new strategy for manipulating T-cell response by the stability of protein antigen.

Animals↗

Favourable interaction between heavy and light chains arrests the undesirable oligomerization of heavy chains in the refolding of denatured and reduced immunoglobulin G.

Recently we developed a slow dialysis method that effectively refolds denatured and reduced immunoglobulin G (IgG) [Maeda, Ueda and Imoto (1996) Prot. Engng 9: 95-100]. This method allows both individual and simultaneous refolding of denatured and reduced H and L chains. Analysis by SDS-polyacrylamide gel electrophoresis revealed that some oligomers were formed through disulfide bonds when H chains were refolded individually. It was also shown that the extent of IgG obtained by rejoining the mixture of refolded H and L chains which had been refolded individually was similar to that obtained by refolding denatured and reduced whole IgG. The results indicated that a favourable interaction between H and L chains prevented formation of H-chain oligomers to yield intact IgG. The present results suggest a mechanism whereby individually folded chains might associate to form IgG molecules in vivo.

Animals↗

Prevention of collagen-induced arthritis (CIA) by treatment with polyethylene glycol-conjugated type II collagen; distinct tolerogenic property of the conjugated collagen from the native one.

Administration of a soluble protein into animals prior to challenge immunization induces immunological tolerance which is specific for the protein. In addition, chemical modification of proteins with polyethylene glycol (PEG) has been reported to convert the immunogenic proteins to become tolerogenic. However, differences in tolerogenic properties between PEG-modified proteins and the native counterparts have never been analysed. The ability of PEG-conjugated type II collagen (PEG-CII) to attenuate CIA, an animal model for rheumatoid arthritis, was compared with the native unconjugated CII. Groups of DBA/1 J mice were treated weekly with i.p. injections with PEG-CII, native CII, or vehicle alone for 3 weeks, before they were challenged with CII in adjuvants. The induction of tolerance was confirmed in both PEG-CII- and CII-pretreated mice when suppression of lymph node T cell proliferation in response to CII was noted. The degrees of suppression of T cell proliferation were comparable between the two pretreated groups. However, induction of arthritis and production of IgG anti-CII antibody were more markedly suppressed in PEG-CII-pretreated mice than in native CII-pretreated mice, although the severity of arthritis and antibody levels in the latter group were also lower than in control mice. IgG2a and IgG2b antibody levels were equally suppressed in the two pretreated groups, whereas the IgG1 level was significantly lower in the PEG-CII-pretreated group than in the native CII-pretreated group. The results provide the first evidence that attachment of PEG to CII renders the protein more tolerogenic.

Animals↗

Reduced immunogenicity of monomethoxypolyethylene glycol-modified lysozyme for activation of T cells.

Chemical modification of proteins with monomethoxypolyethylene glycol (mPEG) will reduce the immunogenicity of proteins. In the present study, we evaluated the effect of mPEG modification on the capacity of hen egg-white lysozyme (HEL) to stimulate T cells. Lymph node cells (LNCs) from mice immunized with HEL or with mPEG-HEL conjugate were cultured with these antigens, then we measured the proliferation and IL-2 production. mPEG-modification lowered the T cell activating capacity of HEL, both in vitro and in vivo. Neither toxicity, nor antigen non-specific immunosuppressive capacity was observed with mPEG-HEL and unconjugated mPEG. Suppressor cells were unlikely to be generated in the mPEG-HEL-primed LNCs. We next examined the behavior of mPEG-HEL during antigen processing. The capacity of HEL and mPEG-HEL to be incorporated by live cells was much the same. However, the susceptibility to various proteases, including endosomal/lysosomal enzymes, was significantly decreased by mPEG modification. The increased resistance of mPEG-HEL to proteolytic degradation implied that the conjugate was poorly presented to T cells. This may be an important factor related to the low immunogenicity of mPEG modified proteins.

Animals↗

An anti-CD18 antibody limits infarct size and preserves left ventricular function in dogs with ischemia and 48-hour reperfusion.

OBJECTIVES: This study investigated whether an antibody against neutrophil adhesion protein CD18 could limit myocardial infarct size and preserve left ventricular function after prolonged reperfusion in a canine model. BACKGROUND: Myocardial reperfusion injury is mediated in part by accumulation of activated neutrophils. Although antibodies against CD18 have been shown to reduce neutrophil influx and infarct size after ischemia and 3 to 4 h of reperfusion, it is unknown whether protection is sustained beyond this time or whether there is meaningful preservation of ventricular function. METHODS: Dogs undergoing 90-min circumflex coronary artery occlusion and 48-h reperfusion were randomized to receive 1 mg/kg bodyweight of R15.7 (an anti-CD18 antibody, n = 12) or saline (control, n =12) 10 min before reperfusion. Contrast left ventriculography was used to measure left ventricular ejection fraction and regional chord shortening at baseline, during occlusion and at 48 h. Microspheres injected during occlusion were used to measure collateral flow and risk region size. Postmortem infarct size was measured with triphenyltetrazolium chloride. RESULTS: In the dose administered, R15.7 bound to neutrophils in vivo, with >85% saturation of CD18 for >24 h, with sustained antibody excess in the plasma. R15.7 significantly reduced infarct size after adjusting for the effect of collateral flow (p = 0.0002, analysis of covariance). In a subgroup of dogs with collateral flow <30% of nonischemic flow, infarct size was reduced from 34.6 +/- 3.9% (mean +/- SE) of the region at risk in the control group to 19.5 +/- 3.3% in the antibody group (p = 0.008). Ejection fraction and regional chord shortening did not differ between the two groups at baseline or during occlusion, but after 48-h reperfusion, ejection fraction and inferior wall regional cord shortening (representing the infarct zone) were both higher in the R15.7 group than the control group (43.6 +/- 2.9% vs. 28.5 +/- 1.8%, p < 0.01; 2.55 +/- 0.29% vs. 1.06 +/- 0.18%, p < 0.05). CONCLUSIONS: A single injection of an anti-CD18 antibody given before reperfusion can limit myocardial infarct size by nearly 50% and preserve global and regional left ventricular function after 48 h of reperfusion.

Animals↗

Situation of monomethoxypolyethylene glycol covalently attached to lysozyme.

We selectively introduced monomethoxypolyethylene glycol (mPEG) 5000, 2000, and 550 into Asp119 in lysozyme. To examine how the mPEGs were present on the surface of the modified lysozyme, the activities, binding abilities to the Fab fragment of anti-lysozyme monoclonal antibody, net charges and nuclear magnetic resonance (NMR) spectra of mPEG lysozymes were examined. With the increase in molecular weight of mPEG, the activities and binding abilities to the Fab of mPEG lysozyme decreased. However, introduced mPEG5000 did not cause complete inhibition of the activities and binding abilities to the Fab, while the maximum length of mPEG5000 was so great that it largely covered the surface of the lysozyme molecule. Analyses of the net charges and NMR suggested that the introduced mPEG preferentially assumed a folded conformation on the surface rather than spread all over the surface. Based on the structure of mPEG lysozyme, the mechanism of the reduced immunogenicity of mPEG lysozyme was discussed.

Antibodies, Monoclonal↗

[The role of matrix metalloproteinases for premature rupture of the membranes].

In order to investigate the correlation between premature rupture of the membrane (PROM) and chorioamnionitis, the effects of human tumor necrosis factor alpha (TNF alpha) and human interleukin-1 alpha (IL-1) on the production of matrix metalloproteinases (MMPs), tissue inhibitor of metalloproteinases (TIMP) and prostaglandin E2 (PGE2) in cultured human chorionic cells, were examined. The results were as follows: 1) TNF alpha enhanced the production of MMPs and PGE2 and suppressed TIMP production. 2) IL-1 stimulated the production of MMPs, TIMP and PGE2. 3) The combination of IL-1 and TNF alpha further augmented IL-1-induced production of MMPs, but IL-1-induced TIMP was suppressed by TNF alpha treatment. 4) At term, remarkable Type I collagenolytic activity was found in amniotic fluid from a patient with PROM complicated chorioamnionitis, whereas no collagenolytic activity was found in normal amniotic fluid. These results suggest that the degradation of extracellular matrix in fetal membranes with intraamniotic infection is caused by MMPs derived from chorionic cells through the inflammatory cytokines released in response to bacterial infection; PGE2 is released, causing uterine contraction. These effects combine to induce PROM.

Cells, Cultured↗

Tumor necrosis factor-alpha stimulates the biosynthesis of matrix metalloproteinases and plasminogen activator in cultured human chorionic cells.

To investigate the role of tumor necrosis factor-alpha (TNF alpha) in advanced collagenolysis and degradation of connective tissue components in preterm parturition, the effects of human recombinant TNF alpha (hrTNF alpha) on the production of matrix metalloproteinase 1 (MMP-1)/tissue collagenase, MMP-3/stromelysin, tissue inhibitor of metalloproteinases (TIMP), urokinase type-plasminogen activator (uPa) and prostaglandin (PG) E2 in human chorionic cells were examined in vitro. Human chorionic cells, but not amniotic cells, were found to respond to macrophage-conditioned medium (contains mainly interleukin 1) to produce MMP-1 and MMP-3. This indicated that the chorionic cell is one of the MMP-producing cells of fetal membranes. When confluent chorionic cells were treated with hrTNF alpha, the production of MMP-1 and MMP-3 as well as of uPa and PGE2 was greatly increased in a dose-dependent manner. In contrast, the production of TIMP was suppressed by hrTNF alpha. These results suggested that TNF alpha may participate in destruction of collagen and other connective tissue matrix components of fetal membranes and in promotion of uterine contractility in preterm parturition with intraamniotic infection.

Amnion↗

[Alcohol-induced variant angina and considerations of its mechanism: a case report].

A 64-year-old man had episodes of angina pectoris several hours after ingestion of alcohol. Otherwise, anginal attacks never occurred. He was diagnosed as having variant angina based on the typical ST elevation in leads II, III and aVF during the anginal attacks. We performed an alcohol challenge test on his 4th admission day. He was given 540 ml of "sake" at 6:00 p.m. and anginal attacks with ST elevations occurred 9.5 hours after its ingestion. The peak value of plasma ethanol was 136 mg/dl at 9:00 p.m. and it returned to 0 when angina occurred. By alcohol ingestion, urinary excretion of Mg increased in association with a slight decrease in serum Mg. The ratio of serum Ca to Mg was increased from 4.0 at the control state before taking alcohol to 4.5 at the occurrence of anginal attack. Mg content in red blood cells and in plasma catecholamines did not differ between before and after ingesting alcohol. We concluded that the change in the extracellular Ca-Mg equilibrium may contribute to the mechanism of alcohol-induced variant angina.

Aged↗

[A case of Vietnamese immigrant with tuberculous mediastinopericarditis].

A case of vietnamese immigrant with tuberculous mediastinopericarditis was reported and the literature was reviewed. A 39 year-old man was admitted to our hospital with chief complaints of dyspnea and weakness. Blood chemistry suggested the existence of congestive liver dysfunction. Chest X-ray film revealed marked cardiomegaly and a abnormal mass in the anteriorly superior area which was confirmed as anterior mediastinum on CT scan. Echocardiogram disclosed a large volume of pericardial effusion and thickened pericardium. Tuberculin test was positive. Firstly, this mediastinal mass was believed to be malignant tumor and the pericardial effusion had originated from it. Finally, tuberculous mediastinopericarditis was diagnosed by detecting tuberculous mycobacterium from the cultured pericardial effusion and also the biopsied lymph nodes. Although occurrence of tuberculous mediastinopericarditis is rare at the present time in Japan, this disease has not been exterminated and should be kept in mind.

Adult↗