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Biomedical subjects

M Azuma

Publications and source records attributed to M Azuma.

At least 289 records · Page 16Linked to original sources

Involvement of p53 mutation in the development of human salivary gland pleomorphic adenomas.

We examined the status of the p53 mutation, a putative tumor suppressor gene, as well as the expressions of myc and mos oncogene products in human salivary gland pleomorphic adenoma cells in culture derived from four individuals using techniques which enabled selective and favourable growths of tumor cells. Culture techniques empolyed in this study consisted of type I collagen gel-coated dishes and serum-free medium as substrates and growth medium, respectively. Cells grown under above conditions were subjected to the analyses of p53, myc and mos expression. When analyzed by both immunocytochemical staining and immunoblot, mutant forms of p53 specifically detected by PAb240 were observed in three of 4 cases. However, none of the 4 cases expressed myc and mos oncogene products. These results may imply a role for p53 mutation in the development of human salivary gland pleomorphic adenomas.

Adenoma, Pleomorphic↗

CD28 interaction with B7 costimulates primary allogeneic proliferative responses and cytotoxicity mediated by small, resting T lymphocytes.

Engagement of the CD3/T cell antigen receptor complex on small, resting T cells is insufficient to trigger cell-mediated cytotoxicity or to induce a proliferative response. In the present study, we have used genetic transfection to demonstrate that interaction of the B7-BB1 B cell activation antigen with the CD28 T cell differentiation antigen costimulates cell-mediated cytotoxicity and proliferation initiated by either anti-CD2 or anti-CD3 monoclonal antibody (mAb). Moreover, a B7-negative Burkitt's lymphoma cell line that fails to stimulate an allogeneic mixed lymphocyte response is rendered a potent stimulator after transfection with B7. The mixed leukocyte reaction proliferative response against the B7 transfectant is inhibited by either anti-CD28 or B7 mAb. We also demonstrate that freshly isolated small, resting human T cells can mediate anti-CD3 or anti-CD2 mAb-redirected cytotoxicity against a murine Fc receptor-bearing mastocytoma transfected with human B7. These preexisting cytotoxic T lymphocytes in peripheral blood are present in both the CD4 and CD8 subsets, but are preferentially within the CD45RO+ "memory" population. While small, resting T cells apparently require costimulation by CD28/B7 interactions, this requirement is lost after T cell activation. Anti-CD3 initiates a cytotoxic response mediated by in vitro cultured T cell clones in the absence of B7 ligand. The existence of functional cytolytic T cells in the small, resting T cell population may be advantageous in facilitating rapid responses to immune challenge.

Animals↗

Assessment of portosystemic shunting from superior mesenteric vein by duodenal administration of iodoamphetamine I123.

Portosystemic shunting (PSS) from the superior mesenteric vein (SMV) was evaluated with the duodenal administration of iodoamphetamine I123 (IMP) in patients with chronic hepatitis and liver cirrhosis. After duodenal intubation, IMP was administered through a tube, and then scintigraphy including the pulmonary and hepatic regions was performed. In all patients, images of the liver and/or lungs were observed within 10 min and became clear with time, due to a good absorption of IMP from the intestine. On the other hand, IMP appears not to be absorbed from the stomach. The portosystemic shunt index was calculated by dividing counts of lungs by counts of liver and lungs. The shunt index (mean +/- SE) was 1.5% +/- 0.8%, 12.6% +/- 3.7% and 28.3% +/- 4.5% in chronic hepatitis, compensated cirrhosis and decompensated cirrhosis, respectively. This index was significantly higher in cirrhosis, especially in decompensated cirrhosis. Therefore, transintestinal portal scintigraphy with IMP could be a useful method for the non-invasive and quantitative evaluation of PSS from the SMV in portal hypertension.

Amphetamines↗

Amplification and overexpression of the c-erbB-2 protooncogene in human gastric cancer.

The c-erbB-2 protooncogene encodes a possible growth factor receptor. This gene has been studied as to whether it can be regarded as a prognostic indicator in human breast carcinoma. As amplification and overexpression of the gene have been reported in several adenocarcinomas, 24 specimens of human gastric cancers were examined by immunohistochemical staining (24 cases), by Southern blotting (23/24) and by Northern blotting (16/24). Amplification of the gene was detected in two moderately differentiated tubular adenocarcinomas (8.7%), and overexpression of c-erbB-2 mRNA was detected in three moderately differentiated tubular adenocarcinomas (18.8%). By immunohistochemical staining of paraffin-embedded tissues using a polyclonal antibody to c-erbB-2 gene products, the cell membrane was stained positively in three cases of gastric cancers which overexpressed c-erbB-2 mRNA. Peritoneal metastases were found in six gastric cancers, including two moderately differentiated tubular adenocarcinomas in which amplification of c-erbB-2 occurred. These results suggest that amplification and overexpression of c-erbB-2 may be correlated with metastases in differentiated adenocarcinoma of the stomach.

Adenocarcinoma↗

Comparison of cell-permeable calpain inhibitors and E64 in reduction of cataract in cultured rat lenses.

E64, an inhibitor of calpain (EC 3.4.22.17) and other cysteine proteases, slows the rate of formation of cataract in cultured rat lenses. The purpose of this study was to determine (1) why E64, a charged compound with little cell permeability, was effective in reducing cataract in cultured lens and (2) whether uncharged more permeable protease inhibitors are more effective than E64 in preventing cataract. Results showed that E64 entered the lens, but only after the lens was treated with the calcium ionophore, A23187, or sodium selenite, both of which cause cataracts. Therefore, the uptake and subsequent effectiveness of E64 may be related to a generalized increase in membrane permeability during induction of cataract in culture. Three protease inhibitors, reported to have improved cell permeability, were compared with E64 for their ability to prevent cataracts in cultured lenses. cBz-ValPheH, calpain inhibitors I and II, are uncharged-aldehyde inhibitors of calpain. Calpain inhibitors I and II even at high concentrations were not effective at reducing lens opacity caused by calcium ionophore and were toxic to the lens. cBz-ValPheH, which is slightly toxic to the lens, was able to significantly reduce lens opacity induced by calcium ionophore. The presented data suggest that while E64 decreases cataract formation in cultured lens, the more cell permeable inhibitor, cBz-ValPheH, may have greater efficacy as an anticataract drug in vivo.

Amino Acid Sequence↗

Expression of perforin and cytolytic potential of human peripheral blood lymphocyte subpopulations.

To verify the physiological role of the pore-forming protein perforin in vivo, its expression in subpopulations of human peripheral blood lymphocytes was examined by immunocytochemical staining and their cytolytic potentials compared. In addition to NK cells and gamma delta T cells, which uniformly expressed abundant perforin in their cytoplasmic granules, only a small subpopulation of CD8+ alpha beta T cells contained perforin, namely the CD11b+ subset. However, in vitro activation with an anti-CD3 antibody and IL-2 induced perforin expression in approximately 50% of the CD8+CD11b- T cells and also in a small subset of CD4+ T cells. A distribution of perforin in CD8+ and CD4+ T cells, similar to in vitro activated T cells, was observed in fresh peripheral blood lymphocytes from infectious mononucleosis patients. In all instances, the expression of perforin correlated with the cytolytic potential of these subpopulations. The results strongly suggest that perforin plays a role in the manifestation of cytotoxic activity in vivo.

Antigens, CD↗

Mechanisms of augmented resistance of cyclosporin A-treated mice to influenza virus infection by trehalose-6,6'-dimycolate.

Cyclosporin A (CsA), which is an immunosuppressive drug of helper T lymphocytes, diminished a resistance of mice to influenza virus infection. Mice inoculated intravenously with trehalose-6,6'-dimycolate (TDM, a glycolipid component of the cell wall of Mycobacterium) in an oil-in-water emulsion (TDM emulsion) recovered the resistance to influenza virus infection impaired by CsA. Number of antibody-producing cells was markedly reduced in CsA- and/or TDM-treated mice. Interferon production in lung of TDM-treated mice was augmented; however, it was extremely reduced not only in CsA-treated mice, but also in CsA- and TDM-treated mice. Activities of natural killer cells of CsA- and/or TDM-treated mice were not different from that of control mice. Numbers of lymphocytes in lung of TDM-treated mice and CsA- and TDM-treated mice were more predominantly increased than that of control mice. Analysis of lung lymphocytes by flow cytometry revealed no difference between the populations of L3T4+ T lymphocytes and Lyt-2.2+ T lymphocytes in CsA- and/or TDM-treated mice and the populations in control mice. However, the population of gamma delta T cell receptor positive (gamma delta TCR+) lymphocytes increased markedly in lung of TDM-treated mice and also CsA- and TDM-treated mice. In vitro experiments showed that macrophage cultures treated with TDM emulsion released a mediator(s) which activates T lymphocytes, but not B lymphocytes. These and our earlier results suggest that the recovered anti-influenza virus resistance of CsA-treated mice by treatment with TDM emulsion was caused by elicitation of macrophages with TDM, then activation of T lymphocytes, especially gamma delta TCR+ lymphocytes.

Animals↗

Hydration and elevated calcium alone do not produce xylose nuclear cataract: role of proteolysis by calpain.

The purpose of this experiment was to determine the contribution of calpain proteolytic enzyme (EC 3.4.22.17) in the formation of nuclear cataract during lens culture in xylose. Increased lens calcium was found to be required for formation of xylose nuclear cataract in our culture system. Inhibition of calpain by the cysteine protease inhibitor E64 was effective in slowing the formation of nuclear cataract, even though lens calcium and hydration were markedly elevated. These results showed that hydration and elevated calcium alone do not produce xylose nuclear cataract, and they indicated that calpain proteolysis may be necessary for xylose nuclear cataract in the rat lens.

Animals↗

Differential sensitivity of diabetic rat papillary muscles to negative inotropic effects of oxybarbiturates versus thiobarbiturates.

The negative inotropic effects of oxybarbiturates and thiobarbiturates were examined in papillary muscles isolated from streptozotocin-induced diabetic rats and in papillary muscles from age-matched control rats. The muscles from diabetic rats exhibited less negative inotropic responses to pentobarbital and secobarbital than the muscles from control rats. Conversely, the negative inotropic responses to thiopental and thiamylal were significantly enhanced in diabetic muscles. Differences in sensitivity to pentobarbital between control and diabetic muscles became less marked by treatment with ouabain or by lowering [Na+]o. Enhancement of the negative inotropic effect of thiamylal observed in diabetic muscles remained unchanged with these treatments. In both control and diabetic muscles, the negative inotropic effect of pentobarbital was completely reversed by increasing [Ca2+]o, but the effect of thiamylal was only partially reversed. These results suggest a difference in mechanism of action involved in establishment of the negative inotropic effects of oxybarbiturates vs thiobarbiturates. Oxybarbiturates appear to exclusively reduce the influx of extracellular Ca2+, whereas thiobarbiturates appear to affect Ca2+ movements at the Ca2+ storage sites in addition to the Ca2+ influx inhibition.

Animals↗

Relationship between the transference of a drug from a transdermal patch and the physicochemical properties.

The transferred percentages of 13 drugs to rat skin from transdermal patches were studied to reveal the relationship to their physicochemical properties. The drugs to be tested had melting points of 13.5-234 degrees C, lipophilic indices of 0.475-5.336, and molecular weights of 122.12-392.45. The transferred percentage of drug to intact skin was lower, the higher the melting point, lipophilic index and molecular weight. The same was true in stripped skin, where the transferred percentage of drug was markedly increased. The difference between transferred drug percentages to stripped and intact skin, which could be regarded as the regulatory contribution of the stratum corneum, tended to be larger, the lower the drug's melting point and lipophilic index.

Administration, Cutaneous↗

Review of selenite cataract.

Recent advances in understanding the mechanism of selenite cataract have resulted from locating the cleavage sites on proteolyzed beta-crystallins from the cataract, mimicking the insolubilization of crystallins found in the cataract in an in vitro system, studying cataract produced in lenses cultured in selenite, and permanently or temporarily reducing the rate formation of selenite cataract by use of various inhibitors. The present review discusses the selenite cataract as a useful model for understanding the role calcium-induced proteolysis in cataract formation.

Amino Acid Sequence↗

Effect of dibutyryl cyclic adenosine 3',5'-monophosphate on morphological features and biological markers of human salivary myoepithelial cell line in culture.

We have found the emergence of myoepithelial cells (HSG-AZA1) in neoplastic human salivary intercalated duct cell line HSG in culture after treatment with 5-azacytidine. When HSG-ZAZ1 cells were cultured in the presence of N6,O2-dibutyryl cyclic adenosine 3',5'-monophosphate (dB-cAMP), they formed long cytoplasmic processes which were densely packed with ample microfibrils in addition to microtubule bundles. The expression of neuron-specific enolase, synaptophysin, and catecholamine as well as neurofilaments in the treated HSG-AZA1 cells was found by the immunofluorescence staining technique, immunoblotting, immunoelectron microscopy, or catecholamine fluorescence. Both the anchorage-independent and anchorage-dependent growths of HSG-AZA1 cells were suppressed in the presence of dB-cAMP. After the removal of dB-cAMP from the culture, the treated cells returned rapidly to the phenotype and growth rate of the untreated cells. These findings indicate that reversible differentiation into the neuron-like cells of HSG-AZA1 cells occurs in growth medium containing dB-cAMP.

Analysis of Variance↗

[Function, molecular structure and gene expression of interferons].

Interferon is a key substance of the cytokine network, and is functioning not only as the virus inhibitory factor, but also as the factor for differentiation, development, and homeostasis of animals, including man. The molecular structure, induction mechanisms, interaction with receptor, and antiviral action mechanisms of IFN were reviewed. 1. Molecular structure of IFN IFNs are now divided into 4 types--alpha, beta, gamma, omega--according to antigenicities of IFN proteins, and to base sequence of their genes. The omega type was established officially on 1990 by the Nomenclature Committee of International Society for Interferon Research (ISIR). Also, the genes for HuIFNs were named as follows; HuIFN-A for HuIFN-alpha, HuIFN-B for HuIFN-beta, HuIFN-G for HuIFN-gamma, and HuIFN-W for HuIFN-omega. Nevertheless, the names of Type I IFN and Type II IFN are still valuable, since members of Type I IFN, alpha, beta, and omega, are similar in their molecular structures, and they share the common receptor (Type I IFN receptor), on the other hand, HuIFN-gamma (the only one member of Type II IFN) has different characteristics from the other IFNs, and binds to its specific receptor (Type II IFN receptor). However, it has been reported that both N-terminal and C-terminal of IFN protein of all types, participate in the binding of IFN to its receptor. 2. Induction mechanism of IFN. The factors, IRF-1 and IRF-2, were found to play an important role in IFN induction.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Identification of a cell membrane receptor for interferon induction by poly rI:rC.

PR-RK, a cell line derived from rabbit kidney cells (RK-13), was insensitive to the cytotoxic effect and interferon (IFN) inducing activity of the copolymer of riboinosinic and ribocytidylic acid (poly rI:rC). However, PR-RK was sensitive to the cytotoxic effect of the copolymer of riboadenylic and ribouridylic acid (poly rA:rU). Comparison of PR-RK cells and RK-13 cells by cytofluorometric analysis revealed that the binding of poly rI:rC was considerably reduced on PR-RK cells. These results suggested that the receptor for poly rI:rC might be different from the receptor for poly rA:rU, and this difference could provide a basis for the identification of the dsRNA receptor on cell surface. Western blot analysis of the components of cell membrane fraction prepared from RK-13 cells was performed by using a monoclonal antibody, which binds to cell membrane of RK-13 cells but not to PR-RK cells, and which blocks IFN induction by poly rI:rC in RK-13 cells. The 60K protein was identified as one of the poly rI:rC receptor protein.

Animals↗

Inhibition by amiloride of ouabain-evoked catecholamine secretion from cultured adrenal chromaffin cells: evidence for its blocking action on interaction between ouabain and Na+/K(+)-pump.

The effect of amiloride on ouabain-evoked catecholamine secretion was investigated in primary cultures of bovine adrenal chromaffin cells. Catecholamine secretion evoked by ouabain was inhibited markedly by amiloride, but the secretion evoked by Na+ removal was not affected by the drug. In contrast, adriamycin, a putative inhibitor of the Na(+)-Ca++ exchange, inhibited the secretion evoked by Na+ removal as well as that evoked by ouabain. The inhibitory action of amiloride on the ouabain-evoked secretion was therefore considered to be due to its action on other mechanism(s) than the Na(+)-Ca++ exchange process. Further studies showed that the uptake of 86Rb+ into the cells was slightly but significantly reduced by amiloride, and the inhibitory action of ouabain on 86Rb+ uptake was considerably blocked by this drug under the experimental conditions in which the inhibition of ouabain-evoked secretion was observed. The binding of [3H] ouabain to the intact cells was also inhibited by amiloride under the same conditions. These results suggest that amiloride may inhibit ouabain-evoked catecholamine secretion as a consequence of blocking the inhibitory action of ouabain on the plasma membrane Na+/K(+)-pump in adrenal chromaffin cells.

Adrenal Medulla↗

CD28 co-stimulation of T-cell-mediated cytotoxicity.

Co-stimulation via the CD28 pathway permits small, resting human peripheral-blood T lymphocytes to mediate anti-CD3 monoclonal antibody (MAb) "re-directed" cytotoxicity. The effector cells are contained with the "memory" population of T lymphocytes, identified by expression of the CD45RO differentiation antigen. In this article, we review the requirements for initiating a cytolytic response and speculate on the physiological consequences of this process.

Animals↗