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Biomedical subjects

K Ando

Publications and source records attributed to K Ando.

At least 217 records · Page 12Linked to original sources

Phosphorylation of Alzheimer beta-amyloid precursor-like proteins.

Amyloid precursor-like proteins (APLPs), APLP1 and APLP2, are members of a gene family which include the Alzheimer beta-amyloid precursor protein (APP). APLP1, APLP2, and APP contain highly homologous amino acid sequences, especially in their cytoplasmic domains, although APLPs lack the beta-amyloid domain derived by proteolytic processing from APP. APP is phosphorylated at three sites in the cytoplasmic domain in cultured cells and adult rat brain [Suzuki et al. (1994) EMBO J. 13, 1114-1122; Oishi, et al. (1997) Mol. Med. 3, 109-121] and at sites in the extracellular domain in cultured cells [Knops et al. (1993) Biochem. Biophys. Res. Commun. 197, 380-385; Hung & Selkoe (1994) EMBO J. 13, 534-542; Walter et al. (1997) J. Biol. Chem. 272, 1896-1903]. We report here that a cytoplasmic domain peptide from APLP1 is phosphorylated in vitro by protein kinase C and that a cytoplasmic domain peptide from APLP2 is phosphorylated in vitro by protein kinase C and cdc2 kinase. APLP2 is phosphorylated by cdc2 kinase at a site homologous to the cdc2 kinase site phosphorylated in APP. Furthermore, phosphorylation of this site occurs in a cell cycle-dependent manner in cultured cells. These findings indicate that in intact cells the phosphorylation of APLP2 appears to be regulated in a similar fashion to that of APP.

Alzheimer Disease↗

Induction of band 3 aggregation in erythrocytes results in anti-band 3 autoantibody binding to the carbohydrate epitopes of band 3.

Involvement of band 3 aggregation in the mechanism of anti-band 3 autoantibody binding to the cell surface carbohydrate epitopes of band 3 was investigated. When erythrocytes were treated nonoxidatively with a known protein-aggregating agent acridine orange, protein aggregates of the cell membrane which are insoluble in a nonionic detergent C12E8 solution were remarkably increased. Analysis of the protein aggregates by SDS-PAGE indicated that they were composed of several species of noncovalently associated membrane proteins including band 3. 125I-labeled anti-band 3 bound to the acridine orange-treated cells, and the binding increased depending on the concentrations of acridine orange used. The binding was inhibited by band 3 and its oligosaccharides but not by the oligosaccharides pretreated with endo-beta-galactosidase, an enzyme specifically cleaves poly-N-acetyllactosaminyl saccharide chains of band 3. When erythrocytes were pretreated with endo-beta-galactosidase to remove poly-N-acetyllactosaminyl saccharide chains from cell surface prior to acridine orange treatment, the cells did not become susceptible to anti-band 3 binding. The results indicate that induction of band 3 aggregation in erythrocyte membrane leads to anti-band 3 binding to the poly-N-acetyllactosaminyl saccharide chains of band 3. Consistently, membrane proteins including band 3 were found to be aggregated when erythrocytes were oxidized with ADP-chelated Fe3+ under the conditions that induce anti-band 3 binding to the cells. Similar band 3 aggregation was observed on senescent erythrocytes whose carbohydrate epitopes of band 3 had been occupied with anti band 3. These results indicate that anti-band 3 binds to the carbohydrate epitopes of band 3 on erythrocytes when band 3 is aggregated by oxidative and nonoxidative mechanisms.

Acridine Orange↗

Carcinoma of the uterine cervix with myocardial metastasis.

Cardiac metastasis from pelvic malignancies is rare. We experienced a case of carcinoma of the uterine cervix with myocardial involvement in the right ventricle, and treated this patient with conventional methods until her death. The metastatic tumor was incidentally found in the right ventricle, eroding the myocardium. We used CT, MRI, and gallium scintigraphy to assess the lesion. This aggressive lesion proved fatal for our relatively young patient. We report this case for future reference.

Adult↗

Response of the extramedullary lung plasmacytoma with pleural effusion to chemotherapy.

An elderly patient with extramedullary lung plasmacytoma and subsequent pleural effusion is described. The presence of abnormal plasma cells in the pleural fluid led to diagnosis. Histologically similar conditions such as multiple myeloma and solitary myeloma of bone were ruled out by clinical evaluation. These neoplasms usually occur in the head and neck area and are not characterized by paraprotein accumulation. Few cases in the lung have been reported. We describe a case of extramedullary plasmacytoma of the lung with plasmacytoma-induced pleural effusion and the presence of monoclonal paraprotein in both the serum and urine. Chemotherapy with melphalan was effective in reducing the size of the plasmacytoma, and pleurodesis was used to manage the pleural effusion.

Aged↗

Torsion of autotransplanted splenic tissue in Gaucher disease.

A 12-year-old girl who underwent a splenectomy followed by heterotopic splenic autotransplantation for treatment of hypersplenism secondary to Gaucher disease at the age of 3 years presented with acute lower abdominal pain. Radiological investigations were highly suggestive of torsion of the autotransplanted splenic tissue, which was confirmed during subsequent laparotomy. This is the first known report of torsion of autotransplanted splenic tissue.

Child↗

Effect of azelastine on PGE2 production in fibroblasts in normal skin. The possibility of inhibition of inducible cyclooxygenase by azelastine.

The effects of azelastine on prostaglandin E2 (PGE2) production were investigated by using cultured normal dermal fibroblasts obtained from the same traumatic region of 3 patients and the CRL-1475 cell line. Interleukin-1beta (IL-1) enhanced PGE2 production in cultured normal fibroblasts and CRL-1475 cells. 10(-6) M azelastine inhibited PGE2 production in these IL-1-stimulated fibroblasts. However, the drug did not influence spontaneous PGE2 production in cultured CRL-1475 fibroblasts not stimulated with IL-1 but slightly it increased in cultured normal dermal fibroblasts under the same conditions. These results suggest that azelastine either regulates synthesis of an inducible cyclooxygenose protein or inhibits PGE2 production as an inducible cyclooxygenase inhibitor.

Accidents↗

Hemodynamic and endocrine responsiveness to mental arithmetic task and mirror drawing test in patients with essential hypertension.

To evaluate the reactivity to psychological stress in patients with essential hypertension we investigated hemodynamic and endocrinologic changes during a mental arithmetic task (MAT) and a mirror drawing test (MDT) in 10 hypertensive subjects. Hemodynamic changes were assessed continuously using an ambulatory radionuclide cardiac detector. There were significant increases in systolic blood pressure (deltaSBP: +37.8 +/- 11.1 and +41.0 +/- 9.4 mm Hg during MAT and MDT, respectively, P < .01) and diastolic blood pressure (deltaDBP: +17.5 +/- 3.1 and +21.2 +/- 3.9 mm Hg, P < .01) and in heart rate (deltaHR: +17.1 +/- 5.3 and +12.5 +/- 2.9 beats/min, P < .01) during both tasks in association with an increase in cardiac output (CO). The plasma levels of norepinephrine and epinephrine increased during both the MAT (deltaNE: +0.074 +/- 0.022 ng/mL, P < .01; deltaEP: +0.068 +/- 0.025 ng/mL, P < .01) and the MDT (deltaNE: +0.067 +/- 0.034 ng/mL, P < .01; deltaEP: +0.030 +/- 0.011 ng/mL, .05 < P < .1). Although the deltaNE was similar in response to the MAT and MDT, the deltaEP during the MDT tended to be less than half the deltaEP during the MAT (.05 < P < .10). The deltaEP was positively correlated with the deltaDBP and the deltaCO during both tasks and with the deltaSBP and the deltaHR during the MAT. These findings suggest that MAT- and MDT-induced increases in BP were attributable mainly to an increase in CO, possibly as the result of stimulation of the sympathoadrenomedullary system. However, the sympathoadrenomedullary system appeared to be more closely associated with the hemodynamic responses during the MAT than during the MDT.

Adrenocorticotropic Hormone↗

Adenovirus mediated gene transfer into rat lung grafts at the time of harvest.

OBJECTIVE: New methods to introduce genetic material into cells in vivo may revolutionize current treatment modalities. Expression of functional genes in lung allografts could be used as a prophylactic strategy for reperfusion injury and rejection. We studied the feasibility of ex vivo adenovirus mediated transfection of rat lung allografts. METHODS: In group I (n = 3) donor rat lungs (Fisher) were flushed with Low Potassium Dextran Glucose (LPDG) solution (20 ml, 20 degrees C). 4 x 10(11) viral particles of adenovirus 5 containing the E. coli lacZ reporter gene coding for beta-galactosidase (AdCMV-beta-Gal) were added to the last milliliter of the flush solution. Lung grafts were stored for 3.5 h at room temperature followed by syngenic orthotopic transplantation (Fisher to Fisher) using a microsurgical cuff technique. On postoperative day 5 the heart lung block was extracted and flushed with x-Gal (beta-Gal substrate) and kept in x-Gal for 3 h at 37 degrees C. Color development was observed macroscopically and plastic embedded sections were used for histologic examination. Group II grafts (n = 3) served as controls and were flushed without adenovirus. RESULTS: X-Gal stained the transfected lung grafts blue, indicating high reporter gene expression. Control lungs did not stain with x-Gal. In group I histological examination demonstrated transfection predominantly in type II pneumocytes. Surprisingly endothelial cells showed no beta-Gal activity. CONCLUSION: This study demonstrates that ex vivo transfection of lung grafts at the time of harvest is a feasible method of gene transfer and results in gene expression after transplantation.

Adenoviridae↗

Inhibition of inducible nitric oxide synthase prolongs rat lung allograft survival.

Nitric oxide (NO) has been demonstrated to be an important immunoregulation molecule in the process of cellular immunologic interactions. Our recent results demonstrated that NO is produced in association with acute allograft rejection and NO inhibition may suppress rejection histologically. This data provides direct evidence of NO in allograft rejection and the immunosuppressive potential of NO inhibitors. In this paper, the effect of NO inhibition on allograft survival was evaluated to investigate the capacity of NO inhibitors as immunosuppressive agents. Seventeen rat left lung transplants from BN donors to F344 recipients were accepted for this study. After surgery, recipients were randomized into two groups and received either aminoguanidine (AG), a highly selective NO synthase inhibitor, 200 mg/kg, intra-peritoneal every 6h (n = 13) or normal saline treatment (n = 4). No production was determined from the recipient's serum nitrite and nitrate levels. Graft survival was monitored via semi-quantitative radiographic aeration scores (AS: 0 = opaque lung to 6 = normal appearing lung). The nitrite and nitrate levels were clearly detectable before the radiographic finding associated with rejection became obvious. Production of NO was significantly inhibited by AG treatment. AG treatment prolonged allograft survival radiographically (12.0 days and 6.0 days for treated and untreated groups respectively, p = 0.0001). These data suggest that the inducible NO is produced in association with acute lung allograft rejection and may serve as a sensitive rejection marker. NO inhibition significantly prolonged rat lung allograft survival but failed to induce immunological tolerance.

Animals↗

Role of natriuretic peptide receptor type C in Dahl salt-sensitive hypertensive rats.

The natriuretic peptide system is suggested to be involved in the pathogenesis of salt-sensitive hypertension; a recent report indicated that disruption of the atrial natriuretic peptide precursor gene caused salt-sensitive hypertension. However, natriuretic peptide receptor (NPR)-A knockout mice did not show enhanced salt sensitivity of blood pressure. The aim of the present study was to investigate the role of NPR-C, the other receptor for atrial natriuretic peptide, in increased salt sensitivity of blood pressure. Dahl salt-sensitive (DS) and salt-resistant (DR) rats were placed on a 0.3% or 8% NaCl diet for 4 weeks. Blood pressure was elevated by salt loading only in DS rats. RNase protection assay demonstrated that NPR-C transcript level in the kidney was reduced by chronic salt loading in both DR and DS rats, whereas expression of NPR-A and NPR-B was not altered. The reduction of NPR-C mRNA in response to salt loading was enhanced in DS compared with DR rats. In situ hybridization indicated that the salt-induced NPR-C change was attributed mainly to suppressed expression of NPR-C in the podocytes. NPR-C gene expression was regulated by salt loading in a tissue-specific manner; the marked decrease in NPR-C mRNA by salt loading was seen only in the kidney. These data suggest that the exaggerated salt-induced reduction of NPR-C in the kidney of DS rats may play an important role in the pathogenesis of salt hypertension in this animal, possibly related to impaired renal sodium excretion.

Animals↗

A newly identified peptide, proadrenomedullin N-terminal 20 peptide, induces hypotensive action via pertussis toxin-sensitive mechanisms.

Proadrenomedullin N-terminal 20 peptide (PAMP) and adrenomedullin (AM) are novel hypotensive peptides. Although they are derived from the same gene product, proadrenomedullin, their hypotensive mechanisms are different; PAMP inhibits the release of norepinephrine from the peripheral sympathetic nerve endings, whereas AM fosters vasodilation by elevating intracellular cAMP, possibly via activation of cholera toxin-sensitive G proteins. In PC12 cells, PAMP inhibited N-type calcium channel via activation of pertussis toxin-sensitive mechanisms. To clarify the relationship between the hypotensive effect of PAMP and pertussis toxin-sensitive mechanisms, we administered pertussis vaccine intraperitoneally into rats for 3 consecutive days. By using mesenteric artery preparation, we showed that PAMP's ability to decrease norepinephrine overflow was significantly attenuated in pertussis toxin-treated rat (-18.5 +/- 6.9%; P<.05 versus control rats). In electrically stimulated pithed rat, PAMP (20 and 40 nmol/kg) showed a hypotensive effect (-13 +/- 5 and -18 +/- 7 mm Hg, respectively; P<.05, P<.01), whereas in pertussis vaccine-treated rat it did not (-2 +/- 3 and -8 +/- 9 mm Hg, respectively; P=NS). Also, in pithed rat, plasma norepinephrine level was significantly elevated by electrical stimulation in both control (0.323 +/- 0.035 ng/mL) and pertussis vaccine-treated groups (0.355 +/- 0.079 ng/mL). After injection of PAMP (40 nmol/kg), plasma norepinephrine level significantly decreased in the control group (0.225 +/- 0.044 ng/mL; P<.01) but not in the pertussis vaccine-treated group (0.392 +/- 0.021 ng/mL; P=NS). Moreover, in conscious rats, intravenous administration of PAMP (40 nmol/kg) did not evoke hypotension after pertussis vaccine treatment, although untreated controls had significantly decreased arterial pressure (-5 +/- 2 versus -20 +/- 3 mm Hg; P<.01). In contrast to PAMP, the administration of AM (1 nmol/kg) significantly reduced the blood pressure of pertussis vaccine-treated as well as control rats (-20 +/- 5 versus -18 +/- 7 mm Hg; P=NS). These results demonstrate that the ability of PAMP to inhibit norepinephrine release from peripheral sympathetic nerve endings and to decrease blood pressure is pertussis toxin sensitive. Our findings thus suggest that despite being derived from the same gene, PAMP and AM apparently produce hypotension by activating different signaling pathways.

Adrenomedullin↗

Novel renin inhibitors containing (2S,3S,5S)-2-amino-1-cyclohexyl-6-methyl-3,5-heptanediol fragment as a transition-state mimic at the P1-P1' cleavage site.

A series of renin inhibitors containing the (2S,3S,5S)-2-amino-1-cyclohexyl-6-methyl-3,5-heptanediol (2-amino-3,5-anti-diol) fragment as a novel transition-state mimic was synthesized, and their biological activities were evaluated. All of the synthesized compounds containing the 2-amino-3,5-anti-diol fragment at the P1-P1' position showed high in vitro renin-inhibitory activity with IC50 values in the 10(-8)-10(-10) M range, and most of them caused a reduction of blood pressure when administered orally to salt-depleted, conscious marmosets. The inhibitor (29) with the 4-hydroxypiperidine residue at the P4 position showed the highest activity in terms of both potency and duration of the blood pressure-lowering effect.

Administration, Oral↗

Nitroarene concentrations and direct-acting mutagenicity of diesel exhaust particulates fractionated by silica-gel column chromatography.

Diesel exhaust particulates were extracted with benzene-ethanol (3:1, v/v) and separated into five fractions by silica-gel column chromatography. Direct-acting mutagenic activity was assayed by the Ames test using the Salmonella typhimurium YG1024 strain. The total activity of five fractions was about four times greater than that of the crude extract, suggesting that the activities in the fractions were suppressed in the crude extract. Strong activity was observed in fraction 4 which was eluted with dichloromethane (61.5% of the total activity) and fraction 5 which was eluted with ethanol (35.3%). Nitropolycyclic aromatic hydrocarbons (NPAHs) were determined by high-performance liquid chromatography with chemiluminescence detection. They were found mainly in fraction 4, although one NPAH was in fraction 3 which was eluted with n-hexane-dichloromethane (3:1, v/v). Based on these results, 53.1% of the activity in fraction 4 was attributed to NPAHs. The contribution of 1-nitropyrene and 1,3-, 1,6- and 1,8-dinitropyrenes was great and that of the other NPAHs was small. The mutagenic compound in fraction 5 was not identified. Fractions 1 and 2, which were eluted with n-hexane, and fraction 3 suppressed the activity of fraction 4. Polycyclic aromatic hydrocarbons in fractions 2 and 3 were considered as possible suppressors of NPAHs.

Animals↗

Preparation of core particles for aqueous film coating using agitation fluidized bed.

Core particles used for aqueous film coating were prepared by agitation fluidized bed granulation, and effect of the damping speed on the granule properties of mass median diameter, geometric standard deviation, apparent density, yield, friability and specific surface area were investigated. Film coating by an aqueous acrylic copolymer (Eudragit NE-30D) was carried out using the core particles granulated under three levels of damping speeds, and the drug release properties of each coated product were identified. Relationship between properties of core particles and the drug release properties were clarified and the optimal granulation conditions to make optimal core particles for film coating were determined.

Acrylic Resins↗

Purification and characterization of dipeptidyl aminopeptidase from Aureobacterium sp. WO26.

We isolated a bacterial strain with an enzyme which releases dipeptide from Gly-Arg-p-nitroanilide. The bacterium was tentatively identified as Aureobacterium sp. The enzyme, named AuDAP, was purified and characterized. It was homogenous by SDS-PAGE and IEF, and had a molecular mass of 90,000 Da by SDS-PAGE and 88,000 Da by gel filtration, so it may be a monomer. The isoelectric point was 3.8 and the optimum pH was 10.0. The purified enzyme hydrolyzed Gly-Arg-pNA, a model substrate for DAP I, and Arg-Arg-MNA, a model substrate for DAP III. However, this enzyme did not hydrolyze Gly-Phe pNA, also a model substrate for DAP I. These results suggested that this enzyme did not fall under the classification of mammalian DAPs and was similar to DAP BI from Pseudomonas sp. WO24 and dDAP from Dictyostelium discoideum, although several differences were observed between them. The N-terminal amino acid sequence of this enzyme showed no significant homology to any enzyme and protein, except only for DAP BI.

Dipeptidyl-Peptidases and Tripeptidyl-Peptidases↗

Innervation of two peptidergic (substance P and calcitonin gene-related peptide) nerves in the cerebral arteries and choroid plexus of the Japanese Newt (Triturus pyrrhogaster).

The pattern of cerebrovascular substance P (SP) and calcitonin gene-related peptide (CGRP) immunoreactive (-IR) innervation was investigated in the newt. SP-IR nerves supplying the cerebral arterial tree and choroid plexus were positive for CGRP, but negative for vasoactive intestinal polypeptide or neuropeptide Y. It is suggested that cerebrovascular SP- and CGRP-IR axons are sensory in nature. The supply of SP- and CGRP-IR nerves to the major cerebral arteries is relatively poor. Nevertheless, numerous SP- and CGRP-IR axons, which are contained in the fiber bundles on the cerebral carotid artery and the basilar artery, spread widely over the microvascular-epithelial regions of the choroid plexuses. It must be considered in relation to the significant role of SP- and CGRP-IR neuronal mechanisms responsible to the microcirculation, cerebrospinal fluid (CSF) production and transport action within the choroid plexus in the nutrition of the newt brain via the CSF.

Animals↗