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Biomedical subjects

A Ohno

Publications and source records attributed to A Ohno.

At least 91 records · Page 5Linked to original sources

Structural elucidation of N-liked sugar chains of storage glycoproteins in mature pea (Pisum sativum) seeds by ion-spray tandem mass spectrometry (IS-MS/MS).

The structures of N-linked sugar chains of the storage glycoproteins in mature pea seeds have been estimated. Nine pyridylaminated (PA-) N-linked sugar chains were derived and purified from the hydrazinolysate of the storage glycoproteins by reversed-phase HPLC and size-fractionation HPLC. The structures of the PA-sugar chains purified were first identified by two-dimensional PA-sugar chain mapping, considering the data of sugar composition analysis or sequential exoglycosidase digestions. The deduced structures were further analyzed by IS-MS/MS analysis. Every relevant fragment ion derived from all PA-sugar chains could be assigned on the basis of deduced structures. The estimated nine structures fell into two categories; the first was a typical oligomannose type (Man8-3GlcNAc2; 77.7%) which can be hydrolyzed by endo-beta-N-acetylglucosaminidase PS [Y. Kimura et al., Biosci. Biotech. Biochem., 60, 228-232 (1996)], the second was a xylose-containing type (Man4-3Xyl1GlcNAc2, Man3Fuc1Xyl1GlcNAc2; 22.3%). Among these structures, Man8GlcNAc2 (19.7%), Man6GlcNAc2 (24.7%), and Man3Fuc1Xyl1GlcNAc2 (18.8%) were the dominant structures.

Carbohydrate Sequence↗

[p16/CDKN2/MTS1 gene abnormality in lung cancer].

p16/CDKN2/MTS1, a putative tumor suppressor gene, located in the chromosome 9p21 region was cloned in 1994. This gene encodes a protein that binds to and inhibits cyclin-dependent kinase 4 (CDK4), and plays a role in cell cycle regulation. p16 gene has been reported to be homozygously deleted in a variety of human tumors. Using PCR-based assays for exons 2 and 3 of p16 gene, we found homozygous deletions in 15 (48%) of 31 non-small cell lung cancer (NSCLC) cell lines. In contrast, none of 11 small cell lung cancer (SCLC) cell lines had p16 deletions (p = 0.012). Taken together with results previously reported, our data indicate that p16 gene is more frequently deleted in NSCLC than in SCLC. Although the incidence of p16 abnormalities in NSCLC surgical specimens is inconclusive, recent reports suggest that p16 abnormalities are well correlated with tumor dissemination. The role of p16 gene in pathogenesis of lung cancer remains to be elucidated.

Carcinoma, Non-Small-Cell Lung↗

Ketoconazole inhibits organic osmolyte efflux and induces heat shock proteins in rat renal medulla.

Although ketoconazole (KC) is known to inhibit the cellular efflux of organic osmolytes in vitro, it is not known whether this effect can also be shown in vivo. Inhibition of osmolyte efflux by KC would impair osmotic adaptation and result in stress to the cells of the renal medulla when extracellular osmolality falls. Stress-inducible heat shock proteins (HSPs) may also participate in this response to osmotic stress. The aim of the present study was thus to establish whether KC inhibits organic osmolyte efflux from the cells of the renal medulla in vivo in response to a furosemide diuresis, and to establish whether HSPs are involved. A 20-minute furosemide infusion reduced urine osmolality and medullary urea content in control and KC-treated rats similarly. However, the efflux of methylamines (glycerophosphorylcholine, betaine) and polyols (myo-inositol, sorbitol) was attenuated in KC-treated rats while the efflux of amino acids was not significantly affected. Phosphorylation of HSP25 after the 20-minute furosemide diuresis was increased in KC rats. With continuing diuresis this returned to control levels after three hours. While short-term (up to 3 hr) diuresis did not alter the absolute amounts of HSPs in the renal medulla, long-term (24 or 48 hr) diuresis was associated with significantly increased amounts of HSP25 and HSP72 in KC-treated rats compared with control. These results suggest that KC inhibits the efflux of methylamines and polyols, thus impeding osmoadaptation of renal medullary cells during the onset of diuresis. This situation apparently increases the osmotic stress experienced by the cells of the renal medulla and provokes expression of HSP25 and HSP72.

Animals↗

Blood coagulation equilibrium in rat liver microcirculation as evaluated by endothelial cell thrombomodulin and macrophage tissue factor.

The regulatory mechanisms of microcirculation might differ in the liver from other organs, because macrophages are resident in the hepatic sinusoids and sinusoidal endothelial cells are unique in shape and function. Thrombomodulin expression in endothelial cells and tissue factor activity in isolated macrophages were studied in the liver and lung of rats. In normal rats, the thrombomodulin expression was minimal in hepatic sinusoids, but prominent in pulmonary capillaries, while the tissue factor activity in the presence of endotoxin was higher in pulmonary macrophages than in Kupffer cells, although the levels in the absence of endotoxin were comparable in both cells. The tissue factor activity in hepatic macrophages was increased after priming of the cells with Corynebacterium parvum or after induction of liver necrosis or cirrhosis with carbon tetrachloride. In the necrotic or cirrhotic liver, increased thrombomodulin expression was seen along capillaries extending in necrotic areas and regenerating nodules, but this increase was minimal in the Corynebacterium parvum-treated rat liver. Blood coagulation equilibrium in microcirculation regulated by endothelial cells and macrophages may differ between the liver and lung. Such equilibrium in the liver may vary depending on pathological status.

Animals↗

ICAM-1 expression in hepatocytes following dissociation of cell-to-cell contact in rats.

ICAM-1 was not detected immunohistologically in hepatocytes in normal rats, but detectable in centrilobular degenerative hepatocytes in carbon tetrachloride-intoxicated rats. ICAM-1 expression was observed even in normal hepatocytes following liver perfusion with Hank's balanced salt solution at a flow rate of 4.2 mL/g liver weight/min or with the same solution containing collagenase or EGTA at the physiological flow rate (1.4 mL/g liver weight/min). Such expression was also observed when liver perfusion was performed after pretreatment of rats with cycloheximide. On electron microscopy, ICAM-1 was exclusively stained on hepatocyte plasma membrane that was detached from the plasma membrane of adjacent hepatocytes. ICAM-1 mRNA and ICAM-1 protein were detected in hepatocytes freshly isolated from normal rats. Thus, ICAM-1 expression in degenerative hepatocytes as well as in hepatocytes following liver perfusion can be assumed to result from dissociation of cell-to-cell contact.

Animals↗

Use of prostaglandin I2 analog in treatment of massive hepatic necrosis associated with endothelial cell injury and diffuse sinusoidal fibrin deposition.

Endothelial cell damage causes massive hepatic necrosis as a result of fibrin deposition in the hepatic sinusoids. When a stable analog of prostaglandin I2, beraprost sodium, was administered to rats given either dimethylnitrosamine, carbon tetrachloride, or endotoxin following Corynebacterium parvum administration, the hepatic necrosis produced in each was attenuated, but to a greater extent in the dimethylnitrosamine and endotoxin/Corynebacterium parvum models, where fibrin deposition in the hepatic sinusoids occurs, as compared to the carbon tetrachloride model, where such fibrin deposition does not occur. Beraprost sodium reduced the expected increase of portal venous pressure in the endotoxin/Corynebacterium parvum model without affecting plasma thrombin-antithrombin III complex levels. Beraprost sodium also significantly reduced cell killing of both isolated rat hepatocytes and hepatic sinusoidal endothelial cells exposed to tert-butyl hydroperoxide when compared to controls. Beraprost sodium could prove to be a therapeutic candidate for the treatment of hepatic necrosis, particularly in cases associated with fibrin deposition in the hepatic sinusoids because of its fibrin clot-clearing action.

Animals↗

Ischemia-induced changes in cell element composition and osmolyte contents of outer medulla.

The effect of 60 minutes of ischemia and subsequent reflow on cell electrolyte and water homeostasis in the rat renal outer medulla was studied by determining sodium, potassium, chloride and phosphorus concentrations and dry weights in individual tubule cells using electron microprobe analysis. HPLC was employed to measure glycerophosphorylcholine, betaine, inositol and sorbitol, as well as several free amino acids in cortical and outer medullary tissue. Ischemia caused cell sodium and chloride concentrations to rise and cell potassium and phosphorus concentrations and cell dry weights to fall. These changes were most pronounced in the proximal straight tubule (PST) cells, less in thick ascending limb (MAL) and outer medullary collecting duct (OMCD) dark cells and barely noticeable in OMCD light cells. Except for some PST cells these changes were almost completely reversed 60 minutes after reintroducing blood flow. After 24 hours of reperfusion the number of PST cells exhibiting deranged electrolyte homeostasis was greatly increased. The contents of glycerophosphorylcholine, betaine or inositol in the cortex and outer medulla were not affected immediately following ischemia. After 24 hours of reperfusion, the cortical contents of osmolytes were still normal, while outer medullary contents were reduced. Except for low glycine contents, the ischemia-induced changes in amino acid contents were reversed after 24 hours of reflow in the cortex, whereas in the outer medulla aspartate, glycine and taurine contents were diminished. These results indicate increasing manifestation of PST cell injury in the reflow period. The defective re-accumulation of organic osmolytes and free amino acids in the outer medulla during reflow may reflect reduced interstitial tonicities, or may be due to inappropriate cellular uptake, synthesis or/and release.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of chronic hyperfiltration on proximal tubule bicarbonate transport and cell electrolytes.

The compensatory response to unilateral nephrectomy (UNX) was investigated by a combination of renal clearance, microperfusion, electron microprobe, and morphological techniques. Filtration rate was significantly elevated 21 days following UNX and associated with a marked stimulation of bicarbonate and fluid absorption in the proximal tubule. Analysis of kinetic data of bicarbonate transport demonstrated strong flow-dependent activation of bicarbonate absorption in both control and experimental condition. The bicarbonate level at which half-saturation (apparent Kd) of transport occurred decreased uniformly at higher flow rates, but maximal transport rates (apparent Vmax) in the proximal tubule doubled in the remnant kidney. The flow dependence of bicarbonate transport in control and experimental conditions can be explained by an apparent unstirred layer effect modifying radial bicarbonate gradients in the tubule. Both Na/H-exchange and electrogenic H secretion contribute to bicarbonate absorption, but only Na/H-exchange increased significantly in proximal tubules of UNX rats. Cell ion concentrations after UNX were unchanged in cortical tubules, consistent with proportionately enhanced apical and basolateral ion transport. Proximal tubule cell rubidium concentration measured after a 30-second rubidium infusion as an index of basolateral Na,K-ATPase activity was unchanged in UNX rats. Inasmuch as cell volume increased significantly (25%), these data are consistent with a proportionate and similar stimulation of rubidium uptake and Na,K-ATPase activity.

Animals↗

Inferior vena cava occlusion with pulmonary embolism because of complications due to ruptured abdominal aneurysm demonstrated by radionuclide venography.

A 66-year-old man with an abdominal aortic aneurysm confirmed by CT had bilateral swelling of the lower extremities with pain radiating to the back. Radionuclide venography and pulmonary scintigraphy demonstrated occlusion of the inferior vena cava and multiple pulmonary emboli, with a hot spot in the liver. Surgery revealed a ruptured abdominal aortic aneurysm that occluded the inferior vena cava, fistula formation, and extensive thrombosis of the inferior vena cava proximal to the occlusion site. Radionuclide venography was useful in detecting venous obstruction and the collateral formation represented by the hot spot in the liver as complications of the ruptured abdominal aortic aneurysm, and in assessing the improvement of pulmonary embolism by medical therapy.

Aged↗

Role of exotoxin A in inducing severe Pseudomonas aeruginosa infections in mice.

The effects of exotoxin A (EXA) from Pseudomonas aeruginosa on polymorphonuclear leucocytes (PMNLs) were studied in a mouse model and in vitro. P. aeruginosa PA103, which produced EXA, was 20 times more virulent for normal mice than was its EXA-deficient mutant, PA103-29. EXA was detected in the plasma of mice infected with P. aeruginosa PA103, and its presence correlated with increasing numbers of bacteria in the blood and internal organs. A monoclonal antibody (MAb) against EXA prevented the death of the mice if it was given simultaneously with, or 2 h before, infection with strain PA103. The number of PMNLs in murine blood decreased by 50% within 30 min of intravenous injection of EXA, but this decrease was prevented by simultaneous or prior injection of MAb to the toxin. EXA inhibited in-vitro phagocytosis and killing of P. aeruginosa by human and murine PMNLs and decreased the number of the PMNLs by between 60 and 68%. Collectively, these results not only confirm that EXA is toxic in vivo, but also suggest that this toxin accelerates the growth of virulent P. aeruginosa in mice.

ADP Ribose Transferases↗

Role of LPS length in clearance rate of bacteria from the bloodstream in mice.

Strains of Pseudomonas aeruginosa isolated from patients with cystic fibrosis (CF) never spread systemically. This may be due to serum sensitivity since these strains are very sensitive to complement-mediated bactericidal activity. A serum-resistant mutant, P. aeruginosa TUM3 HSR, was obtained from serum-sensitive strain TUM3 from a CF patient in order to clarify the mechanism of failure of systemic spread. LPS profiles on silver-stained gels and immunological analysis revealed that a long O-polysaccharide side chain was overproduced on the LPS molecules of TUM3 HSR as compared with the LPS of TUM3. The clearance rate from the bloodstream in mice was compared in the two strains. The number of TUM3 bacteria in 1 ml of blood, 10 min after injection into the tail vein, significantly decreased from 1.7 x 10(8) to 3.7 x 10(5) c.f.u. ml-1. In contrast, TUM3 HSR was not eliminated during the same period (decrease from 1.9 x 10(8) to 3.4 x 10(7) c.f.u. ml-1). Interestingly, these isogenic strains were not killed by 40% murine serum, probably reflecting immaturity of the complement-mediated killing system in mice. These results pointed to a correlation between LPS structure and blood clearance rate in mice. This was confirmed by examining blood clearance kinetics using the smooth-LPS strain Salmonella typhimurium LT2 and LPS-deficient mutants derived from it. S. typhimurium LT2 resisted blood clearance while the LPS-deficient mutants were cleared rapidly. None of the S. typhimurium strains were killed by murine serum. The number of P. aeruginosa TUM3 and S. typhimurium LPS-deficient mutants trapped in the liver following injection into the peripheral circulation was greater than that of their counterparts.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Role of adhesion between activated macrophages and endothelial cells in the development of two types of massive hepatic necrosis in rats.

Sinusoidal endothelial cell damage is produced by activation of hepatic macrophages after endotoxin administration in rats pretreated with Cornyebacterium parvum or undergoing 70% hepatectomy. Such damage causes fibrin deposition in the hepatic sinusoids leading to massive hepatic necrosis. In the C. parvum model, cytotoxic mediators, such as tumour necrosis factor (TNF)alpha and superoxide anions released from activated hepatic macrophages directly destroy sinusoidal endothelial cells. In contrast, in the partial hepatectomy model, endothelial cell damage occurs as a result of fibrin deposition due to derangement of the coagulation equilibrium regulated by tissue factor and thrombomodulin expressed on hepatic macrophages and sinusoidal endothelial cells, respectively. Immunohistological examination revealed that the expression of ICAM-1 in sinusoidal endothelial cells and LFA-1 in hepatic macrophages was greater in both models than in normal rats preceding the development of hepatic necrosis. The extent of liver injury was significantly attenuated by treatment with monoclonal antibodies against both adhesion molecules in the C. parvum model, but aggravated in the partial hepatectomy model, compared to control rats. We conclude that adhesion of activated macrophages to endothelial cells via LFA-1 and ICAM-1 in the hepatic sinusoids is essential for endothelial cell destruction in the C. parvum model, but can act protectively against provocation of fibrin deposition in the hepatectomy model.

Animals↗

Possible cause of primary graft non-function after orthotopic liver transplantation: a hypothesis with rat models.

The cause of primary graft non-function after orthotopic liver transplantation (OLTX) is uncertain, but its clinical features are similar to fulminant hepatic failure with coagulopathy. In preserved livers, endothelial cell damage in the hepatic sinusoids is characteristic, indicating that fibrin deposition in the hepatic sinusoids, which can cause massive hepatic necrosis, might occur in the liver after OLTX. When rat liver was preserved in University of Wisconsin solution at 1 degree C, detachment of endothelial linings into sinusoidal lumens developed with fat-storing cell damage after 18 h. In this liver, hepatic macrophages were activated after reperfusion. Tissue factor activity in hepatic macrophages isolated from livers after OLTX was significantly increased compared to the control liver and this increase was enhanced by addition of endotoxin. In the preserved and transplanted livers, thrombomodulin expression in endothelial cells disappeared and fibrin deposition was seen in the hepatic sinusoids. Intravenous infusion therapy with antithrombin III attenuated liver injury 24 h after OLTX following preservation for 18 h. These results suggest that intravascular coagulation in the hepatic sinusoids associated with liver injury occurs in the liver after OLTX following cold preservation. This coagulopathy may be caused by sinusoidal endothelial cell damage due to regulatory imbalance in coagulation as a result of increased tissue factor activity in hepatic macrophages and decreased thrombomodulin activity in sinusoidal endothelial cells. Fat-storing cell damage may also contribute to the endothelial cell damage. A hypothesis regarding the cause of primary graft non-function after OLTX is proposed.

Adenosine↗

Cloning and sequence of the gene encoding a cefotaxime-hydrolyzing class A beta-lactamase isolated from Escherichia coli.

Escherichia coli TUH12191, which is resistant to piperacillin, cefazolin, cefotiam, ceftizoxime, cefuzonam, and aztreonam but is susceptible to cefoxitin, latamoxef, flomoxef, and imipenem, was isolated from the urine of a patient treated with beta-lactam antibiotics. The beta-lactamase (Toho-1) purified from the bacteria had a pI of 7.8, had a molecular weight of about 29,000, and hydrolyzed beta-lactam antibiotics such as penicillin G, ampicillin, oxacillin, carbenicillin, piperacillin, cephalothin, cefoxitin, cefotaxime, ceftazidime, and aztreonam. Toho-1 was markedly inhibited by beta-lactamase inhibitors such as clavulanic acid and tazobactam. Resistance to beta-lactams, streptomycin, spectinomycin, sulfamethoxazole, and trimethoprim was transferred by conjugational transfer from E. coli TUH12191 to E. coli ML4903, and the transferred plasmid was about 58 kbp, belonging to incompatibility group M. The cefotaxime resistance gene for Toho-1 was subcloned from the 58-kbp plasmid by transformation of E. coli MV1184. The sequence of the gene for Toho-1 was determined, and the open reading frame of the gene consisted of 873 or 876 bases (initial sequence, ATGATG). The nucleotide sequence of the gene (DDBJ accession number D37830) was found to be about 73% homologous to the sequence of the gene encoding a class A beta-lactamase produced by Klebsiella oxytoca E23004. According to the amino acid sequence deduced from the DNA sequence, the precursor consisted of 290 or 291 amino acid residues, which contained amino acid motifs common to class A beta-lactamases (70SXXK, 130SDN, and 234KTG). Toho-1 was about 83% homologous to the beta-lactamase mediated by the chromosome of K. oxytoca D488 and the beta-lactamase mediated by the plasmid of E. coli MEN-1. Therefore, the newly isolated beta-lactamase Toho-1 produced by E. coli TUH12191 is similar to beta-lactamases produced by K. oxytoca D488, K. oxytoca E23004, and E. coli MEN-1 rather than to mutants of TEM or SHV enzymes. Toho-1 has shown the highest degree of similarity to K. oxytoca class A beta-lactamase. Detailed comparison of Toho-1 with other beta-lactamases implied that replacement of Asn-276 by Arg with the concomitant substitution of Thr for Arg-244 is an important mutation in the extension of the substrate specificity.

Amino Acid Sequence↗

In vitro and in vivo antibacterial activities of S-1090, a new oral cephalosporin.

S-1090, a new oral cephalosporin, was active against selected gram-negative bacteria and methicillin-susceptible clinical isolates of Staphylococcus aureus, Staphylococcus epidermidis, and Staphylococcus warneri, against which it had excellent activity. S-1090 was the most active compound against Streptococcus pyogenes and Streptococcus agalactiae among the agents compared. The in vivo efficacy of S-1090 against systemic and urinary and respiratory tract infections caused by gram-positive and -negative bacteria was superior to that expected from the in vitro and in vivo activities of the agents against which it was compared.

Animals↗

Restoration of urine concentrating ability and accumulation of medullary osmolytes after chronic diuresis.

Restoration of urine osmolality (Uosm) and medullary osmolyte contents after chronic diuresis was studied in rats infused for 6 days with furosemide and subsequently given the vasopressin analogue, 1-desamino-8-D-arginine vasopressin (DDAVP). Papillary tip intra- and extracellular electrolyte concentrations were measured by electron microprobe analysis, tissue contents of methylamines (glycerophosphorylcholine, betaine), polyols (myo-inositol, sorbitol), and several amino acids in different kidney zones by high-performance liquid chromatography. Administering DDAVP continuously after diuresis increased Uosm from (means +/- SE) 348 +/- 8 to 1,265 +/- 127 after 1 day and 2,485 +/- 186 mosmol/kgH2O after 3 days. The sum of all osmolytes at the papillary tip rose from 309.2 +/- 28.9 to 690.9 +/- 105.8 and 1,282.8 +/- 21.0 mmol/kg protein after days 1 and 3, respectively. Although interstitial tonicity (sum of Na, Cl, and K concentrations) was increased by 116 and 223% after 1 and 3 days DDAVP, intracellular tonicity was similar in chronic diuresis and following 1 or 3 days DDAVP. Coadministration of DDAVP with betaine, myo-inositol, and choline ("osmolyte treatment") did not accelerate the restoration of Uosm but caused significantly higher contents of osmolytes (except myo-inositol) in inner medulla and/or papilla after 3 days. In a minority of animals, restoration of Uosm and reaccumulation of medullary osmolytes were impeded in both DDAVP- and DDAVP/osmolyte-treated rats. These data indicate that, after chronic diuresis, accumulation of organic osmolytes and restoration of Uosm proceed in parallel. Capacity for transport and/or synthesis of organic osmolytes, rather than their availability, appear to limit reaccumulation on the first day of recovery. By the third day, delivery of some osmolytes or their precursors may limit the restoration of medullary osmolyte content. The failure of some rats to attain sufficient concentrating ability within this time period may be related to deficient reaccumulation of medullary osmolytes.

Amino Acids↗