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Biomedical subjects

M Nakano

Publications and source records attributed to M Nakano.

At least 19 recordsLinked to original sources

Structure of the acidic N-linked carbohydrate chains of the 55-kDa glycoprotein family (PZP3) from porcine zona pellucida.

N-linked carbohydrate chains of the major 55-kDa family, PZP3, of porcine zona pellucida glycoproteins are composed of neutral (28%) and acidic (72%) complex-type chains. The structures of the main components of the neutral chain have been established [Noguchi, S., Hatanaka, Y., Tobita, T. & Nakano, M. (1992) Eur. J. Biochem. 204, 1089-1100]. Here we report the structures of the acidic chains. Only two kinds of acidic fragments were released from PZP3 by endo-beta-galactosidase digestion following beta-elimination of O-linked chains. 500-MHz one-dimensional and two-dimensional 1H-NMR spectroscopy revealed their structures to be Sia alpha(2-3)Gal beta(1-4) [HSO3-6]GlcNAc beta(1-3)Gal and HSO3-6GlcNAc beta(1-3)Gal, showing that the sulfate-containing acidic chains are constructed with non-branched N-acetyllactosamine repeats which have sialic acid(s) at the non-reducing end(s) and sulfate at the C-6 position of GlcNAc residues. The acidic N-linked chains obtained from PZP3 by hydrazinolysis were separated into diantennary chains (34%) and tri- and tetra-antennary chains (66%) by concanavalin-A--agarose gel chromatography. The diantennary chains and their sialidase digests were fractionated by DEAE-HPLC. From the analyses of the endo-beta-galactosidase digests of each fraction, structures of the diantennary acidic chains were determined. They are classified into four groups. The first group is the sialylated chains without the sulfated N-acetyllactosamine repeating unit. The other three groups have the chains of various lengths differing in the number of monosulfated N-acetyllactosamine unit. These chains are extended from the Man alpha(1-3) branch of the trimannosyl core in the second group, from the Man alpha(1-6) branch in the third group, and from both branches in the fourth group. The structural features of the tri- and tetra-antennary acidic chains are also presented.

Animals

"Rogue" lymphocytes among Ukrainians not exposed to radioactive fall-out from the Chernobyl accident: the possible role of this phenomenon in oncogenesis, teratogenesis, and mutagenesis.

Cultured lymphocytes exhibiting extreme cytogenetic damage (rogue cells) were observed in preparations from 8 of 24 individuals sampled in Krasilovka, a Ukrainian village receiving little or no increased radiation after the Chernobyl disaster, but were not observed in an additional 24 persons from two Russian towns in the more contaminated area. This observation cements the worldwide occurrence of these cells. The present data plus a review of the literature establish that rogue cells appear in brief bursts simultaneously in certain individuals of discrete populations. We suggest that the pattern is consistent with the action of a viral trigger that acts directly or indirectly--the latter possibly through the activation of latent chromosomal retroposons. If this phenomenon occurs in other tissues, it may have important implications for oncogenesis, teratogenesis, mutagenesis, and evolution.

Accidents

A high involvement of O2- possibly generated in inner membranes for iron-induced microsomal lipid peroxidation.

The lipid peroxidation of and the O2- generation by rat liver microsomes in the presence of NADPH or both NADPH and Fe3+ were determined by thiobarbituric acid-reacting substance formation and by chemiluminescence intensities with a cypridina luciferin analog, 2-methyl-6-(p-methoxyphenyl)-3, 7-dihydroimidazo[1,2-a]pyrazin-3-one(MCLA), as a chemiluminescence probe. Judging from the experiments with various inhibitors on the O2- generation and the lipid peroxidation, O2- generated, at intramembranous site, by cytochrome P-450 system is considered to be highly involved in the iron-induced lipid peroxidation.

Animals

Clinical and prognostic significance of monoclonal small cells in the peripheral blood and bone marrow of various B-cell lymphomas.

Discordant lymphomas, in particular nodal large-cell lymphomas with marrow small-cell lymphoma, were discovered recently, and the prognosis of patients with such disease has been discussed. The small cells were reported to be small lymphocytic or small cleaved lymphoma cells. We have detected, by kappa-lambda imaging (KLI) with delta-curves, using a flow cytometer, small lymphoma cells in the peripheral blood (PB) and bone marrow (BM) of 41 untreated patients with various B-cell lymphomas expressing surface Ig (sIg+BCL), and evaluated their clinical and prognostic significance. Small cells were found in approximately 90% (37 of 41) of sIg+BCL patients when either PB or BM was analyzed and, overall, the presence of small cells correlated well with the disease activity. However, in some patients, a few cells remained in the PB (16%) or BM (27%) even when they were in remission, whereas in others, the cells were presented in the PB or BM several months before relapse. These results suggest that the detection of small cells in PB or BM by KLI may be helpful for screening and monitoring patients with sIg+BCL. When the patients were subdivided into three groups (normal, low, and high amplitude), according to the abnormal grade criteria of the delta-curves, which were based on the results of both PB-KLI and BM-KLI, the survival of the high-amplitude group tended to be shorter than that of the normal group (P = .068), which was particularly marked when the follow-up period exceeded 2 years. Moreover, as the group grading worsened (normal less than low less than high), the complete response rates deteriorated (100%, 71%, and 60%, respectively) and the respective relapse rates after complete remission increased (17%, 40%, and 67%). Thus, the determination of the proportion of small lymphoma cells in PB and BM by KLI may be useful for predicting the prognoses of patients with sIg+BCL.

Antineoplastic Combined Chemotherapy Protocols

Possible involvement of superoxide anion in the induction of cyanide-resistant respiration in Hansenula anomala.

A chemiluminescence study showed that Qi site inhibitors such as antimycin A induce O2- generation in respiring cyanide-sensitive mitochondria from the yeast, Hansenula anomala. The O2- generation was suppressed by radical scavengers such as flavone, butylated hydroxyanisole, and Co0. Induction of cyanide-resistant respiration in H. anomala cells by Qi site inhibitors was also inhibited by these radical scavengers. Furthermore, antimycin A-induced synthesis of the mitochondrial 36-kDa protein, which is thought to be the alternative oxidase functional in the cyanide-resistant respiratory pathway, was abolished by the addition of flavone. These observations suggest that O2- is somehow involved in the induction of cyanide-resistant respiration.

Anions

Central monoaminergic mechanisms in mice and analgesic activity of spiradoline mesylate, a selective kappa-opioid receptor agonist.

We assessed the roles of brain monoaminergic systems in the analgesic action of spiradoline, a novel kappa-opioid agonist, behaviorally and biochemically by using noradrenaline (NE) and serotonin (5-HT) uptake inhibitors. Analgesic activity was evaluated by measuring latency time in the mouse tail-pinch test. Spiradoline at intramuscular doses of 0.3 mg/kg or more elicited a significant analgesic effect and the metabolism of both NE and 5-HT was significantly increased in brainstem and cortex. Pretreatment of the mice with imipramine, desipramine or clomipramine caused marked potentiation of spiradoline analgesia, whereas reserpine and phenoxybenzamine inhibited it. Morphine analgesia was enhanced by clomipramine but not by imipramine, desipramine or phenoxybenzamine. These results suggest that excitation of noradrenergic and serotonergic pathways in the brain appears to be involved in spiradoline analgesia, and that, as regards tail-pinch nociception, the kappa-opioid agonist acts on the noradrenergic pathway more potently than morphine.

Analgesics

Structural analysis of the N-linked carbohydrate chains of the 55-kDa glycoprotein family (PZP3) from porcine zona pellucida.

The N-linked oligosaccharides, released by hydrazinolysis from the major 55-kDa family, PZP3, of porcine zona pellucida glycoproteins, were separated into neutral (28%) and acidic (72%) carbohydrate chains by anion-exchange HPLC. By competition assay, it was shown that the mixture of neutral chains has the sperm-receptor activity, while that of the acidic chains has no activity. Their carbohydrate structures were analyzed after the reducing ends were modified with 2-aminopyridine. The neutral chains were fractionated into several components by reverse-phase and normal-phase HPLC. By sequential glycosidase digestion and 500-MHz 1H-NMR spectroscopy, the structures of three major components were determined. The structures of some of the minor components were analyzed only by sequential glycosidase digestion. By these analyses, it was found that a diantennary complex-type structure with a fucose residue was predominant in the neutral chains. Furthermore, the analyses of the endo-beta-galactosidase digests of the acidic chains revealed that the partially sulfated and sialylated N-acetyllactosamines are linked to the non-reducing ends of diantennary, triantennary, and tetra-antennary complex-type neutral chains, forming heterogeneous acidic chains.

Animals

Generation of superoxide during the enzymatic action of tyrosinase.

Evidence for the generation of superoxide anion in an enzymatic action of tyrosinase is reported. In the dopatyrosinase reaction, 1 mol of O2 is required for the production of 2 mol of dopaquinone, 1 mol of dopachrome, and 1/4 mol of O2-. Superoxide dismutase and 2-methyl-6-phenyl-3,7-dihydroimidazo[1,2-a]pyrazin-3-one (a chemiluminescence probe and O2 trap) do not inhibit the rate of dopachrome formation from dopa in the presence of tyrosinase, indicating that free O2- is not utilized for metabolizing dopa. ESR studies for the accumulation of semiquinone radicals generated from tyrosine and N-acetyltyrosine in the presence of tyrosinase imply that O2- is not generated by the semiquinone + O2 reaction. Since the addition of H2O2 and dopa to tyrosinase promotes the release of O2- and formation of dopachrome, the Cu(II)O2-Cu(I) complex could be formed as a intermediate (an active form of tyrosinase); [Cu(II)]2 + H2O2 in equilibrium Cu(I)O2-Cu(II) + 2H+.

Basidiomycota

Anticancer effects of free polyunsaturated fatty acids in an oily lymphographic agent following intrahepatic arterial administration to a rabbit bearing VX-2 tumor.

The anti-hepatic cancer effects of three free polyunsaturated fatty acids (linoleic, alpha-linolenic, and gamma-linolenic acids) dissolved in an oily lymphographic agent, Lipiodol Ultra-Fluid (Lipiodol), following intrahepatic arterial administration were examined using a rabbit liver cancer model, VX-2. The tumor was inoculated into the subcapsular parenchyma of the liver of rabbits, and Lipiodol alone or Lipiodol containing each one of the free fatty acids was administered into the hepatic artery 14 days after inoculation. The rabbits were sacrificed 7 days after administration. Lipiodol containing one of the fatty acids selectively remained in the tumor area. Although VX-2 tumor grew extensively in both the untreated group and the group that received Lipiodol alone, growth of VX-2 tumor was greatly suppressed in the group that received Lipiodol containing the free fatty acid. Pathological observation also showed that Lipiodol containing the free fatty acid had an anticancer effect on VX-2 tumor growing in the liver of rabbits. Average survival days in the group treated with Lipiodol containing gamma-linolenic acid were significantly prolonged compared with those in the control groups. Although growth rates of the tumor at the death of rabbits were large in the control groups, VX-2 tumor shrank at death of five rabbits of six in the group treated with Lipiodol containing gamma-linolenic acid. These results suggest that the intrahepatic arterial administration of Lipiodol containing the free fatty acids is an effective method of delivery of these fatty acids as anticancer agents.

Animals

Detecting of the minimal residual disease contaminated in peripheral blood stem cell transplantation in the B-cell malignant lymphoma patients.

For sufficient collection of hemopoietic stem cells from peripheral blood for autologous peripheral blood stem cell transplantation (PBSCT), four patients with B-cell-type non-Hodgkin lymphoma (B-NHL) were examined for the appearance of circulating hemopoietic progenitors in blood (PSC) during the hemopoietic recovery phase following marrow ablative therapy in combination with or without administration of recombinant human granulocyte colony-stimulating factor (rhG-CSF). Each patient received only chemotherapy in the first course, and rhG-CSF (1 microgram/kg/day) was administered for 14 consecutive days from the last day of the second chemotherapy. In the second chemotherapy course with rhG-CSF administration, white blood cell (WBC) counts demonstrated two peaks, and the appearance of granulocyte-macrophage precursor cells (CFU-GM) in blood at the maximum level was coincident with the second peak of WBC elevation. Erythroid precursor cells (BFU-E) were also detectable in blood after chemotherapy but the peak level was not enhanced by the use of rhG-CSF. To determine whether the minimal residual disease (MRD) cells were contaminated in PSC corrected from blood, kappa-lambda imaging (KLI) analysis was performed to detect the malignant B-cell population (mBp) before and after chemotherapy. No mBp was found in two of four patients in blood, although three of them were involved with mBp in bone marrow. The presence of mBp was detected in two patients both before and after chemotherapy, even though these cells were hardly detected morphologically, suggesting the necessity of judging for the incidence of contamination of MRD cells when collecting PSCs.

Adult

Control of drug release with a combination of prodrug and polymer matrix: antitumor activity and release profiles of 2',3'-diacyl-5-fluoro-2'-deoxyuridine from poly(3-hydroxybutyrate) microspheres.

Drug release was controlled by a combination of prodrug and polymer matrix. Prodrugs of 5-fluoro-2'-deoxyuridine with different physicochemical properties were synthesized by esterification with aliphatic acids (propionate, n-butyrate, and n-pentanoate). Microspheres containing these ester prodrugs were prepared with poly(3-hydroxybutyrate) of three molecular weights (65,000, 135,000, and 450,000). The release rates from the spheres depended on both the lipophilicity of the prodrug and the molecular weight of the polymer. Regardless of the polymer, the relative release rates were propionate greater than butyrate greater than pentanoate. The release of butyrate and pentanoate from the spheres consisting of low-molecular-weight polymer (M(r), 65,000) was faster than that from the spheres of higher molecular weight (M(r), 135,000 or 450,000). A single intraperitoneal injection of spheres of the highest molecular weight polymer containing butyrate or pentanoate resulted in higher antitumor effects against P388 leukemia in mice than did free prodrugs given over a period of five consecutive days. The polymer sphere itself showed low toxicity to and good biocompatibility with mice and rats.

Animals

Stereoselective pharmacokinetics of a novel uricosuric antihypertensive diuretic in rats: pharmacokinetic interaction between enantiomers.

5-Dimethylsulfamoyl-6,7-dichloro-2,3-dihydrobenzofuran-2-carboxyli c acid (DBCA), a promising uricosuric, diuretic, and antihypertensive agent, was administered intravenously to rats. The levels of DBCA in plasma and the areas under the curve of concentration versus time (AUC values) of the S(-)-enantiomer were higher than those of the R(+)-enantiomer. Total body clearance was significantly greater for the R(+)-enantiomer. This stereoselective elimination was due to a difference in the nonrenal clearance, which seemed to reflect hepatic metabolism or biliary excretion. Hepatic metabolism seemed more likely because AUC and the amount of urinary excretion of the N-monodemethylated metabolite of DBCA were greater for the R(+)-enantiomer. The plasma had higher free fractions of the S(-)-enantiomer, a result suggesting that this enantiomer is distributed more readily to the tissues, including the liver. This result indicates that protein binding was not responsible for the stereoselective metabolism of (R)-(+)-DBCA. Although there was no difference in the renal clearances of the enantiomers, the renal clearance of free (R)-(+)-DBCA exceeded that of the S(-)-enantiomer, a result indicating the preferential excretion of the R(+)-enantiomer into the urine. Comparison of the pharmacokinetics of individual enantiomers after intravenous administration of each enantiomer or its racemate showed that the enantiomers interact with one another; dosing with racemate delayed the elimination of each enantiomer because of mutual inhibition of hepatic metabolism and renal excretion for (R)-(+)-DBCA and of renal excretion for (S)-(-)-DBCA.

Animals

Preserved mitochondrial function by allopurinol despite deteriorated hemodynamics in warm ischemia-damaged canine liver.

To investigate the pathophysiology of warm ischemia (WI) of the liver, the changes in hemodynamics and energy metabolism were studied during and after 60-min complete WI induced by total hepatic vascular exclusion (HVE) in the canine model. Hepatic arterial blood flow after WI was maintained at 76% of the pre-ischemic level, while portal blood flow was only 27% of the pre-ischemic level associated with increased portal vein pressure, which was twice the pre-ischemic level, resulting in a decrease of total hepatic blood flow to 46% of the pre-ischemic level. Concentration of tissue lipid peroxide increased after WI. Arterial blood ketone body ratio (AKBR), which reflects the hepatic mitochondrial redox state, could not recover to the pre-ischemic level after termination of WI. However, when 100 mg/kg of allopurinol (xanthine oxidase inhibitor) was administered intravenously 10 min prior to initiating WI, AKBR was restored to the pre-ischemic level at 30 min after WI in spite of the fact that allopurinol administration to one group produced no remarkable changes in the hepatic hemodynamics compared with the group without allopurinol treatment. Concentration of adenine nucleotides was significantly higher for the treated group at the end of and after WI than for the group without allopurinol treatment and was maintained at a higher level even after WI. Lipid peroxide production was suppressed. Electron microscopic examination revealed that allopurinol treatment could not prevent mitochondrial swelling. It is suggested that WI causes injury primarily to the portal sinusoidal circulation, resulting in portal congestion concomitant with high portal pressure after the release of WI. Allopurinol could prevent the deterioration of mitochondrial ATP metabolism, and was able to inhibit lipid peroxide production, resulting in the rapid recovery of mitochondrial redox state in spite of the fact that it produced no amelioration of hepatic hemodynamics and morphological alterations.

Adenosine Triphosphate

Effect of altered occlusal guidance on lateral border movement of the mandible.

The purpose of this study was to evaluate the effects of a change in the lateral anterior guidance pathway on the lateral border movement pathway of mandible. The results showed that altered occlusal guidance reproducibly and reversibly changed (increased) the lateral border movement area in two subjects who had unilaterally restricted lateral border movements.

Adaptation, Physiological