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Biomedical subjects

N Maeda

Publications and source records attributed to N Maeda.

At least 541 records · Page 30Linked to original sources

Fibrinogen-induced erythrocyte aggregation: erythrocyte-binding site in the fibrinogen molecule.

The effect of fibrinogen and fibrinogen-derived products on the velocity of rouleau formation of human erythrocytes was quantitatively examined with a rheoscope combined with a video-camera, an image analyzer and a computer. (i) The velocity of rouleau formation by naturally occurring low-molecular-weight fibrinogen of 305 kDa and by desialylated fibrinogen was the same as that by native fibrinogen of 340 kDa. (ii) Concerning fibrinogen degradation products by plasmin, the velocity of rouleau formation decreased upon going from fibrinogen greater than fragment X greater than fragment Y (the ratio of molar concentration of fibrinogen, fragment X and fragment Y for giving a certain velocity of rouleau formation was approx. 1:2:5). The effect of fragments X and Y on the fibrinogen-induced rouleau formation was additive. (iii) Fragments D and E could not induce rouleau formation and did not affect the fibrinogen-, fragment X- and fragment Y-induced rouleau formation. (iv) Fibrinopeptides A and B and artificial tetrapeptides (Gly-Pro-Arg-Pro and Gly-His-Arg-Pro) did not affect the fibrinogen-induced rouleau formation. (v) The possible erythrocyte-binding site in fibrinogen molecule for leading to rouleaux was proposed to be in A alpha-chain (probably, around residues No. 207-303) near the terminal domain of the trinodular structure of fibrinogen.

Binding Sites↗

A monoclonal antibody that specifically recognizes a glucuronic acid 2-sulfate-containing determinant in intact chondroitin sulfate chain.

Monoclonal antibodies produced against chick embryo limb bud proteoglycan (PG-M) were selected for their ability to recognize determinants on intact chondroitin sulfate chains. One of these monoclonal antibodies (IgM; designated MO-225) reacts with PG-M, chick embryo cartilage proteoglycans (PG-H, PG-Lb, and PG-Lt), and bovine nasal cartilage proteoglycan, but not with Swarm rat chondrosarcoma proteoglycan. The reactivity of PG-H to MO-225 is not affected by keratanase digestion but is completely abolished after chondroitinase digestion. Competitive binding analyses with various glycosaminoglycan samples indicate that the determinant recognized by MO-225 resides in a D-glucuronic acid 2-sulfate(beta 1----3)N-acetylgalactosamine 6-sulfate disaccharide unit (D-unit) common to antigenic chondroitin sulfates. A tetrasaccharide trisulfate containing D-unit at the reducing end is the smallest chondroitin sulfate fragment that can inhibit the binding of the antibody to PG-H. Decreasing the size of a D-unit-rich chondroitin sulfate by hyaluronidase digestion results in progressive reduction in its inhibitory activity. The results suggest that the epitope has a requirement for a long stretch of a disaccharide-repeating structure for a better fit to the antibody.

Animals↗

Effects of an inhomogeneous magnetic field on flowing erythrocytes.

Effects of an inhomogeneous magnetic field on narrow erythrocyte streams in a wide and transparent laminar buffer flow were studied. The stream line of erythrocytes containing paramagnetic hemoglobin showed distinct displacement toward the stronger magnetic field. The displacement increased in the order, oxygenated erythrocytes (no displacement), erythrocytes containing cyanomethemoglobin, deoxygenated erythrocytes, erythrocytes containing methemoglobin in the high spin state; more precisely the displacement was proportional to the square of the paramagnetic moment of hemoglobin contained in the erythrocytes. In addition, the displacement was proportional to the product of the magnetic flux density and its gradient, and approximately proportional to the hematocrit of the flowing-erythrocyte suspension, and was much larger than that calculated for a single erythrocyte. These phenomena could be successfully interpreted by the interaction of paramagnetic erythrocytes with the inhomogeneous magnetic field, the resistance force (Stokes Law) from the bulk water, and the hydrodynamic interaction between erythrocytes.

Blood Sedimentation↗

Human cysteine-proteinase inhibitors: nucleotide sequence analysis of three members of the cystatin gene family.

Three genes from the human cystatin gene family of cysteine-proteinase inhibitors have been isolated from a bacteriophage lambda library containing HindIII digests of human genomic DNA. Two of the genes code for salivary cystatin SN and SA, the third is a pseudogene. The cloned genes were identified with a probe made from a salivary cystatin cDNA. The complete nucleotide sequence of the gene that codes for the precursor form of the neutral salivary protein, cystatin SN, was determined. The gene, which we name CST1, contains three exons and two intervening sequences. The expected CAT and ATA boxes are present in the 5'-flanking region of the gene. Partial nucleotide sequence determination of a second gene revealed that it codes for the precursor form of the acidic salivary protein, cystatin SA. This gene, which we name CST2, has the same gene organization as CST1. The complete nucleotide sequence of a third gene was determined. It does not contain a typical ATA box, and in addition, a premature stop codon and a frameshift deletion mutation occur within the gene. These inactivation mutations show that this gene, which we name CSTP1, is a cystatin pseudogene. These data combined with our genomic Southern-blot analyses show that the cystatin genes form a multigene family with at least seven members.

Base Sequence↗

Accurate modification of a chromosomal plasmid by homologous recombination in human cells.

We have examined the consequences of modifying mammalian cellular DNA sequences by homologous recombination. A plasmid carrying a 248-base-pair deletion in the neomycin phosphotransferase (neo) gene was introduced into hamster and human cells. The integrated, defective neo gene was used as a target for modification by a second round of transfection with a plasmid carrying a different (283-base-pair) deletion in the neo gene. Recombinants resulting in an intact neo gene were selected by their G418 resistance phenotype. The best ratio of homologous to nonhomologous recombination events was about 1:80. Analyses of the functional neo genes in various independent cell lines establish that simple crossovers (single and double) generated the wild-type neo genes.

Animals↗

Effect of forskolin on collagen production in clonal osteoblastic MC3T3-E1 cells.

The effect of forskolin on collagen production in osteoblasts was investigated by using clonal osteoblastic MC3T3-E1 cells cultured in a-minimum essential medium containing 0.1% bovine serum albumin. Forskolin increased the adenylate cyclase activity in membranes pelleted from homogenates of the cell line in a dose-dependent manner. The drug caused a 13-fold stimulation at 10(-4) M, indicating that the compound directly acts on adenylate cyclase, leading to an increase in the intracellular cAMP content of the cells. Collagen accumulation in the cultures was elevated by one-day treatment with 5 X 10(-5) M forskolin to about twice that in the controls. The stimulation was mainly due to an elevation in collagen synthesis but not to an inhibition of intracellular collagen degradation because forskolin dose-dependently increased collagen synthesis; it also significantly increased the amount of low-molecular-weight hydroxyproline found in the cultures. Cells treated with forskolin produced mainly type I collagen, as found in bone matrix in situ, with only small amounts of other types of collagen. Furthermore, forskolin time-dependently inhibited DNA synthesis in the cells, indicating that the increase in type I collagen synthesis by forskolin was not due to stimulated cell proliferation. These results suggest that cAMP is closely linked to the differentiation of osteoblasts in vitro.

Adenylyl Cyclases↗

Glucagon infusion increases rate of purine synthesis de novo in rat liver.

Based on the parallel increases of glucagon, the second peak of hepatic cAMP, and the rate of purine synthesis de novo in the prereplicative period in regenerating rat liver after a 70% hepatectomy, it was hypothesized that glucagon is responsible for the increased rate of purine synthesis de novo. To test this hypothesis, the effect of glucagon or dibutyryl cAMP infusion on the rate of purine synthesis de novo in rat liver was studied. Glucagon infusion but not insulin or glucose infusion increased the rate of purine synthesis de novo, which was assayed by [14C]glycine or [14C]formate incorporation, by 2.7- to 4.3-fold. Glucagon infusion increased cAMP concentrations by 4.9-fold and 5-phosphoribosyl-1-pyrophosphate concentrations by 1.5-fold in liver but did not change the specific activity of amidophosphoribosyltransferase (EC 2.4.2.14) or purine ribonucleotide concentrations. Dibutyryl cAMP infusion also increased the rate of purine synthesis de novo by 2.2- to 4.0-fold. Because glucagon infusion increased the rate of purine synthesis de novo in the presence of unchanged purine ribonucleotide concentrations, it is concluded that glucagon after infusion or in animals after a 70% hepatectomy is playing an anabolic role to increase the rate of purine synthesis de novo by increasing cAMP and 5-phosphoribosyl-1-pyrophosphate concentrations.

Amidophosphoribosyltransferase↗

Effects of long-term intake of a fine-grained diet on the mouse masseter muscle.

Muscle fibers of the masseter muscle of mice which had been fed a fine-grained diet for various periods were studied histochemically and morphometrically. The diameters of both extrafusal and intrafusal muscle fibers decreased with time in mice fed a fine-grained diet, compared with those of control mice. In animals maintained on the special diet for 160 days after weaning at the 20th postnatal day, the effects of the diet on the diameter of muscle spindles were severe, and the diameter of each type of red and white fibers was significantly smaller than those of control animals. But a significant difference was not recognized in the diameter of intermediate fibers between control and treated mice. Unexpectedly, white fibers having a smaller diameter than red fibers were observed in diet-fed mice after the 180th postnatal day, although white fibers having such small diameter were not detectable in control animals. Succinic dehydrogenase activities were decreased in both extrafusal and intrafusal fibers of experimental animals. Moreover, muscle spindles with no annulospiral endings were increased in number in mice fed the diet for 130 and 160 days after weaning, although those spindles also increased in control animals. The diameters of outer capsules and primary endings were also significantly decreased in the animals kept on the diet for a long time. These effects of the fine-grained diet on the mouse masseter muscle became severer with time.

Adaptation, Physiological↗

Prostaglandin E1 and F2 alpha stimulate differentiation and proliferation, respectively, of clonal osteoblastic MC3T3-E1 cells by different second messengers in vitro.

The effect of several prostaglandins (PGs) on osteoblastic cells was investigated using clone MC3T3-E1 under serum-free conditions. PGA1, A2, B1, and B2 had little effect on intracellular cAMP, alkaline phosphatase (ALP) activity, and DNA synthesis in the cells. At 4-2000 ng/ml, PGE1 among PG analogs tested had a dose-dependent stimulatory effect on ALP activity in the cells, and this effect was amplified by isobutyl methylxanthine. Also, PGE1 strongly augmented the amount of intracellular cAMP over the same concentration range. However, PGE1 had little effect on ornithine decarboxylase activity and DNA synthesis, and at high doses it rather depressed DNA synthesis. Furthermore, PGE1 did not affect the intracellular cGMP level. The effect of PGE1 on the cells closely mimics that of forskolin, suggesting that the PG stimulates the differentiation of the osteoblastic cells predominantly via the stimulation of adenylate cyclase. In contrast with PGE1, PGF2 alpha strongly increased ornithine decarboxylase activity and DNA synthesis in the cells in a dose-related fashion at low concentrations (4-100 ng/ml), at which concentrations it had little effect on the intracellular cAMP or cGMP level and depressed ALP activity. Moreover, PGF2 alpha depressed the stimulatory effect of PGE1 on ALP activity but did not affect the elevation of cAMP level by PGE1. The accumulation of inositol phosphates was greatly increased by PGF2 alpha in the concentration range effective in stimulating DNA synthesis, but was increased little by PGE1, suggesting that PGF2 alpha is a potent stimulator of phosphatidyl inositol turnover in the cells. In addition, A23187, a Ca ionophore, alone did not influence the DNA synthesis, but the effects of tetradecanoyl phorbol acetate, a direct activator of protein kinase C, were very similar to those of PGF2 alpha. Moreover, the stimulation of DNA synthesis or the inhibition of ALP activity by PGF2 alpha was partially counteracted by H-7, a strong inhibitor of protein kinase C. These results suggest that PGF2 alpha stimulates the proliferation of osteoblastic cells predominantly through the phosphatidyl inositol turnover system following in part the activation of protein kinase C. Our data presented here indicate that PGE1 and PGF2 alpha are closely involved in the differentiation and proliferation, respectively, of osteoblasts in vitro and that their action may be mediated by second messengers which differ from each other.

Alkaline Phosphatase↗

A kinetic study on functional impairment of nitric oxide-exposed rat erythrocytes.

In acute in vivo exposure of rats to 25 to 250 ppm nitric oxide (NO) by use of a small exposure chamber for a single rat, the kinetic parameters of nitrosylhemoglobin (Hb-NO) and methemoglobin (MetHb) formation were estimated (with the aid of computer simulation) on the basis of experimental data. The biochemical and rheological injuries of erythrocytes were also examined. The time course of Hb-NO and MetHb formation in blood was compared with that simulated by a simplified kinetic model. The rate of MetHb formation from Hb-NO was much faster than MetHb reduction to ferrous form and dissociation of Hb-NO; thus, MetHb content was always greater than Hb-NO content. The activity of MetHb reduction decreased on exposure to a high concentration of NO, but the activity was recovered when rats were placed in clean air. Rheologically, the blood viscosity was scarcely altered, but a few undeformed cells were detected at high shear stress. Morphologically, echinocytic transformation was observed to some extent. Biochemically, the crosslinking of membrane proteins and the alteration of acyl chain composition of membrane phospholipids were not detected in the in vivo exposure, though the in vitro exposure of rat erythrocytes to high concentrations of NO revealed remarkable oxidative crosslinking among membrane proteins and hemoglobin. In conclusion, both for persistent methemoglobinemia and for membrane damage, the maintenance of reductive activity in erythrocytes is the most important determinant factor for the protection of NO-induced oxidative injury.

Animals↗

Herpetic keratitis therapy to reduce recurrence.

Since the herpes simplex virus locates latently in the ganglia and is reactivated by certain triggers, the important problem in treatment is to prevent or reduce recurrence. The present study investigates the role of mechanical debridement in lessening the recurrence of dendritic keratitis in patients with herpetic epithelial keratitis. Group A was treated with mechanical debridement plus IDU, Group B with IDU alone. Also studied was the effect of steroid subconjunctival injection on herpetic recurrence in patients with herpetic stromal keratitis: Group C was treated with intravenous infusion of pepsin-treated gamma-globulin (PTGG) and steroid subconjunctival injection, Group D with steroid subconjunctival injection alone and Group E with intravenous infusion of PTGG alone. The recurrence rates of dendritic keratitis were 19% in Group A and 40% in Group B (average follow-up periods: 24 and 25 months). The recurrence rates of stromal keratitis were 61% in Group C, 64% in Group D, and 36% in Group E (average follow-up periods: 20, 19 and 15 months). The difference between Groups D and E was statistically significant (chi 2 test, P less than 0.05). The recurrence rates of dendritic keratitis were 18% in Group C, 21% in Group D and 7% in Group E. In conclusion, mechanical debridement tended to reduce the recurrence of herpetic epithelial keratitis and steroid subconjunctival injection to increase the recurrence of epithelial or stromal keratitis.

Administration, Topical↗

Erythrocyte deformation in shear flow: influences of internal viscosity, membrane stiffness, and hematocrit.

The effect of shear force (depending on shear rate and viscosity of extracellular medium) and hematocrit of RBC suspension on RBC deformation was studied quantitatively using a cone-plate rheoscope with various kinds of cells, ie, partially hemolyzed (PH) cells, density-fractionated intact cells, and diamide-treated cells. The deformation index (DI) of ellipsoidally deformed cells was shown to be a function of beta gamma eta ex(eta ex/eta in)alpha, where gamma eta ex is applied shear stress, eta ex and eta in are external and internal viscosities, respectively, and alpha and beta are adjustable parameters related to the membrane viscoelastic properties. The increase of suspension viscosity at higher hematocrits (Hts) generally enhanced the ellipsoidal deformation of cells, in the same manner as increasing the suspending medium viscosity of a diluted cell suspension. The suppressing effect on cell deformation appeared above a certain Ht. When intact cells were mixed with glutaraldehyde-treated, hardened cells, the ellipsoidal deformation of intact cells was disturbed. The suppression of deformation probably occurred through disturbance of laminar flow-lines around intact cells.

Blood Viscosity↗

Plasma levels of atrial natriuretic peptide in patients with chronic liver disease.

The plasma levels of atrial natriuretic peptide were determined by radioimmunoassay in 24 patients with chronic liver disease, including three patients with alcoholic liver disease, four with chronic active hepatitis, 13 with liver cirrhosis, and four with hepatocellular carcinoma. When compared with normal subjects (180 +/- 12 pg/ml), the plasma levels of atrial natriuretic peptide in cirrhotic patients (349 +/- 64 pg/ml) were significantly elevated (p less than 0.001) but not in other disease groups. In patients with chronic liver disease the plasma levels of atrial natriuretic peptide were correlated significantly with plasma renin activity but not with plasma aldosterone, and furthermore showed a negative correlation with indocyanine green disappearance rate. These results suggest that the increased plasma levels of atrial natriuretic peptide, which appear to be associated with an increase in plasma renin activity and with hepatic dysfunction, may participate in maintaining homeostasis of sodium and fluid volume in patients with chronic liver disease.

Aldosterone↗

Alleles at the PRH1 locus coding for the human salivary-acidic proline-rich proteins Pa, Db, and PIF.

We cloned and sequenced the entire exon and intron structures of Db and Pa genetic determinants at the PRH1 locus. Their derived amino acid sequences and that previously determined for the PIF protein completely explain the electrophoretic phenotypes of the acidic proline-rich proteins (PRPs) Pa, Db, and PIF. Thus, the Cys substitution near Arg 106 in the Pa protein sterically interferes with proteolytic cutting at Arg 106 and accounts for the single-banded phenotype. In contrast, the Db and PIF proteins are proteolytically cut at Arg 106 and show a double-banded phenotype. The Db protein has an extra 21-amino acid repeat that accounts for its larger size compared with the equal sized Pa monomer and PIF proteins. Several amino acid substitutions account for the charge and mobility differences of the Pa, Db, and PIF proteins in isoelectric-focusing gels. These DNA/protein correlations, as well as the extremely similar genomic-DNA sequences that differ by less than 1%, establish that Pa, Db, and PIF are alleles at the PRH1 locus. On the basis of the DNA sequences, we conclude that Db and Pa alleles diverged more recently from a common precursor than did the PIF allele from its precursor.

Alleles↗