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Biomedical subjects

Y Imanishi

Publications and source records attributed to Y Imanishi.

At least 19 recordsLinked to original sources

Interaction of melittin derivatives with lipid bilayer membrane. Role of basic residues at the C-terminal and their replacement with lactose.

Melittin possesses an amphiphilic property in the primary sequence in which hydrophilic residues are located at the C-terminal region from Lys-21 to Gln-26. A part of the hydrophilic sequence was cleaved off by endopeptidase Arg-C to obtain melittin 1-22. The affinity of melittin 1-22 for neutral phospholipid membrane was reduced to 1/3 that of melittin, indicating that the basic residues, Lys-23 and Arg-24, are important in binding of melittin to the membrane. The melittin 1-22 was extended toward the C-terminal end by connection of lactose (melittin-lac), the membrane affinity of which was slightly higher than the melittin 1-22, but lower than melittin. The leakage experiment of 5,6-carboxyfluorescein encapsulated in DPPC liposomes showed that the activities of melittin 1-22 and melittin-lac in membrane lysis were much lower than melittin. However, the melittin 1-22 formed a voltage-dependent ion-channel in an azolectin bilayer membrane. It is thus considered that Lys-23 and Arg-24 residues of melittin play an important role in binding to the polar region of membrane for lysis, but not for ion-channel formation.

Amino Acid Sequence

Synthesis and nonthrombogenicity of polymer membrane with surface-graft polymers carrying thrombin inhibitor.

An acrylamide derivative of a thrombin inhibitor was synthesized and graft polymerized to the surfaces of polymer membranes. The thrombin-inhibitor activity was unaffected by the introduction of an acryloyl group. The surface-graft membrane deactivated thrombin markedly and suppressed adhesion of platelets, resulting in a high nonthrombogenicity. Immersion of polymer membranes blended with the thrombin inhibitor in phosphate-buffered saline for 10 d resulted in the loss of nonthrombogenicity, while the polymer membranes grafted with the thrombin inhibitor derivative maintained the nonthrombogenicity over a long period.

Acrylamides

Cell growth on immobilized cell-growth factor. II. Adhesion and growth of fibroblast cells on poly(methyl methacrylate) membrane immobilized with proteins of various kinds.

The surface of poly(methyl methacrylate) membrane was partially hydrolysed and the carboxyl groups produced were coupled with various protein molecules with water-soluble carbodiimide. The immobilized proteins were a cell-growth factor insulin, cell adhesion factors fibrinogen and fibronectin, and serum proteins albumin and gamma-globulin. The insulin-immobilized poly(methyl methacrylate) membrane strongly accelerated the growth and slightly accelerated the adhesion of fibroblast cells. The immobilized fibronectin and fibrinogen enhanced the cell adhesion, and the former also accelerated the cell growth. The immobilized albumin and gamma-globulin influenced the adhesion and growth of cells very little. It was found that various proteins specifically influence the adhesion and growth of cells in an immobilized state.

Animals

Interaction of thrombin with synthetic fluorescent substrate immobilized on polymer membrane.

Synthetic fluorescent substrates for thrombin were immobilized on a polyurethane membrane. The interaction of thrombin with the immobilized substrates was investigated. Upon hydrolysis of immobilized substrates by thrombin, fluorescence was emitted, intensity increasing linearly with time. From a Lineweaver-Burk plot, kinetic parameters of the enzyme reaction on the membrane surface were determined. The dissociation constant (K) was increased and the catalytic constant (k) decreased markedly by immobilization. More reactive thrombin substrates in solution were also more reactive in the immobilized state. More thrombin was adsorbed and adsorbed thrombins were inactivated more strongly on the surface with more reactive substrates when immobilized. The immobilization of thrombin substrate markedly suppressed fibrin formation on the membrane surface and made the membrane non-thrombogenic.

Adsorption

Synthesis and non-thrombogenicity of heparinoid polyurethaneureas.

Unsaturated polyurethaneureas were synthesized from 4,4'-diphenylmethane diisocyanate, 1,2-diaminopropane and polybutadiene containing hydroxyl groups at both ends of a chain. The polyurethaneureas were cast as a film and subsequently treated with N-chlorosulphonyl isocyanate to produce sulphamate and carboxylate groups on the film surface. The level of in vitro non-thrombogenicity increased with increasing degree of modification. The high blood compatibility is attributed to the low level of platelet stimulation and to heparinoid activity. It was observed that platelet stimulation depends on the surface structure of the original polyurethaneura, and that the heparinoid activity is related with the presence of sulphamate and carboxylate groups.

Animals

Cell growth on immobilized cell growth factor. I. Acceleration of the growth of fibroblast cells on insulin-immobilized polymer matrix in culture medium without serum.

Culture of fibroblast cells in serum-free medium in the presence of insulin-immobilized films of poly(ethylene terephthalate) or poly(methyl methacrylate) accelerated the cell growth to several times that in the presence of free insulin molecules. The immobilization of insulin was useful also for elucidation of the mechanism of signal transmission through receptor molecules in the cell membrane. Free insulin molecules are known to be bound by receptors and the complex formed internalized and degraded in the cytoplasm. However, it is not clear what process is indispensable for transmission of the biological signals to the nucleus of the cell. The present investigation revealed that cell growth was enhanced by the addition of immobilized insulins which were not internalized. It appears that insulin-receptor binding is enough for transmission of the cell growth signal to the cell nucleus. The enhanced cell growth by the immobilized insulins compared with free insulin molecules is ascribable to suppression of the down-regulation which is a consequence of intracellular decomposition of the insulin-receptor complex.

Animals

Cell growth on immobilized cell-growth factor; 4: Interaction of fibroblast cells with insulin immobilized on poly(methyl methacrylate) membrane.

Insulin was immobilized on the surface-hydrolyzed poly(methyl methacrylate) membrane and the growth acceleration of mouse fibroblast cells, STO, by the immobilized insulin was investigated. It was found that insulin remains immobilized on the surface of nonbiodegradable membrane and interacts specifically with receptors existing on the biological membrane of fibroblast cells. The growth acceleration by immobilized insulin was enhanced by introduction of a spacer arm between insulin and the immobilization matrix. The amount of receptor proteins present on the biological membrane of fibroblast cells after culturing with insulin, immobilized on nonbiodegradable polymer membrane, was much higher than that after culturing with free insulin, implying the suppression of down-regulation in the case of immobilized insulin.

Animals

Biological potency of a fluorinated vitamin D analogue in hypoparathyroidism.

Several in vivo experiments have revealed that a synthesized fluorinated analogue of vitamin D, 26,26,26,27,27,27-hexafluoro-1,25-dihydroxyvitamin D3 (26,27-F6-1,25(OH)2D3) has a higher and longer-lasting biological activity than 1,25(OH)2D3 in calcium regulating actions. We evaluated the biological potency and the availability for clinical use of this compound in hypocalcemia associated with hypoparathyroidism. In an experimental setting, daily administration of 650 pmol/kg of 26,27-F6-1,25(OH)2D3 showed an equivalent effect to that of 3250 pmol/kg of 1,25(OH)2D3 in elevating whole blood ionized calcium levels in parathyroidectomized rats. Furthermore, an additional clinical study demonstrated that 0.5-1.5 micrograms/day of 26,27-F6-1,25(OH)2D3 were considered adequate maintenance doses in various types of hypoparathyroidism and that changes of medication to the same doses of 1,25(OH)2D3 resulted in prompt decline of urinary calcium excretion and of whole blood ionized calcium levels, and in recurrence of symptoms related to hypocalcemia. Although the mechanism responsible for the high potency of this analogue remains unclear, our experience confirms that 26,27-F6-1,25(OH)2D3 has higher biological activities in bone calcium mobilization and is more potent than 1,25(OH)2D3 in correcting hypocalcemia of hypoparathyroidism in a hospital setting.

Animals

Effects of lipid structure on energy transfer from carbazolyl to anthryl groups in a lipid bilayer.

Two types of chromophoric amphiphiles were synthesized: one of them possesses a molecular structure of N,N-dialkyl aromatic amino acid (5X18 type, where X is A or Cz), and the other alpha,gamma-dialkylglutamate connected to aromatic amino acid (mXG12 type, where m is an integer). 5-N-Ethylcarbazolyl and 9-anthryl groups were chosen as the chromophore, and introduced to each amino acid derivative. All the amphiphiles formed assembly showing gel-liquid crystalline phase transition. The phase-transition temperature of the assembly composed of mXG12-type amphiphile was higher than that of 5X18-type amphiphile. Absorption and CD spectra of 6-(trimethylammonium)hexanoyl-L-3-(5-N-ethylcarbazolyl) alanine N,N-dioctadecylamide bromide (5Cz18) in the assembly indicated the absence of strong ground-state interactions between the carbazolyl groups, while those of 6-(trimethylammonium)hexanoyl-L-3-(5-N-ethylcarbazolyl)alanyl-L-gl utamic acid alpha,gamma-didodecyl ester (5CzG12) or 11-(trimethylammonium)undecanoyl-L-3-(5-N-ethylcarbazolyl)al anyl-L-glutamic acid alpha,gamma-didodecyl ester (10CzG12) indicated the ground-state interactions based on dimer or higher aggregates. Fluorescence spectra of 5Cz18 showed very weak excimer emission, while excimer and/or excited dimer or higher aggregates were observed in the assembly of 5CzG12 or 10CzG12. Similar results were obtained for amphiphiles (mAG12) with anthryl and hydroxyethyldimethylammonium groups in places respectively of carbazolyl and trimethylammonium groups of 5CzG12 and 10CzG12. Taking these results together into consideration, the molecular packing of mXG12 in the assembly should be tighter than that of 5X18. In the binary assembly of 6-(trimethylammonium)hexanoyl-L-3-(9-anthryl) alanine N,N-dioctadecylamide bromide (5A18)/5Cz18 (1/99 mol/mol), about 60% of photoenergy absorbed by the carbazolyl groups was transferred to the anthryl groups, indicating an efficient energy migration along the two-dimensional array of carbazolyl chromophores of 5Cz18. On the other hand, in the mCzG12/mAG12 binary assembly, the energy-transfer efficiency was much lower due to the formation of dimer or the higher aggregates acting as energy-dissipating sites.

Anthracenes

Multiple metastatic calcifications detected by bone scintigraphy and demonstrated by CT.

Metastatic calcifications according to histopathologic and scintigraphic findings have been well-defined. The authors report a postoperative case of hyperparathyroidism with multiple metastatic calcifications in the lung, kidney, stomach, heart, and vessels that were primarily detected by bone scintigraphy and demonstrated by CT. Tc-99m MDP bone scintigraphy showed a markedly increased accumulation of radioactivity diffusely throughout the lung, left ventricular wall, both kidneys, and the gastric cardia and body. In the lung, plain films showed almost normal lung. CT, however, demonstrated patchy, slightly increased densities in the lung bilaterally. Cardiac CT indicated a considerably increased density of the ventricular myocardium and remarkable calcification in or near the atrioventricular septum or annulus fibrosus. Upper abdominal CT demonstrated increased densities diffusely throughout the gastric mucosa and renal cortex. Only vascular calcifications were depicted by plain films. Using both bone scintigraphy and CT provides accurate information about each lesion and each tissue, allowing precise diagnosis of even a questionable lesion in the early stage of metastatic calcification. Early diagnosis and early therapy offer the best chance for cure or palliative therapy.

Bone and Bones

Non-thrombogenicity by novel surface modification methods.

Three novel methods, recently developed by us, for the synthesis of non-thrombogenetic materials were reviewed. The first was the utilization of poly(vinyl sulfonate) as a heparinoid and a newly synthesized polymerizable-thrombin-inhibitor. The chemicals were grafted onto the surfaces of materials. The second was the use of thrombin-substrate-analog peptide. The immobilized peptide was decomposed by blood coagulation factors and inhibited thrombus formation on the surface. The third method was the enhancement of endothelialization by immobilization of bio-signal molecules. The immobilized biosignals remarkably accelerated the growth of endothelial cells.

Anticoagulants

Magnesium deficiency enhances secretion of parathyroid hormone in normal and 5/6-nephrectomized uremic rats.

Hypercalcemia, rather than hypocalcemia, has been observed in conjunction with severe magnesium (Mg) depletion in rat, in contrast to the development of hypocalcemia in Mg deficiency in various animal models. In the present study, a possible involvement of parathyroid hormone (PTH) in the development of hypercalcemia in rat was studied by using a newly-developed sensitive and specific radioimmunoassay system for the determination of rat PTH. In normal rat model, hypercalcemia occurred in association with a decrease of serum phosphate levels in Mg deficiency. However, serum PTH levels were not suppressed despite the occurrence of hypercalcemia, suggesting PTH as an important factor for the development of hypercalcemia. Of interest, in 5/6-nephrectomized uremic model, hypocalcemia, rather than hypercalcemia, was observed in Mg-deficient rats. Serum PTH levels seemed to be higher, but not statistically significant probably due to a small number of rats. However, infusion study clearly demonstrated that PTH secretion was significantly increased in Mg-deficient uremic rats compared with Mg-replete counterparts. The reason for an increase of serum PTH responses might be explained by Mg depletion itself in addition to a fall in serum Ca levels, because infusion study revealed that the magnitude of the stimulation of PTH secretion was increased in Mg deficiency despite the similar degrees of changes in serum Ca levels and that the set point for the suppression of PTH secretion by Ca might be altered in Mg deficiency. Taken these data together, it was strongly suggested that Mg depletion might enhance PTH secretion in rat.

Animals

Interaction of poly(sodium vinyl sulfonate) and its surface graft with antithrombin III.

Poly(sodium vinyl sulfonate) (PVS) was found to be 1/14 times as active as heparin in inducing the conformational change and activation of antithrombin III. The conformational change of antithrombin III was investigated in terms of the intrinsic fluorescence of tryptophan residue, the extrinsic fluorescence using 1,6-diphenyl-1,3,5-hexatriene as fluorescent probe, and Fourier-transform infrared spectroscopy. It was evident in the experiment using 2,4,6-trinitrobenzene sulfonate that PVS elicited the activity of antithrombin III by interacting with amino groups of the protein as does heparin. Sodium vinyl sulfonate was graft-polymerized onto polyetherurethane (PEU) film that was treated with glow discharge in advance. PVS-grafted PEU film adsorbed antithrombin III easily and, like ungrafted PVS, induced conformational change and activation of antithrombin III. However, the mechanism of interaction of the PVS graft with antithrombin III did not seem to be completely the same as that of ungrafted PVS in solution.

Antithrombin III

Materials for enhancing cell adhesion by immobilization of cell-adhesive peptide.

Materials to enhance cell adhesion were synthesized by surface integration of peptide, Arg-Gly-Asp-Ser(RGDS), which is an active-site sequence of cell-adhesive proteins. Polystyrene film was glow-discharged and graft-copolymerized with acrylic acid. Then the peptide was immobilized to the poly(acrylic acid) grafts by using water-soluble carbodiimide. The cell-adhesive activity of the RGDS-immobilized film increased with increasing amount of immobilized peptide, and approached the activity of fibronectin(FN)-immobilized film. The RGDS-immobilized film was more stable against heat treatment and pH variation than the FN-immobilized film. In addition, the RGDS-immobilized film enhanced cell growth more strongly than the FN-immobilized film.

Amino Acid Sequence

Synthesis and nonthrombogenicity of polyetherurethaneurea film grafted with poly(sodium vinyl sulfonate).

Synthesis of nonthrombogenic materials without using biologically active substances was explored. Poly(sodium vinyl sulfonate) is a water-soluble synthetic polymer and activates antithrombin III to exert nonthrombogenicity that was dependent on the molecular weight. Polyetherurethaneurea film was plasma-treated and graft-polymerized with sodium vinyl sulfonate. The graft film showed excellent in vitro and ex vivo nonthrombogenicity by suppressing interactions with plasma proteins and platelets as well as by inactivating blood-clotting factors.

Adsorption

Cell interactions of enkephalin/polypeptide conjugates.

Enkephalin molecules were bound to poly(Lys) (poly-K) or poly(Ala-Lys-Ala-Leu) (poly-A) and their interactions with NG108-15 cells, platelets, erythrocytes and fibroblast cells were investigated. A fluorescent probe, rhodamine, also was bound to the conjugates for monitoring interactions with these cells. Observations by fluorescence microscopy revealed that NG108-15 cells, platelets, and fibroblast cells were labelled by the conjugates, whereas erythrocytes were not. Since polypeptides without enkephalin moieties were only weakly adsorbed on the cells, it was concluded that the enkephalin/polypeptide conjugates were bound specifically to receptors on the cell membrane. Interestingly, when the enkephalin/poly-K conjugate was bound to NG108-15 and fibroblast cells, fluorescent patches appeared on the membrane. Such patch formation was not clearly observed with an enkephalin/rhodamine or enkephalin/poly-A conjugate. In the case of fibroblast cells, the fluorescence converged to a large cluster, which was ultimately internalized. The results suggest that clustering of the receptors in cell membranes is influenced by the carrier polymer presumably due to cross-linking of the receptors and/or the effect of the cationic polypeptides.

Amino Acid Sequence

Synthesis and antithrombogenicity of heparinized polyurethanes with intervening spacer chains of various kinds.

Heparin was immobilized to polyetherurethaneurea membrane by covalent or ionic bondings with intervening spacer chains having different lengths and different terminal functional groups. The amount of immobilization of heparin and the release rate of immobilized heparin were controlled by the nature and the mode of bonding of spacer chains. The heparinized polyetherurethaneurea membranes became more in vitro antithrombogenic and suppressed more strongly the adhesion and activation of platelets, as the amount of immobilization increased. It was also shown that the membrane to which the low-molecular-weight fraction of heparin was immobilized was less stimulating to platelets.

Animals