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Biomedical subjects

H Sugi

Publications and source records attributed to H Sugi.

At least 91 records · Page 5Linked to original sources

[Sputum penetration of levofloxacin and its clinical efficacy in patients with chronic lower respiratory tract infections].

Sputum penetration of levofloxacin (LVFX) was evaluated after a single oral dose of 100 mg or 200 mg to 4 patients with copious purulent sputa. The sputum concentration of LVFX reached maximum levels of 1.27 and 4.36 micrograms/ml at 4 hours, and still remained at concentrations of 0.32 and 1.68 micrograms/ml at 8 hours after administration of 100 mg and 200 mg, respectively. The AUC ratio of sputum/serum was 0.9-1.0, indicating good sputum penetration of LVFX in these patients. The clinical efficacy and the safety of LVFX were also evaluated in a total of 13 patients with respiratory tract infections associated with bronchiectasis, diffuse panbronchiolitis, etc. LVFX was administered orally at a daily dose of 200 mg once a day, 100 mg t.i.d. or 200 mg t.i.d. for 7-28 days (mean 14.7 days). The clinical response to the drug was rated as excellent in 1 case, good in 5, fair in 3, and poor in 2 cases in 11 evaluable cases, thus the efficacy rate was 54.5%. All the 3 strains of Haemophilus influenzae were eradicated. Of the 3 strains of Pseudomonas aeruginosa, eradication, decrease, and unchange was observed for 1 strain each. One strain of Streptococcus pneumoniae remained unchanged. No adverse reaction was observed except for 1 case with slight and temporary increase of eosinophils. The above results suggested that LVFX would be clinically useful in the treatment of chronic lower respiratory tract infections.

Aged↗

Myosin phosphorylation-independent contraction induced by phorbol ester in vascular smooth muscle.

In isolated rat aorta, carotid artery, tail artery, rabbit aorta and mesenteric artery, but not in ear artery, 1 microM 12-deoxyphorbol 13-isobutyrate (DPB) induced a sustained contraction. However, DPB increased cytosolic Ca++ concentration ([Ca++]i) only in rat aorta and carotid artery. Similar results were obtained with phorbol 12,13-dibutyrate, although the inactive phorbol ester, 4-alpha-phorbol 12,13-dibutyrate, was ineffective. In rat aorta, DPB-induced contraction was followed by an increase in 20 kDa myosin light chain (MLC) phosphorylation. Both contraction and MLC phosphorylation stimulated by DPB were greater than those due to high K+ for a given increase in [Ca++]i. A Ca++ channel blocker, verapamil, decreased the DPB-induced increments in [Ca++]i and MLC phosphorylation to their respective resting levels, although contraction was inhibited only slightly. In the absence of external Ca++ (with 0.5 mM ethyleneglycol bis(beta-aminoethyl-ether)tetraacetic acid), DPB induced sustained contraction without increasing [Ca++]i or MLC phosphorylation. This contraction was followed by an increase in stiffness and force recovery after a shortening step. These results suggest that the contraction induced by DPB in rat aorta is due to increase in [Ca++]i followed by MLC phosphorylation and Ca++ sensitization of MLC phosphorylation. In the presence of verapamil or in the absence of external Ca++, DPB may increase cross-bridge cycling by activating an unknown mechanism that is not dependent on an increase in MLC phosphorylation.

Animals↗

Receptor agonists induce myosin phosphorylation-dependent and phosphorylation-independent contractions in vascular smooth muscle.

In isolated rat aorta, 72.7 mM KCI, 10 microM prostaglandin F2 alpha, 30 nM endothelin-1 and 1 microM norepinephrine increased muscle tension, cytosolic Ca++ concentration ([Ca++]i) and 20 kDa myosin light chain (MLC) phosphorylation. The levels of contractile tension and MLC phosphorylation at a given [Ca++]i were greatest in the presence of endothelin-1 followed by prostaglandin F2 alpha greater than norepinephrine greater than high K+. Verapamil inhibited the high K(+)-induced increments to their respective resting levels. Verapamil also almost completely inhibited the receptor agonist-induced increments in [Ca++]i and MLC phosphorylation, although a part of the contraction was not inhibited. Ethylene glycol bis(beta-aminoethyl ether)-N,N'-tetraacetic acid further decreased [Ca++]i and muscle tension, suggesting that a part of the contraction is regulated by [Ca++]i below a resting level. Receptor agonists induced sustained contraction in the absence of external Ca++ which was not followed by the increase in [Ca++]i or MLC phosphorylation. This contraction was followed by the increments in shortening velocity and stiffness. In the rabbit mesenteric artery permeabilized with Staphylococcus aureus, alpha-toxin, norepinephrine and endothelin-1 shifted the Ca(++)-tension curve to the left in the presence of GTP. From these results, it is suggested that high K(+)-induced sustained contraction of vascular smooth muscle is attributable to an increase in [Ca++]i followed by an increase in MLC phosphorylation. In addition to this fundamental mechanism, receptor agonists increase Ca+ sensitivity of MLC phosphorylation when [Ca++]i is higher than resting level resulting in a greater contraction than that induced by high K+ for a given increase in [Ca++]i.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Measurement of work done by ATP-induced sliding between rabbit muscle myosin and algal cell actin cables in vitro.

1. The basic properties of the ATP-dependent actin-myosin interaction responsible for muscle contraction were studied using an in vitro force-movement assay system, in which a glass microneedle coated with rabbit skeletal muscle myosin was made to slide on the actin filament arrays (actin cables) in the internodal cell of an alga Nitellopsis obtusa with ionophoretic application of ATP. 2. In response to an ATP current pulse (intensity, 5-85 nA; duration, 0.5-10 s), the myosin-coated needle moved for a distance and eventually stopped, indicating reformation of rigor actin-myosin linkages to prevent elastic recoil of the bent needle. A subsequent ATP current pulse again produced the needle movement starting from the baseline force attained by the preceding needle movement. 3. With a constant amount of ATP application, the amount of work done by the ATP-induced actin-myosin sliding first increased with increasing baseline force from zero to 0.4-0.6P0, and then decreased with further increasing baseline force, thus giving a bell-shaped work versus baseline force relation. 4. With increasing amount of ATP application, the amount of work done by the actin-myosin sliding increased more steeply as the baseline force was increased from zero to 0.4-0.6P0. 5. These results are discussed in connection with the basic properties of the actin-myosin sliding in muscle contraction.

Actins↗

X-ray diffraction and electron microscopy from Lethocerus flight muscle partially relaxed by adenylylimidodiphosphate and ethylene glycol.

The low-angle X-ray diffraction pattern from Lethocerus flight muscle fibres was recorded in rigor or under two conditions that modify crossbridge structure and behaviour, aqueous adenylylimidodiphosphate (AMPPNP) and AMPPNP + calcium in an ethylene glycol-water mixture. The effects on the 38.7 nm layer-line peaks (hk.6) of the diffraction patterns were studied in detail. In aqueous AMPPNP at room temperature, a condition in which rigor tension drops to half without loss of stiffness, the peaks remained nearly as intense as in rigor except for the 10.6, which dropped to half. In 20% (v/v) ethylene glycol-AMPPNP + 100 microM-Ca2+ at 23 degrees C (gly + pnp + Ca), a condition which removed muscle tension but left stiffness close to the rigor value, the 10.6 and 11.6 peaks greatly decreased but the 31.6 remained relatively high. The 14.5 nm meridional peak (00.16) became stronger on addition of AMPPNP and again on adding glycol + calcium. Considered in terms of constructively interfering filaments and crossbridges, the X-ray data indicated a transfer of diffracting crossbridge mass towards the thick filament as relaxation proceeds. We compared the X-ray diffraction patterns and crossbridge structure seen with electron microscopy (EM) under the same chemical conditions. EM and X-ray observations were mutually quite consistent overall. However, X-ray data indicated that more crossbridge mass was stereospecifically related to actin before fixation in the partially relaxed state (gly + pnp + Ca) than was suggested by the disordered crossbridge profiles seen by EM. We conclude that myosin heads at the start of the power stroke may both be closely related to their thick filament origins and form actin-determined attachments to the thin filament.

Adenosine Triphosphate↗

Steady-state force-velocity relation in the ATP-dependent sliding movement of myosin-coated beads on actin cables in vitro studied with a centrifuge microscope.

To eliminate the gap between the biochemistry of actomyosin in solution and the physiology of contracting muscle, we developed an in vitro force-movement assay system in which the steady-state force-velocity relation in the actin-myosin interaction can be studied. The assay system consists of the internodal cells of an alga, Nitellopsis obtusa, containing well-organized actin filament arrays (actin cables); tosyl-activated polystyrene beads (diameter, 2.8 microns; specific gravity, 1.3) coated with skeletal muscle myosin; and a centrifuge microscope equipped with a stroboscopic light source and a video system. The internodal cell preparation was mounted on the rotor of the centrifuge microscope, so that centrifugal forces were applied to the myosin-coated beads moving along the actin cables in the presence of ATP. Under constant centrifugal forces directed opposite to the bead movement ("positive" loads), the beads continued to move with constant velocities, which decreased with increasing centrifugal forces. The steady-state force-velocity curve thus obtained was analogous to the double-hyperbolic force-velocity curve of single muscle fibers. The unloaded velocity of bead movement was 1.6-3.6 microns/s (20-23 degrees C), while the maximum "isometric" force generated by the myosin molecules on the bead was 1.9-39 pN. If, on the other hand, the beads were subjected to constant centrifugal forces in the direction of bead movement ("negative" loads), the bead also moved with constant velocities. Unexpectedly, the velocity of bead movement did not increase with increasing negative loads but first decreased by 20-60% and then increased towards the initial unloaded velocity until the beads were eventually detached from the actin cables.

Actins↗

Force-velocity relation of frog skeletal muscle fibres shortening under continuously changing load.

1. The force-velocity (P-V) relation of single frog skeletal muscle fibres was examined in non-steady-state conditions in which the load on the fibre changed continuously with time. Two such types of condition were used; in one type, the load was increased from zero to the maximum isometric force (P0) (auxotonic condition), while in the other type the load was decreased form P0 to zero at constant rates (ramp decrease in load). 2. The P-V curves obtained in the auxotonic condition were convex upwards and always below the hyperbolic P-V curve obtained in the isotonic condition. Different curves were obtained depending on the compliance of auxotonic load. The shortening velocity for a given amount of load increased with increasing compliance. 3. Qualitatively similar P-V relations were obtained irrespective of whether the fibre was made to shorten auxotonically at the onset of stimulation or after the development of P0. 4. If the force at any time after the onset of auxotonic shortening was normalized relative to the isometric force at the same time after the onset of isometric force development, the normalized force versus velocity curves were found to fit well to the hyperbolic P-V curve in the isotonic condition except for the low-force region. 5. The P-V curves obtained during the ramp decrease in load were hyperbolic in shape except for the humps at the high-force region and always above the P-V curve in the isotonic condition. Different curves were obtained depending on the rate of load decrease. The maximum shortening velocity increased with increasing rate of load decrease. 6. The above features of the P-V relations could well be simulated by a simplified Huxley contraction model, indicating that the kinetic properties of the cross-bridges are the same in both steady- and non-steady-state conditions.

Animals↗

Synthesis and cytostatic activity of the antitumor antibiotic chartreusin derivatives.

In order to overcome the rapid biliary excretion of chartreusin, which diminished its activity when administered iv, a series of 3',4'-O-substituted derivatives of chartreusin were synthesized. Exo-type of 3',4'-O-benzylidene-chartreusin was found active both by ip and iv administration. Therefore, this compound was selected for further modification on its 6-phenol to obtain broader spectra and better pharmacokinetic parameters than the original compound. Several 6-O-acyl-3',4'-O-exo-benzylidene-chartreusins had high antitumor activity against some murine tumors both by iv and po administration.

Aminoglycosides↗

Evidence for extracellular localization of activator calcium in dog coronary artery smooth muscle as studied by the pyroantimonate method.

Correlated physiological and electron-microscopic studies were made on the source of calcium activating the contractile system (activator calcium) in dog coronary artery smooth muscle fibers. The magnitude of contracture tension induced by 100 mM K+ was dependent on external Ca2+ concentration and reduced or eliminated by factors known to reduce the Ca2+ spike or Ca2+ influx. Little or no mechanical response was elicited by treatments known to cause release of intracellularly stored calcium. These results indicated that the contractile system is mainly activated by the inward movement of extracellular calcium. In accordance with the physiological experiments, electronopaque pyroantimonate precipitate containing calcium was found in the lumina of caveolae, but not in any intracellular structures close to the plasma membrane, when the relaxed fibers were fixed in a 1% osmium tetroxide solution containing 2% potassium pyroantimonate. If the contracted fibers were fixed in the same solution, the pyroantimonate precipitate was diffusely distributed in the myoplasm in the form of numerous particles, while the precipitate in the caveolar lumina was scarcely seen. These findings are discussed in connection with the regulation of intracellular Ca2+ concentration in dog coronary artery smooth muscle.

Animals↗

Evaluation of the pyroantimonate method for detecting intracellular calcium localization in smooth muscle fibers by the X-ray microanalysis of cryosections.

The validity of the pyroantimonate method, which has been used for detecting intracellular Ca localization and translocation in smooth muscles, was examined by making cryosections of the relaxed anterior byssal retractor muscle (ABRM) of Mytilus edulis at various stages of procedures for preparing ordinary Epon-embedded sections and determining the elemental concentration ratios of the pyroantimonate precipitate, localized along the inner surface of the plasma membrane, with an energy dispersive X-ray microanalyzer. The concentration of Ca (relative to that of Sb) in the precipitate stayed constant after the procedures of fixation, dehydration and Epon-embedding, while the concentrations of K, Mg, Na and Os showed their respective characteristic changes after the above procedures, being lower than that of Ca in the Epon-embedded sections. The presence of Ca in the precipitate was also demonstrated with an electron energy-loss spectrometer. The localization of Ca underneath the plasma membrane was also observed in the cryosections of the ABRM fibers prepared after mild fixation with acrolein vapor without using pyroantimonate. These results indicate that the pyroantimonate precipitate serves as a valid measure of intracellular Ca localization.

Animals↗

Simultaneous recordings of force and sliding movement between a myosin-coated glass microneedle and actin cables in vitro.

To elucidate the molecular mechanism of muscle contraction resulting from the ATP-dependent actin-myosin interaction, we constructed an assay system with which both the force and the movement produced by the actin-myosin interaction in vitro can be simultaneously recorded and analyzed. The assay system consisted of the giant internodal cells of an alga, Nitellopsis obtusa, which contain well-organized arrays of actin filaments (actin cables) running along the cell long axis, and a glass microneedle (tip diameter, approximately 7 microns; elastic coefficient, approximately 40 pN/microns), which was coated with skeletal muscle myosin at the tip and extended from a micromanipulator at right angles with the actin cables. When the myosin-coated tip of the microneedle was brought into contact with the exposed surface of the actin cables, it exhibited ATP-dependent movement along the actin cables over a distance of 20-150 microns in 20-200 s (20-23 degrees C) and eventually stopped due to a balance between forces generated by the actin-myosin interaction (800-6000 pN) and by the bent microneedle. Since the load on the force-generating myosin molecules increased with the bending displacement of the microneedle (auxotonic condition), the relation between the load and the sliding velocity of the myosin heads past the actin cables was determined from the time course of the microneedle movement recorded with a video system. The shape of the force-velocity curve thus obtained was convex upwards, similar to that of the force-velocity curve of intact frog muscle fibers obtained under the auxotonic condition.

Actins↗

[A case report of Campylobacter fetus subspecies fetus bacteremia].

An unusual case of Campylobacter fetus subspecies fetus bacteremia was presented. A twenty four year old male was admitted to our hospital due to abdominal pain, general malaise, diarrhea, high fever, and hemoptysis. He was alcoholic and fond of eating raw liver. He had a history of partial gastrectomy and disturbance of pancreatic function. He showed pulmonary empyema, pleuritis, thrombophlebitis of lower legs, jaundice, hepatomegaly, diarrhea, pneumothorax, and low T3 low T4 syndrome. C. fetus subsp. fetus was detected from the venus blood and pleural effusion on admission. He was successfully treated by gentamicin, chloramphenicol, and minocycline. This is the fourth case of C. fetus subsp. fetus bacteremia in the Japanese literature. This microanerophilic gram negative curved bacillus has been increasingly associated with human disease and relapsing in nature, so protracted antimicrobial therapy was recommended.

Adult↗

Electron microscopic studies on the stretch-induced disordering of the myofilament lattice in tetanized frog skeletal muscle fibers.

To study the effect of stretch on the hexagonal myofilament lattice in frog skeletal muscle fibers, the fibers were fixed at rest and during the isometric tetanus with or without stretch, and their cross sections were examined electron microscopically. The degree of disorder of the myofilament lattice as estimated by the Fourier transform and rotation methods in the digital image analysis was found to be largest during the isometeric tetanus with stretch and smallest during the isometeric tetanus without stretch, supporting the view that the stretch-induced force enhancement results from the disordering of the myofilament lattice.

Actin Cytoskeleton↗

Nuclear magnetic resonance studies on the mechanism of regulation of glycogenolysis in contracting skeletal muscle.

In vitro biochemical experiments showed that glycogenolysis can be regulated by two different mechanisms; i.e., Ca regulation at the phosphorylase step and phosphate-product regulation at the phosphofructokinase step. Recent studies on glycogenolysis in living vertebrate skeletal muscles by use of 31P nuclear magnetic resonance (NMR) presented evidence that glycogenolysis in vivo is regulated by Ca released from the sarcoplasmic reticulum. The present 31P NMR studies on living frog skeletal muscle indicated that glycogenolysis is further regulated by the phosphate products accumulated as the result of contractile activities. Therefore it was concluded that the glycogenolysis in vivo is actually regulated by the two mechanisms as predicted by in vitro biochemical studies.

Animals↗

Formation of 2-guanidinoethanol by a transamidination reaction from arginine and ethanolamine by the rat kidney and pancreas.

The formation of 2-guanidinoethanol (GEt) from L-arginine (Arg) and ethanolamine (EA) was studied using rat kidney homogenates. Maximum GEt formation was observed between pH 8.7 and 9.1, and the enzyme catalyzing the GEt synthesis was stable between pH 5.6 and 9.1. The rate of GEt formation from Arg and EA by rat kidney homogenates obeyed simple Michaelis-Menten type kinetics. L-Ornithine and glycine inhibited GEt formation by rat kidneys. Both of them inhibited GEt formation in a linear mixed-type inhibitory manner when Arg concentrations were varied at a fixed concentration of EA, while they showed competitive inhibition when EA concentrations were varied at a fixed concentration of Arg. L-Canavanine and guanidinoacetic acid as well as Arg acted as an amidine donor for GEt formation, but L-homoarginine, 3-guanidinopropionic acid and 4-guanidinobutyric acid did not. GEt synthesis was also observed in the rat pancreas. It had almost half of the activity of rat kidney to form GEt. This ratio of kidney to pancreas was approximately equal to that of L-arginine:glycine amidinotransferase (transamidinase, EC 2.1.4.1) in kidney and pancreas. These results suggest that GEt may be synthesized from Arg and EA by a transamidinase catalyzing reaction.

Amidinotransferases↗