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T Haraguchi

Publications and source records attributed to T Haraguchi.

At least 37 records · Page 2Linked to original sources

Multiple-color fluorescence imaging of chromosomes and microtubules in living cells.

Microscopic observation of fluorescently-stained intracellular molecules within a living cell provides a straightforward approach to understanding their temporal and spatial relationships. However, exposure to the excitation light used to visualize these fluorescently-stained molecules can be toxic to the cells. Here we describe several important considerations in microscope instrumentation and experimental conditions for avoiding the toxicity associated with observing living fluorescently-stained cells. Using a computer-controlled fluorescence microscope system designed for live observation, we recorded time-lapse, multi-color images of chromosomes and microtubules in living human and fission yeast cells. In HeLa cells, a human cell line, microtubules were stained with rhodamine-conjugated tubulin, and chromosomes were stained with a DNA-specific fluorescent dye, Hoechst33342, or with rhodamine-conjugated histone. In fission yeast cells, microtubules were stained with alpha-tubulin fused with the jellyfish green fluorescent protein (GFP), and chromosomes were stained with Hoechst33342.

Benzimidazoles↗

[Endoscopic ureteroureterostomy for a complete obstructed ureter: a case report].

We report a case in which the completely obstructed ureter was successfully treated by endourological procedure. The patient was a 66-year-old male who had been admitted for panperitonitis caused by diverticulitis perforation of the sigmoid colon. About one month later, leakage of both stool and urine and left hydronephrosis were observed. Therefore, left percutaneous nephrostomy was performed and the artificial anus was created. Radiographic examination showed about 1 cm defect on the lower one-third of the left ureter. (1st Operation) A 9.5 Fr. rigid ureteroscope was inserted into the left ureter transurethrally and a 7.5 Fr. flexible ureteroscope was inserted percutaneously. Antegrade puncture using a stiff end of a 0.038-inch guidewire into the obstructed segment was failed. Then, we bit off the obliterated tissue with a biopsy forceps transurethrally towards the light from the flexible scope, and a 12 Fr. double-J stent was indwell. (2nd Operation) Eight weeks after the first operation, a 12 Fr. ureteroresectoscope was inserted transurethrally. Full-thickness cold-knife incision of the re-established ureter was failed, however. (3rd Operation) Two weeks after the second operation, a 12.5 Fr. ureteroscope was inserted transurethrally, and a full-thickness incision in the lateral position of the re-established ureter was successfully made by KTP-laser. Then, a 12 Fr. endopyelotomy stent was placed. (Result) Six weeks after the third operation, the stent was removed and DIP revealed the improvement in hydronephrosis. The patient presented no recurrence at 2-year follow up.

Aged↗

A model analysis of aftereffects of high-intensity DC stimulation on action potential of ventricular muscle.

The mechanism for aftereffects of high-intensity dc stimulation on ventricular muscle was studied by using Beeler-Reuter's action potential model. A leak conductance (Gpore, maximal value from 40 to 80 microS for 1 cm2 of membrane), which mimics reversible dielectric breakdown of the cell membrane by the shock, was incorporated into the model. To simulate resealing process, Gpore was assumed to decrease after the shock exponentially at a time constant (tau pore) of 5-50 s. The simulation results are qualitatively consistent with our experimental observations in guinea pig papillary muscle [1]; they include prolonged depolarization, diastolic depolarization or oscillation of membrane potential leading to a single or multiple spontaneous excitation. The phase-independence and shock intensity-dependence can also be reproduced. Analysis of current components has revealed that: 1) a large inward leak current (Ileak) is responsible for the prolonged depolarization; 2) time-dependent decay of outward current (IX1) in combination with Ileak and slow inward current (I(s)) results in diastolic depolarization or oscillation of membrane potential; 3) spontaneous excitation depends on an activation of I(s). These findings support our hypothesis that strong shocks (> 15 V/cm) will produce abnormal arrhythmogenic responses in ventricular muscle through a transient rupture of sarcolemmal membrane.

Action Potentials↗

Oscillatory nuclear movement in fission yeast meiotic prophase is driven by astral microtubules, as revealed by continuous observation of chromosomes and microtubules in living cells.

Using a computerized fluorescence microscope system to observe fluorescently stained cellular structures in vivo, we have examined the dynamics of chromosomes and microtubules during the process of meiosis in the fission yeast Schizosaccharomyces pombe. Fission yeast meiotic prophase is characterized by a distinctive type of nuclear movement that is led by telomeres clustered at the spindle-pole body (the centrosome-equivalent structure in fungi): the nucleus oscillates back and forth along the cell axis, moving continuously between the two ends of the cell for some hours prior to the meiotic divisions. To obtain a dynamic view of this oscillatory nuclear movement in meiotic prophase, we visualized microtubules and chromosomes in living cells using jellyfish green fluorescent protein fused with alpha-tubulin and a DNA-specific fluorescent dye, Hoechst 33342, respectively. Continuous observation of chromosomes and microtubules in these cells demonstrated that the oscillatory nuclear movement is mediated by dynamic reorganization of astral microtubules originating from the spindle-pole body. During each half-oscillatory period, the microtubules extending rearward from the leading edge of the nucleus elongate to drive the nucleus to one end of the cell. When the nucleus reversed direction, its motion during the second half of the oscillation was not driven by the same microtubules that drove its motion during the first half, but rather by newly assembled microtubules. Reversible inhibition of nuclear movement by an inhibitor of microtubule polymerization, thiabendazole, confirmed the involvement of astral microtubules in oscillatory nuclear movement. The speed of the movement fluctuated within a range 0 to 15 micron/minute, with an average of about 5 microm/minute. We propose a model in which the oscillatory nuclear movement is mediated by dynamic instability and selective stabilization of astral microtubules.

Cell Division↗

[Creutzfeldt-Jakob disease associated with ocular dipping--a case report].

We presented a case of Creutzfeldt-Jakob disease (CJD) associated with ocular dipping (OD). A 65-year-old woman was hospitalized with two months history of progressive ataxia and mental deterioration. On admission, she was bed-ridden and stuporous with rigidity of the four limbs. Her both eyes were noted to deviate downward slowly from midpossition, taking 1 to 3 seconds to reach the nadir and rapidly returned to midpossition. It was felt that these abnormal eye movements are compatible with OD. Findings of EOG were compatible with that of typical OD. Electroencephalogram obtained a few months later revealed periodic synchronous discharge. Magnetic resonance imaging of the brain which had demonstrated mild cerebral atrophy in the beginning subsequently revealed full-brown cerebral atrophy. Hence, she was diagnosed of having CJD. There has been no report of CJD associated with OD. The OD was observed to last as long as 110 days. When the above described abnormal eye movements were noted, there was no signs indicative of brain stem dysfunction present. Therefore, we feel that the present case suggest that a diffuse cerebral dysfunction involving the cerebral cortex and basal ganglia may underlie in the development of OD.

Aged↗

[A case of measles encephaloneuropathy in a pregnant women].

We reported a patient with measles encephaloneuropathy. A 26-year-old woman in her 15th week of gestation became febrile and developed cutaneous eruption typical of measles on July 1 1997. Five days after appearance of the rash, fetal death was identified and the fetus was removed. Following the operation, she became comatous. Neurological examination revealed neck stiffness, flaccid paralysis of the four limbs, and decreased sweating in the lower limbs. CSF protein was 143 mg/dl with cell count of 1365/mm3. Myelin basic protein in CSF was positive. High titers of antimeasles antibodies were found in the serum and the cerebrospinal fluid. EEG revealed a predominance of slow waves. In MRI obtained earlier in her illness, high signal intensity areas were noted to spread in the brain stem and external capsule on T2-weighted images. However, T1-weighted image was unremarkable. Serial electrophysiological studies suggested demyelination of the motor nerves. With combination of methylprednisolone and immunoglobulin therapy, she made a remarkable recovery without any neurologic sequelae. We believe that the measles encephalitis in our patient is predominantly demyelinating due to an immunologic reaction in a pathophysiological aspect. We should pay attention to coincident poly-radiculoneuropathy in the early stage of measles encephalopathy.

Adult↗

Nedd5, a mammalian septin, is a novel cytoskeletal component interacting with actin-based structures.

The mouse Nedd5 gene encodes a 41.5-kD GTPase similar to the Saccharomyces and Drosophila septins essential for cytokinesis. Nedd5 accumulates near the contractile ring from anaphase through telophase, and finally condenses into the midbody. Microinjection of anti-Nedd5 antibody interferes with cytokinesis, giving rise to binucleated cells. In interphase and postmitotic cells, Nedd5 localizes to fibrous or granular structures depending on the growth state of the cell. The Nedd5-containing fibers are disrupted by microinjection of GTPgammaS and by Nedd5 mutants lacking GTP-binding activity, implying that GTP hydrolysis is required for its assembly. The Nedd5-containing fibers also appear to physically contact actin bundles and focal adhesion complexes and are disrupted by cytochalasin D, C3 exoenzyme, and serum starvation, suggesting a functional interaction with the actin-based cytoskeletal systems in interphase cells.

3T3 Cells↗

Meiotic nuclear reorganization: switching the position of centromeres and telomeres in the fission yeast Schizosaccharomyces pombe.

In fission yeast meiotic prophase, telomeres are clustered near the spindle pole body (SPB; a centrosome-equivalent structure in fungi) and take the leading position in chromosome movement, while centromeres are separated from the SPB. This telomere position contrasts with mitotic nuclear organization, in which centromeres remain clustered near the SPB and lead chromosome movement. Thus, nuclear reorganization switching the position of centromeres and telomeres must take place upon entering meiosis. In this report, we analyze the nuclear location of centromeres and telomeres in genetically well-characterized meiotic mutant strains. An intermediate structure for telomere-centromere switching was observed in haploid cells induced to undergo meiosis by synthetic mating pheromone; fluorescence in situ hybridization revealed that in these cells, both telomeres and centromeres were clustered near the SPB. Further analyses in a series of mutants showed that telomere-centromere switching takes place in two steps; first, association of telomeres with the SPB and, second, dissociation of centromeres from the SPB. The first step can take place in the haploid state in response to mating pheromone, but the second step does not take place in haploid cells and probably depends on conjugation-related events. In addition, a linear minichromosome was also co-localized with authentic telomeres instead of centromeres, suggesting that telomere clustering plays a role in organizing chromosomes within a meiotic prophase nucleus.

Cell Nucleus↗

Dynamics of chromosomes and microtubules visualized by multiple-wavelength fluorescence imaging in living mammalian cells: effects of mitotic inhibitors on cell cycle progression.

BACKGROUND: Mitotic events are accomplished by a coordinated interaction of molecular components within a cell. The continuous observation of specific molecular components in individual living cells provides a unique opportunity to examine the temporal and spatial coordination of these components. In order to be able to observe dynamic events in living mammalian cells, we have developed a computerized fluorescence microscope system. RESULTS: Using this fluorescence microscope system, we observed the dynamic behaviour of chromosomes and microtubules in living HeLa cells throughout an entire cell cycle. Chromosomes and microtubules were stained with Hoechst 33342 and rhodamine-conjugated tubulin, respectively. Microinjected rhodamine-tubulin was incorporated into microtubules at all stages of the cell cycle. In addition, rhodamine-tubulin stained the centrosomes during the G2 phase of the cell cycle and allowed us to observe centrosome movement. We also examined the effects of mitotic inhibitors on cell cycle progression. In a living cell treated with an inhibitor of type II DNA topoisomerase (ICRF-193) chromosomes formed an aberrant metaphase plate and failed to segregate. However, following mitotic spindle disassembly, the chromosomes decondensed normally. While the cell began to divide into two portions, cell division was eventually aborted and the daughter cells, still connected by a cytoplasmic bridge, rejoined into a single cell. These results demonstrate how a polyploid nucleus is generated in the presence of ICRF-193. On the other hand, microtubule polymerization inhibitors, such as colchicine, nocodazole and vinblastine, arrested the cell in the metaphase with condensed chromosomes; cytochalasin D did not affect the mitotic behaviour of either chromosomes or microtubules. CONCLUSIONS: Our observations of living cells demonstrate that the failure of chromosome segregation in and of itself does not prevent an exit from the metaphase, whereas the inhibition of microtubule assembly arrests cells at metaphase. Thus, a metaphase checkpoint is monitored by functional spindle microtubules but not by the completion of chromosome segregation.

Cell Cycle↗

[Reconsideration of evaluation criteria for physical fitness tests of a working population--comparing conventional and new evaluation criteria].

We set up new evaluation criteria values for grip strength, sit ups, trunk flexion, standing on one leg with eyes closed, whole body reaction and maximum oxygen uptake by age and by sex, by analysing data for about 50,000 people collected by the Japan Industrial Safety & Health Association. We thought that the conventional evaluation criteria values used in the physical fitness tests for a working population did not appropriately reflect the present conditions, and so we compared the new evaluation criteria values with the conventional evaluation criteria values. As a result, a very significant difference was noted in each test item. Then, by examining the quality of the data, change of the times, number of persons tested, and characteristics of the groups studied, all of which could have caused such differences, it was concluded that the proposed new criteria values would be appropriate for evaluation of the physical fitness of the current working population.

Adult↗

[The graft flow and 201Tl-myocardial scintigram in patients with saphenous vein graft or left internal thoracic artery graft].

To evaluate myocardial perfusion in patients with saphenous vein graft (SVG) or internal thoracic artery graft (ITA-G), we studied 38 patients (14: SVG, 10 males and 4 females, mean age 66 +/- 9 y-o; 24: ITA-G, 18 males and 6 females, mean age 64 +/- 7 y-o) by digital subtraction angiography (DSA) of ITA-G or SVG, and thallium-201 myocardial perfusion scintigraphy on exercise or dipyridamole stress. The grafting sites were left anterior descending artery (LAD) in all patients. Normal controls (n = 22) were defined by normal coronary angiogram and no evidence of myocardial ischemia. The graft flow and flow reserve on dipyridamole were measured by Rutishauser's formula. The basal blood flow of native normal ITA, SVG and ITA-G were respectively 72 +/- 24 ml/min, 51 +/- 23 ml/min, and 36 +/- 20 ml/min. The basal ITA-G flow was significantly lower than SVG-flow (p < 0.05). The flow reserves of SVG and ITA-G were respectively 2.32 +/- 0.65 and 1.78 +/- 0.59 (p < 0.02). The incidence of moderate hypoperfusion of thallium-201 SPECT was 14.3% in SVG and 12.5% in ITA-G on exercise stress, and 35% in SVG and 50% in ITA-G on dipyridamole stress. The incidence of reversible myocardial ischemia on dipyridamole stress was significant. The graft flow in patients with normal and abnormal thallium-201 SPECT were respectively 61 +/- 21 ml/min and 33 +/- 15 ml/min in SVG (p < 0.01), 46 +/- 19 ml/min and 27 +/- 16 ml/min in ITA-G (p < 0.02). The graft flow reserve were respectively 2.69 +/- 0.38 and 1.65 +/- 0.49 in SVG (p < 0.001), 2.25 +/- 0.40 and 1.31 +/- 0.28 in ITA-G (p < 0.001). We concluded that the basal blood flow and flow reserve of ITA-G were significantly lower than those of SVG. The myocardial ischemia was occasionally documented by the thallium-201 myocardial SPECT on dipyridamole stress in patients with patent ITA-G.

Aged↗

[Three-dimensional analysis of chromosomes by a computerized fluorescence microscope system].

In order to study spatial arrangement and dynamics of chromosomes and nuclear structures, we have developed a computerized fluorescence microscope workstation. This microscope workstation is capable of rapidly acquiring three-dimensional, multiple-wavelength image data and allows accurate reconstructions of three-dimensional cellular structures stained with multiple fluorescent dyes. Using this microscope system, we have examined dynamics of chromosomes and microtubules in mammalian culture cells by combination of high-resolution analysis in fixed specimens and time-lapse analysis in living cells. A key aspect of such microscopic approaches is a capability of detecting transient events during dynamic biological processes.

Animals↗

Screening for QT prolongation using a new exponential formula.

We prospectively screened 14,227 school-aged children for evidence of QT prolongation using a exponential formula (eQTc = (QT interval)/(RR interval)0.31) and criteria (ie: abnormal eQTc was defined as being equal to or greater than 0.430 and 0.435 for male and female first-graders, respectively, and 0.440 and 0.445 for male and female seventh-graders, respectively). We previously reported that this new exponential correction of the QT interval may be useful for eliminating the effect of heart rate in school-aged children. Computer analyses detected 13 children with abnormally prolonged eQTc. All of the children who had abnormal QTc values by conventional QTc criteria also had abnormal eQTc values using the new criteria. Nine of these 13 children were ultimately confirmed to have a prolonged QT interval. Six cases of QT prolongation were detected that would not have been found if conventional screening criteria were used, since these cases had heart rates greater than 75 beats/min. One child had parents who were deaf. This case would not have been detected if only conventional screening were used. These results suggest that exponential correction of the QT interval (eQTc) is useful for prospectively screening large populations for evidence of QT prolongation.

Child↗

Correction of the QT interval in children.

We evaluated the usefulness of 11 formulas for correcting the QT interval in children, including the square root, cubic root, logarithmic, linear, exponential, and inverse formulas using the Mean-squared residual (MSR) values and Akaike Information Criterion (AIC) in 8,086 first-graders, 9,989 seventh-graders, and 5,786 tenth-graders. The subjects were divided into six groups according to age and sex. MSR and AIC values were lowest in all of the groups for the exponential formula (eQTc) and Fridericia's formula (fQTc). We then evaluated the relative usefulness of these two formulas by determining the optimal value for parameter k using the following exponential model: eQTc = (QT interval)/(RR interval)k. The best-fit value for k was different for each group. However, the tentative abnormal eQTc and fQTc values, determined by statistical analysis, were equivalent in all groups when 0.31 was used as the exponential parameter k. These results suggest that the exponential formula and Fridericia's formula are equally useful for screening for QT prolongation.

Adolescent↗

[Prolonged muscle paralysis after long-term infusion of muscle relaxants and large doses of steroids].

We have recently encountered three patients who developed prolonged muscle paralysis after long-term infusion of muscle relaxants and administration of large doses of steroids. Among many factors implicated in the cause of this paralysis, steroids and muscle relaxants were suggested to be most likely causative agents. In order to avoid such muscle paralysis, we must be careful to limit the dose of relaxants as small as possible. For this purpose, monitoring of neuromuscular blockade is indispensable.

Female↗