Search PubMed⌕ Search

Biomedical subjects

H Ohde

Publications and source records attributed to H Ohde.

At least 19 recordsLinked to original sources

On- and off-responses of the photopic electroretinograms in X-linked juvenile retinoschisis.

PURPOSE: To examine the physiologic condition of the middle retinal layer of patients with X-linked juvenile retinoschisis (xlRS) by studying the on- and off-responses of the photopic electroretinograms (ERGs). METHODS: Eleven unrelated Japanese men (mean age; 24.9 +/- 7.6 years) who were clinically diagnosed with xlRS and molecularly confirmed as having XLRS1 mutations were investigated. For the photopic ERGs, the a-, b- and d-wave amplitudes elicited by long duration stimuli were recorded, and the responses from the xlRS patients were compared to those recorded from normal subjects (n = 14, mean age, 27.5 +/- 4.5 years). We also examined the relationship between the photopic ERG responses and the genotype. RESULTS: No significant difference was found between the a- and d-wave amplitudes in the xlRS patients (34.2 +/- 8.7 microV, 52.5 +/- 10.4 microV, respectively), and those in normal subjects (40.4 +/- 10.3 microV, 44.7 +/- 6.3 microV, respectively). The mean b-wave amplitude in the xlRS patients was significantly smaller (10.5 +/- 7.7 microV) than the mean of normal subjects (46.4 +/- 10.2 microV) (P < 0.0001). No significant correlation was found between the ERG responses and the locus of the mutation. CONCLUSION: The photopic ERG demonstrated considerable impairment of the on-pathway arising from an abnormality of the on-bipolar cells or possibly secondary to Müller cell abnormality in xlRS.

Adolescent↗

Structure-activity studies leading to (-)1-(benzofuran-2-yl)-2-propylaminopentane, ((-)BPAP), a highly potent, selective enhancer of the impulse propagation mediated release of catecholamines and serotonin in the brain.

The catecholaminergic and serotoninergic neurons in the brain change their performance according to the physiological need via a catecholaminergic/serotoninergic activity enhancer (CAE/SAE) mechanism. Phenylethylamine (PEA), tyramine and tryptamine are the presently known endogenous CAE/SAE substances which enhance the impulse propagation mediated release of catecholamines and serotonin in the brain. A PEA derivative, (-)deprenyl (selegiline), known as a selective inhibitor of MAO-B, is for the time being the only CAE/SAE substance in clinical use. Aiming to develop a selective CAE/SAE substance much more potent than (-)deprenyl, a series of new 1-aryl-2-alkylaminoalkanes, structurally unrelated to PEA and the amphetamines, was designed and prepared. Among them, (-)1-(benzofuran-2-yl)-2-propylaminopentane ((-)BPAP) was selected as a promising candidate substance for further studies. (-)BPAP significantly enhanced in rats the impulse propagation mediated release of catecholamines and serotonin in the brain 30min after acute injection of 0.36nmol/kg sc. In the shuttle box, (-)BPAP was in rats about 130 times more potent than (-)deprenyl in antagonizing tetrabenazine induced inhibition of performance. (+/-)BPAP protected cultured hippocampal neurons from the neurotoxic effect of beta-amyloid in 10(-14)-10(-15)M concentration.

Amphetamines↗

Clinical application of the multifocal VEPs.

PURPOSE: To determine whether visual field defects can be detected by the multifocal VEP technique. METHODS: Multifocal VEPs were elicited by a pseudorandom binary m-sequence stimulus (VERIS II). The stimulus was a dartboard-like pattern of 61 sectors, and the luminance of each sector alternated between white and black. The stimulus area subtended approximately 25 degrees. Each recording was divided into 8 equal segments, and the total recording time was about 4 min. Multifocal VEPs were recorded from 25 normal subjects and six patients with visual field loss. The responses summed within 4 quadrants were used in the analysis and were compared with the visual fields obtained by perimetry. RESULTS: In six perimetrically-documented visual field defects, the responses summed over each quadrant of the field were reduced in the corresponding affected quadrants. In addition, recovery of the visual field loss following treatment was accompanied by a recovery of the responses. CONCLUSIONS: Multifocal VEPs summed within four quadrants can be used for an objective evaluation of the visual fields. The testing can be obtained in 4 min with no pain or discomfort to the patient.

Adult↗

Light induced apoptosis is accelerated in transgenic retina overexpressing human EAT/mcl-1, an anti-apoptotic bcl-2 related gene.

BACKGROUND/AIM: EAT/mcl-1 (EAT), an immediate early gene, functions in a similar way to bcl-2 in neutralising Bax mediated cytotoxicity, suggesting that EAT is a blocker of cell death. The aim of this study was to determine the effect of overexpression of the human EAT gene on light induced retinal cell apoptosis. METHODS: EAT transgenic mice incorporating the EF-1alpha promoter were utilised, and expression of human EAT was detected by RT-PCR. Light damage was induced by raising mice under constant illumination. Two groups of animals, EAT transgenic mice (n=14) and littermates (n=13), were examined by ERG testing and histopathology at regular time points up to 20 weeks of constant light stimulation. Electrophysiological and histopathological findings were evaluated by established systems of arbitrary scoring as scores 0-2 and scores 0-3, respectively. RESULTS: The mean score (SD) of ERG response was significantly lower in EAT transgenic mice (0.79 (0.89)) than in littermates (1.69 (0.48)) (p<0.01). Although the differences between the two survival curves did not reach statistical significance (p=0.1156), the estimated incidence of electrophysiological retinal damage was higher in EAT mice (0.0495/mouse/week; 95% confidence interval (CI) 0.0347-0.0500) than in littermates (0. 0199/mouse/week; 95% CI 0.0035-0.0364). The mean scores (SD) for histopathological retinal degeneration were 2.31 (0.63) in littermates and 1.43 (1.22) in EAT transgenic mice (p=0.065). However, Kaplan-Meier curves for histopathological failure in two groups of mice showed that retinal photoreceptor cells were preserved significantly against constant light in the littermate compared with transgenic mice (p=0.0241). The estimated incidence of histopathological retinal damage was 0.0042/mouse/week in the littermates (95% CI 0-0.0120) and 0.0419/mouse/week in the EAT mice (95% CI 0.0286-0.0500). CONCLUSION: Retinal photoreceptor cell apoptosis under constant light stimulation is likely to be accelerated in transgenic retina overexpressing EAT.

Animals↗

[Two cases of digitalis toxicity with reversible and severe decrease of visual acuity].

BACKGROUND: We performed electrophysiologic tests on two patients with digitalis toxicity who first had photophobia and xanthopsia and revealed reversible reduced visual acuity and binocular central scotoma. CASES: The patients were a 72-year-old male and a 54-year-old male who had symptoms of digitalis toxicity. FINDINGS: The corrected visual acuity was severely decreased during digitalis toxicity, 0.02 oculus dexter (OD) and 0.1 oculus sinister (OS) in case 1 and 0.04 OD and 0.2 OS in case 2. But visual acuity recovered as the blood levels of digitalis decreased to the normal level and the corrected visual acuity was 0.7 OD and 0.8 OS in case 1 and 0.8 OD and 0.9 OS in case 2. We recorded 30 Hz-flicker electroretinogram (ERG), single flash ERG, photopic ERG, and scotopic ERG when digitalis blood levels were elevated and normal. Decreased amplitudes of 30 Hz-flicker ERG and photopic ERG suggested that photoreceptor function was disturbed at digitalis toxicity and cone dysfunction was more severely disturbed than rod dysfunction. CONCLUSION: 30 Hz-flicker ERG, as well as electrocardiogram and digitalis blood level, is a relatively convenient and useful measure of digitalis toxicity. It is necessary consiler toxicity when severe visual dysfunction is observed in patients with digitalis therapy.

Aged↗

[Objective evaluation of visual field loss in a patient with branch retinal artery occlusion and brain infarction].

PURPOSE: To evaluate visual field loss using multifocal ERG(m-ERG), multifocal VEP(m-VEP), and Heidelberg Retina Flowmeter(HRF) in a patient with branch retinal artery occlusion(BRAO) and brain infarction. CASE: A 38-year-old man noticed inferior-nasal visual field loss in the left eye, and was referred to Keio University Hospital. He suffered from paralysis in the left leg due to brain infarction at the age of 24. However, he had not noticed visual field loss due to the brain infarction. His left fundus showed retinal edema in the area of a superior-temporal retinal artery occulusion. He was diagnosed as having BRAO. The Goldmann and Humphry perimetric examinations revealed homonymous quadrantanopia in the upper left field as well as inferior visual field defect in the left eye. RESULTS: Both m-ERG and m-VEP, especially second-kernel responses, were reduced in the affected retinal area of BRAO. But only m-VEP was affected in the corresponding area of homonymous quadrantanopia in the upper left field. The retinal flow in the area with BRAO evaluated by HRF was decreased in some areas and not in others, suggesting that retinal function was not necessarily consistent with retinal circulation. CONCLUSIONS: m-ERG and m-VEP are useful To differentiate retinal lesions from brain lesions in visual field loss.

Adult↗

Voltammetric measurement in supercritical CO2 utilizing a water-in-CO2 microemulsion

A novel method for voltammetric measurement in supercritical CO2 is described. In this method a water-in-supercritical CO2 microemulsion is utilized to raise the conductivity of the fluid phase. Well-defined voltammograms for the redox reactions of ferrocene and tetramethyl-p-phenylenediamine were obtained in supercritical CO2 in the presence of the microemulsion. The electrolysis product is stabilized in the water core of the microemulsion. This implies a wide range of electrochemical synthesis involving ionic or radical species in supercritical CO2 may be possible utilizing the microemulsion. The electrochemical results obtained from the water-in-supercritical CO2 microemulsion system are different from that obtained from a supercritical CO2-ethanol mixture system.

Journal Article↗

Neurotrophic effects of FPF-1070 (Cerebrolysin) on cultured neurons from chicken embryo dorsal root ganglia, ciliary ganglia, and sympathetic trunks.

We examined the effect of FPF-1070 (Cerebrolysin) on neurite outgrowth in explant cultures of dorsal root ganglia (DRG), sympathetic trunks (ST), and ciliary ganglia (CG) from 10- to 11-day chicken embryos. FPF-1070 significantly promoted neurite outgrowth in DRG and ST neurons at all concentrations examined, in comparison with phosphate buffered saline-treated negative controls; however, this effect on neurite outgrowth was not as significant as that observed for nerve growth factor-treated positive controls on DRG and ST neurons. Additionally, FPF-1070 exhibited an inverted U relationship between concentration and effectiveness in DRG and ST neurons. In contrast, FPF-1070 did not affect neurite outgrowth in CG neurons although ciliary neurotrophic factor-treated positive controls showed striking neurite outgrowth. Our results demonstrate that FPF-1070 has different neurotrophic effects depending on the subpopulation of neurons. This study clarifies a role for neurotrophic activity in the mechanism of action of FPF-1070.

Amino Acids↗

[The effect of attention on visual evoked potentials elicited by a newly designed stereogram].

PURPOSE: To investigate whether the visual evoked potentials (VEPs) obtained by a newly designed stereogram were generated by some higher function like depth perception, we examined the effect of attention on the VEPs. SUBJECTS AND METHOD: Eight subjects participated in the experiments. The VEPs were recorded according to the international 10/20 system. The stimulus consisted of circles with or without disparity presented on 4 locations around the fixation point, and they appeared in one of 3 patterns in random order when viewed through red/green spectacles 1. at the same distance as the fixation point, 2. in front of it, or 3. at the back of it. The near pattern was defined as the target. In Experiment 1, the subjects just fixated on the fixation point. In Experiments 2 and 3, they were required to respond to the target by pressing a button and counting the number (target discrimination task). RESULTS: A scalp negative potential with a latency of 170-280 msec was elicited in the lateral occipital area. For each of the 3 patterns the amplitude was greater in Experiments 2 and 3 than in Experiment 1. In Experiments 2 and 3, stimuli with disparity resulted in larger amplitude than without disparity. The target stimulus also evoked larger potentials than non-target stimuli did, although no such effect was apparent in Experiment 1. CONCLUSION: Attention, as well as disparity, increased the VEPs amplitude, which indicates that the potential could be generated by neural activity higher than V 1 including depth perception. Moreover, the potential showed characteristics similar to attention-related potentials modulated by visuo-spatial attention.

Adult↗

Receptive-field properties of adult cat's retinal ganglion cells with regenerated axons.

Receptive-field properties of retinal ganglion cells (RGCs) that had regenerated their axons were studied by recording single-unit activity from strands teased from peripheral nerve (PN) grafts apposed to the cut optic nerve in adult cats. Of the 286 visually responsive units recorded from PN grafts in 20 cats, 49.7% were classified, according to their receptive-field properties, as Y-cells, 39.5% as X-cells, 6.6% as W-cells, and 4.2% were unclassified. The predominant representation of Y-cells is consistent with a corresponding morphological study (Watanabe et al. 1993a), which identified alpha-cells as the RGC type with the largest proportion of regenerating axons. Among the X-cells, we only found ON-center types, whereas both ON-center and OFF-center Y-cells were found. As in intact retinas, the receptive-field center sizes of Y-cells and W-cells were larger than those of X-cells at corresponding displacements from the area centralis. Within the 10 degrees surrounding the area centralis, the receptive fields of X-cells with regenerated axons were larger than those in intact retinas, suggesting that some rearrangement of retinal circuitry occurred as a consequence of degeneration and regeneration. Receptive-field center responses of Y-, X-, and W-type units with regenerated axons were similar to those found in intact retinas, but the level of spontaneous activity of Y- and X-type units was, in general, less than that of intact RGCs. Receptive-field surrounds were weak or not detected in more than half of the visually responsive RGCs with regenerated axons.

Animals↗

(-)1-(Benzofuran-2-yl)-2-propylaminopentane, [(-)BPAP], a selective enhancer of the impulse propagation mediated release of catecholamines and serotonin in the brain.

1. The brain constituents beta-phenylethylamine (PEA) and tryptamine enhance the impulse propagation mediated transmitter release (exocytosis) from the catecholaminergic and serotoninergic neurons in the brain ('catecholaminergic/serotoninergic activity enhancer, CAE/SAE, effect'). (-)Deprenyl (Selegiline) and (-)1-phenyl-2-propylaminopentane [(-)PPAP] are amphetamine derived CAE substances devoid of the catecholamine releasing property. 2. By changing the aromatic ring in PPAP we developed highly potent and selective CAE/SAE substances, structurally unrelated to the amphetamines. Out of 65 newly synthetized compounds, a tryptamine derived structure, (-)1-(benzofuran-2-yl)-2-propylaminopentane [(-)BPAP] was selected as a potential follower of (-)deprenyl in the clinic and as a reference compound for further analysis of the CAE/SAE mechanism in the mammalian brain. 3. (-)BPAP significantly enhanced in 0.18 micromol 1(-1) concentration the impulse propagation mediated release of [(3)H]-noradrenaline and [(3)H]-dopamine and in 36 nmol 1(-1) concentration the release of [(3)H]-serotonin from the isolated brain stem of rats. The amount of catecholamines and serotonin released from isolated discrete rat brain regions (dopamine from the striatum, substantia nigra and tuberculum olfactorium, noradrenaline from the locus coeruleus and serotonin from the raphe) enhanced significantly in the presence of 10(-12) - 10(-14) M (-)BPAP. BPAP protected cultured hippocampal neurons from the neurotoxic effect of beta-amyloid in 10(-14) M concentration. In rats (-)BPAP significantly enhanced the activity of the catecholaminergic and serotoninergic neurons in the brain 30 min after acute injection of 0.1 microg kg(-1) s.c. In the shuttle box, (-)BPAP in rats was about 130 times more potent than (-)deprenyl in antagonizing tetrabenazine induced inhibition of performance.

Animals↗

[Effects of selegiline hydrochloride on intracellular Ca2+ contents in cultured neuronal cells].

The effects of Selegiline hydrochloride (Selegiline HCl) on the intracellular Ca2+ contents of primarily cultured rat striatal, mesencephalic neuronal cells and PC-12 cells were examined by the use of a Ca2+ imaging analyzer. In the former two cell types, Selegiline HCl (10(-5)-10(-6) M) induced a transient inflow of extracellular Ca2+ through the voltage-dependent N-type Ca2+ channel. In addition, all cells indicating an increase in the intracellular Ca2+ content were found to be catecholaminergic neurons which showed a positive reaction with anti-tyrosine hydroxylase antibodies. Furthermore, a transient intracellular influx of Ca2+ was observed in the NGF-pretreated PC-12 cells. From these results, it is suggested that Selegiline HCl elicits various functions, including antioxidation, activation of neurotrophic factor biosynthesis and neuronal protection probably via an unidentified specific proteins of tyrosine hydroxylase-positive neurons.

Animals↗

Rhinogenous optic neuritis with drastic diurnal variation of visual function.

We report a case of rhinogenous optic neuritis in a 50-year-old man demonstrating drastic diurnal variation in visual function. His left vision was 20/15 in the morning, which gradually decreased to counting fingers at night. Pupillary reaction and visual field showed the same fluctuation as vision. Complete remission of visual symptoms was achieved after endonasal ethmoid sinusotomy.

Circadian Rhythm↗

[Anatomical evaluation of hydrodissected human lens nucleus].

We measured the diameter and central thickness of the central nucleus, isolated by repeated hydrodissection, in 100 eyes undergoing extracapsular cataract extraction. The average diameter and central thickness were 6.43 +/- 0.86 mm and 2.93 +/- 0.36 mm, respectively. The average ratio between the two measurements was 2.12, which is similar to that of an extracted crystalline lens. Statistical analysis revealed a positive correlation between central thickness and age (p < 0.05). There was a weak positive correlation between central thickness and hardness of the nucleus. Since specimens were obtained from clinical cases in this study, further evaluation should be made using cadaver eyes.

Aged↗

Size of the lens nucleus separated by hydrodissection.

We measured the extracted central nucleus (diameter and thickness) of 88 eyes (average patient age, 72 years) undergoing extracapsular cataract extraction (ECCE). The average diameter was 6.51 +/- 0.75 mm; the average thickness, 2.96 +/- 0.33 mm. Since the average lens diameter is approximately 10 mm, a corneoscleral incision of 7 to 8 mm in chord length should be sufficient for its removal in most ECCE cases. Accumulation of these data and further analysis correlating them with age and degree and type of cataract in larger series will be useful in determining the smallest possible incision size required for individual patients.

Aged↗

Bradykinin suppresses endothelin-induced contraction of coronary, renal and femoral arteries through its B2-receptor on the endothelium.

Effect of bradykinin (BK) on endothelin-1 (ET-1)-induced vasoconstriction and its mechanism were investigated. The development of isometric force of arterial rings of canine coronary, renal and femoral arteries was recorded using a organ bath containing Krebs-Henseleit buffer aerated with 95% O2 and 5% CO2. ET-1 at more than 10(-9) M dose-dependently induced vascular contraction similarly among the three arteries. BK at more than 10(-8) M dose-dependently suppressed the ET-1-induced vasoconstriction only in the presence of endothelium, and the effect of BK was largest in the coronary arteries. The BK-induced suppression was not affected by addition of des-Arg9-[Leu8]-BK, an antagonist for B1-receptor, but did be completely reversed by addition of B2-receptor antagonist (10(-6) M) [D-Arg0,Hyp3,Thi5,8,D-Phe7]-BK. The BK's suppression of the ET-1-induced vasoconstriction was partly reversed by additions of each 10(-5) of Ng-nitro-L-arginine, a substrate inhibitor of nitric oxide, methylene blue, an inhibitor of soluble guanylate cyclase, or indomethacin, an inhibitor of cyclooxygenase. The reversing effects of methylene blue and indomethacin were additive. BK suppresses the ET-1-induced vasoconstriction through B2-receptor on the endothelium. Both endothelial nitric oxide and prostaglandin(s) are participated in the BK's effect.

Animals↗

Bradykinin suppresses endothelin-induced contraction of coronary artery through its B2-receptor on the endothelium.

Bradykinin (BK), a powerful vasodilating peptide, has been known to be one of the factors regulating vascular contractility mainly through its action on the endothelium. The effects of BK on vascular contraction induced by endothelin-1 (ET-1), a potent vasoconstrictor peptide produced in endothelium, were investigated in vitro using the canine coronary ringed artery. ET-1 at concentrations of 10(-10) to 10(-7) M induced strong and persistent contraction dose-dependently. The ET-1-induced contraction was inhibited by BK at concentrations of 10(-7) and 10(-6) M only in the presence of endothelium. A B1-receptor agonist (des-Arg9-BK) and a B1-receptor antagonist (des-Arg9-[Leu8]-BK) did not affect these effects of BK, whereas a B2-receptor antagonist ([D-Arg0,Hyp3,Thi5,8,D-Phe7]-BK) inhibited the effect of BK on the ET-1-induced contraction. These results indicate that BK may be a potent counter-factor for the ET-1-induced coronary vasoconstriction through its B2-receptors on the endothelium.

Animals↗

Effects of the kallikrein-kinin system on phasic coronary vasospasm in dogs.

It is well known that kinins are liberated from kininogen in blood during angina attack to maintain blood flow in coronary artery. We examined the effects of bradykinin, one of kinins, on the coronary artery other than vasodilation. The isolated canine coronary artery ring was suspended in gassed (95% O2, 5% CO2) Krebs-Henseleit buffer at 37 degrees C in vitro. The experimental phasic contraction of coronary artery was induced by 6 x 10(-4)M of 3,4-diaminopyridine which decreases K conductance (Y. Uchida, Jpn. Circ. J: 49, 128, 1985). The effect of bradykinin and other substances on the cycle length of contraction (CL), the peak tension of contraction phase (PT) and the tension during relaxation phase (RT) were observed. The phasic contraction was eliminated by 10(-7)M nifedipine and 10(-6)M diltiazem which block voltage dependent Ca channels. These Ca blockers reduced PT, but slightly increased CL, and weakly reduced RT. The phasic contraction was also eliminated by 10(-6)M bradykinin. However, bradykinin, unlike Ca blockers, did not reduce PT, but markedly prolonged CL and decreased RT significantly. This inhibition mode was very similar to those of nicorandil which increases K conductance. These data suggest that bradykinin plays a protective role in coronary vasospasm, and this antivasospasm effect may be mediated through the increase in K conductance.

Animals↗