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Biomedical subjects

T Nagamine

Publications and source records attributed to T Nagamine.

At least 91 records · Page 5Linked to original sources

Human presupplementary motor area is active before voluntary movement: subdural recording of Bereitschaftspotential from medial frontal cortex.

Bereitschaftspotential (BP) was recorded directly from the right supplementary motor area proper (SMA-proper) and its rostral part by chronically implanted subdural electrodes in three patients with intractable focal motor seizure. Cortical electrical stimulation of the SMA-proper revealed the somatotopy as previously reported, and the supplementary negative motor area (SNMA) was identified just anterior to the SMA-proper in two of three cases. In patient 1, eight kinds of simple movements, i.e., left and right middle finger extension, left arm abduction, left and right foot dorsiflexion, left knee extension, tongue protrusion and saccadic eye movement, were studied to record BP. In patient 2, three kinds of movements, i.e., left and right middle finger extension and left foot dorsiflexion, were adopted as movement tasks. In patient 3, four kinds of movements, i.e., left and right middle finger extension and left and right foot dorsiflexion, were adopted. In the SMA-proper, somatotopically distributed BP preceding movements were observed in all three patients. In the SNMA and its rostrally adjacent areas, "SNMA-plus" BPs were generated invariably regardless of the sites of movement. There was no significant difference in the onset time of BPs between the SMA-proper and the SNMA-plus. The present findings suggest that the SNMA-plus is more consistently involved in the preparation for various simple movements than the SMA-proper. This functionally independent region (SNMA-plus) just rostral to the SMA-proper most likely corresponds to a part of the presupplementary motor area which was originally defined in nonhuman primates. Since a part of this area elicited the inhibition of various movements by cortical stimulation, and since it generated BPs regardless of the sites of movement, it may play a higher role in the movement preparatory process than the SMA-proper.

Adult↗

Characterization of the cryptic plasmid pSBO2 isolated from Streptococcus bovis JB1 and construction of a new shuttle vector.

A cryptic plasmid designated pSBO2 (3582 bp) was isolated from Streptococcus bovis JB1. The pSBO2 contained putative sites for a double-strand origin (dso), a small transcriptional repressor protein (Cop), countertranscribed RNAs (ctRNAs), and a replication protein (Rep), which were similar to those from pMV158 and pLS1, which were isolated from S. agalactiae, and pWVO1, isolated from Lactococcus lactis. The putative single-strand origin (sso) of pSBO2 was similar to pER341 and pST1, which were isolated from S. thermophilus. Recombinant plasmid designated pSBE2 was constructed to bind pECM184 vector and the DNA fragment containing sso, dso, Cop, ctRNAs, and Rep of pSBO2. When pSBE2 was introduced into S. bovis 12-U-1 and no8, the plasmids in the transformants had deleted the 160-bp fragment between sso and dso. This plasmid, designated pSBE2A, was capable of transforming Escherichia coli and S. bovis strains 12-U-1 and no8 on high frequency; therefore, pSBE2A is an effective shuttle vector.

Amino Acid Sequence↗

Phenotypic characterization of polysaccharidases produced by four Prevotella type strains.

Four ruminal Prevotella type strains, P. ruminicola JCM8958T, P. bryantii B 4T, P. albensis M384T, and P. brevis ATCC19188T, were characterized for polysaccharide-degrading activities with the reducing sugar release assay and zymogram analyses. Carboxymethylcellulase, xylanase, and polygalacturonate (PG)-degrading enzyme activities were determined in cultures grown on oat spelt xylan, xylose, arabinose, cellobiose, and glucose as sole growth substrates. P. ruminicola and P. albensis showed carboxymethylcellulase induction patterns. When xylan was supplied as a sole growth substrate, xylanase activities produced by P. bryantii and P. albensis were at least 18- and 11-fold higher, respectively, than during growth on other carbohydrates, suggesting that the regulation of the xylanases was highly specific to xylan. All strains constitutively produced PG-degrading enzymes. The corresponding activity of P. bryantii was more than 40-fold higher than in other strains. Zymogram analyses routinely detected the presence of high-molecular-weight (100-170 kDa) polysaccharide-degrading enzymes in ruminal Prevotella. Characteristics of the polysaccharide-degrading activities showed diversity of ruminal Prevotella species.

Animals↗

Electrocorticogram-electromyogram coherence during isometric contraction of hand muscle in human.

OBJECTIVE: To clarify how the primary sensorimotor and supplementary motor areas are involved in the generation of the rhythmicity of electromyogram (EMG) activity during continuous muscle contraction. METHOD: We analyzed the coherence between subdurally recorded cortical electroencephalograms (EEG) and EMGs of the contralateral wrist extensor muscle during continuous isometric contraction in 8 patients with medically intractable epilepsy. RESULTS: In all subjects, a significant coherence between the primary motor area (M1) and EMG was observed at the peak frequency of 15+/-3 Hz (means+/-SD). In the primary somatosensory area (S1) of 7 subjects and the supplementary motor area proper (SMA proper) of 4 subjects, significant coherence with EMG was observed at 12+/-5 and 15+/-4 Hz, respectively. The time lags revealed by cross-correlogram were 10+/-3, 7+/-1 and 22+/-8 ms in the M1, S1 and SMA proper, respectively, with the EMG lagging in all areas. CONCLUSION: These findings suggest that the rhythmic activity in the SMA proper, as well as in the S1 and M1, is related to the generation of the rhythmicity of EMG activity.

Electromyography↗

Iron enhances hepatitis C virus replication in cultured human hepatocytes.

BACKGROUND: Iron overload in the presence of increasing concentrations of iron is one of the indicators of poor response to interferon therapy in chronic hepatitis C. In order to analyze the effect of iron on hepatitis C virus (HCV) replication, we measured replication in an HCV-infected cell line. METHODS AND RESULTS: Cells from a non-neoplastic HCV-infected human hepatocyte line (PH5CH8) susceptible to HCV infection and supportive of HCV replication were used in this study. The replication of HCV RNA was measured by reverse transcription-nested polymerase chain reaction (RT-nested PCR). PH5CH8 cell viability was measured by 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT) assay. PH5CH8 cells were incubated with 0, 1, 10, 50, and 100 microM of FeSO4 at 37 degrees C with 5% CO2. Forty-eight hours after iron supplementation, the quantity of HCV RNA in the cells incubated in 50 and 100 microM of FeSO4 was approximately ten times that of the cells with no iron supplementation. Similar changes were observed beginning at 12 h from supplementation with FeSO4 and continued for at least 72 h after supplementation. MTT assay indicated that iron did not have cytotoxic effects on the PH5CH8 cells. CONCLUSION: Iron enhances HCV replication in a hepatocyte cell line. The results suggest that iron deposition in hepatocytes could facilitate HCV infection in the liver.

Cell Line, Transformed↗

Role of serum soluble Fas/soluble Fas ligand and TNF-alpha on response to interferon-alpha therapy in chronic hepatitis C.

AIMS/BACKGROUND: To determine the relationship between host factors and host response to interferon (IFN) therapy, serum soluble Fas (sFas), soluble Fas ligand (sFas ligand), and tumor necrosis factor-alpha (TNF-alpha) were analyzed in 41 patients with chronic hepatitis C (CH-C) treated with IFN-alpha. METHODS: Serum levels of sFas, sFas ligand, and TNF-alpha were measured at 0, 4, and 24 weeks of IFN therapy. RESULTS: Eighteen patients were complete responders (CR) and 23 patients were non-responders (NR). Serum levels of sFas and TNF-alpha in patients with CHC were significantly higher than those in healthy controls (p<0.01 and p<0.01, respectively). Serum sFas ligand levels were significantly lower in CH-C patients than in healthy controls (p<0.01). Before IFN therapy, serum levels of sFas in NR were significantly higher than those in CR (p<0.05). At 4 weeks of IFN therapy, serum levels of sFas of CR were significantly elevated compared with levels before IFN therapy (p<0.05). Serum levels of sFas correlated with the histological activity of the liver (p<0.05) and alanine aminotransferase (p<0.05). None of the three parameters, serum sFas, sFas ligand, or TNF-alpha levels, correlated with each other, with HCV-RNA genotype or with serum HCV-RNA load. Multiple logistic regression analysis showed that serum sFas levels before IFN therapy were a contributive factor to predict efficacy of IFN therapy. CONCLUSIONS: Serum sFas/sFas ligand and TNF-alpha play a possible role in pathogenesis of CH-C and also in IFN therapy. Serum sFas levels before IFN therapy may be one of the host-related factors used for evaluating the response of CH-C patients to IFN therapy.

Adult↗

Essential role of the right superior parietal cortex in Japanese kana mirror reading: An fMRI study.

Functional magnetic resonance imaging (fMRI) was used to investigate the neural substrates responsible for Japanese kana mirror reading. Japanese kana words, arranged vertically from top to bottom, were used in the mirror reading task in 10 normal right-handed Japanese adults. Since both mirror-reversed and normally oriented kana items are read in the same (top to bottom) direction, it was possible to minimize the oculomotor effects which often occur in the process of mirror reading of alphabetical language. By using the SPM96 random effect analysis method, a significant increase in the blood oxygen level-dependent signal during mirror reading relative to normal reading was detected in multiple brain regions, including the bilateral superior occipital gyri, bilateral middle occipital gyri corresponding to Brodmann area (BA) 18/19, bilateral lingual gyri (BA 19), left inferior occipital gyrus (BA 18), left inferior temporal cortex (BA 37), bilateral fusiform gyri (BA 19), right superior parietal cortex (SPC) (BA 7), left inferior frontal gyrus (BA 44/45) and an inferior part of the left BA 6. In addition to these cortical regions, the right caudate nucleus and right cerebellum were also activated. The activation found in the right SPC and the left inferior temporal region is consistent with the hypothesis that mirror reading involves both the dorsal visuospatial and ventral object recognition pathways. In particular, a significant correlation was found between the fMRI signal change in the right SPC and the behavioural performance (error index) in the task. This may reflect increased demand on the right SPC for the spatial transformation which is required for the accurate recognition of mirror-reversed kana items. This relationship between the haemodynamic response in a specific brain area and the behavioural data provides new evidence for the essential role of the right SPC in Japanese kana mirror reading.

Adult↗

Movement-related change of electrocorticographic activity in human supplementary motor area proper.

We investigated movement-related change in the cortical EEG signal by simultaneous recording from the primary sensorimotor area (S1-M1) and the supplementary motor area proper (SMA proper) in four patients with intractable partial epilepsy. By the use of temporal spectral evolution (TSE) analysis, the change in background cortical activity in relation to self-paced finger/wrist extension was compared among the SMA proper, S1 and M1. All three areas showed a decrease in the amount of activity for the frequency range between 10 and 40 Hz before the onset of movement [event-related desynchronization (ERD)]. The SMA proper showed earlier onset of ERD for 18-22 Hz activity (-3.4 +/- 0.5 s, mean +/- standard deviation) than M1 (-1.7 +/- 0.7 s) and S1 (-1.4 +/- 0.5 s). The degree of ERD in S1 was greatest for 10-14 Hz and that in M1 for 18-22 Hz, whereas in the SMA proper ERD was observed throughout the frequency bands from 10 to 40 Hz. Neither the degree nor the onset time of ERD in the SMA proper was lateralized to either the ipsilateral or the contralateral side with respect to the movement. A transient increase in activity after movement [event-related synchronization (ERS)] was observed in all three areas. In the SMA proper, two out of four subjects showed ERS for frequency bands below 40 Hz with both ipsilateral and contralateral movements. By contrast, in S1 and M1, ERS was recorded for frequency bands between 20 and 90 Hz, and was predominantly associated with the contralateral movement. The present study suggests that the background cortical activity in the SMA proper has a specific temporal pattern with respect to self-paced movement, and that the SMA proper is involved in motor preparation earlier than S1-M1 in a bilaterally organized manner.

Adult↗

Role of primary sensorimotor cortices in generating inhibitory motor response in humans.

To clarify the mechanism by which inhibitory motor responses such as cortical negative myoclonus are generated in humans, three patients with medically intractable partial epilepsy (two with frontal lobe epilepsy and one with parietal lobe epilepsy) were studied by means of direct cortical stimulation with a single electric pulse through subdural electrodes. All underwent chronic long-term video/EEG monitoring, cortical mapping by 50 Hz electric cortical stimulation and recording of cortical somatosensory evoked potentials with chronically implanted subdural grid electrodes (3 mm in diameter and centre-to-centre distance of 1 cm) to map both epileptogenic and functional zones. After these clinical evaluations, cortical stimulation by single electric pulse (0.3 ms duration, 1 Hz) was carried out through pairs of subdural electrodes located at the primary sensorimotor area (MI-SI), pre-supplementary motor area (pre-SMA) and lateral negative motor area (lateral NMA), while surface EMG was recorded from the muscles of the contralateral hand. The results showed that (i) in all subjects, single pulse stimulation of MI-SI elicited a motor evoked potential (MEP) followed by a silent period (SP) in the contralateral distal hand muscles, the latter lasting 300 ms after the stimulus. The duration of SP was proportional to the size of the preceding MEP. In one subject, SP without any preceding MEP was elicited, and, in another subject, there was a short SP immediately before MEP in the contralateral thenar muscle. (ii) Following the stimulation of either pre-SMA or lateral NMA, no SP was observed. It is concluded that the inhibitory mechanism within the MI-SI, but probably not in the non-primary motor areas, either closely linked to or completely independent of excitation, most likely plays an important role in eliciting brief negative motor phenomena such as cortical negative myoclonus or SP.

Adult↗

Histological change after interferon therapy in chronic hepatitis C in view of iron deposition in the liver.

We examined the efficacy of interferon (IFN) therapy for chronic hepatitis C (CHC) in view of the change of liver histology and iron staining before and after IFN therapy. Enrolled in this study were 109 patients with CHC who completed IFN treatment and were followed for at least 1 yr after the end of IFN therapy. Serum iron, unsaturated-iron-binding capacity (UIBC), and total-iron-binding capacity (TIBC) were assessed before IFN therapy. Knodell's histological activity index (HAI) score and iron staining were examined in 55 patients in whom liver biopsy was performed at two points: before and. 1 yr after IFN therapy. Serum iron levels before IFN therapy did not correlate with the response to IFN. The HAI score significantly decreased after IFN therapy in complete responders (p < 0.01) and biochemical responders (p < 0.01). Three factors in the HAI, periportal necrosis, intralobular necrosis, and portal inflammation, but not fibrosis, were significantly decreased in complete responders (p < 0.01) and biochemical responders (p < 0.01). Of 55 patients, 23 (41.8%) were positive for iron staining before IFN therapy and 14 of 55 (25.5%) after IFN therapy. The positive rate for iron staining tended to decrease after IFN therapy, not correlating to the response to IFN, but the change was not statistically significant. In conclusion, the histological improvement by IFN therapy was mostly seen in necroinflammatory changes but not in fibrosis at least 1 yr after IFN, and iron staining tended to decrease after IFN therapy.

Adult↗

Preliminary study of combination therapy with interferon-alpha and zinc in chronic hepatitis C patients with genotype 1b.

We have evaluated the efficacy of interferon-alpha (IFN-alpha) plus zinc therapy in hepatitis C patients with genotype 1b, poor responders for IFN alone. Ten patients were injected with 10 MU of IFN-alpha every day for 4 wk, followed by three times a week for 20 wk (control group). Nine patients took 300 mg of zinc sulfate a day orally during IFN-alpha therapy (zinc sulfate group), and 15 patients took IFN-alpha and 150 mg of polaprezinc (polaprezinc group). On the d 8 of IFN therapy, circadian zinc levels in serum elevated significantly in the polaprezinc group compared to the zinc sulfate group or control group. Serum ALT levels normalized in 73.3% of the polaprezinc group, 55.6% of the zinc sulfate group, and 40.0% of the control group at 6 mo after the end of IFN therapy. Sustained eradication for the hepatitis C virus RNA judged at the end of the 6-mo follow-up period was higher in the polaprezinc group than in the zinc sulfate group (53.3% vs 11.1%, p < 0.05) or the control group (20.0%). No clinical side effects of zinc were observed at the dose used. The data suggest that polaprezinc is expected to increase the therapeutic response of IFN-alpha for chronic hepatitis C with genotype 1b.

Carnosine↗

A small cryptic plasmid from Ruminobacter amylophilus NIAH-3 possesses functional mobilization properties.

The complete nucleotide sequence of a small cryptic plasmid designated pRAO1, from the Gram-negative ruminal bacterium Ruminobacter amylophilus NIAH-3, was determined. The plasmid is a circular DNA molecule, 2140 bp in size, with a GC content of 40%. Computer-assisted analysis identified three open reading frames (ORFs), one of which, ORF3 (347 amino acids), displayed a high degree of amino acid identity with the Mob proteins involved in conjugative mobilization and interplasmid recombination of plasmids from Gram-positive bacteria. We proved the mobilization properties of pRAO1 in the Escherichia coli system using the coresident IncW broad-host-range conjugative plasmid R388. These data demonstrated, for the first time, the mobilization properties of small cryptic plasmids from Gram-negative inhabitants of the rumen.

Amino Acid Sequence↗

Somesthetic function of supplementary motor area during voluntary movements.

To clarify the somesthetic functions of the supplementary motor area (SMA), we recorded the cortical potentials following the median nerve electric stimulation directly from the SMA and investigated the modulation caused by voluntary movements in two patients with intractable SMA seizures. The evoked potentials over the SMA consisted of positive (61.5ms) and negative (100.0 ms) peaks, which were enlarged by voluntary movements of the stimulated hand. The present finding is in strong contrast with the attenuation (gating) of the response at the primary sensorimotor area (SM1) and suggests that the voluntary movements differently modulate the somatosensory functions of SMA and SM1.

Adult↗

A molecular phylogeny of Lilium in the internal transcribed spacer region of nuclear ribosomal DNA.

Phylogenetic relationships among 55 species of Lilium, Cardiocrinum giganteum, and Nomocharis saluenensis were inferred from nucleotide sequence variations in the internal transcribed spacer (ITS) regions of 18S-25S nuclear ribosomal DNA. The phylogeny derived from ITS sequences estimated using maximum-likelihood methods indicated that (1) most of the species construct their own clade according to the classification based on morphological features at the section level; (2) section Daurolirion is not independent of Sinomartagon, and it is appropriate to integrate two sections as Sinomartagon; (3) it is appropriate that L. henryi and L. bulbiferum are classified into subsection 6a and Sinomartagon-Daurolirion, respectively; (4) subsection 6b is much closer to Sinomartagon than subsection 6a and Archelirion, and it arose directly from Sinomartagon; and (5) Lilium is much closer to Nomocharis than Cardiocrinum. Phylogenetic estimation using sequences of the ITS region is suitable at the levels of genus, section, and most of subsection.

Base Sequence↗

Temporal profile of visual evoked responses to pattern-reversal stimulation analyzed with a whole-head magnetometer.

Magnetoencephalography (MEG) has become accepted as a useful method for non-invasively studying brain functions, including visual perception. The present study used MEG to elucidate information processing following pattern-reversal stimulation by analyzing the origins and properties of visual evoked magnetic fields (VEFs). The VEFs of ten healthy adults were recorded in a magnetically shielded room using a 122-channel whole-head magnetometer. The visual stimulation of checkerboard-pattern reversal at 1.7 Hz was presented to the subject's right hemifield. Visual evoked potentials (VEPs) were recorded simultaneously, and 150 responses were each averaged for VEFs and VEPs. For the contrast profile study, pattern-reversal stimuli at five different contrast levels from 96% to 8% were used. In all subjects, the VEFs showed three components with latencies of approximately 95, 120, and 160 ms. The equivalent current dipoles for the first and the third components were located and were oriented close to each other in the left occipital lobe, but these dipoles were separated from that of the second component, which showed an opposite direction. Stimuli at a moderate contrast level markedly reduced the first component, but not the third. These findings indicate that the first and the third components of VEFs appear to originate from anatomically closely situated, almost identical, sources, but that their physiological properties differ.

Adult↗

Cortical mechanisms underlying point localization of pain spot as studied by event-related potentials following CO2 laser stimulation in man.

To elucidate cortical mechanisms underlying point localization of a pain spot, we investigated event-related potentials (ERPs) while using a CO2 laser beam to apply a pain stimulus to the hand dorsum in 16 healthy men. The stimulus spot (pain spot) was shifted for each stimulus, while the subject was requested to identify the stimulated spot as accurately as possible and to use a pointer in the non-stimulated hand to indicate the corresponding spot on a figure of a hand that was projected onto a screen (localization condition). For the control condition, the subject pointed to a single predetermined spot, regardless of the location of the stimulation (control motor task condition). Electroencephalograms were recorded from 21 electrodes, referenced to the linked earlobes, and were averaged time-locked to the stimulus onset for each task separately. Under the control rest condition (neither point localization nor motor task), only two early components (N2 and P2) were recorded. During the control motor task condition (no point localization), in addition to N2 and P2, a steep negative-going slope was recorded at the fronto-central region. Exclusively during the localization condition, a positive peak (647 ms, 5.6 microV for the left and 634 ms, 5.7 microV for the right hand stimulation) was identified; this was maximal at the midline centro-parietal area and distributed symmetrically over the scalp. It is suggested that the late positive component detected exclusively during the localization task is related to the somatotopic point localization of the pain spot. From the distribution of this ERP, the task most likely involves bilateral activation of the superior parietal cortices.

Adult↗

Sequence analysis of small cryptic plasmids isolated from Selenomonas ruminantium S20.

Two small cryptic plasmids designated pONE429 and pONE430 were isolated from a rumen bacterium, Selenomonas ruminantium S20. The complete sequence of pONE429 was 2100 bp and contained one open reading frame (ORF) of 201 amino acids. The sequence of pONE430 had 1527 bp and one ORF of 171 amino acids with the similarity of replication protein (Rep protein) of pOM1, pSN2, and pIM13 isolated from Butyrivibrio fibrisolvens, Staphylococcus aureus, and Bacillus subtilis, respectively. In these plasmids, the upstream nucleotide sequence of Rep protein had the conserved nucleotides which could be double-strand origin (DSO) of rolling circle replication (RCR) mechanism. The plasmids of pONE429, pONE430, pJJMI, pJDB21, and pS23 were isolated from S. ruminantium strains and had similar regions that were located within a <450-bp nucleotide. These similar regions may be the location that was recognized by the host strain, S. ruminantium.

Amino Acid Sequence↗