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Biomedical subjects

A Okumura

Publications and source records attributed to A Okumura.

At least 19 recordsLinked to original sources

ISG15 enhances the innate antiviral response by inhibition of IRF-3 degradation.

The transcription factor, interferon regulatory Factor 3 (IRF-3) plays a critical role in the activation of an antiviral innate immune response. However the transcriptional activity of IRF-3 is tightly regulated by a proteosome mediated degradation. We describe here a novel mechanism by which the activity of IRF-3 is stabilized in infected cells. We have shown that both interferon treatment and NDV infection profoundly increase conjugation of interferon induced ubiquitin- like protein ISG15 to cellular proteins. ISGylated IRF-3 could be detected both in interferon treated and virus-infected cells. ISG15, subverts the ubiquitin mediated degradation of IRF-3 in NDV infected 2fTGH cells and enhances the NDV mediated transactivation of interferonbeta promoter and the translocation of activated IRF-3 to the nucleus. The relative levels of IRF-3 were significantly lower in NDV infected ISG15 null MEF, than in wt MEF. While ISG15 null MEF were more permissive to VSV replication their sensitivity to the antiviral effect of interferon was not modulated. These results reveal that virus mediated subversion of the antiviral response by proteolysis of IRF-3 is counteracted by induction of ISG15 expression and that ISGylation provides a feedback mechanism, which enhances the host innate antiviral response via IRF-3 stabilization.

Active Transport, Cell Nucleus↗

Evidence for white matter disruption in traumatic brain injury without macroscopic lesions.

BACKGROUND: Non-missile traumatic brain injury (nmTBI) without macroscopically detectable lesions often results in cognitive impairments that negatively affect daily life. AIM: To identify abnormal white matter projections in patients with nmTBI with cognitive impairments using diffusion tensor magnetic resonance imaging (DTI). METHODS: DTI scans of healthy controls were compared with those of 23 patients with nmTBI who manifested cognitive impairments but no obvious neuroradiological lesions. DTI was comprised of fractional anisotropy analysis, which included voxel-based analysis and confirmatory study using regions of interest (ROI) techniques, and magnetic resonance tractography of the corpus callosum and fornix. RESULTS: A decline in fractional anisotropy around the genu, stem and splenium of the corpus callosum was shown by voxel-based analysis. Fractional anisotropy values of the genu (0.47), stem (0.48), and splenium of the corpus callosum (0.52), and the column of the fornix (0.51) were lower in patients with nmTBI than in healthy controls (0.58, 0.61, 0.62 and 0.61, respectively) according to the confirmatory study of ROIs. The white matter architecture in the corpus callosum and fornix of patients with nmTBI were seen to be coarser than in the controls in the individual magnetic resonance tractography. CONCLUSIONS: Disruption of the corpus callosum and fornix in patients with nmTBI without macroscopically detectable lesions is shown. DTI is sensitive enough to detect abnormal neural fibres related to cognitive dysfunction after nmTBI.

Adolescent↗

Relationship between regional cerebral metabolism and consciousness disturbance in traumatic diffuse brain injury without large focal lesions: an FDG-PET study with statistical parametric mapping analysis.

BACKGROUND: The cerebral metabolism of patients in the chronic stage of traumatic diffuse brain injury (TDBI) has not been fully investigated. AIM: To study the relationship between regional cerebral metabolism (rCM) and consciousness disturbance in patients with TDBI. METHODS: 52 patients with TDBI in the chronic stage without large focal lesions were enrolled, and rCM was evaluated by fluorine-18-fluorodeoxyglucose positron emission tomography (FDG-PET) with statistical parametric mapping (SPM). All the patients were found to have disturbed consciousness or cognitive function and were divided into the following three groups: group A (n = 22), patients in a state with higher brain dysfunction; group B (n = 13), patients in a minimally conscious state; and group C (n = 17), patients in a vegetative state. rCM patterns on FDG-PET among these groups were evaluated and compared with those of normal control subjects on statistical parametric maps. RESULTS: Hypometabolism was consistently indicated bilaterally in the medial prefrontal regions, the medial frontobasal regions, the cingulate gyrus and the thalamus. Hypometabolism in these regions was the most widespread and prominent in group C, and that in group B was more widespread and prominent than that in group A. CONCLUSIONS: Bilateral hypometabolism in the medial prefrontal regions, the medial frontobasal regions, the cingulate gyrus and the thalamus may reflect the clinical deterioration of TDBI, which is due to functional and structural disconnections of neural networks rather than due to direct cerebral focal contusion.

Adult↗

Transient encephalopathy with reversible white matter lesions in children.

We report on two children with acute encephalopathy showing mild clinical manifestations and reversible white matter lesions. In both patients, MRI revealed high intensities on T (2)-weighted imaging and marked reductions of water diffusion in the white matter of the bilateral centrum semiovale and the corpus callosum. These abnormalities disappeared along with the neurological symptoms within a week in both patients. These children represent a characteristic group of patients among childhood acute encephalopathy.

Acute Disease↗

The mildest form of acute necrotizing encephalopathy associated with influenza A.

We experienced the mildest form of acute necrotizing encephalopathy associated with influenza A. A previously healthy 13-year-old girl had mildly decreased consciousness and delirious behavior lasting for a week. Diffusion-weighted imaging showed mildly high signal intensities in the bilateral thalami, deep white matter in the centrum semiovale, and frontal lobes. Conventional T (1)- or T (2)-weighted images revealed no abnormalities.

Adolescent↗

Parry-Romberg syndrome with a clinically silent white matter lesion.

We performed a detailed neuroimaging study in a patient with Parry-Romberg syndrome. Proton MR spectroscopy demonstrated normal spectral patterns, though conventional MR imaging revealed high-intensity areas in the entire white matter in the left hemisphere. Single-photon emission tomography showed increased perfusion in the cortex of the affected hemisphere. Pyramidal tracts and optic radiations were preserved on diffusion tensor tractography. We will correlate these neuroimaging findings with normal psychomotor development in our patient.

Brain Diseases↗

Identification of M1 and M2 muscarinic acetylcholine receptors in the cat carotid body chemosensory system.

The carotid body is a major arterial chemoreceptor that senses low O2 tension, high CO2 tension and low pH in the arterial blood. It is generally believed that neurotransmitters, including acetylcholine (ACh), participate in the genesis of afferent neural output from the carotid body and modulate the function of chemoreceptor cells (glomus cells). Previous pharmacological studies suggest that M1 and M2 muscarinic ACh receptors (mAChRs) are involved in these processes. This study was designed to demonstrate the presence and localization of M1 and M2 mAChRs in the carotid body and in the petrosal ganglion of the cat. Since DNA sequences of the cat M1 and M2 mAChRs were not known, we first determined partial DNA sequences. These sequences and deduced amino acid sequences highly resembled those of human and the rat. Subsequent reverse transcription-polymerase chain reaction (RT-PCR)analysis has demonstrated that mRNAs for M1 and M2 mAChRs are present in the carotid body and the petrosal ganglion of the cat. Immunohistochemistry has indicated that the localization of these receptors appears different. Immunoreactivity for M1 mAChR was strong in nerves in the carotid body. Nerve endings positively stained for M1 mAChR appear to innervate glomus cells. Weak staining for M1 mAChRs was seen in glomus cells. On the other hand, M2 receptor protein seems to be present in glomus cells but not on nerve endings. One third of the neurons in the petrosal ganglion showed immunoreactivity for M1 mAChR. Many neurons and nerve fibers in the petrosal ganglion expressed M2 mAChR immunoreactivity. The results were consistent with previous pharmacological studies. Thus, activation of M1 mAChRs on afferent nerve endings may be linked to the increase in neural output during hypoxia. Further, M1 and M2 mAChRs on glomus cells modulate the release of neurotransmitters.

Acetylcholine↗

Electroencephalographic aspects of periventricular hemorrhagic infarction in preterm infants.

The aim of this study was to investigate electroencephalographic aspects of periventricular hemorrhagic infarction (PVHI) in preterm infants. The subjects were 11 preterm infants with PVHI, who were admitted to the Neonatal Intensive Care Unit of Anjo Kosei Hospital from April 1985 through December 1997. The patients underwent serial cranial ultrasonography and were diagnosed as having PVHI. An EEG was recorded at least once within 1 week after PVHI and then recorded at 1- to 4-week intervals until 40 weeks of postconceptional age. The EEG findings were classified into acute and chronic stage abnormalities. Acute stage EEG abnormalities were seen in 5 infants after PVHI, which were symmetrical in all infants. Among them, 3 infants died during the early neonatal period. The infants who had a higher grade of acute stage EEG abnormalities showed significantly higher mortality. Among the surviving 8 infants, chronic stage EEG abnormalities were seen in 3 predominantly in the ipsilateral side of PVHI, and all of them developed hemiplegia. The sensitivity and specificity of chronic stage EEG abnormalities to predict outcome were 0.75 and 1.0, respectively. Acute and chronic stage EEG abnormalities give valuable information for short-term and long-term outcome in preterm infants with PVHI.

Brain Infarction↗

Discrepancy between lesion distributions on methionine PET and MR images in patients with glioblastoma multiforme: insight from a PET and MR fusion image study.

OBJECTIVE: To examine (11)C-methyl methionine (MET) accumulation on positron emission tomographic (PET) imaging of glioblastoma multiforme to determine the distribution of metabolic abnormality compared with magnetic resonance imaging (MRI). METHODS: Contemporaneous MRI was superimposed on corresponding MET-PET images in 10 patients with newly diagnosed glioblastoma multiforme before treatment. Differences between the extended area of MET accumulation on PET imaging (MET area), the gadolinium (Gd) enhanced area on T1 weighted images (Gd area), and the abnormal high signal intensity area on T2 weighted images (T2-high area) were assessed. RESULTS: The MET area was larger than the Gd area and included the entire Gd area. The discrepancy in volume between the MET and Gd areas became greater with increasing tumour diameter. On average, 58.6% of the MET area was located within the Gd area, 90.1% within 10 mm outside the Gd area, 98.1% within 20 mm, and 99.8% within 30 mm. A newly developed Gd area had emerged in five of the 10 cases up to the time of study. In three of the five cases this was in the MET area even after complete surgical resection of the Gd area on the initial MRI; in the remaining two it originated in the residual Gd area after surgery. In all cases, the T2-high area was larger than the MET area. The MET area extended partly beyond the T2-high area in nine cases, and was completely within it in one. CONCLUSIONS: Glioblastoma multiforme cells may extend over the Gd area and more widely with increasing tumour size on Gd-MRI. The T2-high area includes the greater part of the tumour but not its entire area. The methods reported may be useful in planning surgical resection, biopsy, or radiosurgery.

Adult↗

Varicella exposure in a neonatal medical centre: successful prophylaxis with oral acyclovir.

In December 2000, a female infant hospitalized in our Neonatal Care Centre was infected with varicella by her mother. Although prophylactic intravenous acyclovir was administered at a dose of 15 mg/kg daily, she later developed varicella during her hospital stay. We therefore initiated control procedures to prevent further hospital-acquired infections. Oral acyclovir (40 mg/kg daily divided into four doses) was administered prophylactically to six preterm infants in contact with the varicella patient. None of six preterm infants subsequently developed clinical varicella or had any adverse effects associated with acyclovir administration. It is suggested that prophylactic administration of oral acyclovir (40 mg/kg daily) might prevent hospital-acquired varicella-zoster virus (VZV) infections, and that oral acyclovir may be an option for VZV prophylaxis in situations where VZV immunoglobulin is not available.

Acyclovir↗

Histological analysis of human tooth development in NOD/scid mice.

An increasing number of elderly people suffer from the loss of teeth due to periodontitis or dental caries. Currently accepted functional prosthetic rehabilitation includes removable or fixed prostheses, with or without osseointegrated dental implants. All of them, however, are foreign bodies for the organism. In this regard, the ideal materials are natural teeth, which do not stimulate inflammatory responses. Tissue engineering has made great progress in regenerating a variety of cell types, such as bone cells. Regenerated tooth would be of great use and importance as a material for novel dental implants. However, clear mechanisms of tooth formation have not yet been elucidated. We describe here an experimental model where normal human tooth morphogenesis and dentition occur in NOD/scid mice subcutaneous tissues. Our system would contribute not only to developing, but also understanding the process of human tooth development.

Adolescent↗

Prognostic value of EEG depression in preterm infants for later development of cerebral palsy.

The aim of this study is to examine the most appropriate timing for EEG recordings in order to predict the risk of cerebral palsy (CP) on the basis of the degree of acute stage abnormalities (ASA) in preterm infants. We retrospectively investigated the correlation between the degree of ASA and psychomotor outcome of 295 infants born between 27 and 32 weeks of gestational age whose initial EEG recording was performed within 7 days of life. Forty-six infants were diagnosed as having CP at 18 months of corrected age, and most of them suffered from diplegia due to periventricular leukomalacia (PVL). The maximum degree of ASA correlated with a later development of CP and its severity. Correlation between the degree of ASA and the severity of CP was highest on day 1 - 2, but this tendency was less clear after day 3. Specificity and negative predictive value were generally high within the first 7 days of life. But sensitivity was markedly decreased after day 3, and positive predictive value was highest on day 2. An EEG on day 1 or 2 will be useful in order to predict developmental outcome of preterm infants on the basis of the grade of ASA.

Acute-Phase Reaction↗

Guillain-Barré syndrome associated with central nervous system lesions.

We report the clinical course, and neurophysiological and neuroimaging findings of a patient with Guillain-Barré syndrome associated with central nervous system lesions. During a course of intravenous immunoglobulin therapy, she had headache with meningism. Cerebral magnetic resonance imaging showed lesions in both frontal and right occipital lobes. Cerebrospinal fluid showed a raised protein concentration accompanied by mild pleocytosis. Her symptoms resolved within two months. Subsequent magnetic resonance imaging revealed cavity formation in the deep white matter and atrophic changes in the right occipital lobes.

Brain Diseases↗

Ligands for peroxisome proliferator-activated receptors alpha and gamma inhibit chemically induced colitis and formation of aberrant crypt foci in rats.

The biological role of the peroxisome proliferator-activated receptors (PPARs) in various diseases, including inflammation and cancer, has been highlighted recently. Although PPARgamma ligands have been found to inhibit mammary carcinogenesis in rodents, the effects on colon tumorigenesis are controversial. In the present study, three different experiments were conducted to investigate the modifying effects of PPARs ligands (PPARalpha and PPARgamma) on colitis and an early phase of colitis-related colon carcinogenesis in male F344 rats. In the first experiment, gastric gavage of troglitazone (PPARgamma ligand, 10 or 100 mg/kg body weight) or bezafibrate (PPARalpha ligand, 10 or 100 mg/kg body weight) inhibited colitis induced by dextran sodium sulfate (DSS) and lowered trefoil factor-2 content in colonic mucosa. In the second experiment, dietary administration (0.01 or 0.05% in diet) of troglitazone and bezafibrate for 4 weeks significantly reduced azoxymethane (AOM, two weekly s.c. injections, 20 mg/kg body weight)-induced formation of aberrant crypts foci, which are precursor lesions for colon carcinoma. In the third experiment, dietary administration (0.01% in diet for 6 weeks) of pioglitazone (PPARgamma ligand), troglitazone, and bezafibrate effectively suppressed DSS/AOM-induced ACF. Administration of both ligands significantly reduced cell proliferation activity in colonic mucosa exposed to DSS and AOM. Our results suggest that synthetic PPARs ligands (PPARalpha and PPARgamma) can inhibit the early stages of colon tumorigenesis with or without colitis.

Animals↗

Mutation at codon 130 in hepatitis B virus (HBV) core region increases markedly during acute exacerbation of hepatitis in chronic HBV carriers.

Mutations within T-cell or B-cell epitopes are suggested to have some influence on the clinical course of chronic hepatitis B virus (HBV) infection. To investigate the relationship between liver cell injury and heterogeneity of the HBV core gene, we focused on the sequence of codon 130, which is located on both T- and B-cell epitopes, and serially analyzed the proportion of mutant virus (core130Thr) to wild-type virus (core130Pro) during the exacerbation of chronic hepatitis B. Sera obtained serially from five HBV carriers who had exacerbation of hepatitis, and three asymptomatic HBV carriers (ASCs) with persistently normal serum aminotransferase (ALT) values were studied, using the restriction fragment length polymorphism (RFLP) method. Core130Pro predominated in the sera in the remission state, but core130Thr increased markedly in parallel with ALT elevation and decreased again after the ALT peak, followed by the predominance of core130Pro, in all the five patients. In one patient, the ratio of core130Thr/core130Pro (Thr/Pro) was more than 70% at the ALT peak. On the other hand, in sera from the three ASCs core130Pro always predominated, and no divergence was identified in the ratio of Thr/Pro. Our data suggest that codon 130 is one of the most important immunogenic regions in the HBV core gene and that elevation of Thr/Pro could be the result of immune selection.

Adolescent↗

Substrate affects the initial attachment and subsequent behavior of human osteoblastic cells (Saos-2).

Interaction between implant materials and bone cells contributes to the clinical success of dental implants. The object of this study was to investigate the initial attachment and subsequent behavior of human osteoblastic cells (Saos-2) to pure titanium (Ti), hydroxyapatite (HA), and glass. We, therefore, performed a time-course study for examining the area, attachment rate, distribution of focal adhesion kinase (FAK) vinculin, and actin, and the motility of Saos-2 cells on the materials. On Ti, cell area increased gradually, whereas on HA, cells spread quickly, but quitted spreading at 12 h after cell seeding. The number of cells on HA was greater than on the other materials. On Ti, the numbers of FAK- and vinculin-positive focal adhesions increased continuously. On HA, although the number of FAK-positive focal adhesions also increased continuously, the number of vinculin-positive focal adhesions decreased. Furthermore, actin staining showed that the cells on HA poorly formed stress fibers with weak polarity, whereas the cell on Ti possessed well-defined polarized stress fibers. On HA, cells started extension earlier than on Ti, motility was inactive, and the cells settled on the materials. These results suggest that the earlier settling of osteoblasts on HA might result in earlier osteogenesis on HA than other materials.

Actins↗