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Biomedical subjects

J Tanaka

Publications and source records attributed to J Tanaka.

At least 145 records · Page 8Linked to original sources

T-cell co-signalling molecules in graft-versus-host disease.

Allogeneic stem cell transplantation (allo SCT) is now frequently performed for the treatment of haematological malignancies and aplastic anaemia. However, graft-versus-host disease (GVHD) is still the major complication after allo SCT, producing immune deficiency, infection, organ damage and, occasionally, patient death. The antigen-specific signal mediated by the T-cell receptor (TCR) is essential for activation of T-cells; however, additional co-stimulatory signals are required for complete T-cell activation. Therefore, blocking strategies of co-stimulatory signals have been evaluated as targets of therapeutic intervention for GVHD after allo SCT. In a mouse bone-marrow transplantation (BMT) model, the administration of CTLA4-Ig, which blocks the interaction of CD28 on T-cells and B7 molecules on antigen-presenting cells (APCs), can prolong survival of allo BMT recipients, although this effect was not complete. In addition, the anti-CD40L (CD154) monoclonal antibody (mAb), which can interfere with the interaction of CD154 on T-cells and CD40 on APCs, can induce long-term graft survival in the murine model. Combined administration of CTLA4-Ig and anti-CD40L mAb can prevent allograft rejection in primates. Therefore, it seems the most powerful method to prevent the alloimmune response in vivo. The Fas/Fas ligand pathway is also involved in pathogenesis of GVHD. Anti-FasL mAb can reduce the mortality of GVHD and improve intestinal lesions. Recently, it was reported that donor bone marrow treated ex vivo using CTLA4-Ig reconstituted haematopoiesis in vivo with a relatively low risk of GVHD in human allo BMT. Therefore, selective blocking strategies for T-cell co-signalling might be useful for the prevention of GVHD in human allo SCT.

Animals↗

Neuronal intranuclear hyaline inclusion disease with polyglutamine-immunoreactive inclusions.

Neuronal intranuclear hyaline inclusion disease (NIHID) is a group of neurodegenerative disorders characterized by the presence of intranuclear inclusions in neurons (NIs). We report here clinicopathological findings of a 25-year-old female patient who died after 13 years of a clinical course characterized by progressive gait disturbance and movement disorders. Histological examination revealed widespread NIs with neuronal loss in restricted regions; neuronal loss was severe in the subthalamic nucleus, internal pallidum, substantia nigra, Edinger-Westphal nucleus and Purkinje cell layer. Quantification of the NIs combined with a graded evaluation of neuronal loss revealed an overall tendency for more severe neuronal loss to be accompanied by a lower frequency of NIs. A morphological similarity to the nuclear inclusions recently identified in several CAG repeat diseases prompted us to examine the immunolocalization of ubiquitin and expanded polyglutamine stretches, which demonstrated the presence of ubiquitin at the periphery of most NIs. An expanded polyglutamine stretch was seen in the center of limited number of NIs. These findings indicate that abnormal fragments such as expanded polyglutamine regions are incorporated into the inclusion, aggregated in its center, and thereby metabolized by a ubiquitin-dependent proteolytic pathway. Although it remains to be elucidated how the formation of NIs is related to neuronal degeneration, our findings suggest that NIs are formed in the process of sequestering or degrading abnormal protein fragments and formation of NIs may not be immediately toxic to neurons.

Adult↗

The major immediate-early genes of human cytomegalovirus induce two novel proteins with molecular weights of 91 and 102 kilodaltons.

Mouse monoclonal antibody MAB810 is known to recognize the major immediate-early (IE) proteins, 68 kDa IE1 (IE1p68) and 80 kDa IE2 (IE2p80), of human cytomegalovirus (HCMV). Using this antibody we found that two additional proteins with higher molecular weights of approximately 91 (p91) and 102 kDa (p102) are also synthesized in HCMV-infected cells. p91 and p102 were produced in cells stably transfected with plasmid expressing IE1p68 and IE2p80, respectively, and shown to be related with IE1p68 and IE2p80, respectively, in primary amino acid sequence. Taken together, these results indicate that p91 and p102 are expressed from the IE1 and IE2 genes, respectively.

Animals↗

Jugular bulb diverticulum associated with lower cranial nerve palsy and multiple aneurysms.

BACKGROUND: Jugular bulb diverticulum is a rare condition that has never been reported in association with lower cranial nerve palsy. CASE DESCRIPTION: A 54-year-old woman developed acute swallowing disturbance and hoarseness. Neuroradiological examinations demonstrated a jugular bulb diverticulum as well as unruptured internal carotid and basilar tip aneurysms on the same side. Laboratory data for both serum and cerebrospinal fluid were normal. Steroids were given, and the cranial nerve palsy disappeared within 1 month. The aneurysms were successfully clipped. During the follow-up period of more than 1 year, the patient has done well and has no neurological deficit. CONCLUSION: This is the first reported case of jugular bulb diverticulum associated with a lower cranial nerve palsy and multiple aneurysms. We recommend close observation of patients with this condition regardless of its clinical presentation.

Anti-Inflammatory Agents↗

Cellular zinc status regulates cytomegalovirus major immediate-early promoter.

Diethylenetriaminepenta-acetic acid (DTPA) inhibits human cytomegalovirus (CMV) replication in vitro, although the mechanism has remained unclear. The present study shows that DTPA inhibits CMV major immediate-early (MIE) promoter activity in a luciferase reporter assay, whereas its enhancer-less promoter was not affected. The inhibitory effect of DTPA on CMV MIE promoter activity was abrogated by stoichiometric amounts of cations in the following (decreasing) order, Zn(2+)>Co(2+)>Ni(2+)>Cu(2+)>Fe(3+)>Fe(2+), but not by Mn(2+). These cations bind to DTPA and may limit the zinc-chelating capability. In the absence of DTPA, exogenous zinc activated CMV MIE promoter activity in a dose-dependent manner, but not its enhancer-less promoter. The intracellular metallothionein content of DTPA- and cation-treated cultures was significantly correlated with CMV MIE promoter activity. DTPA may inhibit CMV replication by regulating CMV MIE promoter activity through controlling the availability of cellular zinc. Since the CMV MIE promoter has no consensus sequence for a metal responsive element, a novel mechanism for metal-regulated transcription may be involved in this process.

Antigens, Viral↗

The role of 6R-tetrahydrobiopterin in the nervous system.

In addition to its cofactor activities for aromatic L-amino acid hydroxylases and nitric oxide synthase (NOS), 6R-tetrahydrobiopterin (6R-BH(4)) shows diverse actions on neurons. Dopamine release from the rat striatum or PC12 cells was stimulated by 6R-BH(4). The action of 6R-BH(4) was independent of its cofactor activities and stereospecific. Ca(2+) channels in rat brain and PC12 cells were activated by 6R-BH(4) via cAMP-protein kinase A pathway. Membrane potential of PC12 cells was deplorized by 6R-BH(4). Thus, it is assumed that 6R-BH(4) acts on its specific action site (possibly outside of the cell membrane) to stimulate dopamine release by activating Ca(2+) channels. Apoptosis induced by depletion of serum and nerve growth factor in PC12 cells was prevented by 6R-BH(4). The cell surviving effect of 6R-BH(4) was also mediated by activation of Ca(2+) channels and cAMP-protein kinase A pathway. However, since 6R-BH(4) did not activate mitogen activated protein kinase, it did not support neuronal differentiation. Nitric oxide (NO)-induced cell death was prevented by 6R-BH(4) in PC12 cells. NOS activity was not changed by exogenous 6R-BH(4), but NO metabolites in culture medium were decreased by 6R-BH(4). When endogenous 6R-BH(4) was reduced by inhibition of biosynthesis, cell death was induced in PC12 cells. Superoxide is observed to be generated during autoxidation of 6R-BH(4). Superoxide producing system mimicked the cell protective action of 6R-BH(4) against NO toxicity. Thus, it is considered that 6R-BH(4) protects PC12 cells against NO toxicity by generating superoxide during its autoxidation. These results raised the possibility that 6R-BH(4) is a self-protective factor against NO toxicity in NO producing neurons. Our findings indicate that 6R-BH(4) regulates neuronal activities in the brain and that 6R-BH(4) can be a promising drug for neurodegenerative disorders such as Parkinson's disease and Alzheimer's disease.

Animals↗

Histopathological analysis of a bladder cancer stalk observed on MRI.

Papillary transitional cell carcinoma of the bladder has a loose connective tissue stalk. For staging of bladder cancer on magnetic resonance imaging (MRI), it is important to clearly separate the cancer from the bladder wall. It is possible to distinguish a stalk from the cancer by the difference of intensity on the using MRI. Sixteen stalks of 20 polypoid bladder tumors on any of the T(2)W(I), dynamic images and delayed enhanced images were demonstrated. Most of the stalks show lower signal intensity than the tumors on T(2)W(I), less enhancement on dynamic images and stronger enhancement on delayed enhanced images. The stalk consisted of fibrous connective tissue, capillary blood vessels, inflammatory cell infiltration and edema. This stalk extended from the bladder wall to the center of the tumor. Some of the superficial muscular bundles were pulled into the stalk. These histopathological findings were compatible with the patterns of signal intensities on MRI. The identification of the stalk of a polypoid tumor may be an important observation to exclude bladder wall invasion by tumor.

Aged↗

Chorioangioma: antenatal diagnosis with fast MR imaging.

We report a case of chorioangioma of the placenta, in which fast magnetic resonance imaging (MRI) was useful adjunct to ultrasonography for the antenatal diagnosis. MRI allowed clear demonstration of 6.8 x 6.0 cm solid placental mass along with hydramnios and anatomically normal fetus. On T(1)-weighted breath-hold spoiled gradient-echo (fast low-angle shot [FLASH]) images, chorioangioma was mostly isointense to the placenta, but had an area of high signal intensity near the base and at the periphery, suggestive of hemorrhage. On T(2)-weighted half-Fourier single-shot fast spin echo (HASTE) images, the mass showed heterogeneous high signal intensity, but had an area of low signal intensity near the surface.

Adult↗

Composition and structure of apatite formed on organic polymer in simulated body fluid with a high content of carbonate ion.

Apatite layer was formed on polyethyleneterephthalate (PET) substrate by the following biomimetic process. The PET substrate was placed on granular particles of a CaO, SiO2-based glass in simulated body fluid (SBF) with ion concentrations nearly equal to those of human blood plasma to form apatite nuclei on their surfaces. The apatite nuclei was then grown into a continuous layer by subsequently soaking the substrate in SBF under air or CO2 atmosphere in which CO2 partial pressure in the ambient was adjusted to 14.8 kPa to increase the content of carbonate ion to a level nearly equal to that of blood plasma. The increase in the content of carbonate ions in SBF changed the Ca/P atomic ratio of the apatite from 1.51 to 1.63, content of CO(3)2- ions from 2.64 to 4.56 wt %, and lattice constants a from 94.32 to 94.23 nm and c from 68.70 to 68.83 nm, respectively. The Ca/P ratio and lattice constants of the apatite formed in SBF under CO2 atmosphere were approximately identical to those of bone apatite, i.e. Ca/P atomic ratio 1.65, content of CO(3)2- ion 5.80 wt % and lattice constants a 94.20 and c 68.80 nm. This indicates that an apatite with composition and structure nearly identical to those of bone apatite can be produced in SBF by adjusting its ion concentrations including the content of carbonate ions to be equal to those of blood plasma.

Journal Article↗

Hydroxyapatite formation on cellulose cloth induced by citric acid.

Hydroxyapatite (HAp) formation on cellulose cloth with the aid of citric acid was investigated. The cellulose cloths were soaked in simulated body fluid (SBF) solutions (1.5 SBF) with ion concentrations 1.5 times that of SBF (1.0 SBF) with and without citric acid and carbonate containing HAp crystals were found to form only in the 1.5 SBF solution that contained citric acid. The results were explained in terms of hydrogen bonding of citric acid to the cellulose cloth and its chelating ability of calcium ions. Practical application may involve the inclusion of citric acid in the 1.5 SBF solution to promote formation of HAp on previously bioinert cellulose cloth.

Journal Article↗

Alterations in binding activity of T cell transcription factor CD28 responsive element binding complex (CD28RC) following allogeneic bone marrow transplantation.

The CD28 responsive element binding complex (CD28RC) has an important role in transducing CD28/B7 costimulatory signals. Using electrophoretic mobility-shift assay (EMSA), we have analyzed the binding activity of CD28RC in the mixed lymphocyte culture (MLC) using peripheral blood mononuclear cells (PBMC) obtained from the patients before and after allogeneic bone marrow transplantation (allo-BMT). The binding activity of CD28RC was low in MLCs using PBMC from patients without acute GVHD and it was also low in MLCs using PBMC from patients without chronic GVHD (cGVHD). In contrast, this activity in patients with cGVHD was estimated to be high. The relative values of CD28RC in comparison with third party MLCs were significantly higher in MLCs using PBMC from patients with cGVHD than those in MLCs using PBMC from patients without GVHD (0.55+/-0.31 versus 0.23+/-0.12, respectively, n = 10, p = 0.05). IL-2 concentrations in the MLC medium from patients without GVHD were undetectable; however, a detectable level of IL-2 was present in MLC medium from a patient with extensive cGVHD. These data were interpreted to suggest that the CD28 costimulatory pathway was specifically activated against recipient antigen in allo-BMT patients with GVHD. In other words, it was suggested that the CD28 costimulatory pathway was specifically suppressed in allo-BMT patients without GVHD, and this suppression might contribute immunological tolerance after allo-BMT.

Adult↗

In vitro evaluation of Er:YAG laser scaling of subgingival calculus in comparison with ultrasonic scaling.

The purpose of the present study was to evaluate the effectiveness of Er:YAG laser scaling and the morphological and histological changes of the laser-scaled root surface in comparison with the effectiveness and root surface changes produced by conventional ultrasonic scaling. Fifty-three periodontally involved human extracted teeth with a band of subgingival calculus were used. The teeth were divided randomly into 2 groups for laser scaling and ultrasonic scaling. Laser irradiation was performed at an energy output of 40 mJ/pulse and 10 pulses/s under water spray, with the probe tip contacted obliquely to the root surface. Ultrasonic scaling was performed at a clinically standard power setting. The time required for scaling, the scaled area and the temperature changes were determined using both methods of treatment. The features of the scaled surfaces were examined by histological and scanning electron microscope (s.e.m.) observations. The Er:YAG laser provided subgingival calculus removal on a level equivalent to that provided by the ultrasonic scaler, without major thermal elevation. Macroscopically, the laser-treated root surface was somewhat rougher than or similar to the ultrasonically scaled root. However, the efficiency of the laser scaling was lower than that of the ultrasonic scaling. In addition, histological examination revealed a thin deeply stained zone on the lased root surface, and s.e.m. analysis revealed a characteristic microroughness on the lased surface. The laser scaling provided a level of calculus removal that was similar to that provided by the ultrasonic scaling. However, the Er:YAG laser produced superficial, structural and thermal microchanges on the root cementum.

Dental Calculus↗

A phase I dose escalation study of multicyclic, dose-intensive chemotherapy with peripheral blood stem cell support for small cell lung cancer.

A phase I dose-escalation study of multicyclic, ifosfamide, carboplatin, and etoposide (ICE) with sequential reinfusion of peripheral blood stem cells (PBSCs) was conducted to determine the maximum-tolerated dose (MTD) of ICE. Twenty-four patients with SCLC (LD: 6, ED: 18) were treated with ifosfamide (3000-9000 mg/m2, 24-h infusion), carboplatin (300-400 mg/m2), and etoposide (300 mg/m2) followed by subcutaneous filgrastim (75 microg/day) from day 4 to the day of PBSC collection. PBSC were harvested when the WBC count reached >/=5 x 109/l. The leukapheresis product was cryopreserved and reinfused on day 4 of the next cycle, which was started 48 h after the last PBSC collection. The ifosfamide dose was escalated as follows: 3000 mg/m2 (level 1), 5000 mg/m2 (level 2), 7000 mg/m2 (level 3), 9000 mg/m2 (level 4). Patients with LD were treated with concurrent radiotherapy at 1.5 Gy twice daily for the initial 3 weeks to a total dose of 45 Gy and MTD, defined separately. Patients were evaluated for hematologic and non-hematologic toxicity, actual dose intensities, as well as response to therapy. The maximum-tolerated dose (MTD) was defined as the dose level at which more than 5 days of grade 4 myelo- suppression or non-hematologic toxicity greater than grade 3 developed in two thirds of the patients. For ED cases, MTD was level 4 and the recommended dose of ifosfamide was 7000 mg/m2. For LD cases, the recommended dose of ifosfamide was 5000 mg/m2. The dose limiting toxicity of multicyclic ICE was hemato- logic toxicity and CNS toxicity which manifested as ataxia. Tumor responses were seen in all patients, with 14 patients showing a complete response. The actual total dose-intensity at the recommended dose level was 2.2 and 1.74, for ED and LD, respectively, compared with previously reported ICE regimens. PBSC support for dose-intensive ICE regimen permitted dose escalation of ifosfamide with a mean interval of 16-17 days. We conclude that this regimen is well tolerated, with acceptable hematological and non-hematological toxicity. Bone Marrow Transplantation (2000) 25, 5-11.

Adult↗