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Toshiyuki Yamamoto

Publications and source records attributed to Toshiyuki Yamamoto.

18 recordsLinked to original sources

D-cycloserine for the treatment of ataxia in spinocerebellar degeneration.

We studied the effects of D-cycloserine, a partial NMDA receptor allosteric agonist, on ataxia in patients with spinocerebellar degeneration. Fifteen Japanese ataxic patients enrolled in a 14-day single-blind trial of D-cycloserine (daily oral dose of 50 mg) following a 14-day single-blind placebo phase. At the end of the D-cycloserine administration, there was a significant reduction in the posture, gait and total score of the international cooperative ataxia rating scale and in the time for walking and speech tasks. D-Cycloserine was well-tolerated and no adverse effect was observed. D-Cycloserine may have therapeutic efficacy for spinocerebellar ataxia.

Adult↗

Microarray analysis identifies interferon beta-regulated genes in multiple sclerosis.

The molecular mechanisms for the interferon beta (IFNbeta) treatment of multiple sclerosis (MS) remain to be characterized. Using cDNA microarray technology, we have compared the gene expression profile of T and non-T cells derived from relapsing-remitting MS before and after treatment with IFNbeta-1b. IFNbeta treatment significantly altered expression of 21 genes out of 1263 at 3 and 6 months after treatment. These genes included nine with IFN-responsive promoter elements. Whereas there was no change in Th1 or Th2 marker genes, some of the changes were unexpected but coincided with the beneficial effect of IFNbeta in MS.

Adult↗

Sustained activation of fibroblast transforming growth factor-beta/Smad signaling in a murine model of scleroderma.

Transforming growth factor-beta is responsible for triggering a cascade of events leading to fibrosis in scleroderma. The Smads are intracellular signal transducers recently shown to mediate fibroblast activation and other profibrotic responses elicited by transforming growth factor-betain vitro. To understand better the involvement of Smads in the pathogenesis of fibrosis, we examined Smad expression and activation in situ in a murine model of scleroderma. Bleomycin injections induced striking dermal infiltration with macrophages by 3 d, and progressive fibrosis by 2 wk. Infiltrating macrophages and resident fibroblasts expressed Smad3, the positive mediator for transforming growth factor-beta responses. Importantly, in bleomycin-injected skin, fibroblasts showed predominantly nuclear localization of Smad3 and intense staining for phospho-Smad2/3. Furthermore, phosphorylated Smad2/3 in fibroblasts was detected even after the resolution of inflammation. Expression of Smad7, the endogenous inhibitor of transforming growth factor-beta/Smad signaling, was strongly induced in dermal cells by transforming growth factor-beta, but not by bleomycin injections. Collectively, these results indicate that bleomycin-induced murine scleroderma is associated with rapid and sustained induction of transforming growth factor-beta/Smad signaling in resident dermal fibroblasts. Despite apparent activation of the intracellular transforming growth factor-beta signaling pathway in the lesional dermis, the expression of transforming growth factor-beta-inducible Smad7 was not upregulated. In light of the critical function of Smad7 as an endogenous inhibitor of Smad signaling that restricts the duration and magnitude of transforming growth factor-beta responses, and as a mediator of apoptosis, relative Smad7 deficiency observed in the present studies may account for sustained activation of transforming growth factor-beta/Smad signaling in lesional tissues. These findings raise the possibility that Smads plays an important part in the pathogenesis of fibrosis, and may therefore represent targets for selective anti-fibrotic interventions.

Animals↗

Role of monocyte chemoattractant protein-1 and its receptor,CCR-2, in the pathogenesis of bleomycin-induced scleroderma.

Systemic sclerosis is a connective tissue disease characterized by excessive deposition of extracellular matrix in the skin as well as various internal organs. Cellular infiltrates are found in the dermis in early systemic sclerosis, which are suggested to play an important part. Recent studies suggest the involvement of monocyte chemoattractant protein-1, a C-C chemokine, in the fibrotic process. This study examines the role of monocyte chemoattractant protein-1 in the induction of dermal sclerosis in a murine model of bleomycin-induced scleroderma. Immunohistochemical analysis showed that expression of monocyte chemoattractant protein-1 in the infiltrating mononuclear cells was enhanced at 2 to 3 wk following bleomycin treatment, whereas expression of monocyte chemoattractant protein-1 in fibroblasts was detected at later stages in the sclerotic skin. Reverse transcriptase-polymerase chain reaction analysis showed that monocyte chemoattractant protein-1 mRNA expression in the lesional skin peaked at 2 to 3 wk following bleomycin treatment. Expression of CCR-2, a major receptor for monocyte chemo-attractant protein-1, was also upregulated in the lesional skin at both protein and mRNA levels following bleomycin treatment. Administration of anti-monocyte chemoattractant protein-1 neutralizing antibody together with local bleomycin treatment reduced dermal sclerosis, along with a decrease of collagen content in the skin as well as mRNA expression of type I collagen. In vitro analysis showed that stimulation with monocyte chemoattractant protein-1 (10 ng per mL) upregulated alpha1(I) collagen and decorin mRNA expression in normal dermal fibroblasts, whereas mRNA levels of fibronectin and biglycan were not altered. These data suggest that monocyte chemoattractant protein-1 and CCR-2 signaling plays an important part in the pathogenesis of bleomycin-induced scleroderma. Monocyte chemoattractant protein-1 may contribute to the induction of dermal sclerosis via its direct effect of upregulation of mRNA expression of extracellular matrix on fibroblasts, as well as indirect effect mediated by a number of cytokines released from immunocytes recruited into the lesional skin.

Animals↗

[Dichloroacetate treatment for adult patients with mitochondrial disease].

We report beneficial and adverse effects of sodium dichloroacetate (DCA) in three adult Japanese patients with mitochondrial disease: a 21-year-old male with involuntary movements, optic atrophy, hearing loss, and convulsions (patient 1), a 28-year-old man with mental deterioration, hemianopia, hearing disturbance, and convulsions (patient 2), and a 50-year-old woman with hearing disturbance, generalized muscle atrophy, and insulin dependent diabetes mellitus (patient 3). A3243G mutation was found in patient 2 and patient 3. Oral administration of DCA improved consciousness level and gait disturbances in patient 1, and ameliorated headaches, easy fatiguability, and muscle cramps in patient 2 and patient 3. DCA normalized high levels of lactate and pyruvate in blood and cerebrospinal fluids in all three patients. In patient 3, daily insulin needs decreased from 38 to 24 units, and urine C peptide increased from an undetectable level to 16 micrograms/day. In patient 1, DCA 23 mg/kg/day had been beneficial without adverse effects and he became free of convulsions for more than 32 months. However, despite of normal lactate and pyruvate, unsteady gait and lethargy developed after 50 mg/kg/day treatment for two months and one month in patient 2 and patient 3, respectively. In both patients, deep tendon reflexes disappeared and Romberg sign became positive. Nerve conduction studies confirmed sensory-dominant polyneuropathy and electroencephalogram showed diffuse slow basic activities. Cessation of DCA resulted in recovery of gait and consciousness, but sensory nerve action potentials did not recover in one month. Long term treatment of 50 mg/kg/day DCA may affect adversely the peripheral and central nervous systems in adult patients. Although effective plasma DCA concentration was previously reported as 25-160 micrograms/ml in patients under 18 years old, plasma DCA concentration of 10.2 micrograms/ml was sufficient in patient 1. We recommend lower dose of DCA in adult patients than in child patients.

Adult↗

Niemann-Pick type C disease: accelerated neurofibrillary tangle formation and amyloid beta deposition associated with apolipoprotein E epsilon 4 homozygosity.

Niemann-Pick type C disease is a neurovisceral storage disorder. Neurofibrillary tangles similar to those in Alzheimer's disease have been reported in most juvenile/adult patients without amyloid beta protein (Abeta) deposits. Recently, we found deposits of Abeta in the form of diffuse plaques in three (31- and 32-year-old sisters and a 37-year-old man) of nine Niemann-Pick type C disease patients, who presented with most severe tauopathy and with numerous neurofibrillary tangles. Abeta deposits were not detected in any of the control brains of patients younger than age 42 years. These three patients with Abeta deposit all were homozygotes of apolipoprotein E epsilon 4. Our study suggested that NPC1 gene mutations combined with homozygosity of apolipoprotein E epsilon 4 alleles could manifest neuropathology similar to that of Alzheimer's disease. Investigation of these patients may provide an important clue for understanding the pathogenesis of Alzheimer's disease.

Adult↗

Animal model of sclerotic skin. V: Increased expression of alpha-smooth muscle actin in fibroblastic cells in bleomycin-induced scleroderma.

Scleroderma is a connective tissue disorder with unknown etiology. Myofibroblasts appear during fibrotic processes such as scleroderma, hypertrophic scarring, and wound healing. We previously established a mouse model for scleroderma by local injections of bleomycin. To determine the phenotype of the fibroblasts in sclerotic skin after bleomycin treatment, we examined the expression of alpha-smooth muscle actin (alpha-SMA), a marker for myofibroblasts, in lesional skin as well as in fibrous lung in this model. Dermal sclerosis was induced by daily local injections of bleomycin (100 microg/ml) for 3 weeks in C3H mice. Immunohistochemical examination showed that alpha-SMA-reactive cells were detectable on fibroblastic cells in bleomycin-injected skin at 1 week. There was a significant increase in the immunoreactive fibroblastic cells for alpha-SMA in lesional skin in parallel with the induction of dermal sclerosis. After 3 weeks' treatment with bleomycin, the number of alpha-SMA-reactive fibroblasts showed an 11-fold increase compared with that in control PBS-treated mice. alpha-SMA-positive cells were also detected in lung parenchyma after bleomycin treatment. Following concomitant treatment with anti-transforming growth factor-beta (TGF-beta) antibody with bleomycin, the number of alpha-SMA-positive fibroblastic cells was significantly reduced up to 50%, along with the reduction of dermal sclerosis. To confirm the protein level of alpha-SMA, immunoblotting was carried out. Results showed an increase of alpha-SMA expression in lesional skin at 3 weeks of bleomycin treatment, which was reduced following anti-TGF-beta antibody treatment. These data suggest that fibroblastic cells are phenotypically altered into myofibroblasts during the fibrotic process in the experimental model of bleomycin-induced scleroderma, which was considered mediated, for the most part, by TGF-beta. Blockade of TGF-beta may be a therapeutic intervention for scleroderma.

Actins↗

Novel TSC1 and TSC2 mutations in Japanese patients with tuberous sclerosis complex.

Tuberous sclerosis complex (TSC) is a neurocutaneous syndrome characterized by development of unusual tumor-like growths. Involvement of the brain is associated with the most problematic clinical manifestations of TSC, including intellectual retardation, epilepsy and abnormal behaviors. Until now, over 300 mutations of TSC1 and TSC2 were reported. Here, we report one novel mutation of TSC1 (Q897X) and five novel mutations of TSC2 (c.336+1 G>A, L345R, E700K, R905G, K914K) identified in Japanese patients with TSC. We also identified three new polymorphisms in TSC2 (N331N, A431A, S802G). The TSC1 mutation was predicted to cause a nonsense substitution whereas all of the five TSC2 mutations were predicted to cause either a splicing error or a missense substitution. In accordance with previous findings, the patients with TSC1 mutations had milder clinical manifestations than those with TSC2 mutations.

Adult↗

Localized involutional lipoatrophy: report of six cases.

We herein report six cases of localized involutional lipoatrophy, who presented with a depressive plaque on the lateralis of the upper arm. All patients were female, and three had previous injections for allergic rhinitis at the affected sites before the development of lipoatrophy. One patient received intramuscular injection at the affected site when she had a cold. Histological examination showed fat lobules composed of small lipocytes in the hyaline connective tissue. Immunohistochemical examination revealed a number of CD68-positive macrophages in the fat lobules. We consider that localized involutional lipoatrophy is more common than has been reported, and is occasionally induced by local injections.

Adult↗

[Compulsive repetition of movements in a case of progressive supranuclear palsy].

A 51-year-old right-handed man with an 8-year history of progressive supranuclear palsy developed a peculiar behavior including compulsive repetition of movements. At the age of 47, it was noted that he continuously scratched his trunk with the right hand. He also scratched his thighs until his trousers were torn. On the scalp, posterior neck and forearms, patches of skin were scraped away and the bleeding wounds were scratched over and over again. Although he perceived pain, he could not terminate the strange scratching movement. He could not stop his eating action even after the bowl became empty. He could not leave the bathroom because he continued to wipe the anus after defecation. Yet the patient was not demented. Psychometric assessments including Wechsler adult intelligence scale revised, meaningful and meaningless syllables memory test. Raven's color matrix test, Wisconsin card sorting test (Keio version), and modified Stroop test were within the normal range. When requested to write a letter or a figure, he was always successful, however, he endlessly wrote the same letter or figure until he was told to stop. Although he repeated the behavior and could not terminate the action by himself, he immediately stopped the action on verbal command. When another task was given during the repetitive action, he responded quickly and successfully. His strange behavior was compulsive because he wanted to cease it, but it was not compulsive-obsessive behavior because he did not feel anxiety or pain when his repetitive action was stopped. It was different from stereotypy because he repeated not only meaningless movements but also meaningful complex actions. Unlike perseveration, he changed his activity immediately and successfully when a new task was given. Magnetic resonance imaging findings were remarkable only for mild atrophy of the midbrain tegmentum. Single photon emission computed tomography with ethyl cysteinate dimer demonstrated hypoperfusion in the frontal lobes and the left thalamus. A thalamofrontal disconnection or dysfunction is suggested as the mechanism underlying the compulsive repetifim of moving its based on the SPECT findings in this patient.

Compulsive Behavior↗

Oral psoriasis in a patient with hepatitis C virus infection.

We report a case of 65-year-old patient with psoriasis vulgaris who developed a psoriatic manifestation on his lower lip, along with typical features of psoriasis on his trunk and extremities. Mucous membranes, palate and tongue were not affected. A biopsy specimen from lip showed acanthosis of the epidermis with parakeratosis, and mild cellular infiltrates in the upper dermis. He was also suffering from type C hepatitis, however, he had not been treated with interferons. Oral psoriasis involving the lip is extremely rare.

Aged↗