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Biomedical subjects

S Sakoda

Publications and source records attributed to S Sakoda.

At least 19 recordsLinked to original sources

Cognitive function in amyotrophic lateral sclerosis.

Cognitive function in patients with amyotrophic lateral sclerosis (ALS) has drawn recent attention. However, the pathogenesis of cognitive dysfunction in patients with ALS remains uncertain. To explore the underlying mechanism for cognitive dysfunction further, we studied 26 patients with ALS (15 male and 11 female; age from 36 to 67 years) by using neuropsychological batteries, magnetic resonance imaging (MRI) and single photon emission computed tomography (SPECT). We also evaluated these patients and an additional 26 age- and sex-matched normal controls using neuropsychological batteries with special attention to the frontal lobe function. On the basis of neuropsychological examination, we classified patients into three groups using cluster analysis. Age, education level and severity were comparable across these subgroups. Neuropathologic examination was subsequently carried out in six patients. Patients in Group 1 and 2 had low scores on all measures compared to patients in Group 3 and normal controls. Patients in Group 1 and 2 had frontal atrophy on MRI and reduced isotope uptake in the frontal region on SPECT, which was more evident in patients in Group 1. On neuropathologic examination, patients in Group 1 showed spongy degeneration and neuronal loss in the frontal lobe. Patients in Group 3 showed no notable pathology in the frontal region. The gradient distribution of the scores for attention and executive function, as well as SPECT findings suggested the presence of a continuum of cognitive disability in patients with ALS corresponding to the pathologic process in the frontal lobe ranging from significant impairment to normality. We, therefore, believe that inattention and executive dysfunction alternatives may evolve in patients with ALS corresponding to the pathologic process in the frontal lobe.

Adult

Demyelination in severe combined immunodeficient mice by intracisternal injection of cerebrospinal fluid cells from patients with multiple sclerosis: neuropathological investigation.

Demyelinating lesions have been observed in severe combined immunodeficient (SCID) mice after intracisternal administration of cerebrospinal fluid cells (CSFC) from patients with multiple sclerosis (MS). Further investigation in our laboratory revealed that CSFC from 6 to 15 patients at exacerbation of MS caused demyelination. The factor leading to demyelination appears to be the high frequency of relapses during a short period, but not to the severity of the disease. Neuropathological and immunohistochemical studies revealed that a lack of inflammatory mononuclear cell infiltration within and around the demyelinating lesions or in leptomeninges was a common characteristic in all SCID mice with CSFC-induced demyelination. In affected mice killed 2-3 weeks after intracisternal administration of CSFC, foamy/vacuolar lesions with a small or moderate number of lipid-laden macrophages were seen in the white matter. Ultrastructurally, relative preservation of axons, in contrast to myelinoclastic features, as well as some remyelinated axons were observed. In affected SCID mice killed 4-6 weeks after intracisternal administration, more widespread foamy macrophages and necrotic foci with poor remyelination were seen. The findings were similar to those seen in experimental allergic encephalomyelitis, though without lymphocytic infiltration, but were quite different from the lesions observed in Theiler's murine encephalitis virus infection. The absence of an immunohistochemical reaction to the human leukocyte common antigen in the infiltrating mononuclear cells suggested that the graft-versus-host reaction was unlikely cause of the demyelinating lesions.

Adolescent

Nitric oxide via an inducible isoform of nitric oxide synthase is a possible factor to eliminate inflammatory cells from the central nervous system of mice with experimental allergic encephalomyelitis.

We recently identified the inducible isoform of nitric oxide synthase (iNOS) in inflammatory lesions of the central nervous system (CNS) in mice with experimental allergic encephalomyelitis (EAE), a known animal model of multiple sclerosis (MS). In the present study, the role of excessive nitric oxide (NO) production via iNOS was investigated in mice with EAE using immunohistochemistry with antibodies to nitrotyrosine and iNOS, NADPH-diaphorase histochemistry, and the in situ terminal deoxynucleotidyl transferase (TdT)-mediated dUTP nick end labeling (TUNEL) method to detect cell death, presumably through an apoptotic mechanism. NADPH-diaphorase histochemistry and immunohistochemistry for iNOS revealed an elevation of nitric oxide synthase (NOS) activity during the course of EAE, which came from iNOS. Nitrotyrosine was detected in infiltrated cells and some glial cells in the spinal cord lesions, where iNOS-positive inflammatory cells were present at the peak of EAE. The findings implied the generation of NO and peroxynitrite in the EAE lesions, which might damage structural and functional proteins. The TUNEL positive cells were mainly inflammatory ones, and most of them were located in close proximity to iNOS-positive cells, while some of them were iNOS-positive themselves. These results suggested that excessive NO via iNOS played an important role to eliminate inflammatory cells in the CNS of mice with EAE, possibly through an apoptotic mechanism.

Animals

Establishment of spontaneously immortalized rat type 1 astroglial cell lines: the role of p53 in astroglial carcinogenesis.

We established five spontaneously immortalized cell lines using purified rat type 1 astroglia on a rigid transfer schedule. All the cell lines maintained their polygonal shape, regular pavement growth, low saturation density, positive glial fibrillary acidic protein expression, and serum requirements, while none were tumorigenic in nude mice. We then obtained a spontaneously transformed cell line by maintaining the cells for 6 months at a high cell density. Since alterations of the tumor suppressor p53 gene have been reported in the immortalization of some cell lines and in transformation of others, we characterized p53 in immortalized, spontaneously transformed, and 5 Nethyl-N-nitrosourea (ENU)-transformed cell lines. While each of the ENU-induced or the spontaneously transformed cell lines exhibited p53 gene mutations that resulted in amino acid alterations, no alterations in the p53 gene were observed in any of the immortalized cell lines. Thus, alterations of the p53 protein correlate more strongly with transformation than with immortalization of type 1 astroglia. Immortalization may be regulated by gene(s) other than p53. Spontaneously immortalized type 1 astroglial cell lines may provide a new tool to investigate an initial step of astroglial carcinogenesis.

Animals

A new mutation of the L1CAM gene in an X-linked hydrocephalus family.

X-linked hydrocephalus is a genetic form of hydrocephalus that frequently occurs in females. It is characterized by ventricular dilatation, mental retardation, deformity of the thumb and spastic paraparesis. Recently, 23 different mutations of the gene for the neural cell adhesion molecule, L1CAM, located at chromosome region Xq28, have been reported, 16 of which were detected in families with X-linked hydrocephalus. We sequenced the coding region of the L1CAM gene of patients from two different families with X-linked hydrocephalus and found a novel mutation at nucleotide residue 1963 in one family. This mutation from adenine to guanine results in an amino acid change from lysine to glutamic acid at residue 655 of the L1CAM protein, which belongs to the fibronectin type III domain. We report another method of the rapid identification of the mutation based on the polymerase chain reaction. This mutation was not detected among 70 X chromosomes from a healthy population. Ours is the first report demonstrating this gene mutation in X-linked hydrocephalus in an Asian population. Our findings further emphasize the evolving genotypic heterogeneity in X-linked hydrocephalus.

Adolescent

Cation binding at the node of Ranvier in biopsied peripheral nerves of patients with Charcot-Marie-Tooth disease type 1A and hereditary neuropathy with liability to pressure palsies.

The node of Ranvier in myelinated fibers is known to have an affinity to bind cations. Demyelination and remyelination due to abnormal expression of a myelin protein may affect cation binding or vice versa under pathological conditions. To study the cation binding at the node of Ranvier in inherited demyelinating neuropathies associated with over- and under-expression of the peripheral myelin protein 22 (PMP-22), the reaction with ferric ion and ferrocyanide was used to visualize the cation binding sites in biopsied nerves of four patients with Charcot-Marie-Tooth disease type 1A (CMT1A) and two patients with hereditary neuropathy with liability to pressure palsies (HNPP), and the results were compared with those of four patients having acquired neuropathies with normal PMP-22 expression. In CMT1A, nodal widening or paranodal demyelination was associated with dense precipitates focally on both sides of the widened node. Although fainter precipitates were present at the node between remyelinated internodes, the percentage of nodes exhibiting the reaction product between normal and remyelinated internodes was not statistically different from that between normal internodes in CMT1A. In acquired neuropathies, on the other hand, the difference was significant between the two (P < 0.05), with reduction between normal and remyelinated internodes. At the nodes neighboring demylinated internodes, the percentage of nodes exhibiting the reaction product was reduced significantly in both CMT1A and acquired neuropathies, but to a lesser degree in CMT1A. Precipitates were clearly seen at the nodes neighboring a tomaculum in HNPP. The results suggest that preserved cation binding at the node may allow nerves to keep the electrical excitability in CMT1A and HNPP where myelin remodeling takes place at high frequency.

Adolescent

Accumulation of peripheral myelin protein 22 in onion bulbs and Schwann cells of biopsied nerves from patients with Charcot-Marie-Tooth disease type 1A.

Peripheral myelin protein 22 (PMP-22) is a glycoprotein expressed in the myelin sheath of myelinated Schwann cells. Duplication of the PMP-22 gene and its gene dosage effect have been postulated to be involved in the pathogenesis in the majority of individuals with Charcot-Marie-Tooth disease type 1A (CMT1A). Northern blot analysis has demonstrated that the mean relative ratio of PMP-22 mRNA/beta-actin mRNA in biopsied nerves of patients with CMT1A is significantly higher than that in disease controls. To investigate whether the elevated expression of PMP-22 mRNA is reflected in the amount and the localization of PMP-22, we analyzed PMP-22, myelin basic protein (MBP), protein zero (P0), and S-100 immunoreactivities in biopsied nerves from six patients with CMT1A, five patients with other types of CMT, five patients with acquired demyelinating neuropathies, and two normal subjects. In all patients with CMT other than CMT1A and acquired demyelinating neuropathy, as well as in normal subjects, the myelin sheath was immunoreactive for PMP-22, MBP, and P0, while the Schwann cell cytoplasm was immunoreactive only for S-100. In five out of six patients with CMT1A, however, the PMP-22 immunoreactivity was present not only on the myelin sheath but also in the Schwann cell cytoplasm and onion bulbs (OBs). Although OBs are nonspecific and also seen in other inherited or acquired demyelinating neuropathies, the PMP-22-positive OBs were seen exclusively in CMT1A. The finding suggested that the expression of PMP-22 was abnormal for its localization and probably for the amount in patients with CMT1A carrying duplication of the PMP-22 gene.

Adolescent

Nitric oxide induces apoptosis in mouse splenic T lymphocytes.

The cytotoxic effect of nitric oxide (NO) on mouse T lymphocytes was investigated. Freshly isolated T lymphocytes from mouse spleen were incubated with NOR, a novel NO releasing agent, at different doses. After incubation for 4 h, apoptotic cell death was observed in both NOR-treated T lymphocytes and controls as judged by the appearance of DNA laddering in agarose gel electrophoresis, but a quantitative analysis by flow cytometry indicated that the high level of exogenous NO (500 micrograms ml of NOR) could promote apoptosis in T lymphocytes as compared with controls (30% vs. 8%). After 8 h, NO promoted apoptosis of T lymphocytes in a dose-dependent manner. This study indicated that NO might be one of the factors which regulate this life of T lymphocytes in vivo.

Animals

Pentoxifylline delays the onset of experimental allergic encephalomyelitis in mice by modulating cytokine production in peripheral blood mononuclear cells.

The effect of pentoxifylline (PTX) on experimental allergic encephalomyelitis (EAE) in mice, a known animal model of multiple sclerosis (MS), was investigated. PTX was orally administrated at 10, 40 and 100 mg/kg/day, respectively. Although oral PTX at these doses had no significant effect on the incidence and severity of EAE, oral PTX (40 mg/kg/day) alone produced a significant delay in the onset of EAE. Semiquantitative reverse transcriptase-polymerase chain reaction analysis revealed that PTX at this dose reduced the mRNA levels for tumor necrosis factor (TNF)-alpha, interleukin (IL)-1 beta and IL-6 in peripheral blood mononuclear cells (PBMC) of mice with EAE. A histopathological study showed that PTX treatment delayed infiltration of inflammatory cells in the central nervous system (CNS) of mice with EAE. These results indicated that the tolerable dose of PTX had a suppressive effect on the induction phase of EAE by modulating cytokine production in PBMC but had no effect on the severity of EAE. The findings in the present study with animals suggested that a tolerable dose of PTX might prolong the intervals between relapses in MS, but might not improve the clinical sign and symptoms of MS.

Animals

Molecular genetic studies in muscle phosphoglycerate mutase (PGAM-M) deficiency.

Phosphoglycerate mutase (PGAM; EC 2.7.5.3) catalyzes the interconversion of 2-phosphoglycerate and 3-phosphoglycerate in the glycolytic pathway. Hereditary muscle PGAM deficiency has been identified in 9 patients with myopathy. All patients had exercise intolerance and 6 had myoglobinuria. Seven of the 9 patients were African-Americans: 5 of them were homozygous for a nonsense mutation, TGG(Trp) to TAG at codon 78; 1 was a compound heterozygote for the nonsense mutation and a missense mutation, GAG(Glu) to GCG(Ala) at codon 89; and 1 could not be tested. The only 2 Caucasian patients, a brother and sister, were homozygous for a different missense mutation, CGG(Arg) to TGG(Trp) at codon 90. Despite the small number of patients identified, these findings indicate that there is a common mutation in African-Americans while there may be molecular genetic heterogeneity in other ethnic groups.

Adolescent

Expression of the inducible isoform of nitric oxide synthase in the central nervous system of mice correlates with the severity of actively induced experimental allergic encephalomyelitis.

A cytokine-mediated excessive increase in nitric oxide (NO) by macrophages or glial cells via an inducible isoform of NO synthase (iNOS) has been proposed to play an important role in demyelinating diseases. To further investigate the role of iNOS in demyelination, experimental allergic encephalomyelitis (EAE), a known animal model of multiple sclerosis (MS) in mice, was chosen in this study. A semiquantitative reverse transcriptase-polymerase chain reaction (RT/PCR) analysis revealed an increase in the mRNA levels of iNOS and cytokines known to induce iNOS or inflammatory cytokines (interleukin (IL)-1 alpha, IL-1 beta, IL-2, IL-6, interferon (IFN)-gamma, tumor necrosis factor (TNF)-alpha and TNF-beta) in the spinal cord corresponding to the severity of the disease without significant change in the mRNA levels of immunoregulatory cytokines (IL-4, IL-10 and transforming growth factor (TGF)-beta) during the course of EAE. An immunohistochemical examination of the spinal cord using an iNOS-specific antibody showed iNOS-positive cells to be mainly inflammatory cells with a higher frequency of iNOS-positive cells at the peak of EAE than in the early phase. These iNOS-positive cells at the peak appeared to be composed of infiltrating macrophages and most of them were located in the necrotic area. These results suggested that cytokine-induced excessive NO via iNOS by macrophages caused tissue damage in the central nervous system in EAE.

Animals

Identification of human skeletal remains with a mandibular static bone cavity by comparison between ante- and post-mortem dental orthopantomograms: a case report.

We report a case of human skeletal remains in which a mandibular static bone cavity noted in a dental orthopantomogram assisted the positive identification. Unknown totally skeletonized human remains were found on a bushy slope of a hill. In the pockets of the clothing, there were a wooden seal, on which a family name was inscribed, and two cigarette lighters bearing the name of a bank. The body was identified as a male, about 50 years old. The estimated time elapsed since death was about six months to one year. No evidence of trauma was found in the clothing and the bones. The possible cause of death was due to poisoning from ingestion of bromvalerylurea (hypnotics). From the family name inscribed on the seal and the name of a bank on the cigarette lighters, the police investigation caught a missing man of 46 years old, who had last been seen alive about 6 months before. A dental orthopantomogram taken about 2 years before his disappearance was available for comparison. Eighteen days after recovery positive identification was practically accomplished based on unique features of the dental findings and a fairly rare, mandibular static bone cavity (a kind of bone cysts) by a X-ray comparison.

Bone Cysts

Cloning and expression of myelin-associated oligodendrocytic basic protein. A novel basic protein constituting the central nervous system myelin.

We have screened genes predominantly expressed in the rat spinal cord, and we report here cloning of the most abundant unknown gene. It is a novel member of the central nervous system (CNS) myelin-constituting proteins, myelin-associated oligodendrocytic basic protein (MOBP). MOBP is abundantly expressed specifically in oligodendrocytes at the mRNA level only next to myelin basic protein (MBP) and proteolipid protein. Two isoforms have been confirmed. One of them has proline-rich tandem repeats and has 84% homology with human counterpart in terms of predicted amino acid sequences. The cDNA-derived primary structure predicts a small, soluble, basic protein. The immunoelectron microscopy has shown that MOBP is expressed throughout compact myelin. All these characteristics are similar to MBP. One definite difference between MBP and MOBP is that MOBP is expressed exclusively in the CNS myelin. These findings suggest that MOBP shares some important functions with MBP in the CNS myelin such as myelin compaction.

Amino Acid Sequence

Isolation of a cDNA clone encoding a novel membrane protein expressed in lymphocytes.

By subtractive hybridization using single-stranded phagemids with directional inserts, we isolated a mouse cDNA clone, LSM-1, from temperature-sensitive Abelson virus-transformed immature B cells whose differentiation was being induced after the shift from the permissive (35 degrees C) to the non-permissive temperature (39 degrees C). LSM-1, which encodes an as yet unknown peptide of 197 amino acids, has a putative signal sequence and a trans-membrane region, and is expressed in B- and T-cell lines, in spleen, thymus, and bone marrow of adult mice, and in embryos.

Amino Acid Sequence

Elevated expression of messenger RNA for peripheral myelin protein 22 in biopsied peripheral nerves of patients with Charcot-Marie-Tooth disease type 1A.

The human peripheral myelin protein 22 (PMP-22) gene has been mapped to chromosome 17p11.2 in the duplicated region associated with Charcot-Marie-Tooth disease type 1A. Southern blot analysis using PMP-22 as a probe indicated that the PMP-22 gene was duplicated in 5 patients from unrelated Japanese families with Charcot-Marie-Tooth disease type 1. In order to investigate whether or not an extra copy of PMP-22 has an effect on its gene expression, we analyzed relative expression of messenger RNA for PMP-22 and protein 0 (P0) against beta-actin by Northern blotting in biopsied nerves of the patients with type 1A disease, and compared the results with those of patients having other demyelinating neuropathies and the autopsied nerves of patients without neuropathies. The relative expression of PMP-22 messenger RNA in 5 patients with Charcot-Marie-Tooth disease type 1A was significantly higher than that in 5 patients with other demyelinating neuropathies (p < 0.05). There was no statistically significant difference in P0 expression between them. This study provided direct evidence for elevated expression of PMP-22 in peripheral nerves of patients with Charcot-Marie-Tooth disease type 1A as the result of a gene dosage effect. However, the relation between elevated expression of PMP-22 and the mechanism causing demyelination remains undetermined.

Adult

Hereditary parkinsonism with multiple system degeneration: beneficial effect of anticholinergics, but not of levodopa.

Two siblings who exhibited hereditary parkinsonism with pyramidal signs and cerebellar ataxia are reported. Anticholinergics had a dramatic beneficial effect in both cases, but levodopa did not. This responsiveness, which is similar to that reported in patients with Joseph's disease, suggests dysfunction of an "indirect pathway" involving the globus pallidus and the subthalamic nucleus, in addition to that of the nigrostriatal system. We propose a new hereditary variant of early onset Parkinson's disease distinct from the levodopa sensitive forms of juvenile Parkinson's disease.

Adult