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Biomedical subjects

I Akiguchi

Publications and source records attributed to I Akiguchi.

At least 55 records · Page 3Linked to original sources

The spectrum of mutations causing end-plate acetylcholinesterase deficiency.

The end-plate species of acetylcholinesterase (AChE) is an asymmetric enzyme consisting of a collagenic tail subunit composed of three collagenic strands (ColQ), each attached to a tetramer of the T isoform of the catalytic subunit (AChE(T)) via a proline-rich attachment domain. The principal function of the tail subunit is to anchor asymmetric AChE in the synaptic basal lamina. Human end-plate AChE deficiency was recently shown to be caused by mutations in COLQ. We here report nine novel COLQ mutations in 7 patients with end-plate AChE deficiency. We examine the effects of the mutations on the assembly of asymmetric AChE by coexpressing each genetically engineered COLQ mutant with ACHE(T) in COS cells. We classify the newly recognized and previously reported COLQ mutations into four classes according to their position in ColQ and their effect on AChE expression. We find that missense mutations in the proline-rich attachment domain abrogate attachment of catalytic subunits, that truncation mutations in the ColQ collagen domain prevent the assembly of asymmetric AChE, that hydrophobic missense residues in the C-terminal domain prevent triple helical assembly of the ColQ collagen domain, and that other mutations in the C-terminal region produce asymmetric species of AChE that are likely insertion incompetent.

Acetylcholinesterase↗

[A case of non-convulsive status epilepticus worsened Wernicke's aphasia reversely].

A 62-year-old right-handed woman had presented progressive speech impediment over 4 months. She was alert without any convulsions or involuntary movements. Neurological examination showed Wernicke's aphasia, constructional apraxia. Her magnetic resonance imaging (MRI) showed an old cerebral infarction in the left parieto-occipital area, in addition to ischemic changes in the bilateral deep white matter. Electroencephalography (EEG) revealed periodic lateralized epileptiform discharges (PLEDs) predominant in the posterior left hemisphere. The PLEDs as well as the cortical symptoms improved after an administration of anti-convulsive agents, thus establishing the diagnosis of non-convulsive status epilepticus (NSE). It should be emphasized that NSE manifesting as Wernicke's aphasia should be distinguished from dementia syndrome because it is a treatable disorder.

Anticonvulsants↗

[A patient of MELAS with 3271 mutation with fatal outcome after alcohol intake].

A patient of MELAS is reported. A 28-year-old woman was admitted to Shimada Municipal Hospital because of nausea, vomiting, and right homonymous hemianopsia. She had past history of dizziness and convulsion. A brain magnetic resonance imaging showed an ischemic lesion in the left occipital lobe, which disappeared in the follow-up study. Laboratory examination indicated elevated lactate and pyruvate levels in both blood and cerebrospinal fluid. The muscle biopsy demonstrated ragged-red fibers and strongly SDH-reactive blood vessels. PCR-RFLP analysis of DNA extracted from her muscle and blood as well as her mother's blood revealed a T to C mutation at nucleophile position of 3271 in mitochondrial DNA. She was diagnosed as having MELAS and discharged. One year after the first admission, she re-visited our hospital because of three days' duration of fatigability and generalized muscle pain after alcohol intake. She had severe lactic acidosis, rhabdomyolysis and acute renal failure. Despite a continuous hemodialysis and other intensive efforts, the patient died 20 hours later. Alcohol intake has been reported to induce rhabdomyolysis in myopathy with mitochondrial DNA deletions. The course of this patient suggests that alcohol intake can be an aggravating factor also in MELAS.

Adult↗

Aberrant expression of cyclin-dependent kinase 5 in inclusion body myositis.

OBJECTIVE: To investigate abnormal protein expression in inclusion body myositis (IBM). BACKGROUND: In IBM, ectopic deposition of beta-amyloid protein as well as several other proteins in some muscle fibers occurs. Some, but not all, of these proteins are also expressed in myofibrillar myopathy (MFM). The authors recently reported aberrant expressions of several cyclin-dependent kinases (CDKs)-enzymes regulating the cell replication cycle-in MFM. They therefore tested the notion that aberrant expression of CDKs also occurs in IBM. Among CDKs, CDK1, CDK2, and CDK5 have been demonstrated to phosphorylate tau, which is a component of inclusions in IBM. CDK5 appears in a stage of myogenesis when CDK1 and CDK2 are downregulated. METHODS: Cryostat sections of muscle specimens from 10 patients with sporadic IBM were immunostained for CDK1, CDK2, and CDK5. Fourteen patients with polymyositis and eight individuals with dermatomyositis served as disease control subjects. RESULTS: In IBM, numerous CDK5-positive inclusions were present in vacuolated fibers. CDK5 expression was not observed in any disease control subject. Regenerating fibers expressed CDK1 and CDK2 in all diseases. CONCLUSION: The results suggest that cyclin-dependent kinases (CDK)5, but no other CDKs, is involved in the formation of inclusions in IBM.

Adult↗

Immunohistochemical localization of CDK5 activator p39 in the rat brain.

We examined the immunohistochemical localization of p39, the regulatory subunit of cyclin-dependent kinase 5 (Cdk5), in the adult rat brain. Cdk5 requires either p39 or p35 to assume its active form in the mammalian CNS. We developed a specific antibody against p39, and localized p39-immunoreactivity in the rat brain. p39-immunoreactivity was observed in the neuronal somata of the cerebral cortex, hippocampus and basal ganglia, and also in the Purkinje cells. Immunopositive astrocytes and oligodendrocytes were scattered throughout the rat brain. p35 immunoactivity has been observed exclusively in neurons and was never detected in glial cells. The present results suggest that p39 and p35 may have different functional roles in the regulation of Cdk5 in the rat CNS.

Animals↗

A cyclooxygenase-2 inhibitor attenuates white matter damage in chronic cerebral ischemia.

The effects of nimesulide, a cyclooxygenase-2 inhibitor, were examined during chronic cerebral hypoperfusion. After bilateral ligation of the common carotid arteries in 30 rats, 21 received dosages of 2 or 5 mg/kg nimesulide daily and nine received vehicle daily for 14 days. The serum was then analyzed biochemically, and pathological changes were estimated in the white matter by the emergence of major histocompatibility complex (MHC) antigen-immunoreactive activated microglia and white matter lesions. In the vehicle-treated animals, activated microglia and white matter lesions were observed. Following treatment with either 2 or 5mg/kg nimesulide, the magnitude of these changes was reduced (p < 0.001) without significant side effects. These results indicate a potential use for cyclooxygenase-2 inhibitors in cerebrovascular disease.

Analysis of Variance↗

Enhancement of TNF-alpha production by ganglioside GM2 in human mononuclear cell culture.

Some gangliosides have been regarded as autoantigens of immune-mediated neurological disorders such as Guillain-Barré syndrome (GBS), Miller Fisher syndrome and multifocal motor neuropathy. On the other hand, proinflammatory cytokines, such as tumor necrosis factor-alpha (TNF-alpha) and interferon-gamma (IFN-gamma), may be important in the pathogenesis of some neuroimmunological disorders. To clarify the interactions between immune cells and gangliosides, we investigated the effects of gangliosides on the production of proinflammatory cytokines in peripheral blood mononuclear cell (PBMC) cultures. We found that ganglioside GM2 markedly enhances the production of TNF-alpha and that TNF-alpha induction by coated GM2 is still more marked. These findings suggest that immune cells, especially monocytes/macrophages, cause inflammation upon encountering GM2.

Cell Adhesion↗

Cellular localization of brain-derived neurotrophic factor-like immunoreactivity in adult monkey brain.

Immunohistochemical localization of brain-derived neurotrophic factor (BDNF) in the monkey brain was investigated using a polyclonal anti-BDNF antibody produced in our laboratory. The antibody recognized a single band in monkey brain homogenates, and the estimated molecular weight was approximately 14 kDa, which corresponds well to the molecular weight of BDNF monomer. BDNF-like immunoreactivity was observed in the somata and processes of discrete neuronal subpopulations in the monkey brain. BDNF-positive neurons were widely distributed in various structures of the brain, including the cerebral cortex, hippocampus, basal forebrain, basal ganglia, diencephalon, brainstem and cerebellum. In addition, immunopositive glial cells were found in some brain regions. These data suggest that BDNF may exist widely in the monkey brain, and may be concerned with various types of neurons in the monkey central nervous system.

Age Factors↗

Effects of antithrombin on Binswanger's disease with antiphospholipid antibody syndrome.

The authors present a family with Binswanger's disease (BD) and antiphospholipid antibody syndrome (APAS). In one patient from this family, lupus anticoagulant and high levels of hemostatic markers were detected. The presence of BD and the clinicobiological improvements observed after antithrombin treatment in this patient are peculiar to this familial case of APAS.

Antiphospholipid Syndrome↗

Brain proton magnetic resonance spectroscopy and brain atrophy in myotonic dystrophy.

OBJECTIVES: To evaluate by magnetic resonance spectroscopy the age-related cerebral alterations present in myotonic dystrophy (MD) and to compare these results with those obtained by magnetic resonance imaging. DESIGN: Twenty-one patients (aged 16-63 years) with MD were compared with 16 age-matched healthy control subjects. RESULTS: In magnetic resonance spectroscopy, the mean (+/- SD) ratio of N-acetylaspartate to creatine and phosphocreatine in the patients with MD (1.09 +/- 0.32) was significantly lower than that in the control subjects (1.93 +/- 0.43) (P<.001). The mean ratio of N-acetylaspartate to choline-containing compounds in the patients with MD (1.70 +/- 0.44) was also significantly lower than that in the control subjects (2.75 +/- 0.53) (P<.001). These changes could be observed already in the younger patients. In magnetic resonance imaging, the mean brain area was significantly decreased and the mean ventricular space was significantly increased in patients with MD compared with the control subjects. Although we have confirmed brain atrophy in patients with MD in previous reports, a regression analysis indicated that the brain shrinks progressively with age in patients with this disorder and in control subjects, resulting in overlapping values for younger subjects. CONCLUSION: Magnetic resonance spectroscopy indicates that the cerebral abnormalities in patients with MD may be present at an early stage, when the results of magnetic resonance imaging studies are still equivocal.

Adolescent↗

Coagulation activation in patients with Binswanger disease.

BACKGROUND: A hypercoagulable state is often associated with an acute stroke in cerebrovascular disease (CVD). However, in Binswanger disease (BD), no information is available on the coagulation-fibrinolysis pathway except for the presence of high plasma fibrinogen levels. OBJECTIVE: To determine the association of BD and coagulation-fibrinolysis pathway activation. PATIENTS AND METHODS: We examined the levels of fibrinogen, thrombin-antithrombin complex, prothrombin fragment(1+2), and cross-linked D-dimer in 17 patients with BD, 24 neurologic patients without CVD, and 26 patients with lacunar infarction in either the acute or chronic stage. RESULTS: As compared with the non-CVD and lacunar infarction groups, the patients with BD had significantly elevated levels of thrombin-antithrombin complex (P<.001), prothrombin fragment(1+2) (P<.05), and cross-linked D-dimer (P<.01). There was also a significant increase in fibrinogen levels compared with the non-CVD group (P<.05). In the BD group, 8 patients in stable condition (ie, those without obvious neurologic deficits in the past 3 months) showed normal levels or a mild increase in their fibrinogen, thrombin-antithrombin complex, prothrombin fragment(1+2), or cross-linked D-dimer levels. In contrast, 9 patients with BD with a subacute aggravation of their focal or subcortical cerebral functions (deteriorating group) showed a significant increase in their thrombin-antithrombin complex levels compared with the stable patients (P<.01). Similarly, the fibrinogen, prothrombin fragment(1+2), and cross-linked D-dimer levels were elevated in the deteriorating patients, but this trend did not reach statistical significance. CONCLUSIONS: These results indicate that the coagulation-fibrinolysis pathway is activated in patients with BD with a subacute aggravation. Coagulation activation may result in the formation of microthrombi and microcirculatory disturbances in the brains of these patients, and thus promote further biological and neurologic insults.

Aged↗

The action mechanism of cyclooxygenase-2 inhibitor for treatment of experimental allergic neuritis.

We previously reported the effect of a cyclooxygenase (COX)-2 inhibitor, nimesulide, on experimental allergic neuritis (EAN) in both the induction and effector phases, in contrast to the usual COX inhibitor, which was effective only when administered in the induction phase. To assess the mechanism of action of a COX-2 inhibitor, we studied the expression of COX-2 and assayed plasma levels of prostaglandins, and also compared the clinical effect of a COX-2 inhibitor with a 5-lipoxygenase (LO) inhibitor, which is responsible for another pathway of arachidonic acid metabolism. Nerves of EAN rats showed distinct expression of COX-2, which is derived mostly from endoneurial macrophages. Treatment with a COX-2 inhibitor had no effect on its expression. However, prostaglandin estradiol (E(2)) concentration of plasma was significantly lower compared with the control group. The LO inhibitor showed no clinical effect. These results suggest that a selective COX-2 inhibitor is effective in the effector phase by its influence on macrophages that are responsible for nerve degeneration.

Animals↗

Immunoelectron microscopic study of c-Fos, c-Jun and heat shock protein after transient cerebral ischemia in gerbils.

The neuroprotective role of the expression of heat shock protein (HSP) and immediate early gene remains unclear. Using immunoelectron microscopy, we examined the ultrastructural integrity of the neurons with expression of c-Fos, c-Jun and HSP70 in gerbils after transient cerebral ischemia and reperfusion. Induction of c-Fos and c-Jun was observed in the CA3 region resistant to ischemia, while HSP70 was expressed not only in the CA3 but also in the vulnerable CAI region. With immunoelectron microscopy, the expression of c-Fos/c-Jun and HSP70 was observed in the neurons which retained neuronal integrity except for mitochondrial swelling and polyribosomal disaggregation. In contrast, the CAI neurons without immunoreaction for HSP70 showed cytoplasmic vacuoles and parallel stacking of rough endoplasmic reticulum, the features associated with the process of delayed neuronal death. These findings suggested that c-Fos and c-Jun were induced selectively in reversibly damaged neurons, whereas HSP70 was up-regulated even in neurons with irreversible damage, but was more preferentially and intensely expressed in neurons with reversible damage.

Animals↗

Vascular changes in white matter lesions of Alzheimer's disease.

The pathogenesis of white matter lesions observed in Alzheimer's disease (AD) is not completely clear. We tested the hypothesis that white matter lesions are correlated with medullary artery sclerosis rather than with amyloid angiopathy. A total of 57 brains were examined, including 39 derived from patients with AD and 13 from patients with Binswanger's disease (BD) along with 5 from non-neurological patients. Moderate or severe amyloid deposits in the meningocortical segment were observed in 32 out of 39 AD patients (82.1%), and in 2 out of 13 BD patients (15.4%). These deposits were not observed in the white matter segment, except for 2 patients with AD. The BD patients invariably had marked white matter lesions and fibrohyalinosis in the medullary arteries, with a mean sclerotic ratio of 48.1%. In contrast, the AD patients had mild or moderate white matter lesions and a sclerotic ratio of 37.9%, which was significantly greater than the controls. The scores for white matter lesions were correlated with the sclerotic ratio of the medullary arteries, but not with the ages of onset or the scores for amyloid angiopathy. Although amyloid angiopathy is an independent risk of white matter lesions, its role is limited in the pathogenesis of those associated with AD. Wall thickening of the medullary arteries, likely due to fibrohyalinosis, is closely correlated with the white matter lesions in AD, thus indicating a heterogeneity in its etiology.

Aged↗

Increased expression of growth-associated protein 43 on the surface of the anterior horn cells in amyotrophic lateral sclerosis.

This study examined axonal terminal alterations in the anterior horn of amyotrophic lateral sclerosis (ALS) patients. An antibody against growth-associated protein 43 (GAP43), a phosphoprotein which is expressed in elongating terminals of neurites, was employed for immunohistochemical staining. Lumbar spinal cords taken at autopsy from five ALS patients and from six control adults were examined. In control patients, there were numerous GAP43-positive granules diffusely dispersed throughout the anterior horn neuropil, and individual large anterior horn cells (AHCs) showed numerous tiny immunoreactive granules and small dots on the surface. A small number of AHCs showed dense accumulation of GAP43 immunoreactivity on the surface of the cell body and proximal processes. In all ALS patients, similar accumulation of GAP43 immunoreactivity was seen on the surface of a large number of remaining AHCs. Statistical analysis revealed a significant increase in number of AHCs with such accumulation in ALS patients. These results suggest that during the ALS disease process there may be plastic alterations or a compensatory mechanism of the axonal terminals located on the surface of some AHCs for ongoing anterior horn presynaptic terminal degeneration.

Adult↗

The passage of blood-borne horseradish peroxidase into the amygdaloid area of the mouse brain.

The passage of blood-borne horseradish peroxidase (HRP) into the amygdaloid area of the mouse brain was examined with light and electron microscopy. Staining reaction for HRP appeared in medial portions of the amygdaloid area, especially adjacent to the optic tract. Ultrastructural examination of some vessels in that area revealed that the staining reaction for HRP appeared in the perivascular space, the basal lamina, the cytoplasm or vesicular structures of the perivascular cells, vesicular profiles of the endothelial cell cytoplasm including abluminal pits and the adjacent extracellular space. These findings suggest that intravascular macromolecules can invade medial portions of the amygdaloid area of the mouse brain.

Amygdala↗

Increased brain-derived neurotrophic factor-containing axons in the basal ganglia of patients with multiple system atrophy.

Brain-derived neurotrophic factor (BDNF) has a neurotrophic effect not only on mesencephalic dopaminergic neurons, but also on striatal neurons. To investigate whether the abnormal expression of BDNF occurs in the basal ganglia of patients with Parkinson disease (PD) and multiple system atrophy (MSA), we compared the BDNF levels in the striatum and globus pallidus of patients with PD or MSA to controls using immunohistochemistry. Furthermore, to quantitatively evaluate the immunohistochemical changes in the striatum, image analysis of the putamen was performed. BDNF-positive nerve fiber bundles and fine granular structures were scattered throughout the striatum and globus pallidus of all samples. Most of these granular structures were observed in glial fibrillary acidic protein-positive astrocytes. In addition, BDNF-positive neurites were abundant in the striatum of all MSA patients, and numerous BDNF-positive varicose fibers were found in the globus pallidus of some MSA cases with particularly severe striatal involvement. These observations suggest that the upregulated expression of BDNF may occur as a protective mechanism in the striatum of MSA patients, and that severe striatal degeneration may cause the aberrant accumulation of BDNF in the striatal projection areas of the globus pallidus of MSA patients.

Adult↗