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Biomedical subjects

Makoto Matsui

Publications and source records attributed to Makoto Matsui.

16 recordsLinked to original sources

Suppression of basal autophagy in neural cells causes neurodegenerative disease in mice.

Autophagy is an intracellular bulk degradation process through which a portion of the cytoplasm is delivered to lysosomes to be degraded. Although the primary role of autophagy in many organisms is in adaptation to starvation, autophagy is also thought to be important for normal turnover of cytoplasmic contents, particularly in quiescent cells such as neurons. Autophagy may have a protective role against the development of a number of neurodegenerative diseases. Here we report that loss of autophagy causes neurodegeneration even in the absence of any disease-associated mutant proteins. Mice deficient for Atg5 (autophagy-related 5) specifically in neural cells develop progressive deficits in motor function that are accompanied by the accumulation of cytoplasmic inclusion bodies in neurons. In Atg5-/- cells, diffuse, abnormal intracellular proteins accumulate, and then form aggregates and inclusions. These results suggest that the continuous clearance of diffuse cytosolic proteins through basal autophagy is important for preventing the accumulation of abnormal proteins, which can disrupt neural function and ultimately lead to neurodegeneration.

Animals↗

Gluten sensitivity in Japanese patients with adult-onset cerebellar ataxia.

OBJECTIVE: Gluten sensitivity is associated with multiple neurological abnormalities including gluten ataxia, motor neuron disease-like neuropathy, small fiber type neuropathy, cognitive impairment, and even parkinsonism. We investigated whether or not gluten sensitivity is involved in Japanese patients with idiopathic cerebellar ataxia with extracerebellar presentation. PATIENTS OR MATERIALS: Fourteen patients with idiopathic cerebellar ataxia with extracerebellar presentation (autonomic instability, parkinsonism, or pyramidal dysfunction in varying combinations) were screened for anti-gliadin antibodies (AGA) to analyze for the presence or absence of gluten sensitivity. Patients with typical MR findings of multiple system atrophy of the cerebellar type were excluded. As disease controls without cerebellar ataxia, 9 patients with Parkinson's disease and 18 patients with amyotrophic lateral sclerosis were screened for AGA. Forty-seven normal controls were also screened for AGA. RESULTS: We found a high prevalence of AGA in 5 (36%) of 14 cerebellar ataxia patients, but in only 1 (4%) of 27 disease controls without cerebellar ataxia (odds ratio, 14.4; 95% CI, 1.41147; p<0.05) and in only 1 (2%) of 47 normal controls (odds ratio, 25.6; 95% CI, 2.66246; p<0.001). Among the cerebellar ataxia patients, atypical features such as sensorimotor neuropathy and/or mild cognitive impairment were more prevalent in the AGA-positive group (60%) than in the AGA-negative group (0%). In one of the ataxic patients with AGA, a gluten-free diet had positive effects on neurological symptoms and nutritional status. CONCLUSION: Gluten sensitivity is involved in at least some of the unexplained neurological symptoms of Japanese patients with adult-onset, sporadic cerebellar ataxia.

Age of Onset↗

Organelle degradation during the lens and erythroid differentiation is independent of autophagy.

Autophagy is a bulk degradation system within cells through which cytoplasmic components are degraded within lysosomes. Primary roles of autophagy are starvation adaptation and intracellular protein quality control. In contrast to the ubiquitin-proteasome system, autophagy can also degrade organelles. Here we examined a possible role of autophagy in organelle degradation during lens and erythroid differentiation. We observed that autophagy occurs in embryonic lens cells. However, organelle degradation in lens and erythroid cells occurred normally in autophagy-deficient Atg5(-/-) mice. Our data suggest that degradation system(s) other than autophagy play major roles in organelle degradation during these processes.

Animals↗

Differences in systemic and central nervous system cellular immunity relevant to relapsing-remitting multiple sclerosis.

In order to elucidate the differences between systemic and central nervous system (CNS) immunity that are relevant to exacerbations of multiple sclerosis (MS), paired peripheral blood and cerebrospinal fluid (CSF) samples obtained from 36 non-treated patients with relapsing-remitting MS (RRMS) were simultaneously examined using flow cytometry to determine the percentages of functional lymphocyte subsets, as well as enzyme-linked immunosorbent assays for measuring soluble immune mediators. Active RRMS patients (n = 27) were characterized by an increase in CD4+ CXCR3+ Th1 cells in blood as compared with inactive patients (n = 9), and this parameter was inversely correlated with plasma levels of IL-10 and IL- 12p70. In contrast, an increase in the percentage of CD4+ CD25+ cells and a decrease in the percentage of CD8+ CD11a(high) cells were features of CSF samples from those with active RRMS. Further, CSF CD4+ CD25+ cells had a close association with leukocyte counts as well as albumin and CXCL10 levels in the CSF, and, thus, could be useful as a measure for inflammatory reactions in the CNS. On the other hand, CD8+ CD11a(high) cells may function as immunoregulatory cells, as their percentage in the CSF showed a positive correlation with CSF levels of the anti-inflammatory cytokine IL-4. These findings suggest that MS relapses occur in a combination with altered cell-mediated immunity that differs between the peripheral blood and CSF compartments, while measurement of lymphocyte subsets may be helpful for monitoring disease status.

Antigens, CD↗

Autophagic cell death of pancreatic acinar cells in serine protease inhibitor Kazal type 3-deficient mice.

BACKGROUND & AIMS: Serine protease inhibitor Kazal type 1 (SPINK1), which is structurally similar to epidermal growth factor, is thought to inhibit trypsin activity and to prevent pancreatitis. Point mutations in the SPINK1 gene seem to predispose humans to pancreatitis; however, the clinical significance of SPINK1 mutations remains controversial. This study aimed to elucidate the role of SPINK1. METHODS: We generated Spink3-deficient (Spink3(-/-)) mice by gene targeting in mouse embryonic stem cells. Embryonic and neonatal pancreases were analyzed morphologically and molecularly. Specific probes were used to show the typical autophagy that occurs during acinar cell death. RESULTS: In Spink3(-/-) mice, the pancreas developed normally up to 15.5 days after coitus. However, autophagic degeneration of acinar cells, but not ductal or islet cells, started from day 16.5 after coitus. Rapid onset of cell death occurred in the pancreas and duodenum within a few days after birth and resulted in death by 14.5 days after birth. There was limited inflammatory cell infiltration and no sign of apoptosis. At 7.5 days after birth, residual ductlike cells in the tubular complexes strongly expressed pancreatic duodenal homeodomain-containing protein 1, a marker of pancreatic stem cells, without any sign of acinar cell regeneration. CONCLUSIONS: The progressive disappearance of acinar cells in Spink3(-/-) mice was due to autophagic cell death and impaired regeneration. Thus, Spink3 has essential roles in the maintenance of integrity and regeneration of acinar cells.

Animals↗

Central nervous system immunity associated with clinical outcome in acute encephalitis.

To search for useful laboratory measures of central nervous system (CNS) immunity that may provide an accurate prognosis or clues regarding treatment choice, cerebrospinal fluid (CSF) samples were obtained from 14 consecutive patients with acute encephalitis during acute as well as convalescent or chronic stages, and then examined for surface antigen expressions by lymphocytes and the presence of antineuronal tissue antibodies as well as the levels of IgG-related parameters and proinflammatory cytokines, including IL-2, IL-6, IFN-gamma, and tumor necrosis factor-alpha (TNF-alpha). Seven patients with aseptic viral meningitis served as nonencephalitic controls. Eight of the 14 acute encephalitis patients recovered fully, and reductions in the percentages of CD4(+)CD29(+) helper inducer T cells and IL-2 receptor-positive CD4(+) cells were associated with early recovery and favorable outcome, respectively, whereas a low percentage of CD4(+)CD26(+) memory T cells during an acute stage was associated with an unfavorable outcome following adjunctive intravenous corticosteroid treatment. Further, three of the four encephalitis patients who exhibited autoantibodies had a poor prognosis. These findings suggest that CNS immunity status has an effect on prognosis, while flow cytometric analyses of CSF CD4(+) helper T cell subsets may serve as effective means of assessment.

Adolescent↗

The role of autophagy during the early neonatal starvation period.

At birth the trans-placental nutrient supply is suddenly interrupted, and neonates face severe starvation until supply can be restored through milk nutrients. Here, we show that neonates adapt to this adverse circumstance by inducing autophagy. Autophagy is the primary means for the degradation of cytoplasmic constituents within lysosomes. The level of autophagy in mice remains low during embryogenesis; however, autophagy is immediately upregulated in various tissues after birth and is maintained at high levels for 3-12 h before returning to basal levels within 1-2 days. Mice deficient for Atg5, which is essential for autophagosome formation, appear almost normal at birth but die within 1 day of delivery. The survival time of starved Atg5-deficient neonates (approximately 12 h) is much shorter than that of wild-type mice (approximately 21 h) but can be prolonged by forced milk feeding. Atg5-deficient neonates exhibit reduced amino acid concentrations in plasma and tissues, and display signs of energy depletion. These results suggest that the production of amino acids by autophagic degradation of 'self' proteins, which allows for the maintenance of energy homeostasis, is important for survival during neonatal starvation.

Animals↗

Immunomonitoring measures in relapsing-remitting multiple sclerosis.

Forty-five patients with relapsing-remitting multiple sclerosis (MS) were examined to determine intracellular cytokine profiles and the surface phenotype of circulating lymphocytes during active, recovery, and stable stages. Active stage patients were characterized by decreases in CD4(+)IL-4(+) Th2 as well as CD4(+)IFN-gamma(+) Th1 cells, when compared with stable stage patients and 16 healthy controls. CCR4(+) Th2 cells were persistently decreased at every MS stage as compared to the controls. CD4(+)CD29(+) and CD4(+)CXCR3(+) cells were closely correlated with IFN-gamma-producing cells. These findings suggest that simultaneous flow cytometry for these two types of measurements can provide information concerning current immune status in MS.

Adolescent↗

[A case of myeloradiculitis as a complication of visceral larva migrans due to Ascaris suum].

A 35-year-old man noticed a tingling sensation and subsequent slight weakness in the distal part of the left lower extremities, which extended to the left thigh over the following 8 months, when he developed a urinary disturbance. He was admitted to a local hospital and diagnosed as having myelitis, because of the presence of a gadolinium (Gd)-enhanced lesion in the lumbar spinal cord corresponding to the tenth thoracic vertebra (Th10) level. The symptoms disappeared along with some residual sensory disturbance following intravenous administration of 1 g of methylprednisolone (IVMP) for 3 days. However, 4 months later, the patient gradually developed gait disturbance, dysuria, impotence, and fecal incontinence, and was admitted to our hospital in May 2001. A neurological examination revealed the presence of myeloradiculopathy causing a slight weakness in the left hamstring muscles, with positive Babinski and Lasegue signs on the same side. In addition, deep tendon reflexes were absent in the 4 extremities and vibration sense was moderately decreased in the lower extremities, though the results of electrophysiological tests of motor and sensory nerves were normal. A magnetic resonance imaging (MRI) study showed a Gd-enhanced lesion in the spinal cord at the Th8-9 vertebrae level, which was 1 to 2 vertebrae above the initially detected lesion. A lumbar puncture yielded cerebrospinal fluid (CSF) containing mononuclear cells at 7/mm3 that were comprised of an increasd number of CD4+CD25+ activated helper T cells; however, no myelin basic protein or oligoclonal IgG band was present. Serological examinations were negative for the presence of collagen/vascular disorders as well as viral infection due to CMV, EBV, HSV, VZV, and HTLV-1, however, positive for specific antibodies against Ascaris suum in both serum and the CSF, confirming the diagnosis of chronic myeloradiculitis due to visceral larva migrans. The patient was first treated with a single course of a daily 600-mg dose of oral albendazole for 4 weeks, which was resulted in restoration of muscle weakness, as well as disappearance of the Lasègue sign. However, in contrast to the clinical improvement, the CSF sample obtained immediately after completing the treatment showed a worsening trend, as the CSF cell count had increased with a manifestation of marked eosinophilia and CD4+CD25+ cells were also increased. Thereafter, 3-day IVMP treatment was performed twice in cojunction with 3 courses of oral albendazole therapy for the subsequent 4 months, which resulted in normalization of all laboratory measurements concerning the CSF along with a decrement trend in serum and CSF antibody titers specific to Ascaris suum. Our results suggest that neurological involvement due to visceral larva migrans can be efficaciously treated with not only helminthic drugs but also intravenous corticosteroids.

Adult↗

In vivo analysis of autophagy in response to nutrient starvation using transgenic mice expressing a fluorescent autophagosome marker.

Macroautophagy mediates the bulk degradation of cytoplasmic components. It accounts for the degradation of most long-lived proteins: cytoplasmic constituents, including organelles, are sequestered into autophagosomes, which subsequently fuse with lysosomes, where degradation occurs. Although the possible involvement of autophagy in homeostasis, development, cell death, and pathogenesis has been repeatedly pointed out, systematic in vivo analysis has not been performed in mammals, mainly because of a limitation of monitoring methods. To understand where and when autophagy occurs in vivo, we have generated transgenic mice systemically expressing GFP fused to LC3, which is a mammalian homologue of yeast Atg8 (Aut7/Apg8) and serves as a marker protein for autophagosomes. Fluorescence microscopic analyses revealed that autophagy is differently induced by nutrient starvation in most tissues. In some tissues, autophagy even occurs actively without starvation treatments. Our results suggest that the regulation of autophagy is organ dependent and the role of autophagy is not restricted to the starvation response. This transgenic mouse model is a useful tool to study mammalian autophagy.

Animals↗

Immune parameters associated with early treatment effects of high-dose intravenous methylprednisolone in multiple sclerosis.

To determine the immunological effects of high-dose intravenous methylprednisolone (IVMP) and elucidate immune measurements used for evaluation of its therapeutic effect, we analyzed lymphocyte subsets and humoral immune parameters in peripheral blood and cerebrospinal fluid (CSF) samples, before and within 2 weeks of treatment during 19 acute exacerbations in 16 relapsing-remitting multiple sclerosis (MS) patients. In addition to decreases in CSF albumin and IgG levels, treatment resulted in an increase of CD8(+)CXCR3(+) cells as well as a decrease in CD4(+) subsets expressing CD25, CD29, and CCR4 in the CSF. Further, the percentage of circulating CD4(+)CXCR3(+) Th1 cells also decreased. Clinical improvement was achieved following 15 of the 19 treatment occasions. Early (<2 weeks of treatment) clinical improvement was significantly associated with a decrease in CSF CD4(+)CD29(+) helper inducer T cells, whereas they were nearly unchanged in four patients who showed no improvement. Changes in other parameters following IVMP treatment were not different between the responder and non-responder groups.

Adult↗

Relationship of bladder dysfunction to lesion site in multiple sclerosis.

PURPOSE: We investigated the relationship of voiding dysfunction type and the lesion site in patients with multiple sclerosis. MATERIALS AND METHODS: Voiding dysfunction was evaluated in 32 patients with multiple sclerosis using the International Prostate Symptom Score and urodynamic tests. Lesion sites were determined by combined neurological examination and magnetic resonance imaging findings. RESULTS: Compared with reports from Western countries the ratio of emptying-to-filling symptoms was high in Japan. Of urinary symptoms only filling correlated with disability status and disease duration. Urinary symptoms were not related to lesion sites. Urodynamic evaluation revealed detrusor hyperreflexia in 14 of 32 patients, hyporeflexia or areflexia in 12, detrusor hyperreflexia with impaired contractile function in 4, a low compliance bladder in 1 and normal function in 1. Of 14 patients with hyperreflexia 13 had overactive sphincter concurrently. Incompetent sphincter was identified in 2 patients who had detrusor hyperreflexia with impaired contractility and in 1 with a low compliance bladder. A significant correlation was noted for a pontine lesion and detrusor hyporeflexia, and for a cervical cord lesion and detrusor-sphincter dyssynergia. CONCLUSIONS: Detrusor hyporeflexia and detrusor-sphincter dyssynergia are indicative of a pontine and cervical spinal cord lesion, respectively. Thus, the lesion site in the central nervous system may be a major determinant of the type of bladder and urethral sphincter dysfunction. The high prevalence of emptying symptoms in Japanese patients may reflect the prevalence of detrusor hyporeflexia and detrusor-sphincter dyssynergia.

Adolescent↗

[Prognosis and factors that predict outcome in multiple sclerosis].

An understanding of the natural history of multiple sclerosis(MS) in a patient is important to begin proper treatment at the correct time, especially when there is a high risk for poor prognosis. Factors that predict unfavorable prognosis are a primary or secondary progressive course, older age at disease onset, short interval between first and second attacks, initial cerebellar or pyramidal symptoms, a large number of functional systems involved at onset, moderate to severe disability within the first 2 years, and the presence of typical plaques or greater lesion volume shown by magnetic resonance imaging results during the first 5 years. However, there are no established laboratory tests able to predict long-term prognosis.

Age of Onset↗

Immunological disturbances in the central nervous system linked to MRI findings in multiple sclerosis.

To clarify immunological disturbances in the central nervous system (CNS) in multiple sclerosis (MS) by linking to magnetic resonance imaging (MRI) findings, 22 patients with relapsing remitting MS were studied. Cerebrospinal fluid (CSF) samples were analyzed during a total of 27 independent MS stages (20 active, 7 inactive) on 25 occasions during which gadolinium (Gd)-enhanced MRI scans were performed. The number of Gd-enhanced lesions was significantly correlated with CSF cell counts, as well as the number of CD4(+)CD29(+) helper inducer and IL-2 receptor (CD25)-positive activated helper T cells. In contrast, T(2) lesion load in the brain showed a trend of association with elevated IgG index.

Adolescent↗

Chemokine receptors associated with immunity within and outside the central nervous system in early relapsing-remitting multiple sclerosis.

Thirty-four patients with early relapsing-remitting multiple sclerosis (RRMS) were studied to clarify the differences in chemokine receptor usage by blood and cerebrospinal fluid (CSF) lymphocytes relevant to the pathogenesis of MS. A total of 45 examinations (33 active and 12 inactive stages) revealed that circulating CD4+CXCR3+ T helper 1 (Th1) cells were increased in active MS patients and correlated with the number of gadolinium-enhanced lesions on magnetic resonance (MR) images. In contrast, CSF samples obtained during active stages were characterized by a decrease in the percentage of CD8+CXCR3+ T cells, which was inversely correlated with CSF cell count and intra-blood-brain barrier (BBB) IgG production.

Adolescent↗

Association between interleukin-6 gene polymorphism and human T-cell leukemia virus type I associated myelopathy.

We studied cytokine gene polymorphisms in the promoter region, including interleukin (IL)-6, IL-1beta, and IL-10, in Japanese patients with human T-cell leukemia virus type I (HTLV-I) associated myelopathy (HAM) (n = 65), asymptomatic HTLV-I carriers (n = 143), and HTLV-I seronegative, normal controls (n = 160). There was a significant difference between HAM patients and HTLV-I carriers in the distribution of IL-6 promoter polymorphism at position -634 (chi(2) = 9.90, p = 0.0071). The IL-6 genotype was also significantly different between HAM patients and normal controls (chi(2) = 11.53, p = 0.0033), while a similar distribution was observed in IL-1beta and IL-10 polymorphisms among HAM patients, carriers, and normal controls. The results suggest that IL-6 gene region may contribute to susceptibility to HAM, and that aberrant cytokine productions could be involved in the development of HAM.

Carrier State↗