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Biomedical subjects

M Ogiso

Publications and source records attributed to M Ogiso.

At least 19 recordsLinked to original sources

Identification and synthetic pathway of sialyl-Lewisx-containing neolacto-series gangliosides in lens tissues. 1. Characterization of gangliosides in human senile cataractous lens.

Human lens accumulates gangliosides in association with aging and senile cataract progression. In this study we purified and characterized five major gangliosides in human cataractous lenses. Structural analyses and immunological studies revealed the presence of ganglio-series gangliosides, GM3, GM2, GM1 and GD1a, and a sialyl-Lewisx-containing neolacto-series ganglioside, NeuAc alpha 2-3Gal beta 1-4(Fuc alpha 1-3)GlcNAc beta 1-3Gal beta 1-4Glc beta 1-1ceramide (IV3NeuAcIII3FucnLc4). Slow-moving gangliosides, although minor components, were also found to have sialyl-Lewisx-related structures, based on anti-Lewisx antiserum binding to their asialo forms. However, sialyl-paragloboside, a possible precursor of the sialyl-Lewisx ganglioside, was not identified.

Aged

Age-related changes in ganglioside composition in human lens.

We previously reported that human lens accumulates gangliosides in association with aging and senile cataract progression. Structural analysis revealed that gangliosides in human cataractous lenses were composed of ganglio-series gangliosides, such as GM3, GM2, GM1 and GD1a, and sialyl-Lewisx-containing neolacto-series gangliosides. Although Lewisx-containing neolacto-series glycolipid was found to accumulate in association with aging and cataract progression, the sialyl-Lewisx gangliosides did not show much accumulation in individual lenses from subjects between 16 and 80 years old. The content of sialyl-Lewisx gangliosides was about two to four times higher than that of Lewisx glycolipids, suggesting the possibility that the increase in Le(x) glycolipid is partly due to the desialylation of sialyl-Le(x) gangliosides. On the other hand, the expression of ganglio-series gangliosides increased in an age-related manner. Thus, age-related changes in lens glycolipids may modify the cell-to-cell interaction induced by cell surface sugar chains, leading to the initiation and progression of cataract.

Adolescent

Characterization of neutral glycosphingolipids in rat lens.

Neutral glycosphingolipids were purified from non-cataractous lenses of Sprague-Dawley rats by a combination of solvent extraction, Folch's partition, and column chromatography using DEAE-Sephadex and Iatrobeads. Six major GSLs from monohexosylceramide to pentahexosylceramide were identified by sugar composition analysis, methylation analysis and glycosidase digestion. Structural relationships among the six neutral glycosphingolipids revealed metabolic pathways leading to the synthesis of Gal alpha 1-3Gal beta 1-4GlcNAc beta 1-3Gal beta 1-4Glc beta 1-1 ceramide (IV3Gal alpha nLc4), instead of a Lewis(x) glycolipid (Gal beta 1- 4(Fuc alpha 1-3)GlcNAc beta 1-3Gal beta 1-4Glc beta 1-1 ceramide, III3FucnLc4), from neolactotetraosylceramide (nLc4), together with isoglobotriaosylceramide (iGb3). The alpha-galactosyl epitope, Gal alpha 1-3Gal-R, is evolutionarily conserved in many types of cells of non-primate mammals, prosimians and New World monkeys, but not in those of Old World monkeys or humans. This evolution-related difference in carbohydrate epitopes suggests different cell-to-cell attachments, which may be mediated through cell surface glycosphingolipids, between rat and human lenses.

Animals

Localization of neutral and acidic glycosphingolipids in rat lens.

Rat lens was found to contain several neutral and acidic glycosphingolipids in lens epithelia, cortex and nucleus, and showed developmental changes in their content and localization. TLC-immunostaining of gangliosides revealed the enrichment of some ganglio-series gangliosides (GM3, GM1, GD3 and GD1b) in lens epithelia and the presence of GM3 and GD3 in the lens nucleus. Immunohistochemical studies confirmed the distribution of GM3 and GM1 in anterior lens epithelial cells and the cortex, with expression decreasing toward the lens nucleus. Immunoreaction to GD3 was more intense in the lens nucleus than in epithelial cells. In contrast, the expression of neolacto-series glycosphingolipids was restricted to the lens nucleus. In order to investigate the pathological changes of glycosphingolipids in cataract, galactose-induced cataractous lenses were examined. However, no significant changes were observed in the content and composition of glycosphingolipids. In addition, Lewisx epitopes found in human cataractous lenses were not detected in the cataractous lenses of galactosaemic rats and hereditary cataractous Emory mice.

Aging

Differential distribution of gangliosides in adult rat ovary during the oestrous cycle.

Gangliosides are ubiquitous membrane components in mammalian cells and are suggested to play important roles in various cell functions, such as cell-cell recognition, differentiation and transmembrane signalling. Rat ovary contained GM3, GD3 and GD1a as major gangliosides, and GM1 as a minor one. In order to study their distribution in the rat ovary and its possible changes during the oestrous cycle, frozen sections were stained with specific monoclonal antibodies against 11 ganglio-series gangliosides including those mentioned above. GM3, GM1 and GD1a were expressed in a spatio-temporally different manner during the oestrous cycle, but GD3 and other gangliosides were not immunohistochemically detected. In primary and secondary follicles, GM3, GM1 and GD1a were expressed in theca cells, but not in granulosa cells. The oocyte in primary, but not secondary, follicles was positive to the anti-GD1a antibody. In Graafian follicles, GM1 and GD1a were similarly expressed as in secondary follicles, however, the expression of GM3 spread gradually from theca cells to granulosa cells. In early Graafian follicles, only GM3 was expressed to a detectable extent from the outer part of the granulosa layer to the inner part. Shortly before ovulation, all granulosa cells and cumulus cells became positive to anti-GM3 antibody. After ovulation, differential distribution of GM3, GM1 and GD1a was also observed in luteal cells. GD1a was localized in thread-like structures, while GM3 was distributed throughout the cytoplasm, but not in the nucleus. GM1 was localized only in the plasma membrane and/or its close vicinity. Other ganglio-series gangliosides, including GD3, were not detected to an appreciable extent in the ovaries by immunohistochemistry.

Animals

A matched-pair longitudinal study on the relationship between maternal smoking and head circumference of newborns.

The relationship between maternal smoking and the head circumference of newborns were analyzed using a matched-pair longitudinal method. For the study, data was collected from Japanese primiparas in Aichi, Japan. Forty-seven smoking and nonsmoking mothers were matched using multivariate caliper matching for birth weight and gender for their newborns, and gestational period and age for the gravidas. Significantly smaller head circumferences of the newborns from the smoking mothers were observed.

Birth Weight

The delay method: a new surgical technique for enhancing the bone-binding capability of HAP implants to bone surrounding implant cavity preparations.

To confirm the efficacy of a new apatite-implantation technique, in vivo research was undertaken on 12 dogs. The project was designed to determine the time-dependent effects on alveolar tissues surrounding implant cavity preparations without implantation in bone. In addition, a group of hydroxyapatite (HAP) implants was placed immediately after cavity preparation (conventional method). A second group was placed after a delay of 2 weeks (delay method). Hemorrhagic infiltration occurred within the cavity and into the surrounding fatty marrow, a phenomenon attributed to cavity preparation. Subsequent to absorption of infiltrated blood cells into the surrounding marrow, fibrous tissue was formed, followed by osseous formation initiated by the original bone. Formation of newly formed, thin trabeculae reached a peak at 14 days. Most of the original marrow near the cavity, where few trabeculae were originally present, was transformed into thin trabecular-forming areas. In addition, sinusoidal capillaries and hematopoiesis were formed at the site. At 30 days, the number of new trabeculae and sinusoidal capillaries formed decreased, and adipose cells began to appear. These results indicate that tissue surrounding the prepared cavity was centrally activated at 14 days, and that this activation may be beneficial in the biologic ability of an apatite implant to advantageously affect bone binding and chemical bonding activity. It is concluded that bone formation was faster and wider around implants placed by the delay method than that surrounding conventionally placed implants. These results indicate that more efficient bone formation around implants was encouraged by bone activation stimulated during the 14 day delay period.

Animals

Comparative study of glycosphingolipid composition in mammalian lenses.

The carbohydrate epitope Gal alpha 1-3Gal-R (alpha-galactosyl epitope), which is detectable by its binding with Bandeiraea simplicifolia-IB4 lectin, was found in glycosphingolipids (GSLs), both neutral and acidic (gangliosides), from lens tissues of non-primate mammals, but not in those of human senile cataracts and Old World monkeys. Instead, human cataractous and Old World monkey non-cataractous lenses expressed Lewisx (Le(x)) epitopes (Gal beta 1-4(Fuc alpha 1-3)GlcNAc-R) in neutral GSLs. Sialylated Le(x) epitopes were found in rat and pig lenses as well as in human and Old World monkey lenses. Ganglio-series gangliosides, consisting mainly of GM3, GM1, GD1a and GD3, were detected in a species-specific fashion. On the other hand, alpha-galactosyl epitopes were expressed in lens tissues only in water-insoluble proteins of non-primate mammals, but Le(x) and sialylated Le(x) epitopes were not detectable in lens proteins. Among the several mammalian lenses examined, humans and Old World monkeys showed similar GSL compositions, in particular the presence of Le(x) and sialylated Le(x) epitopes and the absence of alpha-galactosyl epitopes, in lens tissue.

Aged

A histologic comparison of the functional loading capacity of an occluded dense apatite implant and the natural dentition.

A histologic comparison of the functional loading capacity of an occluded dense apatite implant and the natural dentition at a ratio of one implant to three natural teeth was carried out on six monkeys. Single implants were placed in the maxillary left second molar and mandibular right second molar of each monkey. Four months later, the vertical dimension of occlusion was raised at the contacting areas between the implant and the connected first, second, and third opposing molar teeth by placing metal crowns on them. The three connected molars gradually intruded over time, whereas the supporting bone of the mandibular and maxillary implants showed no abnormalities and was able to bear the load because of thickening and remodeling of the surrounding bone.

Alveolar Bone Loss

Glycosphingolipids in cultured lens epithelial cells from dog and rhesus monkey.

Vertebrate lens tissues contain several species of acidic and neutral glycosphingolipids in relatively high amounts. However, the epithelia with capsule from dog and rhesus monkey lenses had a simpler composition and lower content of glycosphingolipids than whole lenses. Gangliosides and neutral glycosphingolipids in monolayer cultures of lens epithelial cells were also different from those in whole lenses. Although alpha-galactosyl (Gal alpha 1-3Gal-R) or Lewis(x) (Gal beta 1-4[Fuc alpha 1-3]GlcNAc-R) epitopes were found in glycosphingolipids from whole lenses, they were not detected in those from monolayer cultures of dog and rhesus monkey lens cells. In addition, significant changes in ganglio-series gangliosides were induced in monolayer cultures of both cells, where GM3 and GD3 were predominant. Immunofluorescence study revealed a characteristic distribution of cell surface gangliosides in confluent monolayers. These findings suggest that glycosphingolipid synthesis in lens epithelia is intrinsically different from that in cortical and nuclear fibres, and that the expression of Lewis(x) and alpha-galactosyl epitopes in glycosphingolipids appears to be associated with the differentiation of epithelial cells to fibres.

Animals

Expression of highly polysialylated neural cell adhesion molecule in calcitonin-producing cells.

Calcitonin-producing cells are endocrine derivatives of the neural crest and have several neuron-like properties. Expression of the neural cell adhesion molecule in calcitonin-producing cells was examined using two types of antibodies to neural cell adhesion molecule: monoclonal antibody 12E3 recognizes the polysialic acid portion of highly polysialylated neural cell adhesion molecule, and monoclonal antibody AF11 and polyclonal antiserum react with the polypeptide portion common to three major isoforms of neural cell adhesion molecule. An immunohistochemical study revealed that highly polysialylated neural cell adhesion molecule was expressed both in fetal rat thyroidal calcitonin-producing cells and in a calcitonin-producing cell line, rMTC 6-23, established from explantable neoplasm of rat calcitonin-producing cells. The neural cell adhesion molecule in the rMTC 6-23 cells was further characterized by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and immunoblot analysis. Two anti-neural cell adhesion molecule monoclonal antibodies, 12E3 and AF11, revealed a broad positive band around 200,000-250,000 mol. wt in solubilized proteins. When the polysialic acids were eliminated by neuraminidase treatment, the immunoreactivity to monoclonal antibody 12E3 was completely abolished, and core polypeptide corresponding to neural cell adhesion molecule with a molecular weight of 120,000 was detected by monoclonal antibody AF11. These results suggest that cells of the calcitonin-producing cell line express on their surfaces highly polysialylated 120,000 mol. wt form of neural cell adhesion molecule polypeptide.

Animals

[Examination of confusion loci in acquired color vision deficiency with surface color].

Miscellaneous color vision tests were performed on 66 eyes in 46 acquired blue-yellow deficiency cases, in which the deficiency resembled congenital tritanopia. The confusion loci converged at a point on the short wavelength side of the spectrum in central chorioretinopathy, diabetic retinopathy, branch retinal vein occlusion, retinal pigmentary degeneration, and macular degeneration. However, the confusion loci of glaucoma differed from those of the other 5 diseases of the retina. They crossed the purple boundary, showing a unique tendency among the diseases exhibiting acquired blue-yellow deficiency. In these diseases, except in chorioretinopathy, no correlation was observed between visual acuity, visual field and color confusion.

Adult

Senile cataract-related accumulation of Lewis(x) glycolipid in human lens.

A glycosphingolipid that reacted positively to anti-stage-specific embryonic antigen-1 (SSEA-1) antiserum accumulated in human lens in association with aging and senile cataract formation. Since this antiserum recognizes Lewis(x) (Le(x)) structure, Gal beta 1-4(Fuc alpha 1-3)GlcNAc-, which is a typical tumor-associated and differentiation-related saccharide chain, the lens glycolipid was predicted to be a Lex antigen. The glycolipid purified from cataractous lens tissues was indeed a Lex glycolipid, Gal beta 1-4(Fuc alpha 1-3)GlcNAc beta 1-3Gal beta 1- 4Glc beta 1-1 ceramide. Enhanced expression of the Lex glycolipid may affect the organization of lens plasma membranes through Le(x)-Le(x) interactions, as suggested for compaction in mouse preimplantation embryos and embryonic teratocarcinomas, resulting in lens opacification, namely cataract.

Cataract

Neuronal ganglioside increases dependent on the neuron--glia interaction in primary culture.

Dissociated neuronal cells from rat embryonic hemispheres were cultivated on astroglial layers. The increase in ganglioside content of the cocultures was more rapid than that of neuronal cultures seeded on polylysine surfaces for the first 24 h, and the extent of the increase was greater 7 days after inoculation, probably because of interaction between the preformed astroglial layers and the neuronal cells in vitro. The promoted expression of the a-pathway gangliosides, GM1 and GD1a, was recognized by TLC and the increase in GM1 was immunologically ascertained. The incorporation of 3H-labeled N-acetyl-D-mannosamine into GD3 and b-series gangliosides was elevated for the first 24 h. However, cocultures in which there was no contact between neuronal cells and the astroglial sheet showed no appreciable increase in incorporation. Thus, cell surface changes were induced at the membrane glycolipid level in the neuronal cells by contact with astroglial layers. The synthesis and expression of neuronal gangliosides are discussed in relation to the onset of neuron--glia interaction.

Animals

Effect of colchicine on ganglioside composition of rat primary culture neurons.

Developmental changes in gangliosides in the course of neurite outgrowth were examined in dissociated fetal rat cerebral neurons in culture. About a 2-fold increase in ganglioside levels was seen with the progression of neurite formation for up to 24 h in predominantly neuronal cultures. Ganglioside patterns appeared to be unchanged during the first 24 h, subsequently consisted of higher amounts of GD3 and b-series gangliosides (such as GD1b, GT1b, and GQ1b), and lower amounts of a-series gangliosides (GM1 and GD1a). Although the addition of colchicine to the cell growth medium inhibited neurite outgrowth in developing neurons, little if any differences in ganglioside patterns were found between control and colchicine-treated cells. Ganglioside levels decreased slightly in colchicine-treated cells in agreement with the decrease in cell attachment to culture dishes. Although colchicine treatment 8 h after plating caused complete retraction of formed neurites, the ganglioside level of the cells continued to increase during the following 16-hour incubation. Thus, the data suggest that ganglioside synthesis in differentiating neurons does not primarily accompany the expansion in cell surfaces due to neurite formation, and raises the possibility that a large proportion of gangliosides is retained in intracellular compartments.

Animals

Lack of cell density-dependent changes in gangliosides of rat primary culture neurons.

Cell density-dependent changes in neuronal gangliosides, primarily relating to neurite outgrowth under dense to sparse conditions, were examined at cell seeding densities over an 8-fold range. During the first 24 h of incubation, the dissociated fetal rat neurons showed characteristic protrusion of neurites as a function of cell density. Ganglioside and protein contents per the same cell numbers were higher in dense cultures than sparse ones. However, the ganglioside pattern was essentially unchanged from dense to sparse culture, showing a predominance of GD3 and GT1b. The biosynthetic activity of gangliosides, as estimated by the incorporation of 3H-labeled N-acetyl-D-mannosamine, a precursor of sialic acid, was similar at various cell densities, with the labeling of b-series gangliosides predominating. The expression of neuronal gangliosides was monitored by indirect immunofluorescence using anti-GM1 antibody, but was found to be poor. A2B5 antigen, which was mainly identified as GT1b, appeared to be readily expressed on cell surfaces in sparse cultures. In contrast, the highly polysialylated form of the neural cell adhesion molecule (NCAM-H) was fully expressed on both the neurites and cell soma at various cell densities. The results suggest that the polysialic acids in NCAM have more important roles in neurite outgrowth than gangliosides, since the composition and synthesis of gangliosides are not affected by cell seeding density.

Animals

Developmental change in ganglioside expression in primary culture of rat neurons.

Developmental changes in ganglioside levels and patterns were investigated in neuronal cells dissociated from 17-day-old fetal rat hemispheres for up to 7 days of culture. Increases in ganglioside contents and the onset of GM3 synthesis, which is associated with proliferation of glial cells, were observed as the neuronal network was established in cell cultures. The distribution of gangliosides in developing neurons was monitored by the indirect immunofluorescent technique using three anti-ganglioside antibodies. Anti-GM1 antibody showed immunofluorescence only on the cell soma 1 and 3 days after plating and additional binding between cell aggregates by 7 days in culture. GD3 ganglioside, the predominant species in embryonic neurons, was not detected on the neuronal cell surface, whereas the number of positively stained non-neuronal cells was increased at 7 days. Monoclonal A2B5 antibody suggested that polysialogangliosides play a role in neuronal network formation. In 1-day-old culture, however, all antibodies bound poorly to cell surface antigens and strongly to cells, the membranes of which were permeabilized with acetone. These results suggest that a substantial amount of gangliosides are retained, transformed within the cell to more complex gangliosides, and translocated to the cell surface following neurite outgrowth and morphological changes.

Animals

Age-dependent changes in monkey lenticular gangliosides.

The content, composition, and distribution of gangliosides were examined in the lenses of normal rhesus monkeys aged 6-16 years. Gangliosides were isolated by organic solvent extraction. DEAE-Sephadex ion-exchange column chromatography, and thin-layer chromatography (TLC). Ganglioside contents determined by the thiobarbituric acid method increased in the lens with aging. TLC analysis of gangliosides showed a much more complex pattern with aging, and the predominant gangliosides were tentatively identified as GM3, GM1, and GD1a. Individual lenticular gangliosides were identified by TLC-immunostaining procedures using anti-GM1 and anti-asialoGM1 antisera.

Aging