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Y Nishimura

Publications and source records attributed to Y Nishimura.

At least 1,045 records · Page 58Linked to original sources

[Clinical results of radiofrequency capacitive hyperthermia in deep-seated tumors].

The advantages of deep radiofrequency (RF) capacitive heating are its applicability to various anatomical sites and negligible systemic effects. The disadvantages are on the other hand, that its primary usefulness is limited to patients with thin subcutaneous fat and with large or hypovascular tumors. Clinical benefits of RF hyperthermia combined with radiotherapy are strongly suggested for deep-seated tumors. Intratumor low density areas on post-treatment CT and histopathological examinations are considered important parameters to assess the tumor response to thermoradiotherapy.

Abdominal Neoplasms↗

Localization of gamma-aminobutyric acid and glutamic acid decarboxylase in rhesus monkey retina.

Use of antisera directed against gamma-aminobutyric acid (GABA) and L-glutamic acid decarboxylase (GAD) in the retina of rhesus monkey reveals immunoreactivity in about one-third of amacrine and horizontal cells and in a subclass of cells situated within the ganglion cell layer. Within the inner plexiform layer neuronal processes form 3 heavily immunoreactive bands which alternate with two lightly reactive bands. Further, a dense narrow band of staining was observed in the scleral half of the outer plexiform layer. Müller cells and their processes are stained with anti-GABA but not with anti-GAD, suggesting that these glial cells take up, but do not synthesize GABA.

Animals↗

Development of the rhesus monkey retina. I. Emergence of the inner plexiform layer and its synapses.

The emergence and differentiation of the inner plexiform layer (IPL) and the establishment of its synapses were analyzed in retinae of 18 rhesus monkeys ranging in age from the 55th embryonic day (E55) to 10 years. The IPL becomes recognizable by E65 as a thin acellular zone consisting of immature neurites and growth cones scattered within large extracellular spaces. In each specimen, apposing paired membrane specializations were classified as junctions without synaptic vesicles, conventional synapses, ribbon synapses, or gap junctions. Initially, at E65, the IPL consists of variety of immature cell processes that are interconnected exclusively by junctions without synaptic vesicles, at a density of 4.7/100 microns2. By E73, the IPL becomes more distinct and wider and contains 7.8 such junctions/100 microns2. Conventional synapses develop by the addition of vesicles to initially vesicle-free junctions. The first conventional synapses appear at E78. They increase in density from 1.5 to 3.2/100 microns2 between E78 and E84 and reach a density of 7.9/100 microns2 by E99. A rapid burst in synaptogenesis occurs in the IPL between E99 and E114; a density of 16.5/100 microns2 is reached, mainly due to accretion of conventional synapses. Ribbon synapses first become recognizable at E99, almost 3 weeks after the emergence of conventional synapses. By E114 they account for about 7% of all synaptic contacts in the IPL. The rate of synaptogenesis slows down during the last quarter of gestation; the adult level of about 24 contacts/100 microns2 is reached between E130 and E149. Of these, 72.2% are of conventional type, 15.4% are ribbon synapses, and 12.4% are junctions without vesicles. However, in the adult the density of junction without vesicles is only about one-half that found at E149. Gap junctions are absent during the initial and rapid phases of synaptogenesis; they appear abruptly, between E130 and E149, only after the density of chemical synapses in the IPL has reached the adult level. In the rhesus monkey, synaptogenesis begins several weeks later in the IPL than in its primary targets--the dorsal lateral geniculate nucleus and the superior colliculus (Hendrickson and Rakic, '77; Cooper and Rakic, '83). However, the rapid increase in density of conventional synapses in the IPL coincides with the segregation of retinal projections from right and left eyes in the geniculate nucleus (Rakic, '76) and with the elimination of the large surplus of retinal ganglion cell axons (Rakic and Reley, '83).

Animals↗

Resonance Raman study of cytochrome b562-o complex, a terminal oxidase of Escherichia coli in its ferric, ferrous, and CO-ligated states.

Cytochrome b562-o complex, a terminal oxidase in the respiratory chain of aerobically grown Escherichia coli, has been studied by resonance Raman spectroscopy in its air-oxidized, dithionite-reduced, and reduced and CO-ligated states. In the reduced state, with a 406.7-nm excitation, there appeared 1494 and 1473 cm-1 lines, indicating that low spin and high spin components are included in the cytochrome b562-o complex. For the air-oxidized protein, resonance Raman lines were observed at 1372, 1503, and 1580 cm-1 with a 413.1-nm excitation, indicating that there is a ferric low spin heme. In addition, a weak but appreciable Raman line was observed at 1480 cm-1 assignable to a ferric high spin heme. Accordingly, it was concluded that low spin and high spin components are included in the cytochrome b562-o complex in the reduced and the air-oxidized states. In the CO-ligated state, with a defocused laser beam of 413.1 nm, two Raman bands assignable to the Fe-CO stretching mode have been observed at 489 and 523 cm-1, as a major and a minor component, respectively. When the laser beam was focused upon the sample to cause a photodissociation of CO from the heme moiety, the intensity of the major band at 489 cm-1 was reduced as expected. On the other hand, the minor band at 523 cm-1 remained still obvious. It was suggested that the cytochrome b562-o complex may have an additional anomalous site for CO that is resistant to photodissociation.

Carbon Monoxide↗

Increased stability of the higher order structure of chicken erythrocyte chromatin: nanosecond anisotropy studies of intercalated ethidium.

Internal motion of the DNA in chicken erythrocyte chromatin fibers was studied by measurement of the fluorescence anisotropy decay of ethidium intercalated in the linker region. A comparison of the decay curves of the dye in chicken erythrocyte chromatin with those of calf thymus chromatin [Ashikawa, I., Kinosita, K., Jr., Ikegami, A., Nishimura, Y., Tsuboi, M., Watanabe, K., Iso, K., & Nakano, T. (1983) Biochemistry 22, 6018-6026] revealed greater suppression of nucleosome movement in chicken erythrocyte chromatin. Furthermore, the transition of this chromatin to the compact (solenoidal) structure occurred at lower solvent concentrations of Na+ or Mg2+ than those for calf thymus chromatin. These results demonstrated increased stability of the higher order structure (the solenoid) of chicken erythrocyte chromatin, which may be related to the reduction of nuclear activity in the chicken erythrocyte cell. In addition to intact chicken erythrocyte chromatin, we studied the structural transitions of H1-depleted and H1,H5-depleted chromatins. The result indicated that histone H5 of this chromatin stabilizes the higher order structure in the presence of magnesium (or divalent) cation and did not induce the transition in the solution containing only sodium cation.

Animals↗

The resonance Raman frequencies of the Fe-CO stretching and bending modes in the CO complex of cytochrome P-450cam.

Resonance Raman spectra of the ferrous CO complex of cytochrome P-450cam have been observed both in its camphor-bound and free states. Upon excitation at 457.9 nm, near the absorption maximum of the Soret band, the ferrous CO complex of the camphor-bound enzyme showed an anomalously intense Raman line at 481 cm-1 besides the strong Raman lines at 1366 and 674 cm-1 for the porphyrin vibrations. The Raman line at 481 cm-1 (of the 12C16O complex) shifted to 478 cm-1 upon the substitution by 13C16O and to 473 cm-1 by 12C18O without any detectable shift in porphyrin Raman lines. This shows that the line at 481 cm-1 is assignable to Fe-CO stretching vibration. By the excitation at 457.9 nm, a weak Raman line was also observed at 558 cm-1, which was assigned to the Fe-C-O bending vibration, because it was found to shift by -14 cm-1 on 13C16O substitution while only -3 cm-1 on 12C18O substitution. These stretching and bending vibrations of the Fe-CO bond were not detected with the excitation at 413.1 nm, though the porphyrin Raman lines at 1366 and 674 cm-1 were clearly observed. When the substrate, camphor, was removed from the enzyme, the Fe-CO stretching vibration was found to shift to 464 cm-1 from 481 cm-1, while no detectable changes were found in porphyrin Raman lines. This means that the bound substrate interacts predominantly with the Fe-CO portion of the enzyme molecule.

Camphor↗

The solvent action of sodium hypochlorite on bovine tendon collagen, bovine pulp, and bovine gingiva.

The purpose of this study was to determine the optimum temperature and concentration of sodium hypochlorite solution required to dissolve bovine tendon collagen, pulp, and gingiva. The 10% concentration of sodium hypochlorite solution at 37 degrees C was found to be most effective in dissolving bovine tendon collagen, pulp, and gingiva. Sodium hypochlorite solution was more effective in dissolving bovine pulp or tendon collagen than in dissolving bovine gingiva.

Animals↗

Sequence dependent DNA conformations: Raman spectroscopic studies and a model of action of restriction enzymes.

Raman spectra have been examined to clarify the polymorphic forms of DNA, A, B, and Z forms. From an analysis we found that the guanine ring breathing vibration is sensitive to its local conformation. Examination of nine crystals of guanosine residues in which the local conformations are well established revealed that a guanosine residue with a C3'endo-anti gives a strong line at 666 +/- 2 cm-1, O4'endo-anti at 682 cm-1, C1'exo-anti at 673 cm-1, C2'endo-anti at 677 cm-1 and syn-forms around 625 cm-1. Using this characteristic line, we were able to obtain the local conformations of guanosine moieties in poly(dG-dC). Such a sequence derived variation is suggested to be recognized by sequence specific proteins such as restriction enzymes. We found a correlation between sequence dependent DNA conformation and a mode of action of restriction enzymes. The cutting mode of restriction enzymes is classified into three groups. The classification of whether the products have blunt ends, two-base-long cohesive ends, or four-base-long cohesive ends depends primarily on the substrate, not on the enzyme. It is suggested that sequence dependent DNA conformation causes such a classification by the use of the Calladine-Dickerson analysis. In the recognition of restriction enzymes, the methyl group in a certain sequence is considered to play an important role by changing the local conformation of DNA.

Base Sequence↗

A cloned human immunoglobulin heavy chain gene with a novel direct-repeat sequence in 5' flanking region.

A rearranged human immunoglobulin gamma 1 heavy-chain gene (HIG1) was cloned from a human plasma cell leukemia cell line, ARH-77. The cloned gene possessed a unique direct repeat sequence of 84 bp in the 5' flanking region as well as an enhancer-like element in the JH-C gamma 1 intron. The latter sequence is located 1 kb downstream of 3' end of the J6 exon. The direct-repeat sequence in the 5'-flanking region contained a core-like sequence resembling that of viral enhancer elements. It is located in the intron between two leader exons. P1 nuclease mapping and exonuclease VII digestion experiments showed that most of the direct repeats are noncoding regions and spliced out from the transcript. These data suggested that HIG1 gene might have two kinds of enhancer-like elements at both sides of the V region gene. HIG1 gene has been introduced by the protoplast fusion into mouse myeloma cells (NSI and J558L cells) and mouse fibroblasts. A pSV2gpt vector containing HIG1 gene (pSV2-HIG1) was used to transform the cells. The amounts of mRNA synthesized in the transformed cells were at least 50 to 100 times larger than those in ARH-77 cells, although about one copy of HIG1 gene was present in DNA of a transformed cell. HIG1 gene was not expressed in fibroblasts, indicating that the enhancer of HIG1 gene acts in a tissue-specific manner but not in a species-specific one. The role of two kinds of enhancer-like elements in HIG1 gene is discussed in connection with the high-level expression of this gene in mouse myeloma cells.

Animals↗

Cholesteatoma auris congenita arising from microtia.

The external auditory canal opens medial to lateral in embryonal development. It is obvious that a developmental arrest anywhere during this stage would produce an absence or discontinuity of the canal, that is, congenital atretic ear. Whether or not the obliterative tissue has a bony structure, cholesteatoma can be formed behind it. Microtia is usually associated with an atretic meatus, and it may involve the possibility of epithelial cyst or cholesteatoma. The diagnosis can usually be made by the finding of tender swelling in the deformed auricle or its surroundings. On occasions, it may become necessary to distinguish these conditions from secondary infection of an epidermal cyst on the auricular surface. Several recurrent painful swellings on the deformed auricle in spite of conservative treatment indicate the need for routine otologic radiographs.

Adolescent↗

Localization of Polyvinyl Alcohol Oxidase Produced by a Bacterial Symbiont, Pseudomonas sp. Strain VM15C.

An axenic culture of a polyvinyl alcohol (PVA)-degrading symbiont, Pseudomonas sp. strain VM15C, was established on PVA with a crude preparation of the growth factor (factor A) produced by the symbiotic partner Pseudomonas putida VM15A. An increase of factor A in the culture medium enhanced the cell-associated PVA oxidase activity as well as the growth rate, but decreased production of extracellular PVA oxidase. PVA oxidase in cells grown on PVA was present in the periplasmic space at a higher ratio than in cells grown on peptone. PVA degradation occurred rapidly with washed cells. PVA was also degraded by immobilized cells entrapped in agar gels.

Journal Article↗