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K Ohsugi

Publications and source records attributed to K Ohsugi.

25 records · Page 2Linked to original sources

Synthetic retinoids, retinobenzoic acids, Am80, Am580 and Ch55 regulate morphogenesis in chick limb bud.

The retinobenzoic acids Am80, Am580 and Ch55 are synthetic stable analogs of retinoic acid (RA), and show very strong differentiation-inducing activity in human myelogeneous leukemia cell line HL-60. To examine the effects of these synthetic retinoids on limb pattern formation, AG1-X2 beads containing these retinoids were applied to the anterior margin of stage 19-20 chick wing buds. By implanting the beads with 1 microgram/ml retinoids, normal wings were formed and extra digits 2 or 32 were rarely formed. As the retinoid concentrations increased from 10 micrograms/ml to 100 micrograms/ml duplicated limbs 3234, 43234, 432234, 4334 were progressively produced. At higher concentrations, 1 mg/ml, the wings often truncated, although duplication occurred in some embryos. These synthetic analogs seem to have the same degree of morphogenetic potential as RA, since the activity index of these retinoids was similar to that of RA. Since these synthetic retinoids hardly bind to CRABP (cellular retinoic acid-binding protein), it may be possible that the retinoids and RA may affect limb-pattern formation without the interaction with CRABP. It is known that limb buds cannot develop distal structures when the posterior region including all ZPA (zone of polarizing activity) is removed. When beads containing the above mentioned retinoids were implanted to the anterior margin of wing buds from which the posterior one third region including all ZPA had been removed, distal growth of the wing buds and the formation of digit elements were observed. Some of the wing buds produced a completely reverse digit pattern 432. From these results, we discussed the roles of RA in limb development and pattern formation.

Animals↗

Magnesium concentration in brains from multiple sclerosis patients.

Magnesium (Mg) concentrations were studied in the brains of 4 patients with definite multiple sclerosis (MS) and 5 controls. The magnesium contents were determined by inductively coupled plasma emission spectrometry in autopsy samples taken from 26 sites of central nervous system tissues, and visceral organs such as liver, spleen, kidney, heart and lung. The average Mg content in the CNS tissues, as well as visceral organs except for spleen, of MS patients showed a significantly lower value than that seen in control cases. The most marked reduction of Mg content was observed in CNS white matter including demyelinated plaques of MS samples. Whether or not these significantly lower Mg contents found in CNS and visceral organs of MS patients may play an essential role in the demyelinating process remain unclear, requiring further studies on MS pathogenesis from the point of metal metabolism.

Adult↗

Temporal and spatial expression of a position specific antigen, AV-1, in chick limb buds.

In a previous study, we demonstrated the presence of a position-specific antigen (AV-1) in chick limb buds at an early developmental stage. Here, we reported the temporal and spatial expressions and the biochemical characterization of the AV-1 antigen. Indirect immunofluorescence staining and immunoblot analysis clearly showed that the AV-1 antigen is a glycoprotein that is localized on the plasma membrane and that it is expressed from stage 19 and highly expressed at stages 22-26 in some middle-distal to anterior-distal region of limb buds. In the wing bud, at stage 28, the AV-1 antigen was faintly detected in the restricted space between the precartilaginous regions of the radius and the ulna, and those of the metacarpals 2 and 3, but not those of the metacarpals 3 and 4. Such stage-specific and "position-specific" expressions of the AV-1 antigen in limb buds strongly suggest that the AV-1 antigen or cells containing it are involved in determination of the limb pattern formation.

Age Factors↗

Lack of change in indoleamine metabolism in spinal cord of patients with amyotrophic lateral sclerosis.

Indoleamine metabolism was determined by high-performance liquid chromatography with electrochemical detection in the cervical spinal cord of patients with amyotrophic lateral sclerosis (ALS) and controls with non-neurological diseases. The concentrations of 5-hydroxytryptamine (5-HT) and 5-hydroxyindoleacetic acid (5-HIAA) were the highest in the ventral horn compared with other regions of the spinal cord both in ALS and controls. There was no significant change in the concentration of 5-HT in any region of the spinal cord between ALS and controls. In addition, the concentration of 5-HIAA in ALS was lower than that in controls, however, no statistical significance was observed.

Adult↗

Serotonin metabolism in the CNS in cerebellar ataxic mice.

The metabolism of 5-hydroxytryptamine (5-HT) in the CNS was investigated in four kinds of morphologically different ataxic mice; reeler, staggerer, weaver and Purkinje cell degeneration mutants, and in hypocerebellar mice experimentally produced by injection of cytosine arabinoside. 5-HT and 5-hydroxyidoleacetic acid concentrations and tryptophan hydroxylase (TrpOH) activity were measured in the cerebrum, cerebellum and brain stem, respectively. TrpOH activity was significantly reduced only in the reeler mouse. The enhancements of the cerebellar 5-HT metabolism observed in the ataxic mice other than the reeler were supposed to be pseudo-enhancements subsequent to the cerebellar hypoplasia.

Animals↗

Position specific binding of a monoclonal antibody in chick limb buds.

To analyze the molecular mechanism of the limb pattern formation, we have tried to make monoclonal antibodies against antigens from chick limb buds. We obtained one antibody named AV-1 which recognized a specific region of chick limb buds. AV-1 reacted with the distal portion of the anteroventral mesoderm of only developmentally early chick limb buds. Grafts of ZPA region tissue to an anterior site in an embryonic chick wing bud resulted in mirror-image dupliction of the AV-1 antigen region. These data show the possibility that this antigen plays some role in the limb pattern formation. This is the first evidence that a position specific substance really exists in developmentally early limb buds in which the pattern has been considered to be unspecified.

Age Factors↗

Melanophore differentiation in Xenopus laevis, with special reference to dorsoventral pigment pattern formation.

During the development of Xenopus laevis, after stage 26, a large number of dopa-positive cells were observed in the ventral region. Electron microscopic observations revealed that these cells became localized in the epidermal layer and contained premelanosomes. In cultured ventral skin, fully matured melanophores appeared. These results strongly suggest that a large number of melanoblasts are present in the ventral epidermis and remain there without final differentiation into melanized melanophores. Thus the positional difference of melanoblasts differentiation mainly contributes to dorsoventral pigment pattern formation of Xenopus laevis.

Animals↗