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Biomedical subjects

M Morimoto

Publications and source records attributed to M Morimoto.

At least 145 records · Page 8Linked to original sources

Substitution of an aspartic acid results in constitutive activation of c-kit receptor tyrosine kinase in a rat tumor mast cell line RBL-2H3.

The c-kit protooncogene encodes a receptor tyrosine kinase that mediates signals required for differentiation, proliferation and survival of mast cells. We have already shown the constitutive activation of c-kit receptor tyrosine kinase (KIT) in a human mast cell leukemia line (HMC-1) and a murine mastocytoma cell line (P-815). We here examined whether such constitutive activation of KIT occurred in the rat tumor mast cell line RBL-2H3 as well, which is frequently used as a tool for studying functions of mast cells. In RBL-2H3 cells, KIT was constitutively phosphorylated on tyrosine and activated in the absence of autocrine production of its ligand, stem cell factor (SCF). Sequencing analysis revealed that one of c-kit genes of RBL-2H3 cells had a point mutation, resulting in amino acid substitution of Tyr for Asp in codon 817. When rat wild-type c-kit cDNA and mutant-type c-kit cDNA encoding KITTyr817 were transfected into cells of a human embryonic kidney cell line (293T), only mutant form KITTyr817 was constitutively phosphorylated on tyrosine and activated in the absence of SCF. Since mutations at the same Asp codon constitutively activated KIT in all the human HMC-1, murine P-815, and rat RBL-2H3 cell lines, and since the incorporation of antisense oligonucleotides of c-kit messenger RNA significantly suppressed the proliferation of RBL-2H3 cells, the activating mutations in the Asp codon of the c-kit gene appeared to be involved in neoplastic growth of mast cells.

Amino Acid Sequence↗

In vitro reactions of coelomocytes against sheep red blood cells in the solitary ascidian Halocynthia roretzi.

Coelomocytes (blood cells) of the solitary ascidian Halocynthia roretzi were placed in culture to which sheep red blood cells (SRBCs) were introduced. Their reactions against SRBCs were observed by phase-contrast, time-lapse video and scanning electron microscopy. Three cell types, the phago-amoebocyte, the vacuolated cell and the fusogenic phagocyte, reacted to the SRBCs by phagocytosis. The vacuolated cell occasionally discharged the material of their vacuoles at the time of or shortly after ingesting the SRBC. The lymphoid cell captured SRBCs, but did not ingest them. Three other cell types, the fibroblastic cell, the giant cell and the multipolar cell, showed no reaction to the SRBC. The SRBCs captured by the lymphoid cells were transferred either to phago-amoebocytes or fusogenic phagocytes, probably to be ingested. Such collaboration between multifunctional cell is considered to characterize the cellular defense mechanism of H. roretzi.

Animals↗

[Use of Finapres during warming for postoperative patients].

We used Finapres during rewarming after extracorporeal circulation in 16 patients who underwent cardiac surgery. In patients with passive rewarming there were no differences in blood pressure measured with a Finapres and that by an invasive monitor. On the other hand, in patients rewarmed with the aid of nitroglycerin, there were statistically significant differences between blood pressures measured with indirect and direct methods.

Aged↗

Inhibition of attachment between cultured mast cells and fibroblasts by phorbol 12-myristate 13-acetate and stem cell factor.

Cultured mast cells (CMC) derived from the bone marrow of mice express the receptor encoded by the W (c-kit) locus (W receptor), and the WCB6F1(+/+)-3T3 fibroblasts express the ligand encoded by the Sl locus (stem cell factor [SCF]). CMC attach to the fibroblasts through the W receptors and cell-bound SCF. We investigated the effect of phorbol 12-myristate 13-acetate (PMA) and recombinant murine SCF (rmSCF) on the attachment. PMA induced both the internalization and shedding of W receptors, whereas rmSCF induced only the internalization. Moreover, both PMA and rmSCF reduced the expression of c-kit mRNA levels in CMC. Addition of either PMA or rmSCF to the coculture of CMC and fibroblasts resulted in the inhibition of attachment. Since the magnitude of the attachment between CMC and fibroblasts may be manipulated by changing the doses of either PMA or rmSCF, the present experimental system may be useful as a model for the attachment between blood cells and stromal cells.

3T3 Cells↗

Three-dimensional analysis of the intrinsic cardiac ganglia in a young dog.

The intrinsic ganglia of the heart of a young dog were studied by computer graphic reconstruction to determine the accurate location. The heart was embedded in celloidin, and transverse sections were cut. Using every third 60 microns section, a series of 49 sections was mapped. Three-dimensional (3D) images were constructed by a personal computer. Numerous intrinsic ganglia, most of which were located in the epicardiun, were observed. The intrinsic ganglia were found in the base of the aorta and pulmonary vessels and from the base of the superior vena cava to the right atrium, i.e., the sinoatrial nodal region. Using the 3D reconstruction technique, the locations of the intrinsic ganglia could be accurately identified. Furthermore, it was demonstrated that these ganglia formed several groups which formed a continuity. This study suggested that it was necessary to consider the existence of the numerous intrinsic ganglia, when we studied the cardiac innervation.

Animals↗

Modulation of experimental alcohol-induced liver disease by cytochrome P450 2E1 inhibitors.

This study was done to determine if a relationship exists between CYP2E1 induction by ethanol, lipid peroxidation, and liver pathology in experimental alcohol-induced liver disease in the rat. Rats were fed ethanol with or without diallyl sulfide (DAS) or phenethyl isothiocyanate (PIC) intragastrically for 1 month. CYP2E1 induction by ethanol was correlated with lipid peroxidation, liver microsomal CYP2E1 hydroxylation of paranitrophenol, and the liver pathology score using the data from the PIC-fed rats. Some of the data from the ethanol and DAS-fed rats were not included here because they have been reported elsewhere. Microsomal CYP2E1 protein levels induction by ethanol was decreased by PIC ingestion. Similarly, PIC reduced the increase microsomal reduced form of nicotinamide-adenine dinucleotide (NADPH)-dependent lipid peroxidation and p-nitrophenol hydroxylase (PNPH) activity, induced by ethanol feeding. The lipid peroxidation was reduced to below control levels; however, the pathology score was partially but not significantly reduced by isothiocyanate feeding. CYP2E1 messenger RNA (mRNA) was decreased by both inhibitors of CYP2E1. Immunohistochemical staining of liver for CYP2E1 protein showed that the lobular distribution of the isozyme changed from the centrilobular to a diffuse pattern, with an increase in the periportal region when the CYP2E1 inhibitors were fed with ethanol, and that this change correlated with the change in the distribution of fat in the lobule. The data support the idea that there is a link between CYP2E1 induction by ethanol and the early phase of ethanol-induced liver injury in this rat model. This link may involve lipid peroxidation, but other factors related to CYP2E1 induction must also be involved.

Administration, Oral↗

Difinite-sequenced oligonucleotides shackled with tetraphenylporphyrin: syntheses and properties.

Oligonucleotides shackled with tetraphenylporphyrin at internucleotide phosphodiester linkage were synthesized and their properties were investigated. The derivatives can hybridize with the complementary oligonucleotide completely. Introduction of porphyrin into the oligonucleotide has little effect on the helix structure and hybridization entirely changes the electronic environment of the porphyrin moiety. Therefore, it is expected that the derivatives locate the photoactive phosphorus(V)porphyrin moiety in close proximity to the target site of DNA.

Base Sequence↗

Synthesis and antitumor activity of novel mitomycin derivatives containing functional groups at the C-6-methyl position.

A series of C-6-substituted methyl mitomycins was synthesized and evaluated for anticellular and antitumor activities. These novel compounds were prepared by Michael addition of various alcohols or thiols to 6-demethyl-7,7-(ethylenedioxy)-6,7-dihydro-6-methylidenemitosanes followed by treatment with NH3 or MeOH/K2CO3. Most compounds were potent against HeLa S3, and some of them showed superior activity to that of mitomycin C (MMC) against P388 leukemia and sarcoma 180 in mice. In addition, some compounds exhibited remarkable activity against MMC-resistant P388 in mice. FAB-MS spectra of these mitomycin derivatives showed the elimination of the C-6-methyl substituents from the mitomycin skeletons to form quinonemethides. Interestingly, treatment of 6-demethyl-6-[[(2-pyrimidinyl)thio]methyl ]mitomycin C (12v) with diethylamine afforded 6-demethyl-6-[(diethylamino)methyl]mitomycin C (31) in good yield. These results suggested that the C-6-substituted methyl mitomycins would have different biological character from that of MMC.

Animals↗

Synthesis and antitumor activity of novel 6-alkyl-6-demethylmitomycins.

A series of 6-alkyl-6-demethylmitomycins (1-5) was synthesized and evaluated for anticellular and antitumor activities. These novel compounds were prepared by Michael addition of various carbanion species to 6-demethyl-7, 7-(ethylenedioxy)-6, 7-dihydro-6-methylidenemitosane (6 and 9) followed by treatment with NH3 or MeOH/K2CO3. Alkylation at the C-6 position of 6-demethyl-6-selenide (7) was also useful for the alternative synthesis of 6-alkyl-6-demethylmitomycins. The antitumor activity of these derivatives was evaluated, and 6-demethyl-6-ethylmitomycin A (2a) was found to exhibit excellent activity against S-180 solid tumor in mice. The structure-activity relationship is also discussed.

Animals↗

Ligand-independent activation of c-kit receptor tyrosine kinase in a murine mastocytoma cell line P-815 generated by a point mutation.

The c-kit proto-oncogene encodes a receptor tyrosine kinase that is known to play a crucial role in hematopoiesis, especially in mast cell growth and differentiation. Although a number of dominant loss-of-function mutations of c-kit gene have been well characterized in mice, rats, and humans, little is known about the c-kit mutations contributing to ligand-independent activation of the c-kit receptor tyrosine kinase (KIT). In a murine mastocytoma cell line, P-815, KIT has been found to be constitutively phosphorylated on tyrosine and activated in a ligand-independent manner. Sequencing of the whole coding region of c-kit cDNA showed that c-kit cDNA of P-815 cells carries a point mutation in codon 814, resulting in amino acid substitution of Tyr for Asp. Murine wild-type c-kit cDNA and mutant-type c-kit cDNA encoding Tyr in codon 814 were expressed in cells of a human embryonic kidney cell line, 293T. In the transfected cells, mutant-form KITTyr814 was strikingly phosphorylated on tyrosine and activated in immune complex kinase reaction regardless of stimulation with a ligand for KIT (stem cell factor), whereas tyrosine phosphorylation and activation was barely detectable in wild-form KIT. The data presented here provide evidence for a novel activating mutation of c-kit gene that might be involved in neoplastic growth or oncogenesis of some cell types, including mast cells.

Amino Acid Sequence↗

The effects of NGF and glucocorticoid on the cytological features of rat chromaffin cells in vitro.

We investigated the effects of nerve growth factor (NGF) and glucocorticoid on the differentiation of rat chromaffin cells during development (postnatal day 0, 5, 10, 15, 25) in vitro, by evaluating four parameters of cytological alterations; the percentage of process-bearing cells, the number of primary processes, the number of branches per cell and the total length of processes. Cultures of dissociated chromaffin cells from each developmental stage were maintained in medium containing a combination of NGF and/or the synthetic glucocorticoid, dexamethasone (DEX). All parameters for neuronal differentiation were highest in chromaffin cells from P0 animals when incubated in NGF(+)/DEX(-), but lowest in those from animals at P25 incubated in NGF(-)/DEX(+). In addition, chromaffin cells became progressively insensitive to the effects of NGF on cytological differentiation from P0 to P25. These results suggest that as development proceeds locally-derived factors become less potent on chromaffin cell differentiation.

Animals↗

6H-pyrazolo[4,5,1-de]acridin-6-ones as a novel class of antitumor agents. Synthesis and biological activity.

The 7-substituted 6H-pyrazolo[4,5,1-de]acridin-6-ones with (aminoalkyl)amino and/or (hydroxyalkyl)amino groups in the side chains were synthesized by bromination using N-bromosuccinimide and the subsequent reaction with amines from the 7-substituted 5-bromo-2-methyl-6H-pyrazolo-[4,5,1-de]acridin-6-one. The substitution reaction of the amines with alkyl bromide (the C2 position) and aryl bromide (the C5 position) was accomplished by choosing the proper reaction conditions. These compounds show DNA intercalating ability in ethidium fluorescence assay and antiproliferative activity against Hela S3 cells. Impressive antitumor activity in vivo against murine P388 leukemia and murine sarcoma 180 solid tumor in mice was demonstrated for the 7-hydroxy analogs. In addition, some of these showed excellent antitumor activity against adriamycin-resistant murine P388 leukemia (P388/ADM) in mice.

Aminoacridines↗

Steroid hormone effects on gene expression, neuronal structure, and differentiation.

Steroid hormones modify several functions of the nervous system by altering expression of particular genes that are relevant for cell-to-cell communication, neuronal structure, and differentiation. There are many regions of the brain showing structural differences between male and female. These sexual dimorphisms are primarily based on cytological features of the nervous system brought about by the organizational action of sex steroid hormones. Glucocorticoids also have a great influence on neuronal survival and differentiation. First, in this paper the estrogen effect on the phenotypic changes of neurons in the preoptic area in vivo was described, particularly in the neuronal system of methionine-enkephalin and calcitonin gene-related peptide. Second, the tissue culture system for the preoptic area was developed and the estrogen effect on process extension associated with cytoskeletal changes was examined. Third, glucocorticoid suppression of the differentiation of adrenal chromaffin cells and transmitter/neuropeptide plasticity was studied in the dissociated culture system. The results suggest that steroids modulate neurotransmitters and neuropeptides expression along with the alteration of cell structures in a different manner in a tissue-specific pattern.

Androgens↗

Venous malformation in the posterior fossa: guidelines for treatment.

Venous malformations in the posterior fossa are relatively rare. Although the introduction of CT and MRI has made them easier to detect, their treatment is still controversial. Based on our experience with six patients and a review of the literature, we have tried to establish guidelines for their treatment. Since they have a benign natural course and may provide venous drainage in the posterior fossa, venous malformation found incidentally, unruptured venous malformation with nonhaemorrhagic complications, and those accompanied by small intracerebellar haematoma of less than 2 cm in diameter due to their rupture, should be treated conservatively unless they are associated with a coexistent malformation. Venous malformation with intracerebellar haematoma larger than 3 cm or reexpansion of the haematoma due to rebleeding should be treated surgically by evacuation of the haematoma. Resection of venous malformations in the posterior fossa should be restricted to cases in which the malformation is small and does not serve as a functional venous drainage route. Radiation therapy, including the "gamma-knife", may be a treatment of choice in the future.

Adult↗

Neural projections from the frontal cortex to the oculomotor nucleus: an anatomical study using retrograde axonal, anterograde axonal and transneuronal transport of wheat germ agglutinin-conjugated horseradish peroxidase in cats.

Neural projections from the frontal cerebral cortex to the oculomotor nucleus (3N) were investigated in 1- to 2-year-old cats by retrograde and anterograde axonal and transneuronal transport of wheat germ agglutinin-conjugated horseradish peroxidase (WGA-HRP). Following injection of WGA-HRP into the 3N area and its surrounding tissues, retrogradely labeled cells were observed in the anterior sigmoid gyrus, ventral bank of the cruciate sulcus, medial and lateral walls and base of the presylvian sulcus, gyrus rectus and gyrus proreus. Following injection of WGA-HRP into these frontal cortical areas, anterogradely labeled nerve terminals were observed in the mesencephalic periaqueductal gray matter (PAG) just overlying the 3N. Only a few terminals were observed within the 3N. Following injection of WGA-HRP into the extraocular muscles of 1-month-old kittens, transneuronally labeled small cells were observed in the PAG just overlying the 3N and in the mesencephalic reticular formation, ventrolateral to it. These small cells may represent intercalated neurons of the cortico-oculomotor projections in the cat.

Animals↗

Modification of recombinant human granulocyte colony-stimulating factor (rhG-CSF) and its derivative ND 28 with polyethylene glycol.

Recombinant human granulocyte colony-stimulating factor (rhG-CSF) has been obtained from genetically engineered Escherichia coli as an unglycosylated protein. Both native glycosylated hG-CSF and rhG-CSF are rapidly cleared from the circulation, which may limit their effectiveness for clinical use. To improve this biological property, rhG-CSF and its derivative ND 28, which has a higher specific activity than does rhG-CSF, were modified with polyethylene glycol (PEG). Modified rhG-CSF and ND 28 in which 1 to 3 mol of PEG were bound, were purified by two-step chromatography and characterized by several methods. The results of their physicochemical characterization suggest that PEG-modification does not appreciably change the conformation of rhG-CSF and ND 28. As a result of the whole characterization, the PEG-modification of rhG-CSF and ND 28 enhanced the stability of rhG-CSF and ND 28 and decreased the plasma clearance rate, which led to more effective hemopoiesis.

Drug Stability↗

Hind III site causing Proinsulin Kyoto and Pst I site polymorphism of the insulin gene in Japanese: its lack of association with either IDDM or NIDDM.

The gene encoding Proinsulin Kyoto has been isolated and characterized by DNA sequencing, indicating that the molecular basis of the disorder is a G-T point mutation in the insulin gene which creates a Hind III site. In addition, in the 3'-untranslated region of the mutant insulin gene, a Pst I site negative, alpha type allele was found, and in the normal gene, a Pst I site positive, beta type allele was found. In order to clarify the frequency of the mutation and to determine whether this mutation is associated with diabetes mellitus or not, we have investigated Hind III polymorphism in 91 normal Japanese subjects and patients with IDDM and NIDDM. No cases with the Proinsulin Kyoto gene were found among the subjects examined. Secondly, to determine whether this alpha type allele is associated with DM in Japanese, we investigated Pst I polymorphism in the same subjects. The frequencies of the alpha type and beta type alleles were 92% and 8%, respectively. No significant difference in genotypic frequency was found among normal, NIDDM, and IDDM. We conclude that the Proinsulin Kyoto gene is not a common cause of DM and the occurrence of the alpha type insulin gene in Japanese diabetes is more frequent than in other races, so this Pst I polymorphism is not a marker for diabetes mellitus in Japanese.

Base Sequence↗